L’Huile de Renforcement Capillaire : Votre Guide Complet pour de

Introduction

Dans un monde où la santé capillaire est souvent négligée, l’huile de renforcement capillaire émerge comme une solution incontournable pour ceux qui aspirent à des cheveux forts et sains. Que vous soyez confronté à des cheveux fins, cassants ou abîmés, les huiles capillaires offrent une multitude de bienfaits qui peuvent transformer votre chevelure. Cet article vous guide à travers les bienfaits, les types d’huiles, les meilleures pratiques d’utilisation, ainsi que des conseils supplémentaires pour obtenir des résultats optimaux.

Les bienfaits de l’huile de renforcement capillaire

Les huiles de renforcement capillaire ne se contentent pas d’améliorer l’apparence de vos cheveux, elles les nourrissent en profondeur. Voici quelques-uns des principaux bénéfices :

  • Renforce les cheveux : Les huiles pénètrent la tige capillaire, offrant une protection et une force accrues, réduisant ainsi la casse.
  • Hydratation intense : Elles aident à hydrater les cheveux secs et cassants, les rendant plus souples et plus faciles à coiffer.
  • Réduit la casse : En nourrissant les cheveux, elles diminuent la casse et les fourches, favorisant une croissance saine.
  • Stimule la croissance : Certaines huiles favorisent la circulation sanguine du cuir chevelu, stimulant ainsi la croissance des cheveux.
  • Protège contre les agressions extérieures : Elles forment une barrière protectrice contre la chaleur, la pollution et les produits chimiques, préservant ainsi la santé de vos cheveux.
  • Améliore l’éclat : Les huiles laissent les cheveux brillants et sains, leur donnant un aspect soigné.
  • Calme les irritations : Certaines huiles possèdent des propriétés apaisantes qui aident à calmer les irritations du cuir chevelu.

Types d’huiles de renforcement capillaire

Il existe une grande variété d’huiles de renforcement capillaire, chacune ayant ses propres propriétés bénéfiques. Voici quelques-unes des plus populaires :

  • Huile de jojoba : Idéale pour tous types de cheveux, elle imite le sébum naturel et hydrate sans alourdir. Elle est également connue pour ses propriétés antibactériennes.
  • Huile d’argan : Riche en acides gras et en vitamine E, elle nourrit et répare les cheveux abîmés, tout en offrant une protection contre les dommages.
  • Huile de ricin : Connue pour ses propriétés de stimulation de la croissance, elle est souvent utilisée pour les cils et les sourcils également. Elle aide à renforcer les follicules pileux.
  • Huile de coco : Avec sa capacité à pénétrer profondément dans la tige capillaire, elle est parfaite pour l’hydratation et la protection, tout en prévenant les dommages causés par la chaleur.
  • Huile d’amande douce : Elle adoucit les cheveux et est particulièrement bénéfique pour les cuirs chevelus sensibles, tout en offrant des propriétés anti-inflammatoires.
  • Huile d’olive : Riche en antioxydants, elle nourrit intensément et aide à maintenir l’humidité, tout en luttant contre les pellicules.
  • Huile essentielle de lavande : En plus de ses propriétés relaxantes, elle est réputée pour favoriser la croissance des cheveux et améliorer la santé du cuir chevelu.

Comment utiliser l’huile de renforcement capillaire

Pour maximiser les bienfaits de l’huile de renforcement capillaire, suivez ces étapes :

  1. Choisissez la bonne huile : Sélectionnez une huile adaptée à votre type de cheveux et à vos besoins spécifiques.
  2. Appliquez sur cheveux secs ou humides : Vous pouvez l’appliquer sur des cheveux secs pour un traitement en profondeur ou sur des cheveux humides pour plus d’hydratation.
  3. Massage du cuir chevelu : Massez doucement votre cuir chevelu pour stimuler la circulation sanguine et favoriser l’absorption de l’huile.
  4. Temps de pose : Laissez poser l’huile pendant au moins 30 minutes, ou toute la nuit pour un traitement intensif. Pour de meilleurs résultats, enveloppez vos cheveux dans une serviette chaude.
  5. Lavez vos cheveux : Utilisez un shampooing doux pour éliminer l’huile et révéler des cheveux brillants et sains. Il peut être nécessaire de faire deux lavages pour bien enlever l’excès d’huile.

Fréquence d’utilisation

La fréquence d’utilisation de l’huile de renforcement capillaire dépend de votre type de cheveux et de leur état. Voici quelques recommandations :

  • Cheveux secs ou abîmés : Utilisez l’huile une à deux fois par semaine pour des résultats optimaux.
  • Cheveux normaux : Une application toutes les deux semaines peut suffire.
  • Cheveux gras : Appliquez l’huile uniquement sur les pointes, une fois par semaine pour éviter d’alourdir les racines.

Conseils supplémentaires pour des cheveux sains

En plus de l’utilisation d’huiles de renforcement capillaire, voici quelques conseils pour maintenir des cheveux forts et sains :

  • Adoptez une alimentation équilibrée : Une alimentation riche en vitamines et minéraux est essentielle pour la santé des cheveux. Consommez des aliments riches en oméga-3, en fer, en zinc et en vitamines A, C, D et E.
  • Hydratez-vous : Buvez suffisamment d’eau pour garder vos cheveux et votre cuir chevelu bien hydratés.
  • Évitez la chaleur excessive : Limitez l’utilisation de fers à lisser, de fers à friser et de sèche-cheveux pour prévenir les dommages.
  • Coupez régulièrement vos cheveux : Des coupes régulières aident à éliminer les pointes fourchues et à favoriser la croissance.
  • Protégez vos cheveux des agressions extérieures : Portez un chapeau ou utilisez des produits protecteurs lorsque vous êtes exposé au soleil ou à la pollution.

Conclusion

L’huile de renforcement capillaire est un allié précieux pour quiconque souhaite renforcer et revitaliser ses cheveux. En intégrant ces huiles naturelles dans votre routine capillaire, vous pouvez transformer vos cheveux en une chevelure forte, saine et éclatante. N’hésitez pas à expérimenter avec différentes huiles pour trouver celle qui convient le mieux à vos besoins spécifiques. Prenez le temps de chouchouter vos cheveux et de leur donner l’attention qu’ils méritent, et vous serez récompensé par une chevelure magnifique.

Taraji P. Henson’s Green Watercolor Eye Shadow Is Pure Spring Energy

As the old saying goes, April showers bring May flowers, and despite the fact that it's been dreary and rainy all month long, Taraji P. Henson's eye shadow is as bright and fresh as a beautiful spring day.

The Color Purple star attended the Time100 Gala in New York City wearing a head-to-toe emerald ensemble, starting with the green-on-green-on-green hues on her lids. (Henson is one of the publication's Most Influential People.) Makeup artist Saisha Beecham blended a variety of green tones across the actor's eyes, starting with a pale pistachio color on the eyelid up to the brow and in the inner corners, anchored by a deep, vibrant teal in the crease. Beecham then applied a deep stroke of eyeliner and fluffy lashes to further enhance Henson's eyes. The blend of aquatic green tones resembles the layered, almost translucent tones of a watercolor painting. It's serene, yet energizing — just like the energy of springtime.

Beecham kept the rest of Henson's look simple to let the eyes really shine, applying a touch of satiny lip color. The star's chic, short curled bob with a deep side part by her go-to hairstylist Tym Wallace was the perfect match for the green shadow, gown, and matching jacket; the warm auburn tone of her hair really set off the luxurious emerald color.

Green eye shadow doesn't often get its well-deserved moment in the spotlight, but Henson makes a very strong case for making it part of your regular rotation. An eye shadow stick is an easy way to dip your toes into greener pastures, so to speak; you could apply just a touch of color on your lashlines or go full green masterpiece like Henson. We've rounded up some of our favorite shadow stick formulas for when you need a little spring zing in your step this season.


More makeup inspo:

  • I Could Watch Cardi B Peel Off Her Porcelain-Skin Makeup For Hours
  • Here's How Lupita Nyong'o Got Her Y2K Body Shimmer at the Oscars
  • Peach Makeup Will Be One of Spring's Biggest Beauty Trends

Now, let's throw it back to one of Henson's go-to beauty routines:

Follow Allure on Instagram and TikTok, or subscribe to our newsletter to stay up to date on all things beauty.

【シャネル】1987年シャネルのタイムの魅力に始まって

30年製表の中、シャネルは、高絶倫の高級製表芸を披露している。腕時計を解釈した心地よい時間、凝結した専門技術と芸術の創造臻品。腕時計、時間が流れて下の芸術。

1987年10月、シャネルが出した初の腕時計は全世界で驚嘆。それはPremièレウォン腕時計。

http://copy2017.com/list/114



Premièレウォン:陰性、単数の形容詞。「第一」:時間と空間と地位には他人を超える。第一に、抜群の。陰性、単数の名詞:破天荒、比類のない業績。交通分野では、一番快適な船腹。高級カスタムの領域で、チーフ仕立て屋師の称号です。


タブ領域では、シャネルもっぱらさんを初の腕時計、霊感はパリ芳登広場の輪郭とN°ご香水キャップの造型。この女性は独自の腕時計はただメンズ腕時計の簡単で復刻、それは完全に伝統を覆した腕時計の設計ガイドライン。


まるでInèsのラFressangeの演繹して、この時計は一枚の正確な時計も、1項のファッションアクセサリー、ちょうどその名。Premièレウォンシリーズの腕時計をシャネルタブの輝かしい歴史を演奏した第1楽章。Premièレウォンシリーズの腕時計を新たに定義を与えない時間:ダイヤルと時間尺度の文字盤、シンプルな滑らかそっと訴えている無限の可能性。


この時計は一枚の時計作品だけでなく、さらに是一の件は驚くの宝は、解釈の女性の魅力のモデルの作。


すべてはすべては精緻な美学、完璧な技術、無限の創造の追求の追求。シャネルのシンボル的な元素を続ける創作のインスピレーション:アクセントに真珠、ツバキ、彗星、菱田格紋、リボンの元素の時計作品は腕の間に扮し、大胆女性を覆した腕時計の設計ガイドライン。


腕時計設計の起草、アイデア、開発と製造仕事はシャネルが自ら完成して。2000年、1項の新しい意味を持つ革命の腕時計:J 12誕生。この黒色ハイテク精密陶磁器の腕時計は21世紀の腕時計の新しい経典にされている。振り子陀を固め、穏やかで輝いている光沢の深さは黒くて、デビューパリ芳登広場すなわち騒がせ。セラミックの時計の鎖が第二層肌にフィット腕が、自然に感応して体温がいないため、金属材質にチル。シャネルハイテク精密セラミックスを転化させる1種の貴重なタブ材質、深い黒になってタブ界一種類の盲に杖の色。


2003年、シャネルは画期的なJ 12白い腕時計を与え、シリーズ真っ白の新入生。惊世の白いその後十年タブ業に欠かせない経典色。その後、シャネル全力古きを去って新しきに就く、匠心独运、しかもあくまで腕時計のコア品質; J 12シリーズ腕時計登場じゅうななじゅうしち年後の今日、シャネル更に独特の女性を備えている特質J 12やXSシリーズ腕時計、再び演繹この経典シリーズ。


J 12シリーズの腕時計がないシャネルタブ史上の一回の革命では、その大胆運用深い黒、純粋な白いやハイテク精密セラミックス材料より転覆全体の高級タブ領域。2005年、はずみ車ブランド腕時計J 12陀をタブ芸とアイデア新しい境界を持ち込む。


五年後、シャネルで飛んで帰って下さいよJ 12謎の腕時計。J 12神秘飛返腕時計を搭載した高級複雑な機能ムーブメントを確立したシャネル高級タブ領域の地位。シャネル、製表する技術は終始一貫してブランドに従って創意のに対してたゆまない追求、例外なく。


そのスイスタブ伝統とブランド腕時計から無限創意とともに、コンテンツは、シャネル自主制作完成。シャネルの腕時計は永遠に時代の前に歩いていて。それは精確な時間、もっと大胆に経典元素を解釈して。時が過ぎて。2012年、ちょうどPremièレウォン腕時計誕生25週年で、シャネル呈上Premièレウォン浮動式陀はずみ車の腕時計、女性を開いて複雑な機能を腕時計の世界。


ツバキの花や彗星の形の陀フライホイールちりばめダイヤモンド、高級腕時計の領域に複雑な機能は初めて。シャネルは高級製表技術としての技術の解釈、製品の革新の無限の可能性を与える。


シャネルはPremièレウォン浮動式陀はずみ車の腕時計、初のジュネーヴ高級時計大賞最優秀賞「女の時計です」。この大賞に毎年1回、世界最高の時計と最も影響力のある製表商として敬意を表している。


同じ年、待ちわびたMademoiselle Priv宝飾腕時計シリーズE秘蔵表項による広範な注目。想像力の文字盤に満ちて、精緻なムーブメントは、手作り技芸の黄金の刺繍、象眼細工のダイヤモンド・パール母貝、古い宝石彫刻芸――令すべて可能に。は最も優秀なエナメル技師、彫刻職人と宝石をちりばめ師と共に創作のこのシリーズは、コンテンツをシャネルタブ伝奇書いた輝かしい章は、更に前例のない姿勢を表しているシャネル無類の好プレー。


Mademoiselle Priv椿刺繍腕時計の文字盤E独自の「針絵」技術、カラー糸刺繍ます;この腕時計をシャネル2013年に再び手ジュネーヴ高級時計大賞の認可を獲得「最高賞の工程表。


2015年、BOYやFRIENDシリーズ腕時計改造レディース腕時計の中性の手本。もっぱら女性がかっこいいし、モダンで魅力的で、男前の美しさに満ちて、再び転覆経典女性腕時計設計ガイドライン。


2016年に、シャネルあや織りソフトかな元素を初めてのテクスチャを刻んで1項のBOYやFRIENDシリーズの腕時計のバンドに精鋼。精鋼糸を編んだ彫刻して飾るバンド、だけシャネル優れたタブ芸を見せ、十分のような柔らかい生地の類の豊富な綾レベル。


2016年、シャネル発売初の自家製高級タブムーブメント:CALIBREいち搭載瞬間ジャンプ時や飛返分針の2大機能にシャネル第一項にもっぱら紳士を製造しているMonsieur de CHANELシリーズの腕時計。


この腕時計はかつてない、唯一無二、夢のために生。これは、またとないの新創作、その生命を与えるために作成された。そのケースも至臻革新の力作でそれを使命とし、積載。これはシャネルがどのように無限に渇望して不朽の傑作を創造することを渇望して。一つは渇望の臻品よう。


2017年、シャネルは専門製表に入って30年もあり。三十年、シャネル抱いて同じ渇望は当初、高級タブ領域を多くの伝奇。


シャネルは第2項自制を与えられPremi高級タブムーブメントに腕時計、再び演繹この経典腕時計、それを推し進め高級タブ領域の新しい境界。この深い黒色透かし彫りムーブメントユニーク、眼底、解釈したブランドの経典の元素と無限のアイデア。


三十数年間、ずっと堅持シャネル当初同じアイデア2017年末、シャネル渇望:を呈上1項の超高認識度の工芸の美学臻品。


1987年今、シャネルの腕時計は輝かしい伝奇を紡いた。2017年、シャネルの腕時計はまだ未来を書き続けて。


純粋スイス製造、数々の特許技術を持って、勇敢にバリエーション革新のシャネル腕時計、令時間が衆人より一段優れている。30年、シャネルはずっと最初の心を守り、製表の新基準を。


年に一年、腕時計は時の魅力を語り、非凡な。


http://copy2017.com/

Pallet Stacker Fully Automatic Concrete Block Cuber Machine

CNC machining parts

Product Description

Block Cuber Machine

1.Automatic Brick cuber machine can collect and stacking up the bricks. meanwhile, it can clean and stack up the pallets
2.Save 5-6 persons,improve production efficiency
3.360 degree rotated Manipulator stacker crane with frequency converter and proportional valve control system. So the
Stacker can clamp bricks precisely, operate stably
4. Independent intelligent console,Using German PLC components and ICs.LCD display realizes Man-Machine dialogue.
5.Unique way to push and restack bricks.Bricks can be restacked in a square size(Max:1.2*1.2M)
6.Using German Close and photoelectricity switches to ensure each action moves correctly

Product Parameters

Machine dimension

4860mm*2270mm*2886mm

Hydraulic system rated working pressure

10MPa

Operation type

Auto.90°rotation, two-way clamping

One layer stacking time

15-20 seconds

Chain conveyor speed

225mm/s

Cuber power

17.25KW

19.5Kw

Chain conveyor power

2.25KW

Total weight

4500KG

Machine dimension

L 4860mm× W 2270mm× H 2886mm

Customer Feedback

 

Company Profile

FAQ

 

CNC Machining Materials 101: How to Choose the Right One?

CNC machining has gained much ground in the industrial sector due to its high precision in producing parts and numerous applications in aerospace, medical, automotive, and other industries. Aside from its popularity due to its precision and applications, another reason is its acceptance of working with a wide range of materials.

However, to achieve desired parts that will meet production demands, there are a few important things to consider when selecting material for CNC machining. So, what are the common materials ideal for CNC machining? and are there factors for CNC Machining materials selection? Keep reading.

Contents
hide

I
Different Categories of Material in CNC Machining

II
Types of Metal Materials for CNC Machining and Examples

III
Types of Plastic Materials for CNC Machining and Examples

IV
Quick View: CNC Machining Material Chart

V
Key Factors for CNC Machining Materials Selection

VI
Tips When Using CNC Processes to Machine Different Materials

VII
Get the Right CNC Machining Material for Your Projects

VIII
Conclusion

IX
FAQs

Different Categories of Material in CNC Machining

CNC machining is a versatile process that allows using several types of materials. These CNC machining materials range from conventional plastic and metals to wood, ceramics, and composites.

In this article, we’d focus more on plastic and metal machining materials as they have more diverse uses across a variety of industries.

Types of Metal Materials for CNC Machining and Examples

The most common material for CNC machined parts is metal. These CNC materials offer numerous advantages, including thermal resistance, hardness, high strength, and electrical conductivity. The common metal CNC machine materials include:

1. Aluminum

In CNC machining, aluminum is one of the most common materials used in CNC machines. It has a high degree of machinability, better than metals like steel and titanium. Also, it boasts a remarkable strength-to-weight ratio, is lightweight, resistant to corrosion, and has an eye-catching silvery aspect.

There are several material grades of aluminum, but not all are ideal for use in CNC machining parts and products. That notwithstanding, aluminum grades like 6061 and 7075 aluminum are highly machinable and often used in the production parts where weight is a consideration, such as automotive engine parts and aerospace frames. These categories of aluminum also find application in consumer electronics, construction, and the medical industry.

2. Stainless Steel

Stainless steel has great wear resistance, corrosion resistance, strength, and toughness. Like aluminum, this material has a glossy appearance. It comes in different grades and is also often not very expensive. However, its hardness makes it one of the most difficult CNC materials to machine.

316 SS is one of its common grades, and it finds application in outdoor enclosures, medical equipment, and marine applications due to its corrosion and heat resistance. Other common grades of stainless steel for CNC are 303, 304, and 316. They find applications in producing fasteners such as bolts, screws, bushings, etc.

3. Carbon Steel and its Alloys

Due to its superior strength and machinability, carbon steel and related alloys are perfect for various applications. They work well with different heat treatment techniques, which improves their mechanical properties even further. Carbon steel is also reasonably priced compared to other metals used in CNC.

However, it is important to note that carbon steel, mild steel, and its alloys are not intrinsically corrosion-resistant. Besides, their unattractive appearance might not be appropriate for aesthetic applications. Despite their drawbacks, these materials remain favored for numerous industrial and manufacturing applications because of their durability, accessibility, and machinability. Steel and its alloys find application in producing mechanical fasteners and structural components like beams.

4. Copper and its Alloys

Copper is recognized for having great thermal and electrical conductivity. Its outstanding conductivity qualities make it a great choice for electrical and electronic applications, and its malleability and aesthetic appeal make it a popular option in the jewelry sector. Copper finds use in many different industries, including electrical wire, magnetic devices, and jewelry production.

Brass is an alloy of copper and zinc known for its corrosion resistance, excellent electrical conductivity, and machinability. It frequently appears in consumer goods, low-strength fasteners, plumbing, and electrical equipment.

Bronze is an alloy of copper, tin, and other elements. It is durable, corrosion-resistant, and strong. Also, bronze has a high degree of machinability, which gives it application in producing gears, bearings, and precision components. In addition, adding phosphorus and aluminum would increase its resistance, improving toughness and strength.

Overall, brass, bronze, and copper are important CNC machining metals.

5. Titanium

Titanium has a high strength-to-weight ratio. In other words, aside from being extremely strong, it is also lightweight. Along with having strong heat conductivity, they are also resistant to corrosion. Furthermore, because titanium is biocompatible, it finds use in the biomedical industry.

What’s more, titanium finds application in producing high-performance machined parts for several industries, including military, aerospace, and medical. Titanium also finds use as a CNC machine tools material.

6. Magnesium

The metal magnesium combines strength and lightweight. It is the best material for high-temperature parts, like engines, because of its superb thermal characteristics. Their lightweight facilitates the production of lighter, fuel-efficient vehicles.

Magnesium machining is renowned for being flammable, can cost more to process, and has a lower corrosion resistance than some other metals, including aluminum.

Types of Plastic Materials for CNC Machining and Examples

Most plastics have low melting points, which consequently hampers their machinability. However, there are some plastics materials for CNC machining, they include:

1. Acrylic

Also known as PMMA (Poly(methyl methacrylate)), this material has several desirable properties, such as optical clarity and rigidity. Its high degree of optical clarity and durability gives it application as a substitute for glass.

Despite drawbacks, including a propensity for cracking and thermal softening, acrylic is still a preferred material for CNC machining because of its adaptability and simplicity. Acrylic is a fantastic material choice for various applications since it can be used to produce accurate, high-quality components.

2. Polypropylene (PP)

High chemical resistance and fatigue strength are the two advantages of adaptable polypropylene. Furthermore, it is a material of medical grade and CNC machining results in a smooth surface finish. One of its drawbacks, though, is that it softens when exposed to high temperatures, making it a little more difficult to machine.

3. Acetal

Also known as POM (Polyoxymethylene) or Delrin, this material is highly versatile. It is tough, as well as resistant to moisture and impact. Furthermore, this material has excellent fatigue resistance.

Acetal’s stiffness, which makes it simple to process with excellent dimensional precision, is one of its main features. As a result, it is frequently used in precision components like bearings, gears, and valves.

Additionally, POM is a dependable material for many industries, including the automotive, aerospace, and consumer goods sectors, because of its superior mechanical qualities and great resistance to environmental conditions.

4. Nylon

Nylon is a strong, durable, and impact-resistant material used in various applications. It has excellent surface lubricating properties and can be employed in several composite forms, such as glass-fiber-reinforced nylon.

Applications that call for protection from frictional forces are particularly well suited for nylon. This includes parts like sprockets, bearings, sliding surfaces, and gears.

5. ABS

Due to its outstanding machinability, tensile strength, impact resistance, and chemical resistance, ABS material is a very affordable plastic material that is suitable for CNC machining. Additionally, it is simple to color, making it perfect for uses where aesthetics is crucial.

ABS has several CNC applications, including creating protective enclosures, rapid prototyping, and creating automotive parts. Aside from CNC machining, ABS manufacturers fabricate ABS using injection molding and 3D printing.

6. UHMW-PE

UHMWPE is a widely used material for CNC machining because of its outstanding qualities, which include high toughness, abrasion and wear resistance, and endurance.

Despite being challenging to machine, UHMWPE is a great material for making sliding surfaces present in bearings, gears, and rollers. Due to its exceptional qualities, it is perfect for applications where great wear resistance and endurance are needed. Compared to other materials, UHMWPE can offer outstanding efficiency and longevity when machined properly.

7. Polycarbonate (PC)

A common plastic used for CNC machining is polycarbonate (PC), which has a certain set of beneficial characteristics like optical clarity. This material is both shatter and heat-resistant. Besides, it can be used in high-temperature applications due to its strong heat resistance. What’s more, polycarbonate finds application in producing electronic components, medical devices, and automotive parts.

8. Polyetheretherketone (PEEK)

PEEK material is a high-performance plastic with excellent chemical resistance. This material also has high dimensional stability and mechanical strength. One of its major advantages is its ability to maintain stiffness at high temperatures, which makes it ideal for use in extreme environments.

PEEK finds application in several industries, including aerospace, food and beverage processing, and oil and gas. It is widely used in producing semiconductor components, bushings, seals, bearings, pump and valve components, etc.

9. Polyvinyl Chloride (PVC)

This is a low-cost plastic material with a high degree of machinability. It is resistant to high impact, corrosion, and chemicals. It has a high strength, which makes it stiff. PVC plastic is ideal for producing welded chemical tanks, valve and pump housings, cabinet and working surfaces, manifolds, and fittings.

Quick View: CNC Machining Material Chart

Material Type Name Grade Code Metal Aluminum Aluminum 1050 Al 1050 Aluminum 1060 Al 1060 Aluminum 2024 Al 2024 Aluminum 5052-H11 Al 5052-H11 Aluminum 5083 Al 5083 Aluminum 6061 Al 6061 Aluminum 6082 Al 6082 Aluminum 7075 Al 7075 Aluminum-bronze Al + Br Aluminum-MIC-6 Al MIC-6 Aluminum-QC-10 Al QC-10 Brass Brass Cu + Zn Copper Copper Cu Copper-beryllium Cu + Be Copper-chrome Cu + Cr Copper-tungsten Cu + W Magnesium / Mg Magnesium alloy / Phosphor bronze   Cu + Sn + P Stainless steel Stainless-steel 303 SS 303 Stainless-steel 304 SS 304 Stainless-steel 316 SS 316 Stainless-steel 410 SS 410 Stainless-steel 431 SS 431 Stainless-steel 440 SS 440 Stainless-steel 630 SS 630 Steel Low Carbon Steel 1018 Steel Medium Carbon Steel 4130 Steel 4140 Steel High Carbon Steel 1095 Spring Steel Tin Bronze / PVC-white/gray Titanium  Grade 1 Titanium Ti grade 1 Grade 2 Titanium Ti grade 2 Zinc / Zn Plastic Acrylonitrile butadiene styrene / ABS, ABS- high temp, ABS- antistatic Acrylonitrile butadiene styrene + polycarbonate ABS + PC High-density polyethylene / HDPE, PEHD Nylon Nylon 6 PA6 Nylon 6 + 30% Glass Fill PA6 + 30% GF Nylon 6-6 Polyamide PA66 Polybutylene terephthalate / PBT Polycarbonate Polycarbonate PC Polycarbonate-Glass Fill PC + GF Polycarbonate+30% Glass Fill PC + 30% GF Polyether ether ketone Polyether ether ketone PEEK Polyetherimide Polyetherimide PEI Polyetherimide + 30% Glass Fill Ultem 1000 + 30% GF Polyetherimide + Ultem 1000 PEI + Ultem 1000 Polyethylene / PE Polyethylene terephthalate / PET Polymethyl methacrylate-acrylic / PMMA-Acrylic Polyoxymethylene / POM Polyphenylene sulfide / PPS Polyphenylene sulfide + Glass Fill PPS + GF Polytetrafluoroethylene / PTFE Polyvinyl chloride / PVC Polyvinyl chloride + white/grey PVC-white/gray Polyvinylidene fluoride / PVDF Composite Fiber Carbon Fiber CFRP, CRP, CFRTP

Key Factors for CNC Machining Materials Selection

Although there are usually several factors to consider when choosing the right materials, here are some key ones.

Consider the Requirements for Manufacturing Parts

The basic needs of the parts to be processed are a crucial part of CNC machining, and they also create a guide for the type of material to use. The common part requirements include:

Part Applications

Make sure that the CNC material you intend to use is suitable for the intended application and its environment. For example, let’s examine the comparisons between stainless steel and carbon steel when they want to be used to manufacture components in the marine sector.

Both materials are highly machinable, but stainless steel will be more appropriate since it has a higher level of resistance to corrosion. However, carbon steel will be a better option in a regular, dry environment because it is more durable and stronger.

Part Weight

The weight of the part affects the CNC material selection, as it can impact the machining process and the overall performance of the part. Heavier parts typically require stronger, denser materials to ensure they can withstand the load. For lighter-weight parts, materials with lower density may be used, such as aluminum or titanium, to reduce weight and improve performance.

Part Accuracy and Tolerance

Some materials are more difficult to machine to tight tolerances than others. For example, materials that are prone to warping, such as certain types of plastics (PVC), may require more significant machining allowances to achieve the desired tolerances.

On the other hand, materials such as steel or titanium are often preferred for applications that require high accuracy and tight tolerances.

Part Properties

The properties required for the part depend on its intended use and the environment in which it will be used. Factors such as strength, toughness, and wear resistance are crucial for parts that will be subjected to high stress or wear.

Materials such as steel, titanium, and certain plastics, such as nylon or acetal, are known for their strength and durability, making them suitable for these types of applications. For parts that will be exposed to high temperatures, materials with good thermal stability, such as ceramics or certain metals, may be preferred.

Product Aesthetics

When choosing a material for machining, product aesthetics must be considered. This is because product market acceptance heavily depends on appearance, particularly when it comes to consumer goods.

CNC machinable materials like plastics are available in a wide range of colors and opacity, giving one the leverage to choose between a wide range of material appearances. For metals, on the other hand, improving aesthetics would involve applying a surface finish post-processing.

Surface Finish Options

The surface finish you want your product to have goes a long way in determining the type of material you use for CNC machining. There are different surface finishing options available for metals and plastics, such as polishing, anodizing, passivation, painting, brushing, powder coating, etc. These surface finish options improve not only surface look but also functionality.

It is important to note that these surface finishes interact with materials in different ways. Before choosing a material, confirming its ideal surface finish is best.

Machinability

This entails how easily machinable a material is. Softer materials like plastic and metals like aluminum are quite easy to machine. However, with tougher materials like carbon fiber and titanium, machining is a tad more difficult because these materials often destroy cutting tools. Making parts using materials with a high degree of machinability saves long-term time and money.

Cost

Of course, every material for use in CNC machining has a consideration cost. However, we firmly advise all product designers to consider that picking a lower grade of material to save money is never a smart move over the long haul.

Choose the high-quality material you can purchase that provides all the required capabilities. Only doing so increases the finished parts’ durability.

Tips When Using CNC Processes to Machine Different Materials

What you’re trying to manufacture ultimately determines which CNC machining materials to employ for your parts production. However, the following tips might serve as a quick CNC materials guide.

Use Quality Tooling

Regardless of the material you want to machine, it is important to use high-quality tooling. By avoiding inexpensive cutters that readily break and soon wear out, you can save yourself some money and headaches. High-quality tooling is designed to withstand the rigors of high-speed machining, improving the quality and consistency of your output.

Install Reliable Work-holding on Your Machine

Although maintaining a part in place is crucial during machining, sometimes it is easier said than done. This is even more difficult when working with delicate materials and complex shapes. Hence, it is better to install reliable work-holding on your CNC machine for improved machining precision and accuracy.

Select Common Machining Materials

Instead of worrying about choosing from the myriad of materials available, you can select common machining materials which top rated engineers identified and conclude that it works well for machining and is widely accepted for such applications.

Common metals include brass, copper, stainless steel, and aluminum. Common plastics include PEEK, Acetal, Nylon, ABS, and Polycarbonate.

Get the Right CNC Machining Material for Your Projects

If you are struggling to choose the right CNC materials for your projects, WayKen is here to help you. We can provide 60+ engineering metals and plastics and have well-experienced machinists and engineers who help recommend materials for your project within your budget range.

Furthermore, with our one-stop CNC machining services to meet your expectations, you can confidently get prototypes and parts with high quality and accuracy. Have any specific questions about material machining, please feel free to contact us.

Conclusion

A CNC machine’s ability to work with diverse materials is one reason it remains one of the best manufacturing processes. It easily facilitates the production of parts using metal, plastic, wood, and composite materials. Before choosing a material for your part, it is best to research the material’s strengths, weaknesses, as well as other properties to make the right decisions.

FAQs

What are the factors to be considered when selecting a CNC material?

It would be best if you considered many factors, including environmental, uses, machinability, tolerances, and the cost of the material.

Which aluminum alloy is the best for CNC machining?

Aluminum 6061-T6 is a commonly used aluminum alloy, and it is known to be a standard grade for CNC machining. Its properties, like lightness in weight, resistance to corrosion, versatility, and machinability, make it applicable in the automobile and aerospace industries.

Which plastics are more machinability?

Acetal, PEEK, and PVC plastic materials offer good dimensional stability, excellent machining properties, and resistance to melting and chipping. Due to its low price and superior machinability, Delrin is also regarded as the most economical plastic.

What is the hardest metal to mill?

Titanium is infamous for being one of the hardest metals to machine, and there are numerous stories of wrecked workpieces and shattered tools. However, titanium has outstanding qualities that make it a frequently utilized material in the aerospace and medical industries.

The big craftsmen of China's industrial bearing base are busy on the National Day

During the "National Day" holiday, the Harbin Bearing Plant, the site of China's industrial bearings, is still busy. The employees of Harbin Bearing are busy in different positions to ensure that the production and operation fulfill the contract as scheduled, interpret the responsibility and responsibility with actions, celebrate the 72nd anniversary of the motherland motherland in their own unique way, and use their labor to write the magnificent chapter of the most beautiful struggler.

During the National Day, Zhao Juan, a grinding worker at Harbin Bearing Motor Branch, carefully inspected the inner diameter of the bearing, fulfilled his duties, and did his best to complete every measurement. In order to ensure the production plan, Liu Chunmei, an assembler in the railway branch, devoted himself to the assembly of rolling mill bearings. Each set of rolling mill bearings weighs more than 80 kilograms and each set of more than 120 rolling elements. Only one set of external components weighs more than 20 kilograms. The weight is heavy and it is very difficult to fit the suit, but Liu Chunmei still maintains the standard action, which is very hard.

The employees of the automobile branch worked hard at their posts as usual, and everyone's busy figures and gratified smiles became the most beautiful scenery in the festival. Teng He, director of the Testing Technology Office of the Technology Center, sticks to his post, stepping up the bearing measurement progress and operating parameters, and escorting the production of each branch. Ma Jing, an inspector in the Inspection and Technical Office of the Quality Management Department, carefully controls the quality of the bearings to ensure that the production is tight and orderly during the festival, and the quality of the bearings is guaranteed. Dong Hu, a kinetic energy technician of the Production Management Office, inspected the safety of electrical facilities and provided a strong guarantee for safe production during the National Day. Wang Dong, an automation engineer in the Engineering Equipment Department, repaired and renovated the automation equipment at the current stage, and worked hard to advance the progress of the construction of the digital factory.

Products are inseparable from transportation. The driver of the logistics team of the Harbin Bearing Production Management Office, Xi Yuming, cooperated with the supply office to distribute the ferrules to the branches, ensuring the smooth production of each branch.

Keyword: CNC machining

Recommended Professional Deep Groove Ball Bearing Manufacturer in China——U&J.

cnc machining china

Ningbo U&J Bearing CO. Ltd. is a professional bearing manufacturer producing deep groove ball bearing with high precision, low- noise. The company is located in Zhejiang Yuyao Industrial Park with superior geographic atmosphere, and convenient transportation by sea, land and air. It owns the authority to import and export itself.

(U&J)

(U&J Workroom)

Main Product:

6000 Series, 6200 Series, 6300 Series,6800 Series, 6900 Series, 16000 Series,R Series, Other Series,62200 Series,62300 Series,63000 Series

U&J bearings have been widely applied to many fields, such as motorcars, motorbikes, electrical household appliances, textile machinery, agricultural machinery,miniature electrical machinery and so on.

U&J Bearing is ISO 9001:2008 certified company . From year 2014 we proceed ISO/TS 16949:2009 management system certified from USA NSF-ISR organization.TS16949.

Welcome all the clients from home and abroad to U&J to inspect and cooperate with us. We would like to provide you with high quality products with reasonable prices and the high efficient services.

Contact us:

NINGBO U&J BEARING MANUFACTURING CO.,LTD.

Add: No.26 Lujiafan Road,LangXia District,Yuyao,Ningbo,China.

Tel:+86-574-63816589,62196792

Fax: +86 574 63891175,62196795

E-mail: [email protected]

URL: Http://www.ujbearing.com

【シャネル】1987年シャネルのタイムの魅力に始まって

30年製表の中、シャネルは、高絶倫の高級製表芸を披露している。腕時計を解釈した心地よい時間、凝結した専門技術と芸術の創造臻品。腕時計、時間が流れて下の芸術。

1987年10月、シャネルが出した初の腕時計は全世界で驚嘆。それはPremièレウォン腕時計。

http://copy2017.com/list/114



Premièレウォン:陰性、単数の形容詞。「第一」:時間と空間と地位には他人を超える。第一に、抜群の。陰性、単数の名詞:破天荒、比類のない業績。交通分野では、一番快適な船腹。高級カスタムの領域で、チーフ仕立て屋師の称号です。


タブ領域では、シャネルもっぱらさんを初の腕時計、霊感はパリ芳登広場の輪郭とN°ご香水キャップの造型。この女性は独自の腕時計はただメンズ腕時計の簡単で復刻、それは完全に伝統を覆した腕時計の設計ガイドライン。


まるでInèsのラFressangeの演繹して、この時計は一枚の正確な時計も、1項のファッションアクセサリー、ちょうどその名。Premièレウォンシリーズの腕時計をシャネルタブの輝かしい歴史を演奏した第1楽章。Premièレウォンシリーズの腕時計を新たに定義を与えない時間:ダイヤルと時間尺度の文字盤、シンプルな滑らかそっと訴えている無限の可能性。


この時計は一枚の時計作品だけでなく、さらに是一の件は驚くの宝は、解釈の女性の魅力のモデルの作。


すべてはすべては精緻な美学、完璧な技術、無限の創造の追求の追求。シャネルのシンボル的な元素を続ける創作のインスピレーション:アクセントに真珠、ツバキ、彗星、菱田格紋、リボンの元素の時計作品は腕の間に扮し、大胆女性を覆した腕時計の設計ガイドライン。


腕時計設計の起草、アイデア、開発と製造仕事はシャネルが自ら完成して。2000年、1項の新しい意味を持つ革命の腕時計:J 12誕生。この黒色ハイテク精密陶磁器の腕時計は21世紀の腕時計の新しい経典にされている。振り子陀を固め、穏やかで輝いている光沢の深さは黒くて、デビューパリ芳登広場すなわち騒がせ。セラミックの時計の鎖が第二層肌にフィット腕が、自然に感応して体温がいないため、金属材質にチル。シャネルハイテク精密セラミックスを転化させる1種の貴重なタブ材質、深い黒になってタブ界一種類の盲に杖の色。


2003年、シャネルは画期的なJ 12白い腕時計を与え、シリーズ真っ白の新入生。惊世の白いその後十年タブ業に欠かせない経典色。その後、シャネル全力古きを去って新しきに就く、匠心独运、しかもあくまで腕時計のコア品質; J 12シリーズ腕時計登場じゅうななじゅうしち年後の今日、シャネル更に独特の女性を備えている特質J 12やXSシリーズ腕時計、再び演繹この経典シリーズ。


J 12シリーズの腕時計がないシャネルタブ史上の一回の革命では、その大胆運用深い黒、純粋な白いやハイテク精密セラミックス材料より転覆全体の高級タブ領域。2005年、はずみ車ブランド腕時計J 12陀をタブ芸とアイデア新しい境界を持ち込む。


五年後、シャネルで飛んで帰って下さいよJ 12謎の腕時計。J 12神秘飛返腕時計を搭載した高級複雑な機能ムーブメントを確立したシャネル高級タブ領域の地位。シャネル、製表する技術は終始一貫してブランドに従って創意のに対してたゆまない追求、例外なく。


そのスイスタブ伝統とブランド腕時計から無限創意とともに、コンテンツは、シャネル自主制作完成。シャネルの腕時計は永遠に時代の前に歩いていて。それは精確な時間、もっと大胆に経典元素を解釈して。時が過ぎて。2012年、ちょうどPremièレウォン腕時計誕生25週年で、シャネル呈上Premièレウォン浮動式陀はずみ車の腕時計、女性を開いて複雑な機能を腕時計の世界。


ツバキの花や彗星の形の陀フライホイールちりばめダイヤモンド、高級腕時計の領域に複雑な機能は初めて。シャネルは高級製表技術としての技術の解釈、製品の革新の無限の可能性を与える。


シャネルはPremièレウォン浮動式陀はずみ車の腕時計、初のジュネーヴ高級時計大賞最優秀賞「女の時計です」。この大賞に毎年1回、世界最高の時計と最も影響力のある製表商として敬意を表している。


同じ年、待ちわびたMademoiselle Priv宝飾腕時計シリーズE秘蔵表項による広範な注目。想像力の文字盤に満ちて、精緻なムーブメントは、手作り技芸の黄金の刺繍、象眼細工のダイヤモンド・パール母貝、古い宝石彫刻芸――令すべて可能に。は最も優秀なエナメル技師、彫刻職人と宝石をちりばめ師と共に創作のこのシリーズは、コンテンツをシャネルタブ伝奇書いた輝かしい章は、更に前例のない姿勢を表しているシャネル無類の好プレー。


Mademoiselle Priv椿刺繍腕時計の文字盤E独自の「針絵」技術、カラー糸刺繍ます;この腕時計をシャネル2013年に再び手ジュネーヴ高級時計大賞の認可を獲得「最高賞の工程表。


2015年、BOYやFRIENDシリーズ腕時計改造レディース腕時計の中性の手本。もっぱら女性がかっこいいし、モダンで魅力的で、男前の美しさに満ちて、再び転覆経典女性腕時計設計ガイドライン。


2016年に、シャネルあや織りソフトかな元素を初めてのテクスチャを刻んで1項のBOYやFRIENDシリーズの腕時計のバンドに精鋼。精鋼糸を編んだ彫刻して飾るバンド、だけシャネル優れたタブ芸を見せ、十分のような柔らかい生地の類の豊富な綾レベル。


2016年、シャネル発売初の自家製高級タブムーブメント:CALIBREいち搭載瞬間ジャンプ時や飛返分針の2大機能にシャネル第一項にもっぱら紳士を製造しているMonsieur de CHANELシリーズの腕時計。


この腕時計はかつてない、唯一無二、夢のために生。これは、またとないの新創作、その生命を与えるために作成された。そのケースも至臻革新の力作でそれを使命とし、積載。これはシャネルがどのように無限に渇望して不朽の傑作を創造することを渇望して。一つは渇望の臻品よう。


2017年、シャネルは専門製表に入って30年もあり。三十年、シャネル抱いて同じ渇望は当初、高級タブ領域を多くの伝奇。


シャネルは第2項自制を与えられPremi高級タブムーブメントに腕時計、再び演繹この経典腕時計、それを推し進め高級タブ領域の新しい境界。この深い黒色透かし彫りムーブメントユニーク、眼底、解釈したブランドの経典の元素と無限のアイデア。


三十数年間、ずっと堅持シャネル当初同じアイデア2017年末、シャネル渇望:を呈上1項の超高認識度の工芸の美学臻品。


1987年今、シャネルの腕時計は輝かしい伝奇を紡いた。2017年、シャネルの腕時計はまだ未来を書き続けて。


純粋スイス製造、数々の特許技術を持って、勇敢にバリエーション革新のシャネル腕時計、令時間が衆人より一段優れている。30年、シャネルはずっと最初の心を守り、製表の新基準を。


年に一年、腕時計は時の魅力を語り、非凡な。


http://copy2017.com/

Keyword: exness 評判

【ウブロ】ウブロ ビッグバン 「独立イタリア」迷彩腕時計

ビッグBang「独立イタリア」迷彩腕時計見せ炭素繊維特有の力と軽い質感、迷彩柄合わせて革新素材Texalium®(アルミめっき炭素繊維)、前衛のデザインと素材の融合を自由に、もっと見せて現代ファッションの新しい解読。

http://copy2017.com/list/124

覆黒つや消しコーティングの45ミリフェイスは、大気の風格を表出。ベゼルに黒い炭素繊維とTexalium®飾がろく粒のH型PVDコーティング18王金ボルト。腕時計「特殊兵」のタフガイ気質を。

http://copy2017.com/list/123

透過内、外側は防反射鏡を見ることができる処理サファイア表が異なる「次元」の透かし彫り王金指針、小秒クロノ盤とろくじゅう分計盤と数字の時、明らかに分担して精神を体現して、レベルの感。そして文字盤9時位置の符号で平和な情報を伝える。腕時計が非凡である。

http://copy2017.com/list/122

ケースサイドBANGシリーズを踏襲BIG精髄、ケース中間挿入黒天然ゴム。

18王金PVDコーティングチタン表冠、上に抑える黒ゴム成形印刷宇輸入表マーク、黒いPVDコーティング18王金ボタン。手触りが快適で、腕時計の耐磨耗性が強い。

前衛の潮流の図案は経典の魅力を改めて演繹――の最も有名な軍事モチーフ刻んフェイスはシルクの癖に、そして、下のTexalium®素材が見える。

腕時計配備黒ゴム付き純粋な黒あや織り木綿のバンド、組み合わせの「ワンクリック式」の取り外し可能バンド装置。抜群のしなやかさと柔軟性を備えている。

炭素繊維と、黒チタン金属の折畳み時計、外側の刻印ブランド英語のロゴ。

時刻と指数は覆がスーパーLuminova®蛍光コーティング、漆黒の環境の下で、的確に識別する時間。

搭載宇輸入時計搭載宇自主製造自動飛び帰って輸入表クロノグラフムーブメントHUB1242時精密。カウントダウン機能をダブルクラッチの独特な位置決め機構とレベルの有名な「ポスト輪」風に開くやすい新しい段階のカウントダウン。動力貯蔵72時間。防水深さは100メートル。

まとめ:宇汽船表は再び証明にTexalium®と色彩表現を操る能力、技術とデザインの挑戦に直面して、ブランドの不断の努力には色を探求と素材の融合を徹底的に結合。真の「反逆」とは、時代の流れとなる腕の間にも。



http://copy2017.com/






Troubleshooting Injection Molding Weld Lines

Time to read: 4 min

Weld lines in injection molding are a type of cosmetic defect that detracts from a plastic part’s appearance. In some cases, a weld line can also cause a loss of strength and impact resistance. Known also as knit lines and weld marks, weld lines are difficult to eliminate completely, especially if your injection molded part requires holes. Yet there are ways for designers to minimize the appearance of knit lines and their effects on injected molded products.

Part design is important, but the construction of the mold and the skill of the injection molder can also help to reduce weld line defects. Fictiv works with a global network of carefully vetted Manufacturing Partners and we provide quality tooling that’s also cost-effective, and our platform offers design for manufacturing (DFM) feedback when you request a quote. Keep reading to learn more about how to avoid weld marks in injection molding and create a Fictiv account to request an injection molding quote today. 

What Are Weld Lines and What Causes Them? 

During plastic injection molding, molten material flows through an opening called a gate and fills a mold cavity. The leading edge of the flow, or the melt front, may encounter obstacles such as the core pins that are used to mold holes in plastic parts. If the melt front encounters an obstacle, the flow separates and moves past it in two different streams. These streams come together again once they’ve passed the obstacle, but they might not mix. If that happens, the point of contact forms a weld line. 

Sometimes, the two flows don’t mix because some cooling and re-solidification of the plastic material have occurred. Alternatively, the flows may meet in a way that their orientation to each other doesn’t readily support mixing. As the plastic flow continues through the cavity, it mixes and becomes one melt front again, but the knit line remains near the obstruction, and issues with tooling construction or plastic processing may cause it to weaken the plastic part.

How to Avoid Weld Lines in Injection Molding 

To avoid weld lines completely, you could machine features such as holes after injection molding is complete — but that adds costs and is likely extend project timelines. If machining isn’t an option, consider how part design, mold design, and plastic processing can minimize and reduce knit lines instead. There may be some tradeoffs to consider, but Fictiv provides expert DFM feedback to support your decision-making.

Part Design 

Your choice of a color for an injection molded part can make weld lines seem more or less pronounced. That’s why when part designers ask for silver or another metallic color, Fictiv recommends painting the parts instead of adding a colorant to the plastic. Within metallic colorants, there are flakes that tend to make weld marks more prominent. Using thinner wall sections and lighter colors, such as white, can also help reduce weld mark visibility. 

For most part designs, the features that create weld lines (such as core pins for holes) are necessary and cannot be eliminated. Imagine an injection molded wheel without a hole for a fastener, or an injection molded nozzle without an opening for fluid flow. For products like these, weld lines are typically unavoidable, but changes to mold design and plastic processing can minimize their appearance or change their location so that cosmetic defects are less prominent. 

Mold Design

There are three ways to modify an injection mold design to minimize weld lines: 

  • Gating
  • Runner Type
  • Venting 

Gating

Gate location is the point where molten plastic enters the mold cavity, and moving the position of the gate can change the flow and move weld lines away from prominent surfaces. Consider an injection molded flashlight case. If the case is a box and sits flat, a designer could move the gate so that the weld line appears on the bottom of the case, where it’s less visible. 

Runner Type 

Using a mold with a hot runner system instead of a cold runner system provides greater control over the material. In a hot runner system, the plastic remains in a molten state until it flows into the mold cavity. In a cold runner system, both the runners and the mold remain at the same temperature. Ultimately, hot runner systems provide greater temperature control, which enables a skilled injection molder to reduce part defects.     

Venting 

Because weld lines aren’t always just cosmetic defects, proper venting is important. Otherwise, trapped air can restrict the flow of the material and weaken the strength of the plastic where weld lines form. This makes correct venting essential for producing good mechanical properties, and not just a clean appearance. 

Plastic Processing 

Plastic processing has two key aspects that affect weld lines.

  • Plastic melt and mold temperature
  • Injection speed and pressure 

Plastic Melt and Mold Temperature

Increasing the temperature of the metal mold or the plastic material helps reduce weld lines because hotter temperatures allow for the two melt fronts to fuse together more completely. But it’s important to keep temperatures within the recommended range of the plastic manufacturer’s material data sheet. Otherwise, plastic degradation may occur. 

Injection Speed and Pressure

Increasing the injection speed and/or pressure during injection molding causes the melt fronts to remain hotter because the mold cavity fills more quickly. This approach can shorten the length of the weld lines that appear and support better fusing overall.

Weld Line Injection Molding Help and More

A great part design is important, but having the right tooling manufacturer and injection molder are critical to the success of your project, too. Fictiv is your operating system for custom manufacturing and our technical experts are ready to help guide you through the entire injection molding process to minimize weld lines and ensure you get quality parts. 

We provide everything you need for a successful injection molding project, from DFM feedback to tooling oversight and quality assurance. To get started, create a Fictiv account and request a quote today.   

Keyword: Fyrverkerier