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多重伝送装置

Trustworthy 3D printing services for creating functional prototypes and durable plastic parts for end-use applications. Utilizing advanced technology, we deliver high-quality, durable solutions tailored to your specific needs. Our services guarantee precision, ensuring that each part meets industry standards while maintaining cost efficiency for both small and large-scale production projects.

3D Printed Bowl
3D Printing in Progress

What Is Fused Deposition Modeling (FDM)?

Fused Deposition Modeling (FDM) is an additive manufacturing technique that constructs parts layer by layer using thermoplastic filaments. Our FDM services provide an affordable solution for prototyping and production of functional parts, offering a variety of materials, including ABS, PLA, PETG, and engineering-grade polymers like Nylon and Polycarbonate. FDM is perfect for rapid prototyping and small-scale production, delivering robust parts with excellent mechanical properties and customization options.

Reliable Fused Deposition Modeling for Affordable Prototypes

We offer reliable FDM 3D printing services for creating durable, functional prototypes and low-volume parts using thermoplastic filaments. This popular additive manufacturing method combines cost-effectiveness with material flexibility, enabling fast design iterations. FDM is perfect for assessing the design, fit, and performance of parts before moving into full-scale production. We guarantee consistent quality and quick turnaround to meet your development requirements.

Textured 3D Print, FDM, Fused Deposition Modeling

Materials for FDM

Yicen Precisionは、迅速な試作と耐久性のある高性能部品を提供し、エンジニアや大手メーカーから信頼を得ています。プロトタイピングであれ、本格的な生産であれ、当社の豊富な材料セレクションは、あらゆるCNC機械加工プロジェクトの精度、強度、信頼性を保証します。

Black
Blue
Dark Grey
Ivory
Red
White

Black (electrostatic dissipative properties)

Translucent Natural
Translucent Amber
Translucent Red

Black
Dark Blue
Dark Gray
Light Gray
Green
Ivory
Orange
Red
White
Yellow

Black

Black

White

Translucent Natural
White

Black
Blue
Red
White

Black
Tan

Amber (Natural)

Surface Finishing for FDM

At Yicen Precision, we offer a range of finishing solutions to enhance the quality, appearance, and performance of your FDM parts.

Heat Treating

Controlled heating processes used to relieve internal stresses in FDM parts, improving dimensional stability and slightly enhancing surface smoothness.

Metal Plating

Deposits a thin layer of metal onto the surface, enhancing strength, appearance, and electrical conductivity. Common for functional prototypes or aesthetic parts.

Priming & Filling

Primer and filler compounds are applied to prepare FDM parts for painting, smoothing rough areas and ensuring even color coverage.

エポキシ・コーティング

Applies an epoxy resin layer to fill gaps and strengthen the surface. Ideal for sealing porous FDM parts and creating a smooth, durable finish.

Vapor Smoothing

Uses controlled chemical vapors to smooth FDM surfaces by melting outer layers, reducing visible layer lines and improving gloss and strength.

テクスチャリング

Add custom textures to improve grip, hide layer lines, or create a specific aesthetic.

塗装・コーティング

 Custom paints or protective coatings can be applied to improve aesthetics, add color, or increase durability.

サンディング&ポリッシング

 Manual or mechanical sanding smooths layer lines and surface imperfections. Polishing can further refine the surface for applications requiring a clean or semi-gloss finish.

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私たちは、お客様のアイデアを比類のないスピードと精度で、高品質で機能的な部品に変換することを専門としています。高度な技術と熟練した職人技で、最も複雑な仕様を満たす部品を作り出します。

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What Is The Process of Fused Deposition Modeling (FDM)?

Fused Deposition Modeling (FDM) has become one of the leading 3D printing methods for prototyping and low-volume manufacturing.

Material Selection

The first step in the FDM process is selecting the appropriate thermoplastic material. Common choices include ABS, PLA, PETG, and high-performance polymers such as Nylon and Polycarbonate. These materials are available in a range of colors and properties, allowing for customization based on the part’s requirements.

Printing the Part

The 3D printer heats the selected filament to its melting point, extruding it through the nozzle onto the build platform. Each layer of material bonds with the previous one, forming the part. This process continues until the entire part is completed.

Cooling and Solidifying

Once the part is printed, it cools and solidifies, assuming its final shape. Depending on the complexity of the design, additional support structures may be added to ensure stability during printing and are removed afterward.

 

後処理

Once the part is printed, post-processing might be necessary to eliminate support structures and improve the surface finish. This can include sanding, painting, or applying coatings to improve the part’s appearance and functionality.

What Are the Challenges in FDM?

FDM offers numerous benefits, it does come with a set of challenges that can affect the quality and speed of production.

Limited Material Properties

While FDM supports a variety of materials, they may not be suitable for every application. Thermoplastics, although strong and durable, may not meet the stringent material requirements needed for industries like aerospace, where high-temperature resistance or extreme strength is needed. 

Layer Adhesion Issues

One common challenge in FDM is ensuring strong adhesion between layers. If the layers do not bond properly, the part may be prone to delamination or failure under stress. This issue is particularly prevalent in complex geometries or when using certain materials. Adjusting the print settings, such as nozzle temperature and print speed, can help mitigate these issues.

Surface Finish

While FDM parts are functional, the surface finish often requires post-processing to meet aesthetic standards. The layer-by-layer construction process leaves visible lines on the surface, which may not be acceptable for all applications. Sanding, smoothing, or coating can address this challenge, but it adds time and cost to the production process.

Build Size and Resolution

FDM machines are often limited in the size of parts they can produce. Large parts may need to be printed in sections and then assembled, adding complexity to the project. Additionally, the resolution of the printer, determined by the nozzle size and layer thickness, may not achieve the fine detail required for certain designs.

Warping and Shrinkage

As the thermoplastic material cools, it can shrink or warp, particularly for larger parts. This can lead to dimensional inaccuracies and cause the part to become misshapen. To mitigate this, proper bed adhesion, temperature control, and design modifications may be necessary.

易泉機械加工ソリューション

小ロットのカスタムパーツを製作する場合でも、大量生産のために規模を拡大する場合でも、Yicenの機械加工サービスは必要な柔軟性を提供します。
ラピッドプロトタイピング

CNCラピッドプロトタイプ加工は、外観と機能性の両方において、最終製品に酷似したエンジニアリングまたは生産プロトタイプを作成するのに最適です。Yicenでは、即座の見積もりと迅速な配達を提供し、お客様のニーズに合った正確で高品質のCNC機械加工プロトタイプを提供します。

少量生産

少量生産のCNCマシニングは、多くの場合、新しい生産と新興の生産のためのプロトタイピングと大量生産の間のブリッジとして機能します。Yicenを使用することで、このプロセスがより簡単に、より効率的に、そしてコスト効率よくなり、高品質な基準を維持しながら迅速に生産を拡大することができます。

最終用途 生産

CNC生産加工は、1000個以上の部品を効率的に生産するための最適なソリューションです。多様な素材と自動化・多軸化機能を活用し、厳しい公差、優れた寸法精度、高い信頼性、迅速な納期で大量生産を実現します。

洞察&記事

エクスペリエンス 機械加工サービス ブログでは、CNC加工、業界動向、製造のヒント、技術の最新情報など、専門家の見識をご紹介しています。

よくある質問

FDM(溶融堆積モデリング)

  • How accurate are FDM printed parts?

    Typical dimensional tolerances are ±0.2 mm, varying with part complexity. 

  • Can FDM parts be used for functional applications?

    Yes, parts are durable enough for prototypes and end-use components. 

  • What is the maximum size of parts you can print?

    We can print parts up to several hundred millimeters in each dimension. 

  • Is FDM suitable for small production runs?

    Absolutely, it’s cost-effective for prototypes and low-volume production. 

  • Which file formats are accepted for FDM printing?

    We accept STL, OBJ, STEP, and other common 3D file formats. 

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お問い合わせ
12時間以内の迅速な対応を保証
🔐 すべてのアップロードは安全かつ機密です。