10 CNC加工試作用材料

3Dプリントとの比較, CNCプロトタイプの最大の利点は材料の豊富さと実用性です. プロトタイプの主な目的は、製品設計の実現可能性を検証することです。, 試作品の素材にもこだわりがあります. 各社の商品は異なります, 作らなければならない試作モデルも異なります. したがって, 生産材料も異なる場合があります, 主な加工材料は次のとおりです。:

3Dプリントとの比較, CNCプロトタイプの最大の利点は材料の豊富さと実用性です. プロトタイプの主な目的は、製品設計の実現可能性を検証することです。, 試作品の素材にもこだわりがあります. Each company's products are different, 作らなければならない試作モデルも異なります. したがって, 生産材料も異なる場合があります, 主な加工材料は次のとおりです。:

2. パソコン: Material with good strength, toughness and transparency, suitable for the production of Lens and fine structure parts. 加えて, glass fiber is added to improve the steel and heat resistance of the board, which can be used to make parts that need to maintain high rigidity in a high temperature environment. PC also has UL94-V0 fire rating;

3. PMMA: Namely acrylic, or plexiglass. It is a good transparent part, the material with the best transparency can be made with surface treatment such as dyeing, 電気めっき, spraying, and screen printing. The welding strength is acceptable, but fragility is its weak point, and it is not suitable for use in vulnerable places such as hooks;


4. PP: Translucent material, good impact resistance, excellent flexibility, can be applied to products with strict impact resistance conditions. のような: automotive supplies, half-folding packaging boxes, 等.


5. PA66+GF30: PA66+GF30 is not a model, it is a general code for PA66 plastic materials with 30% glass fiber. 高強度, special thermal stability, hydrolysis resistance, suitable for auto parts, mechanical parts, 等. It is used as a shield for mechanical parts that require high rigidity and dimensional stability. Red phosphorus flame retardant has long-term stability and excellent mechanical processing performance;

6. POM: It is called polymethine raw material in Chinese, also known as polyoxymethine raw material. It is often called Saigang in the prototype industry. The regular molecular structure and crystallinity make its physical and mechanical properties very excellent, and it is called metal plastic. In the prototype model, it is suitable for high-strength workpieces, such as gears, シャフト, 括弧, 等;

7. テフロン: The chemical name is polytetrafluoroethylene (PTFE for short), which is generally called "non-stick coating" または "easy to clean material". This material is resistant to acids, alkalis, and various organic solvents, and is almost insoluble in all solvents. 同時に, PTFE has the characteristics of high temperature resistance, and its friction coefficient is very low, so it can be used for lubrication and become an ideal coating for easy cleaning of the inner layer of water pipes;

8. Aluminum alloy: Aluminum alloy is the most widely used non-ferrous metal structural material in prototype models, and has been widely used in aviation, 航空宇宙, 自動車, 医学, and ship prototype models. 現在のところ, aluminum alloy is the most used alloy in prototypes. The advantages are easy processing and forming, good rigidity, and rich anode coloring;


9. Magnesium alloy: light weight and good strength, it is a favorite material for consumer 3C. The disadvantage is that magnesium is a flammable metal, and environmental control is very important during machining. The manufacturing process of magnesium alloy model is highly dangerous, and there are many machining processes after die-casting during production, which is a high-cost application material;

10. 真鍮: Brass is an alloy composed of copper and zinc. Brass composed of copper and zinc is called ordinary brass. If it is a variety of alloys composed of two or more elements, it is called special brass. Brass has strong wear resistance. Brass is often used in prototype models to replace materials that are difficult to engrave and mill, such as stainless steel. After polishing and electroplating, the surface effect and feel are very close to stainless steel.

CNC machined ABS prototype

CNC machined ABS prototype

CNC machining PC prototype

CNC machining PC prototype

CNC machining PP rapid prototype

CNC machining PP rapid prototype

Aluminum alloy rapid prototyping

Aluminum alloy rapid prototyping

CNC machining POM rapid prototyping

CNC machining POM rapid prototyping

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