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Copper in CNC Machining

Copper is widely used in CNC machining for parts that require excellent electrical conductivity, thermal conductivity, corrosion resistance, and dimensional accuracy. Its unique combination of physical and mechanical properties makes it suitable for electrical, electronics, automotive, telecommunications, and industrial applications.

Copper can be machined into complex and precise components, although its high ductility and thermal conductivity require appropriate cutting tools, speeds, feeds, and chip evacuation strategies. Different copper alloys provide varying levels of strength, machinability, conductivity, and wear resistance.

At Elite Mold Tech, copper CNC machining supports custom components with precise dimensions, complex geometries, and various surface finishing requirements.

Available Copper at Elite Mold Tech:

価格

$$$

リードタイム:

< 10日以内

壁の厚さ:

0.75 mm

公差:

±0.125mm (±0.005″)

最大部品サイズ:

200 x 80 x 100 cm

対象学年:

Copper C11000, C10100, C14500
Copper C11000
Copper C11000, also known as Electrolytic Tough Pitch Copper, is one of the most commonly used commercially pure copper grades. It offers excellent electrical and thermal conductivity along with good corrosion resistance, making it suitable for electrical and heat-transfer applications.
Tensile Strength, Yield (MPa) 69
Fatigue Strength (MPa) 76
Elongation at Break (%) 30
Hardness (Brinell) 45
Density (g/cm³) 8.94
Copper C10100
Copper C10100 is a high-purity oxygen-free copper with excellent electrical and thermal conductivity. Its very high purity makes it particularly suitable for demanding electrical, electronic, and high-conductivity applications.
Tensile Strength, Yield (MPa) 69
Fatigue Strength (MPa) 69
Elongation at Break (%) 40
Hardness (Brinell) 40
Density (g/cm³) 8.94
Copper C14500
Copper C14500, also known as Tellurium Copper, is an alloy designed to provide improved machinability while maintaining good electrical and thermal conductivity. It is commonly used for electrical connectors, electrodes, terminals, and precision components.
Tensile Strength, Yield (MPa) 220
Fatigue Strength (MPa) 100
Elongation at Break (%) 15
Hardness (Brinell) 75
Density (g/cm³) 8.89

Surface Finishing Options for Copper

Copper CNC machined parts can undergo different surface finishing processes to improve appearance, corrosion resistance, conductivity, and surface durability.
  • 機械加工
  • Sand Blasting
  • タンブリング
  • 電解研磨
  • 無電解ニッケルめっき
  • Nickel Plating
  • クロムめっき
  • 研磨
  • Brushed Finish
  • 絵画

Pros and Cons of Copper CNC Machining

Copper machining provides excellent electrical and thermal performance, making it an important material for many precision applications. However, its softness and ductility can create machining challenges that require appropriate tooling and cutting parameters.
  • Excellent Electrical Conductivity: Copper provides outstanding electrical conductivity, making it ideal for electrical and electronic components.
  • High Thermal Conductivity: Its ability to transfer heat efficiently makes copper useful for heat sinks, heat exchangers, and thermal components.
  • Corrosion Resistance: Copper offers good resistance to corrosion in many environments and can maintain its performance over time.
  • Good Machinability: Certain copper alloys, such as C14500, provide improved machinability while retaining useful conductivity.
  • Excellent Ductility: Copper can be formed and machined into complex shapes and detailed components.
  • Soft Material: Pure copper is relatively soft and can be prone to deformation, scratching, and surface damage during machining.
  • Heat Generation: Its high thermal conductivity can transfer heat away from the cutting area, requiring proper machining parameters.
  • Material Buildup: Copper can adhere to cutting tools if inappropriate tool geometry or cutting conditions are used.
  • Higher Material Cost: Copper can be more expensive than common materials such as aluminum or mild steel.
説明
申し込み
CNCマシニングは、金属やプラスチックから優れた機械的特性、精度、再現性を持つ部品を製造します。3軸および5軸CNCフライス加工が可能です。
強み
優れた機械的特性、高精度と再現性
弱点
3Dプリンターよりも大きな形状制限
プロパティ
リードタイム
< 10日以内
壁厚
0.75 mm
公差
±0.125mm (±0.005″)
最大部品サイズ
200 x 80 x 100 cm

機械的性質 終局引張強さ 220 - 280 MPa 降伏点

機械的性質 終局引張強さ 220 - 280 MPa 降伏点

よくある質問

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エリート・モールド・テックでデザインに命を吹き込もう

Elite Mold Techの精密CNC機械加工を体験してください。複雑なプロトタイプから大規模な生産まで、私たちはあなたのアイデアを現実にする準備が整いました。あなたのプロジェクトの必要性を議論するために今日私達に連絡しなさい!

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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。