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Titanium CNC Machining Service

Get precision-machined titanium parts with excellent strength, corrosion resistance, and a high strength-to-weight ratio. Our CNC machining capabilities deliver accurate prototypes and production components for demanding applications across aerospace, medical, automotive, and industrial industries.

Machined Bronze Components Collection 1

Bronze in CNC Machining

Bronze is a copper-based alloy known for its excellent strength, wear resistance, corrosion resistance, and machinability. It performs reliably in demanding environments and offers good dimensional stability for precision components. Its low-friction properties also make it suitable for moving parts that require smooth and consistent operation.NC machining allows bronze to be manufactured into precise components with complex geometries and smooth surface finishes.

Available BronzeTin Bronze
価格$
リードタイム10日未満
肉厚0.5 mm
公差±0.005″ (±0.125 mm)
最大部品サイズ200 x 80 x 100 cm
Precision Machined Bronze Flange Bushing

Titanium CNC Machining Materials

Titanium Alloy TA1

Titanium TA1 is a commercially pure titanium grade containing approximately 99% titanium with only small amounts of other elements. It provides excellent corrosion resistance, high ductility, and outstanding biocompatibility, making it particularly suitable for medical and dental applications. Its excellent formability and weldability also make TA1 a reliable choice for components requiring complex shapes and fabrication.

引張降伏強度(MPa)
170–275
疲労強度(MPa)
240
破断伸び(%)
20–30
硬度(ブリネル)
120–160
密度(g/cm³)
4.51

Titanium Alloy TA2

TA2 is a commercially pure titanium grade known for its excellent balance of corrosion resistance, strength, ductility, and machinability. Compared with higher-strength titanium alloys, it is easier to form and machine while maintaining dependable mechanical performance. TA2 is commonly used for pressure vessels, marine components, chemical processing equipment, and medical applications.

引張降伏強度(MPa)
275–380
疲労強度(MPa)
240–260
破断伸び(%)
20–28
硬度(ブリネル)
160–200
密度(g/cm³)
4.51

Titanium Alloy TC4 / Ti-6Al-4V

TC4, also known as Ti-6Al-4V or Grade 5 titanium, is one of the most widely used titanium alloys for high-performance components. Its combination of titanium, aluminum, and vanadium delivers excellent strength, corrosion resistance, and durability while maintaining a relatively low weight. These properties make Ti-6Al-4V particularly suitable for aerospace structures, engine components, precision mechanical parts, and other demanding applications.

引張降伏強度(MPa)
830–900
疲労強度(MPa)
510
破断伸び(%)
10–15
硬度(ブリネル)
330–340
密度(g/cm³)
4.43

一般的なCNC加工公差

説明一般公差または標準
一般寸法公差±0.005″ (±0.127 mm) for metals; ±0.010″ (±0.254 mm) for plastics in line with ISO 2768-mK unless otherwise specified
厳しい公差Down to ±0.001″ (±0.025 mm) available upon request, with detailed 2D drawings and GD&T specifications
最小フィーチャーサイズ~0.020″ (0.50 mm), depends on part geometry, tool diameter, and material
穴径公差±0.002″ (±0.05 mm) typical; tighter tolerances with boring or reaming
平坦性/平行性≤0.002″ per 6″ (≤0.05 mm per 150 mm), varies by material and fixture setup
ネジの公差ISO/ASMEに準拠した標準のメートルねじとインペリアルねじ、ご要望に応じてカスタムねじや細目ねじも承ります。
角度公差標準 ±0.5
エッジコンディション特に断りのない限り、鋭利なエッジはデフォルトで折られ、バリ取りされます。
表面仕上げ(標準)機械加工時のRaは3.2μm(125μin)。研磨、ビーズブラスト、陽極酸化処理などによる仕上げの向上が可能。
最大部品サイズMilling: Up to 80″ × 48″ × 24″ (2,032 × 1,219 × 610 mm) Turning: Up to 62″ length × 32″ diameter (1,575 × 813 mm)
エリート金型技術によって作られたカスタムCNC加工部品
エリートMold TechのCNC機械加工部品は、幅広い産業向けに優れた仕上げと厳しい公差を持つ高精度部品を提供しています。私たちのCNC機械加工サービスは、プロトタイピングと本格的な製造の両方に理想的なカスタム部品の信頼性の高い、正確かつ効率的な生産を保証します。
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Advantages and Limitations of Titanium CNC Machining

Titanium CNC machining delivers an excellent combination of strength, durability, and corrosion resistance, making it suitable for demanding precision applications. However, its unique material properties can also create machining challenges that require proper tooling, cutting parameters, and process control.

メリット
  • High Strength-to-Weight Ratio: Titanium delivers impressive mechanical strength while remaining significantly lighter than many conventional metals.
  • Excellent Corrosion Resistance: Naturally resists corrosion and performs reliably in marine, chemical, and other demanding environments.
  • Biocompatibility: Its excellent biocompatibility makes titanium widely suitable for medical devices, implants, and other healthcare applications.
  • High Durability: Titanium components offer excellent wear resistance and long-term performance under demanding operating conditions.
  • Low Thermal Expansion: Its relatively low thermal expansion helps components maintain dimensional stability when temperatures change.
  • Non-Magnetic Properties: Titanium is non-magnetic and provides strong resistance to oxidation, making it suitable for specialized engineering applications.
制限事項
  • Chemical Reactivity: At elevated temperatures, titanium can react with surrounding elements, potentially affecting surface integrity and material performance.
  • Heat Concentration: Titanium’s low thermal conductivity causes heat to remain concentrated around the cutting zone, increasing tool wear and making temperature control important.
  • Higher Cutting Forces: Machining titanium generally requires greater cutting forces and rigid setups, which can increase tool wear and affect machining efficiency.
  • Machining Complexity: Titanium requires carefully selected cutting speeds, feeds, tooling, and cooling strategies to achieve consistent dimensional accuracy and surface quality.
  • Work Hardening: Improper machining parameters can contribute to localized hardening, making subsequent cutting more difficult and potentially shortening tool life.
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Stainless steel CNC Machining FAQs

Titanium is typically machined at relatively low cutting speeds to control heat and reduce tool wear. A general range of 40–70 m/min (130–230 ft/min) may be used, depending on the titanium grade, cutting tool, operation, and cooling conditions. Optimized feeds, speeds, and effective coolant delivery are essential for achieving consistent results.

Yes. Titanium can be CNC machined to produce highly accurate and complex components. However, its low thermal conductivity and high strength require suitable cutting tools, controlled machining parameters, and effective cooling. Sharp carbide tooling and proper coolant application can help improve surface finish and extend tool life.

There is no single RPM that works for every titanium machining operation. Spindle speed should be calculated according to the cutting speed, tool diameter, titanium grade, and machining process. Lower spindle speeds are generally preferred to minimize heat generation and excessive tool wear while maintaining dimensional accuracy and surface quality.