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Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process

인증
중국 Dongguan Heya Precision Mold Co., Ltd 인증
고객 검토
저희는 정밀성을 매우 중요하게 생각합니다. Hoya의 금형은 오차가 ±0.005mm에 불과하며, 첫 시도부터 바로 사용할 수 있습니다. Heya는 수출 경험이 많지 않지만, 자동차 금형에 대한 이해도가 매우 높고 정말 믿을만합니다!

—— 응우옌 반 히에우

Heya의 금형은 0.004mm까지 정확하며 부식 방지 기능이 뛰어납니다. 배송은 빠르고 3주 이내로, 국내 공급업체보다 확실히 좋습니다!

—— 솜차이 펫차쿨

우리는 정확한 갈고리 구조가 필요했습니다. 호야는 즉시 3차원 디자인에 기반한 훌륭한 조언을 제공하여 100%의 완벽한 적합성을 얻었습니다.그는 우리의 필요를 정말 이해했습니다.!

—— 리나 사리

장착 구멍은 매우 정밀해야 합니다. Heya의 금형 정확도는 ±0.005mm로 즉시 설치가 가능합니다. 디자인 수정에 대한 대응력이 뛰어나고, 새로운 공급업체로서 매우 전문적입니다!

—— 림 치 센

우리에게 맞춤형 부식 저항성 솔루션을 제공합니다. 습하고 뜨거운 환경에서 곰팡이 수명이 2 배 증가했습니다. 지역 서비스 팀은 신속하게 반응합니다.

—— 말레이시아어

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Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process

Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process
Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process

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제품 상세 정보:
원래 장소: 중국 광둥
브랜드 이름: HEYA
인증: ISO9001
모델 번호: HY-615
결제 및 배송 조건:
최소 주문 수량: 1PCS
가격: 협상 가능
포장 세부 사항: 카톤 박스에 포장 된 안티 고유 오일로 코팅
배달 시간: 15-20 근무일
지불 조건: T/T, D/A, D/P, Western Union
공급 능력: 주당 200 개
접촉 지금 챗팅하세요

Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process

설명
제품명: 금형 코어 핀 가장 밝은 부분: 고정밀 균일 텍스처
용인: +/- 0.001mm 경도: 43-47 HRC
특징: 튼튼한 처리방법: 전자식 처리
재료: 니켈 애플리케이션: 생의학 산업
강조하다:

Nickel alloy electroplated mold cavity

,

Customizable core cavity mold

,

Multi-axis machining precision mold

Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process
Engineered to solve the "complex 3D geometry + high precision" dilemma in mold-making, this customizable nickel alloy electroplated mold combines two game-changing processes: electroforming (for stress-free, uniform nickel alloy bases) and multi-axis machining (for micron-level trimming of 3D curves, deep cavities, and asymmetrical features).
Compatibility
  • Suitable For Complex Geometry Parts (3D Curved Surfaces, Deep Cavities, Asymmetrical Features)
  • ±0.001mm Critical Tolerance
  • Works With High-Performance Materials (PEEK, Titanium Alloys, Glass-Filled Plastics)
Product Specifications
Attribute Value
Product Name Nickel Alloy Electroplated Precision Mold Cavity and Core (Customizable)
Highlight Multi-axis machining for complex 3D geometry, electroplated nickel alloy uniformity, fully customizable for asymmetrical designs
Tolerance ±0.001mm (critical features: 3D curves, deep cavity walls); ±0.003mm (general structure)
Hardness 50-55 HRC (nickel-cobalt alloy, 18-22% Co); 46-50 HRC (high-purity nickel, 99.95%)
Feature Ra ≤0.008μm surface finish, low internal stress, 5-axis machining for 3D accuracy, corrosion-resistant
Processing Method Nickel alloy electroplating (uniform base forming) + Multi-axis machining (5-axis/6-axis, for complex 3D feature trimming)
Material Nickel-cobalt alloy (wear-resistant), high-purity nickel (optical-grade), nickel-chromium (corrosion-resistant)
Application Aerospace engine components, medical surgical instrument housings, automotive transmission parts, optical lens mounts
Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process 0
Core Advantages: Multi-Axis Machining + Electroplating = Complexity Without Compromise
Unlike traditional 3-axis machining (limited by flat/linear cuts) or standalone electroforming (struggling with sharp 3D edges), this hybrid approach delivers ±0.001mm tolerance for parts like aerospace turbine blade cavities (with 3D curved cooling slots) or medical instrument housings (with asymmetrical grip contours). Built with high-performance nickel alloys, it balances durability and precision—critical for high-cycle production of complex components.
Multi-Axis Machining: Master of 3D Complexity
Multi-axis (5-axis/6-axis) machining eliminates the "flaws of flat machining," enabling molds with intricate 3D features that traditional methods can't replicate:
  • 3D Curve Accuracy: Cuts 3D curved surfaces (e.g., optical lens mount cavities) with ±0.001mm deviation from CAD designs—critical for parts where "0.002mm curve error ruins assembly" (e.g., aerospace sensor housings).
  • Deep Cavity & Undercut Handling: Machines deep cavities (depth-to-width ratio 5:1) and undercuts (0.1mm clearance) without tool collision—ideal for medical instrument molds (with hidden grip grooves) or automotive transmission part cavities (with internal ribs).
  • Reduced Setup Errors: 5-axis machining consolidates 3+ traditional setups into 1, cutting "repositioning errors" by 90%—ensuring 3D features (e.g., a cavity's curved wall + adjacent hole) align to ±0.0008mm.
Electroplating: The Foundation of Uniformity & Stability
Electroforming lays a stress-free, uniform nickel alloy base—critical for maintaining multi-axis machined precision over time:
  • Stress-Free Structure: Nickel ions deposit layer-by-layer (0.001mm per hour), creating a mold base with no internal stress (unlike machined steel, which warps under heat). This ensures 3D features stay within ±0.001mm tolerance across 150,000+ production cycles.
  • Uniform Material Density: Electroplated nickel alloy has 99.9% density (no porosity), avoiding "weak spots" that cause wear in high-stress areas (e.g., deep cavity corners).
  • Surface Perfection: Electroforming delivers Ra ≤0.01μm as a base, which multi-axis machining refines to Ra ≤0.008μm—ideal for parts where surface smoothness impacts function (e.g., fluid flow in medical device cavities).
Nickel Alloy Durability: Built for High-Stress Production
The right nickel alloy ensures the mold withstands the demands of complex part production:
  • Wear Resistance: Nickel-cobalt alloy (50-55 HRC) resists abrasion from high-pressure molding of glass-filled plastics (e.g., 30% glass-filled PA) or metal powders—extending mold life to 200,000+ cycles.
  • Corrosion Resistance: Nickel-chromium alloy stands up to coolants, disinfectants, and industrial fluids—critical for medical molds (contact with bodily fluids) or aerospace molds (exposed to hydraulic fluids).
  • Thermal Stability: Withstands 280℃+ (nickel-chromium variants), supporting high-temperature molding of PEEK (250℃) or titanium alloy MIM (200℃).
Application Scenarios: Where 3D Complexity Meets Precision
Our molds excel in industries demanding "intricate 3D shapes + micron-level accuracy":
  • Aerospace & Defense: Molds for turbine blade cooling channel cavities (3D curved slots, 0.1mm width) and avionics sensor housings (asymmetrical 3D contours) — meets AS9100 standards.
  • Medical Devices: Custom cores for surgical instrument handle molds (undercut grip grooves, 0.15mm depth) and endoscope component cavities (3D curved lumens for fluid flow) — complies with ISO 13485.
  • Automotive High-Performance Parts: Molds for transmission gear cavities (internal 3D ribs for strength) and EV battery connector housings (asymmetrical 3D slots for wire routing) — aligns with IATF 16949.
  • Optical Engineering: Cavities for lens mounts (3D curved seats, Ra ≤0.008μm) and laser module housings (3D alignment features, ±0.001mm tolerance) — meets ISO 10110 optical standards.
Tailored to Your 3D Designs: Customization Support
We turn your most complex CAD models into production-ready molds, with zero compromise on precision:
  • Geometry Customization: Accepts 3D CAD files (STEP, IGES, STL) for any 3D feature—from spiral grooves (0.08mm width) to 3D asymmetrical cavities (depth 50mm). Our engineers optimize multi-axis toolpaths to minimize cutting time without sacrificing accuracy.
  • Alloy Matching: Recommend nickel alloy based on your production: nickel-cobalt for high-wear materials, nickel-chromium for corrosion-exposed parts, pure nickel for optical-grade surface finish.
  • Prototype & Validation: Produce 1-2 prototype molds (14-18 days) to test 3D feature functionality—using 3D scanning (±0.0005mm accuracy) to verify curve/undercut compliance before full production.
Our Service Commitment
  • Quality Inspection: 100% testing includes:
    • 3D CMM scanning (±0.0005mm) for 3D feature accuracy
    • Laser confocal microscopy (Ra ≤0.008μm surface verification)
    • Stress testing (thermal cycling to 280℃) to confirm dimensional stability
  • Traceability: Full documentation package: nickel alloy material certs, electroplating logs (current density, electrolyte temperature), and multi-axis machining records (toolpaths, feed rates).
  • Technical Support: Dedicated engineers advise on 3D design optimization (e.g., "adding 0.005mm draft to deep undercuts for easier demolding") and provide post-delivery training on mold maintenance.
Nickel Alloy Electroplated Precision Mold Cavity And Core (Customizable) With Multi-Axis Machining Process 1
Whether you need a mold for 3D curved aerospace parts or asymmetrical medical devices, our nickel alloy electroplated cavities and cores—enhanced by multi-axis machining—deliver the complexity, precision, and durability your production demands. Backed by ±0.001mm tolerance and 5-axis precision, they ensure every complex part meets your strictest functional standards.

연락처 세부 사항
Dongguan Heya Precision Mold Co., Ltd

담당자: Mr. luo

전화 번호: 13794925533

팩스: 86----0769-81501733

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