兴瑞橡塑

Our Technologies

Innovation drives development, technology leads the future

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核心技术
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创新项目
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专利数量
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技术团队

Technology-Driven Innovation

In the field of mold R&D and production, we consistently adhere to the core concept of "technology-driven innovation." From cutting-edge technology R&D to in-depth collaboration with professional technical teams, and then to providing complete solutions and continuous technical support, we have built an efficient, precise, and traceable digital production chain to ensure that every mold, from design to delivery, reaches industry-leading standards.

CNC Program Creation: Based on the complex geometry of mold parts, we use advanced CAM software (such as NX and PowerMILL) for toolpath planning, cutting parameter optimization, and simulation verification to ensure that the program is efficient, safe, and interference-free.

  • Cutting-edge technology research and development
  • Professional technical team
  • Complete solutions
  • Continuous technical support
Detailed introduction

核心技术

我们掌握的前沿技术与解决方案

Fully digital closed-loop manufacturing system

Fully digital closed-loop manufacturing system

The customer submits product drawings, 3D models, or functional descriptions. A DFM (Dual Manufacturability Analysis) report (including mold structure, materials, parting line, core pulling, and lifespan assessment) is completed within 48 hours, and the mold type, precision level, expected lifespan, and batch requirements are jointly confirmed.
技术成熟度 95%
应用广度 88%
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Self-developed CAM intelligent optimization module

Self-developed CAM intelligent optimization module

Integrates adaptive toolpath adjustment and real-time cutting force prediction, reducing trial cutting time by 65% ​​and extending tool life by 28%, achieving a perfect balance between micron-level tolerances and maximum machining efficiency.
技术成熟度 95%
应用广度 88%
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Ultra-precision micro/nano mold technology

Ultra-precision micro/nano mold technology

Feature size ≤20μm, surface roughness Ra≤0.02μm, specializing in medical microfluidics and optical lenses, ensuring ultimate detail and optical-grade transparency in one molding process.
技术成熟度 95%
应用广度 88%
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Machining of Complex Cavities in High-Temperature Alloys

Machining of Complex Cavities in High-Temperature Alloys

Machining HRC 62+ hard materials with cavity consistency of ±0.003mm; breakthroughs in aerospace blade and turbocharger molds; 50% improvement in high-temperature and high-pressure resistance and lifespan.
技术成熟度 95%
应用广度 88%
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Conformal Cooling 3D Printing Fusion

Conformal Cooling 3D Printing Fusion

Metal 3D printing conformal cooling channels + precision CNC machining improve cooling efficiency by 45%, specifically designed for high-gloss injection molding and thin-walled parts to achieve uniform cooling and extremely short cycle times.
技术成熟度 95%
应用广度 88%
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Digital Twin Intelligent Mold Platform

Digital Twin Intelligent Mold Platform

Features built-in sensors for real-time monitoring and AI-based defect prediction with a 92% success rate. It offers full lifecycle status visualization, supports remote diagnostics and 12-month continuous optimization, setting a new benchmark for intelligent mold manufacturing.
技术成熟度 95%
应用广度 88%
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创新理念

我们相信技术创新是推动社会进步的重要力量,并致力于将最新技术成果转化为真实商业价值。

持续创新

持续探索新技术,保持技术领先优势。

团队协作

汇聚优秀人才,发挥团队协同优势。

以客户为中心

以客户需求为导向,提供定制化解决方案。

价值创造

将技术转化为商业价值,实现合作共赢发展。

Technology Implementation Process

Standardized process to ensure successful project delivery

1

Requirements identification and technology assessment

The customer submits product drawings, 3D models, or functional descriptions. A DFM (Dual Manufacturability Analysis) report (including mold structure, materials, parting line, core pulling, and lifespan assessment) is completed within 48 hours, and the mold type, precision level, expected lifespan, and batch requirements are jointly confirmed.

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Mold design and review

Senior mold designers output 3D mold assembly drawings and 2D engineering drawings, integrating advanced structures such as conformal cooling, hot runners, and sensor pre-embedded components. Online/offline joint review meetings are held to confirm the final solution and sign a technical agreement.

3

Rapid prototyping (optional acceleration)

We can quickly produce 3D printed soft molds or aluminum molds within 72 hours, allowing customers to test the molds to verify the appearance, dimensions, and assemblability. Simultaneously, we optimize the mold design and finalize the 3D file.

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CNC Programming and Program Distribution

CNC programmers create UP machining programs based on the final 3D file, using a self-developed CAM intelligent optimization module for zero-interference toolpath simulation, and push the programs to the CNC and EDM machining areas in real time via an internal high-speed network.

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Precision Manufacturing and Process Control

CNC 5-axis machining center: rough and finish milling, drilling and boring, cavity forming; EDM precision electrical discharge machining: microstructure and cemented carbide machining; digital twin platform for real-time monitoring of equipment status, temperature, and vibration to ensure consistency.

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Mold Assembly, Trial Molding, and Optimization

Professional fitters complete the final mold assembly and precision calibration. The mold is then tested on the injection molding machine at T0 level, collecting pressure, temperature, and filling data. Based on the trial molding results, fine-tuning or secondary EDM refinement is performed until the sample is 100% qualified.

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Mass production delivery and technical support

Mold surface treatment (PVD, DLC coating, etc.) + final inspection report, accompanied by complete 3D/2D drawings + UP program + trial molding parameter package. 12 months of continuous technical support will be provided upon delivery: → Remote digital twin monitoring → On-site optimization or mold modification services → Rapid response for spare parts.