1.Rapid Prototype Machining Quick Detail
Tingfeng Hardware offers comprehensive precision CNC machining services, equipped with Citizen and Tsugami Swiss-type lathes, multi-axis machining centers, and turn-mill compound machines, achieving machining accuracy of ±0.005mm. We support production from single prototypes to batches of over 50,000 pieces daily, working with a wide range of materials from aluminum to titanium alloys and PEEK. Supported by multiple certifications (ISO/IATF/AS9100) and digital programming systems, we guarantee 48-hour prototype delivery and rapid batch production in 3-10 days, providing reliable manufacturing solutions for your high-precision, complex structural parts.
2.Rapid Prototype Machining Product Description
We specialize in solving the manufacturing challenges of high-precision, low-volume, high-mix complex parts. As your technical partner, we provide support not only at the machining level but also engage early in product development. Through in-depth DFM (Design for Manufacturability) analysis, we optimize your geometry, tolerances, and material selection to ensure manufacturability and cost-effectiveness. Whether it’s a sterile, smooth cavity for medical devices, a vibration-resistant housing for automotive sensors, or a lightweight titanium component for aerospace, we deliver a one-stop engineering solution encompassing process planning, precision machining, post-processing, and validation.

3.Rapid Prototype Machining Product Features & Advantage
| Feature | Advantage to You |
| Top-Tier Precision & Complex Geometry Capability | Equipped with 5/6/7-axis simultaneous machining centers and turn-mill machines, enabling one-setup machining of complex surfaces, eccentric structures, micro-holes (min. Φ0.3mm), and precision threads, ensuring ±0.005mm tolerance and excellent geometric accuracy. |
| Extensive Material & Post-Processing Expertise | Proficient in machining characteristics of aluminum, stainless steel, titanium, high-temperature alloys, and engineering plastics like PEEK. Offers 20+ surface treatment options including anodizing, EN plating, and passivation to meet stringent functional and aesthetic demands. |
| Agile Prototype & Flexible Batch Response | Digital programming and quick-changeover systems support rapid prototyping with MOQ of 1 piece, while a daily capacity of 50k standard parts ensures a smooth transition from validation to stable mass production. |
| Stringent Full-Process Quality Assurance | Integrates on-machine probes, CMM, and optical inspection. Implements first-article inspection and SPC process control. Compliant with specialized standards like ISO 13485 (Medical) and AS9100 (Aerospace), enabling full data traceability. |
| Deep Collaborative Engineering Value |
Over 50% of projects achieve cost optimization or performance improvement through our early, free DFM analysis. We are not just a supplier, but an engineering partner enhancing your product’s manufacturability, reliability, and time-to-market. |

4.Rapid Prototype Machining Product Specification
| Specification Item | Detail / Range | Standard / Notes |
| Standard Machining Accuracy | ±0.01 mm | Per drawing standard tolerance |
| High-Precision Capability | ±0.005 mm | For critical features |
| Surface Roughness (Ra) | 0.4 μm — 3.2 μm | Mirror finish up to Ra 0.1 μm |
| Minimum Hole Diameter | 0.3 mm (Aspect ratio dependent) | - |
| Thin-Wall Machining Capability | Minimum Wall Thickness 0.2 mm | Supported by anti-deformation process |
| Max. Turning Diameter | Φ150 mm | Machine dependent |
| Max. Milling Travel | 800 x 500 x 400 mm | Machine dependent |
| Material Hardness Range | HRC ≤ 60 (Hardened) | Specific material & process |

5.Rapid Prototype Machining Product Application
Our precision parts are core functional carriers in high-end equipment:
Medical Devices: Surgical robot joints, precision endoscope sleeves, implant trial parts, requiring exceptional biocompatibility, surface finish, and sterility.
Automotive & New Energy: Motor housings, sensor bodies, fuel cell bipolar plates, LiDAR structural parts, focusing on dimensional stability, lightweight, and long-term reliability.
Semiconductor & Optics: Wafer clamps, lens barrels, optical mounts, requiring ultra-low deformation stress and extreme dimensional/geometric accuracy.
Aerospace: UAV airframe structures, satellite communication components, engine test pieces, involving high-strength-to-weight materials (e.g., titanium) and performance under extreme conditions.