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Equipment Name | metal 3D printer |
Material | Metal(Stainless Steel Aluminum Alloy Titanium Alloy) |
Surface treatment | Cleaning Polishing Electroplating Sandblasting |
Process | SLM/SLS/DLP/FDM/SLA |
Application | Rapid customized prototyping and mass production |
Service | Customized OEM and ODM Manufacturing |
Accuracy | ±0.1mm, |
File format | STL, STP/STEP, IGS, X-T, OBJ |
Origin | China zhejiang |
Express | UPS,DHL,FEDEX,TNT |
CNC Machining | Reprocess |
Equipment Name | metal 3D printer |
Material | Metal(Stainless Steel Aluminum Alloy Titanium Alloy) |
Surface treatment | Cleaning Polishing Electroplating Sandblasting |
Process | SLM/SLS/DLP/FDM/SLA |
Application | Rapid customized prototyping and mass production |
Service | Customized OEM and ODM Manufacturing |
Accuracy | ±0.1mm, |
File format | STL, STP/STEP, IGS, X-T, OBJ |
Origin | China zhejiang |
Express | UPS,DHL,FEDEX,TNT |
CNC Machining | Reprocess |
Mould Name | EVA E-PTU Rubber shoe tires mould |
Mold meterial | 316L P20,2738,718H,NAK80,2316,S136,H13,etc |
Mold base | Self-mad:LKM:DME |
runner | Cold runner and hot runner |
Degsin software | UG:Auto CAD and STPSTL so on |
Mold life | 50-500 million Shots/ 5-6 years, Even in 10 years in good maintenance |
T1 time | 15-25 days |
package | customization |
Plastic material | EVA E-TPU Rubber PP PC ABS PET PE PVC PMMA TPR PA6,PA66,ASA,POM,ABS,ABS+GF,ABS+PC,POM(Derlin) |
Warranty period | 1 year or 1 million shot times(in this period, if the mold have problem, |
Mould Precision | +/-0.01mm |
Mould Cavity | Single Cavity, Multi-cavity |
Gate Type | Pinpoint Gate, Edge Gate, Sub Gate, Film Gate, Valve Gate, Open Gate, etc. |
Mould Surface Treatment | EDM, texture, high gloss polishing |
Quality System | ISO9001,SGS,TS16949 |
HS code | 8480719090 |
The adoption of 3D printing technology in the production of metal tire molds represents a groundbreaking advancement in the manufacturing industry. These molds are meticulously crafted through additive manufacturing processes, utilizing specialized 3D printers capable of layer-by-layer deposition of metallic materials. By leveraging technologies such as Selective Laser Melting (SLM), Direct Metal Laser Sintering (DMLS), or Electron Beam Melting (EBM), companies can now create complex geometries and intricate cooling channels that were previously challenging or impossible with conventional methods.
The 3D printed metal tire molds offer unprecedented precision and flexibility, significantly reducing lead times and costs associated with traditional mold-making. They allow for quick design iterations, enabling faster product development cycles, and can accommodate a wide range of customization requirements. Moreover, the enhanced thermal properties and durability of these molds contribute to more efficient and consistent production of tires, thereby improving the overall quality and performance of the end product.
Through this innovation, leading manufacturers are pushing the boundaries of what is achievable in tire manufacturing, demonstrating the transformative power of 3D printing in streamlining supply chains, fostering sustainability, and driving industrial innovation. The use of 3D printed metal molds is thus poised to redefine the future of tire production, empowering businesses to stay competitive in an ever-evolving global market while minimizing waste and maximizing productivity.