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R&D Result

Squeeze Casting Process – Overview (Patented Technology)
Proprietary Core Technology · Full-Range Squeeze Casting for Aluminum Alloys
Through years of dedicated theoretical research and continuous engineering innovation, our company has independently developed a complete set of squeeze casting equipment backed by proprietary patented technology. This advanced process now covers a full spectrum of aluminum alloy materials, including but not limited to 1070, 2A12, 3003, 5052, 6061/6063, and 7075, with integrated T6 heat treatment capabilities to further enhance mechanical properties.
Our squeeze casting technology is positioned within the low-solid-phase aluminum forming sector, embracing the advanced concept of "replacing forging with casting." Originally known as squeeze casting, this innovative forming process was developed to overcome the inherent limitations of conventional aluminum alloy forming in terms of mechanical performance, material applicability, and structural complexity.
The technology integrates the distinctive advantages of low-pressure, squeeze, and high-pressure die casting processes, systematically addressing long-standing challenges in traditional casting — including material constraints, insufficient density, and inadequate mechanical strength for demanding applications. It effectively eliminates the material property deficiencies and internal porosity commonly found in conventional pressure casting, delivering superior internal quality and operational reliability.
Furthermore, this process significantly broadens the application scope of aluminum alloys, enabling stable forming across multiple alloy series while resolving structural design limitations inherent to forging. It also markedly improves the mechanical properties that conventional castings often fail to achieve. Overall, squeeze casting technology not only enhances product performance but also substantially reduces the total manufacturing cost of aluminum alloy components, offering customers a high-performance, cost-effective integrated forming solution.


Research the Weldable Materials: Die-Casting and Machining Processest
1. Got successful on Laser-weldable aluminum alloy enables direct welding with cover and lower housings of the optical module , reducing assembly costs effectively.
2. Reduced leakage significantly and enhances reliability in application scenarios.
3. Shortened manufacturing cycle.

Research on anodizing die-casting technique processes
The die casting of novel materials combined with anodizing can achieve a metallic luster and texture comparable to products made from forged aluminum blocks with CNC machining.Compared to CNC machining, die-casting enables complex internal structures, reduces material usage, cuts CNC processing time, and shortens production cycles, ultimately lowering costs.

High Thermal Conductivity Material Research
The innovative high thermal conductivity material, utilizing die-casting technology, enables the formation of complex internal structures. For heat-sinks with specialized geometries, this process reduces material consumption, minimizes CNC machining time, shorten production cycles, and ultimately lowers overall costs. Thermal Analysis Comparison: VC100S vs. ADC12 Heat Sinks Fin Height: 45 mm, Airflow Velocity: 10 m/s.

Green Energy – Breakthrough in Wind Energy Material Innovation: Fiber-Reinforced Composite Panels
1. Comparative Tracking Index CTI 2.
2. Thermal Class F IEC 60085.
3. Flame Retardant Class HB.


High wear-resistant lubricating material (surface treatment: die cast aluminum alloy+oxidation+PTFE)
1. Surface hardness 2000HV.
2. Suitable for wear-resistant accessories such as robots, industrial equipment, measuring instruments, etc.