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Development of Semi-Solid Die Casting Product Design and Die Design Technology for Aluminium Alloy Clamp

机译:铝合金夹具半固体压铸产品设计与模具设计技术的开发

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摘要

Semi-solid slurry has significantly higher viscosity than liquid metal. This character of fluidity makes product design and die design, such as gating system, overflow and venting system, be different between these two die casting processes. In the present paper, taking a clamp product as an example, analyses the product optimization and die design by comparing the experimental and computational numerical simulation results. For the clamp, product structure is designed to be suitable for characters of SSM die casting process. The gating system is designed to be uniform variation of thickness, making the cross-sectional area uniformly reduce from the biscuit to the gate. This design ensures semi-solid metal slurry to fill die cavity from thick wall to thin wall. Gate position is designed at the thickest location, the gate shape of semi-solid die casting is set to be much bigger than traditional liquid casting. A good filling behaviour can be achieved by aforementioned all these design principles and it will be helpful to the intensification of pressure feeding after filling.
机译:半固体浆料的粘度明显高于液态金属。这种流动性的特性使产品设计和模具设计,例如门控系统,溢流和通风系统,在这两个压铸过程之间存在不同。在本文中,以夹紧产品为例,通过比较实验和计算数值模拟结果来分析产品优化和模具设计。对于夹具,产品结构设计适用于SSM压铸过程的特性。门控系统被设计成均匀的厚度变化,使得横截面积均匀地从饼干均匀地减小到栅极。这种设计确保了半固态金属浆料,将厚壁填充到薄壁上的模腔。栅极位置设计在最厚的位置,半固体压铸栅极的栅极形状设定为比传统的液体铸造更大。通过上述所有这些设计原则可以实现良好的填充行为,并且有助于在填充后的压力喂养的强化。

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