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Method for improvement of die-casting die: combination use of CAE and biomimetic laser process

机译:压铸模的改进方法:cae和仿生激光工艺的结合使用

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摘要

Die service life improvement is an important problem in high-pressure die-casting industry. Die service life, which is defined as the maximum product number produced before it fails, and die performance directly determine the production cost and quality of die-casting product. To reduce the repair and maintenance costs, an approach to prevent die from thermal damage and prolong the die lifetime is required. Biomimetic laser-remelting process (BLRP) provides a promising method to improve the service life of die-casting mold. However, the laser processing regions can only be determined by experiences. In order to determine the exact laser processing regions for a set of new die before BLRP, a combination system of CAE and BLRP is proposed in this paper. Through analyzing the mold filling process and the temperature distribution, potential thermal cracks are worked out by numerical simulation system, which are the laser processing regions. The method proposed in this paper advances the efficiency of the BLRP. And practical production validates the veracity and the reliability of the method.
机译:延长模具寿命是高压压铸工业中的重要问题。模具的使用寿命,定义为模具失效前可生产的最大产品数量,模具的性能直接决定着生产成本和压铸产品的质量。为了减少维修和维护成本,需要一种防止管芯受到热损坏并延长管芯寿命的方法。仿生激光重熔工艺(BLRP)为提高压铸模具的使用寿命提供了一种有前途的方法。但是,激光加工区域只能由经验确定。为了确定在BLRP之前一组新模具的精确激光加工区域,本文提出了CAE和BLRP的组合系统。通过分析模具的填充过程和温度分布,通过数值模拟系统找出了潜在的热裂纹,这是激光加工区域。本文提出的方法提高了BLRP的效率。实际生产证明了该方法的准确性和可靠性。

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