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Quality casting of motor body using design of experiment and casting simulation

机译:通过实验设计和铸造模拟对电动机主体进行优质铸造

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摘要

Solidification of metals stands as marvel of ultimate significance for metallurgists, casting engineers and physicist which hampers the quality of castings, material yield and cycle time. Method of solidifying in casting is intricate in natural surroundings hence the process replication is mandatory in business before it is actually enforced. Volumetric contraction allied with solidifying of liquefied metal causes defects viz: shrinkage porosity, sink and cavity. Casting defects are decreased through casting simulation software and an intellectual feeding technique. Generally, gating system controls the velocity of molten metal that affects turbulence and flowability of casting. In this research, a challenge is taken to remodel a gating system by design of experiments (DoE) and casting solidification simulation framework ('e-foundry' - a web resource with casting simulation facility) and validation of results based on experiments performed in Krislur Castomech Pvt. Ltd, Bhavnagar, Gujarat, India for minimum shrinkage porosity defect in casting.
机译:金属的凝固对于冶金学家,铸造工程师和物理学家而言具有极其重要的意义,这会影响铸件的质量,材料的产量和周期时间。在自然环境中,铸造的固化方法错综复杂,因此在实际执行之前,业务中必须强制执行流程复制。与液态金属固化相关的体积收缩会导致缺陷,即:收缩孔隙,凹陷和凹坑。通过铸造模拟软件和智能进给技术可以减少铸造缺陷。通常,浇口系统控制熔融金属的速度,该速度会影响铸件的湍流和流动性。在这项研究中,挑战在于通过设计实验(DoE)和铸造凝固模拟框架(“ e-foundry”-具有铸造模拟功能的Web资源)并基于在Krislur中进行的实验验证结果来重塑浇口系统Castomech列兵。 Ltd,印度古吉拉特邦Bhavnagar,以最小化铸件中的收缩孔隙率缺陷。

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