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Thermo-Mechanical Phenomena in Aluminum Alloy Casting During Cooling - Experimental Simulation

机译:冷却过程中铝合金铸造的热机械现象 - 实验模拟

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Commonly available foundry simulation codes such as NovaFlow & Solid, Magma or ProCAST contain modules that allow to predict thermo-mechanical phenomena during the cooling of castings. However, due to the limited quantity and quality (certainty) of the values of mechanical parameters contained in databases, they are not readily used by the industry. The codes remain in the sphere of scientific considerations concerning mainly cast iron alloy castings. The article describes the problem of stress prediction in aluminum alloy castings. An experimental and virtual research methodology for the verification of residual (thermal) stress has been developed. As part of the methodology, a modified stress test has been developed, which uses a stress lattice. The location of the gating system has been modified, and to prevent the formation of shrinkage cavities, chills have been used. Moreover, in order to obtain higher rigidity of the structure, thin steel rods have been inserted before the pouring process. Such a solution has made it possible to conduct experimental simulation validation of the NovaFlow & Solid simulation code Stress module.
机译:常用的铸造仿真代码,如NovaFlow和Solid,Magma或ProCast包含模块,允许在铸件冷却过程中预测热机械现象。但是,由于数据库中包含的机械参数值的数量和质量(确定性)有限,因此业界不容易使用它们。该代码仍然存在于主要铸铁合金铸件的科学考虑领域。本文介绍了铝合金铸件应力预测问题。开发了一种实验性和虚拟研究方法,用于验证残留(热)应力。作为方法的一部分,已经开发了一种改进的应力测试,其使用应力格子。改变了门控系统的位置,并防止形成收缩腔,已经使用了冷却。此外,为了获得结构的更高刚性,在浇注过程之前已经插入了薄的钢杆。这种解决方案使得可以进行NovaFlow和实心仿真代码应力模块的实验模拟验证。

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