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Mechanical Properties Gradient Existing in Real Castings Taken Into Account During Design of Cast Components

机译:铸造零件设计时考虑到的真实铸件中的机械性能梯度

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The problem concerns the structure and properties heterogeneity of cast products, on the example of the Al-Si (A356) alloy. The trends of usage of this knowledge by constructors of that kind of products are described in this paper. It is well known that soundness of cast products is a postulate formulated by designers and users of machines and devices, where castings are among important parts. It is often forgotten though, that perfect soundness (density) of the cast material in ready for use parts simply does not exist. The gas and shrinkage porosities, present in semi-finished casting products, obtained from a liquid state of an alloy is the result of phenomena occurring during multiphase metallic system crystallization. Still, general introduction of the tolerance of damage rule requires knowledge about casting technology, inspection of the state of discontinuity of casting structure. The use of coupled experimental researches (including NDT - non-destructive testing and local mechanical properties of castings) and simulation tests (Procast, ANSYS) have shown how the properties gradient influences on the safety factor distribution in the casting subjected by chosen load.
机译:该问题涉及铸造产品的结构和性能异质性,例如Al-Si(A356)合金。本文描述了此类产品的构造者对这种知识的使用趋势。众所周知,铸造产品的稳固性是机器和设备的设计者和用户制定的假设,其中铸件是重要的零件。但是,经常忘记的是,在现成的可使用零件中,完全没有铸造材料的完美稳固性(密度)。由合金的液态获得的铸件半成品中存在的气孔和收缩孔隙是多相金属系统结晶过程中发生现象的结果。但是,一般来说,破坏容限规则的介绍需要有关铸造技术的知识,以及对铸造结构不连续状态的检查。结合实验研究(包括无损检测-铸件的无损检测和局部力学性能)和模拟测试(Procast,ANSYS)的使用,已经表明了性能梯度如何影响所选载荷下铸件中安全系数的分布。

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