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CORNER STRENGTH OF INVESTMENT CASTING SHELLS

机译:投资铸造外壳的角强度

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摘要

During the investment casting process, the shell is subjected to high internal pressure and thermal stress, particularly during pattern removal and when pouring steel into the free standing ceramic shell. Most testing methods investigate the properties of the ceramic shell in flat regions while cracks typically form in the sharp corners and edge regions. The corners and edge regions have different structure and thickness when compared to flat regions and experience large mechanical stress during processing. In this study, experimental methods were combined with finite element modeling to predict failure stress in the internal corner regions of the shell. The model takes into consideration the mechanical properties of the ceramic shell to determine the stress developed during loading. The effect of shell porosity on stress concentration in sharp corners was evaluated. A general equation was developed to predict the force necessary for crack formation in the shell based on various geometric variables. The results from the model were experimentally verified and the failure stress in flat and corner regions of the shell were compared in order to develop an improved equation.
机译:在熔模铸造过程中,壳体承受较高的内部压力和热应力,特别是在去除图案时以及将钢倒入独立式陶瓷壳体中时。大多数测试方法会在平坦区域研究陶瓷外壳的性能,而在尖角和边缘区域通常会形成裂纹。与平坦区域相比,拐角和边缘区域具有不同的结构和厚度,并且在加工过程中承受较大的机械应力。在这项研究中,实验方法与有限元建模相结合,以预测壳体内角区域的破坏应力。该模型考虑了陶瓷外壳的机械性能,以确定在加载过程中产生的应力。评估了壳的孔隙率对尖角应力集中的影响。根据各种几何变量,开发了一个通用方程式来预测在壳体中形成裂纹所需的力。对模型的结果进行了实验验证,并比较了壳的平坦和角部区域的破坏应力,以建立改进的方程。

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