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Enhanced Heat Transfer Coefficient (HTC) Method to Model Air Quench Process: HTC Patching for More Accurate FEA Temperature Calculation

机译:增强传热系数(HTC)方法为模拟空气淬火过程:HTC修补以进行更准确的FEA温度计算

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Air quenching is a common manufacturing process in automotive industry to produce high strength metal component by cooling heated parts rapidly in a short period of time. With the advancement of finite element analysis (FEA) methods, it has been possible to predict thermal residual stress by computer simulation. Previous research has shown that heat transfer coefficient (HTC) for steady air quenching process is time and temperature independent but strongly flow and geometry dependent. These findings lead to the development of enhanced HTC method by performing CFD simulation and extracting HTC information from flow field. The HTC obtained in this fashion is a continuous function over the entire surface. In current part of the research, two patching algorithms are developed to divide entire surface into patches according to HTC profile and each patch is assigned a discrete HTC value. Also included in this research is the performance comparison of the two patching algorithms by analyzing the errors.
机译:空气淬火是汽车工业的常见制造过程,通过在短时间内通过冷却加热零件生产高强度金属部件。随着有限元分析(FEA)方法的进步,有可能通过计算机模拟预测热残余应力。以前的研究表明,用于稳定空气淬火过程的传热系数(HTC)是时间和温度无关,但依赖于强烈的流量和几何形状。这些发现通过执行CFD仿真和从流场中提取HTC信息来导致增强的HTC方法的开发。以这种方式获得的HTC是整个表面的连续功能。在当前部分的研究中,开发了两个修补算法以根据HTC配置文件将整个表面分成斑块,并且每个补丁都被分配了离散的HTC值。本研究还包括在本研究中是通过分析错误来进行两个修补算法的性能比较。

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