AC2B铝合金铸件凝固裂纹强度的定量评价

Heon-Joo Kim
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引用次数: 1

摘要

利用CAE分析对铸件的热应力进行数值求解,是铸件产品开发阶段预测和处理铸件凝固开裂问题的有效方法。在这种情况下,定量的应力应变数据是必要的。研制了一种可定量测量应力-应变关系的拉伸式凝固裂纹试验装置,并建立了试验方法。通过以下试验程序得到的凝固裂纹强度,可以根据固体晶粒尺寸、晶粒形貌、固体晶粒分布等对凝固合金热塑性特性的影响因素对其进行评价。提出了以下试验步骤:利用计算机模拟凝固过程预测凝固裂纹试样失效部位温度;利用Scheil条件下的凝固热力学解计算失效部位的固相分数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative Evaluation of Solidification Crack Strength of AC2B Aluminum Casting Alloy
Numerical solution of thermal stress by CAE analysis could be an effective method in product development stage of castings to predict and treat the problem of solidification cracking of castings. Quantitative stress-strain data are necessary, in this case. Tension type apparatus of a solidification crack test which can measure stress-strain relationship quantitatively was developed and the test procedure was established by this research. Solidification crack strength obtained from the following test procedure could be utilized to evaluate it in terms of effect factors on thermo-plastic characteristic of solidifying alloy such as grain size of solid, grain morphology, distribution of solid grain, etc. Proposed test procedure is as follow: Prediction of temperature at the failure site of solidification cracked specimen by computer simulation of solidification, Calculation of solid fraction of the failure site from thermodynamic solution of solidification under Scheil condition.
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