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Calibration of Stress-triaxiality Dependent Crack Formation Criteria: A New Hybrid Experimental–Numerical Method

机译:应力-三轴度相关裂纹形成准则的标定:一种新的混合实验-数值方法

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摘要

A new experimental technique has been developed to investigate the onset of fracture in metals at low and intermediate stress triaxialities. The gage section of a flat specimen has been designed such that cracks are most likely to initiate within the specimen center, remote from the specimen boundaries. Along with the specimen, a biaxial testing device has been built to apply a well-defined displacement field to the specimen shoulders. The stress state within the specimen is adjusted by changing the biaxial loading angle. Using this new experimental technique, the crack initiation in metals can be studied experimentally for stress triaxialities ranging from 0.0 to 0.6. The stress and strain fields within the specimen gage section are determined from finite element analysis. The reliability of the computational model of the test set-up has been verified by comparing the simulation results with laser speckle-interferometric displacement measurements during testing. Sample experiments have been performed on the Al-7Si-Mg gravity die casting alloy. A three-step hybrid experimental–numerical calibration procedure has been proposed and applied to determine a phenomenological crack formation criterion for the Al-7Si-Mg alloy.
机译:已经开发出一种新的实验技术来研究低应力和中应力三轴性金属断裂的发生。扁平样品的量规部分经设计,使得裂纹最有可能在远离样品边界的样品中心内引发。除样品外,还建立了双轴测试设备,可在样品台肩上施加定义明确的位移场。通过改变双轴加载角来调整样品内的应力状态。使用这种新的实验技术,可以通过实验研究金属中的裂纹萌生,其应力三轴度范围为0.0到0.6。样本量规部分内的应力场和应变场是通过有限元分析确定的。通过将仿真结果与测试过程中的激光散斑干涉位移测量值进行比较,已验证了测试装置计算模型的可靠性。已经对Al-7Si-Mg重力压铸合金进行了样品实验。提出了一种三步混合实验-数值校准程序,并将其应用于确定Al-7Si-Mg合金的现象学裂纹形成标准。

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