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首页> 外文期刊>Materialwissenschaft und Werkstofftechnik >Identification of local cyclic stress-strain curves at material inhomogeneities on the basis of digital image correlation
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Identification of local cyclic stress-strain curves at material inhomogeneities on the basis of digital image correlation

机译:基于数字图像相关性的材料非均匀性局部循环应力-应变曲线识别

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摘要

Low-cycle fatigue (LCF) tests on butt-welded joints revealed that material inhomogeneities become decisive for the fatigue behavior at elastic-plastic strain amplitudes and the geometrical notch is no longer the failure location - as observed in high-cycle fatigue (HCF) regime. Digital image correlation techniques enable the measurement of local strains at the surface of the welded region. A new method is proposed that is able to calculate related local stresses and identifies local cyclic material properties in structures of inhomogeneous material and geometry. This method combines strain measurements and Finite Element simulations. It is a fast iteration procedure that is able to perform the identification within less than ten iterative steps at several hundred local points. Transient material behavior is easy to capture and an application at high temperatures is anticipated due to the method is based on materials mechanics.
机译:对焊接头的低周疲劳(LCF)测试表明,材料不均匀性对于弹塑性应变振幅下的疲劳行为起决定性作用,几何缺口不再是失效位置-如在高周疲劳(HCF)中观察到的政权。数字图像相关技术可以测量焊接区域表面的局部应变。提出了一种新的方法,该方法能够计算相关的局部应力并识别不均匀材料和几何结构中的局部循环材料属性。该方法结合了应变测量和有限元模拟。它是一种快速的迭代过程,能够在数百个局部点的少于十个迭代步骤中执行识别。瞬态材料行为易于捕捉,并且由于该方法基于材料力学,因此有望在高温下应用。

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