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首页> 外文期刊>Holzforschung >Rate-independent mechanical behavior of biaxially stressed wood: Experimental observations and constitutive modeling as an orthotropic two-surface elasto-plastic material
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Rate-independent mechanical behavior of biaxially stressed wood: Experimental observations and constitutive modeling as an orthotropic two-surface elasto-plastic material

机译:双轴应力木材的速率无关的力学行为:作为正交各向异性两面弹塑性材料的实验观察和本构模型

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摘要

Recent biaxial experiments on spruce wood show that consideration of an elliptic failure surface according to Tsai and Wu and an elastic model for stress states within this envelope lead to an insufficient description of the mechanical behavior. As compression perpendicular to the grain occurs, a non-linear stress path results from a proportional biaxial strain path. Investigation of characteristic samples with respect to loading-unloading-re-loading cycles for states of stress below failure reveals behavior similar to what is known as hardening type plasticity. The experimentally observed mechanical behavior is described by means of a two-surface plasticity model addressing both failure and non-linear stress response below failure as separate mechanisms. Prediction of failure is achieved by means of a second-order failure envelope according to Tsai and Wu. The non-linear stress response has to be covered by a novel orthotropic hardening type plasticity model. Since available experimental data covers only plane stress in the LR-plane, both orthotropic failure and yield surfaces, respectively, are restricted to this case.
机译:最近在云杉木材上进行的双轴实验表明,根据Tsai和Wu的椭圆破坏面的考虑以及该包络内应力状态的弹性模型导致对机械行为的描述不足。当发生垂直于晶粒的压缩时,比例双轴应变路径会产生非线性应力路径。对于应力低于破坏状态的载荷-卸载-再加载循环,对特征样本进行调查后发现,其行为类似于所谓的硬化型可塑性。实验观察到的力学行为是通过两面可塑性模型描述的,该模型将失效和失效以下的非线性应力响应作为单独的机制进行处理。通过Tsai和Wu的二阶故障包络来实现故障的预测。非线性应力响应必须由新型的正交各向异性硬化型可塑性模型覆盖。由于可用的实验数据仅涵盖LR平面中的平面应力,因此正交各向异性破坏和屈服面分别限于这种情况。

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