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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Strain-rate potential based elastic/plastic anisotropic model for metals displaying tension-compression asymmetry
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Strain-rate potential based elastic/plastic anisotropic model for metals displaying tension-compression asymmetry

机译:基于应变率势的弹性/塑性各向异性金属模型,显示拉-压不对称性

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摘要

Theoretical description of plastic anisotropy requires the definition of either stress potentials or plastic strain-rate potentials. In general, strain-rate potentials are more suitable for process design. Existing strain-rate potentials (phenomenological or texture-based) are applicable only to the description of the plastic behavior of materials with cubic crystal structure. Very recently, Cazacu et al. [9] have developed an orthotropic strain-rate potential applicable to metals that display tension-compression asymmetry when subjected to monotonic loading (e.g. hexagonal metals). This strain-rate potential is the exact work-conjugate of the anisotropic stress potential of Cazacu et al. [8]. In this paper, an elastic/plastic formulation based on the proposed strain-rate potential and a fully implicit time integration algorithm for this potential are presented. Finite-element tube bending simulation results demonstrate the capabilities of the model to represent the effects of the anisotropy and tension-compression asymmetry of the material on its mechanical response. If a material has the same yield in tension and compression, the strain-rate potential reduces to that proposed by Hill [17]. Further, validation of the robustness and accuracy of the integration algorithm is performed by using this new model and Hill [17] to simulate a circular cup drawing test of a steel plate.
机译:塑性各向异性的理论描述需要定义应力势或塑性应变率势。通常,应变率电势更适合于工艺设计。现有的应变速率势(现象学或基于纹理的)仅适用于描述具有立方晶体结构的材料的塑性行为。最近,Cazacu等人。 [9]已经开发出一种正交各向异性应变率电势,适用于在单调加载时表现出拉伸压缩不对称性的金属(例如六角形金属)。这个应变率势是Cazacu等人的各向异性应力势的精确功共轭。 [8]。在本文中,提出了一种基于所提出的应变率电势的弹性/塑性公式以及对该电势的完全隐式时间积分算法。有限元管弯曲仿真结果证明了该模型能够代表材料的各向异性和拉伸-压缩不对称对其机械响应的影响。如果一种材料在拉伸和压缩时具有相同的屈服强度,则其应变率电势会降低到Hill [17]提出的值。此外,通过使用这种新模型和Hill [17]模拟钢板的圆杯拉拔试验,对集成算法的鲁棒性和准确性进行了验证。

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