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首页> 外文期刊>International Journal of Plasticity >INCORPORATION OF AN ANISOTROPIC (TEXTURE-BASED) STRAIN-RATE POTENTIAL INTO THREE-DIMENSIONAL FINITE ELEMENT SIMULATIONS
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INCORPORATION OF AN ANISOTROPIC (TEXTURE-BASED) STRAIN-RATE POTENTIAL INTO THREE-DIMENSIONAL FINITE ELEMENT SIMULATIONS

机译:将各向异性(基于纹理的)应变率电势纳入三维有限元模拟中

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An anisotropic (texture-based) strain-rate potential is incorporated directly into a finite strain formulation in the form of an elastoplastic constitutive model. The technique is based on the Taylor theory of crystal plasticity and thus takes texture-induced variations in properties into account. A three-dimensional user material (UMAT) subroutine has been developed and implemented in the commercial finite element code ABAQUS. A stress updating integration algorithm is used in conjunction with the constitutive model and with the backward implicit Euler method. An explicit expression is derived for the consistent tangent modulus. The cup drawing of textured Al-alloy sheets was simulated using this code in conjunction with the UMAT subroutine. The full geometry of drawing is accounted for in the simulations. Friction effects and thickness variations are also taken into consideration. Reasonable agreement is observed between the predicted and measured ear profiles. (C) 1997 Published by Elsevier Science Ltd. [References: 30]
机译:各向异性(基于纹理的)应变率电势以弹塑性本构模型的形式直接并入有限应变公式中。该技术基于晶体可塑性的泰勒理论,因此考虑了纹理引起的性能变化。已经开发了并在商业有限元代码ABAQUS中实现了三维用户资料(UMAT)子例程。应力更新集成算法与本构模型和后向隐式欧拉方法结合使用。为一致的切线模量导出了一个明确的表达式。使用此代码结合UMAT子例程模拟了带纹理的铝合金板的杯形图。在模拟中考虑了图纸的完整几何形状。还考虑了摩擦效果和厚度变化。在预测和测量的耳廓之间观察到合理的一致性。 (C)1997年由Elsevier Science Ltd.出版。[参考:30]

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