An upper bound solution for compression of viscous material between rotating plates

S. Alexandrov, E. Lyamina, N. Tuan
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引用次数: 0

Abstract

An upper bound solution for compression of viscous material between rotating plates is proposed. For many conventional constitutive equations its form has been given by Hill. In the case of viscous materials the main difficulty with the application of the upper bound theorem is that conventional friction laws are not compatible with the conditions used to prove it. A reduced version of the upper bound theorem that accounts for specific viscous constitutive equations and boundary conditions is adopted. In such a form, in contrast to the general case, the theorem determines an upper bound on the load required to deform the material. The dependence of the upper bound force based on a simple kinematically admissible velocity field on material and process parameters is illustrated. The solution is reduced to numerical integration and minimization of a function of one variable.
旋转板间粘性物质压缩的上界解
提出了旋转板间粘性物质压缩的上界解。对于许多传统的本构方程,它的形式已经由Hill给出。在粘性材料的情况下,应用上界定理的主要困难是常规的摩擦定律与用来证明它的条件不相容。采用了上界定理的简化版本,该版本解释了特定的粘性本构方程和边界条件。在这种形式下,与一般情况相反,定理确定了使材料变形所需载荷的上界。说明了基于简单运动允许速度场的上界力与材料和工艺参数的关系。解被简化为单变量函数的数值积分和最小化。
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