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Flow of an elastoviscoplastic material between rotating cylindrical surfaces with nonrigid cohesion

机译:弹性粘塑性材料在具有非刚性内聚力的旋转圆柱表面之间的流动

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摘要

The theory of large deformations is used to construct exact solutions of a sequence of one-dimensional boundary-value problems of the occurrence, development, and subsequent deceleration of viscometric flow of an elastoviscoplastic incompressible material located in the gap between rotating rigid coaxial cylindrical surfaces. In the quasistatic approximation allowing for slip of the material on its solid boundaries, the flow initiation conditions in the deformed material and the laws of motion of the boundary surfaces of the flow of this material both during its development and deceleration are determined. The parameters of the stress-strain states in the regions of reversible deformation and flow in all stages of the process, including the cessation of the flow and the complete unloading by rotation of the solid boundary in the opposite direction, are calculated.
机译:大变形理论用于构造一维边界值问题的精确解,这些问题位于旋转刚性同轴圆柱面之间的缝隙中,弹塑性塑性不可压缩材料的粘滞流动的发生,发展和随后的减速。在准静态近似中,考虑到材料在其固体边界上的滑动,确定了变形材料在其展开和减速期间的流动起始条件以及该材料流的边界表面的运动定律。计算了在该过程的所有阶段中,在可逆变形和流动区域中的应力应变状态参数,包括流动的停止和由于固体边界沿相反方向的旋转而导致的完全卸载。

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