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A continuum model for initiation and evolution of deformation twinning

机译:变形孪生萌生和演化的连续模型

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Within continuum dislocation theory the plastic deformation of a single crystal with one active slip system under plane-strain constrained shear is investigated. By introducing a twinning shear into the energy of the crystal, we show that in a certain range of straining the formation of deformation twins becomes energetically preferable. An energetic threshold for the onset of twinning is determined. A rough analysis qualitatively describes not only the evolving volume fractions of twins but also their number during straining. Finally, we analyze the evolution of deformation twins and of the dislocation network at non-zero dissipation. We present the corresponding stress-strain hysteresis, the evolution of the plastic distortion, the twin volume fractions and the dislocation densities.
机译:根据连续位错理论,研究了单晶在一个平面应变约束剪切作用下具有一个主动滑移系统的塑性变形。通过将孪生剪切力引入晶体的能量,我们表明在一定的应变范围内,形变孪生在能量上是可取的。确定孪生发作的能量阈值。粗略的分析不仅定性地描述了双胞胎的体积分数,而且还描​​述了它们在拉伸过程中的数量。最后,我们分析了非零耗散条件下形变孪晶和位错网络的演化。我们提出了相应的应力应变滞后,塑性变形的演化,孪晶体积分数和位错密度。

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