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首页> 外文期刊>International Journal of Computational Materials Science and Engineering >FTMP-BASED SIMULATION OF TWIN NUCLEATION AND SUBSTRUCTURE EVOLUTION UNDER HYPERVELOCITY IMPACT
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FTMP-BASED SIMULATION OF TWIN NUCLEATION AND SUBSTRUCTURE EVOLUTION UNDER HYPERVELOCITY IMPACT

机译:基于FTMP的超高速碰撞双胞核和子结构演化模拟

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摘要

The deformation twinning model based on Field Theory of Multiscale Plasticity (FTMP) represents the twin degrees of freedom with the incompatibility tensor, which is incorporated into the hardening law of the FTMP-based crystalline plasticity framework. The model is further implemented into a finite element code. In the present study, the model is adapted to a single slip-oriented FCC single crystal sample, and preliminary simulations are conducted under static conditions to confirm the model's basic capabilities. The simulation results exhibit nucleation and growth of twinned regions, accompanied by serrated stress response and overall softening. Simulations under hypervelocity impact conditions are also conducted to investigate the model's descriptive capabilities of induced complex substructures composing of both twins and dislocations. The simulated nucleation of twins is examined in detail by using duality diagrams in terms of the flow-evolutionary hypothesis.
机译:基于多尺度可塑性场理论(FTMP)的变形孪生模型表示具有不相容张量的孪生自由度,该模型被纳入基于FTMP的晶体可塑性框架的硬化定律中。该模型进一步实现为有限元代码。在本研究中,该模型适用于单滑向FCC单晶样品,并在静态条件下进行了初步仿真,以确认该模型的基本功能。模拟结果显示孪晶区的形核和生长,并伴有锯齿状的应力响应和整体软化。还进行了超高速冲击条件下的模拟,以研究模型对双胞胎和位错组成的复杂子结构的描述能力。关于双胞胎的模拟成核,通过对偶图根据流动演化假设进行了详细研究。

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