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Twin nucleation in cold rolled low carbon steel subjected to plate impacts W. Visser$1H.

机译:冷轧低碳钢的双晶核,受到板冲击W. Visser $ 1H。

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Shock loading tests have been carried out on low carbon steel specimens using a single stage gas gun with projectile velocities ranging from 200 to 800 m/sec. In addition to dislocation slip, twinning was observed to be a contributing deformation mode. Similar impact tests were performed on specimens that have been previously subjected to cold rolling and it was shown that pre-straining increases the threshold stress for twin formation under shock loading. Efforts are made to determine the critical stress and strain rate required for twinning in cold rolled specimens. For this purpose a set of compression tests were performed on as-received and pre-strained specimens using a split Hopkinson pressure bar at various strain rates. These tests were carried out at liquid nitrogen temperatures where the thermal activation of dislocations is assumed to be higher than that for twin nucleation. Results of these tests are combined with FE analysis to provide knowledge of the twin stress as a function of pre-strain and strain rate. In addition, post-impact specimens were examined to identify characteristics of the deformation induced twins. It is shown that more than one {112} < 111 > type twin system is active at high stress levels as evident by the non-parallel nature of twins formed at the higher impact pressures. This observation was incorporated into a constitutive model based on one dimensional wave and conservation equations for predicting twin volume fraction by resolving the shear stress in multiple directions and applying twin growth equations for each plane. Results of this model show similar trends when compared with experimental outcomes for as-received and pre-strained steel.
机译:使用弹丸速度范围为200至800 m / sec的单级气枪,对低碳钢样品进行了冲击载荷测试。除位错滑移外,还观察到孪晶是一种有助于变形的模式。对先前已进行过冷轧的试样进行了类似的冲击试验,结果表明,预应变会增加冲击载荷下孪晶形成的阈值应力。努力确定在冷轧试样中孪晶所需的临界应力和应变率。为了这个目的,使用分开的霍普金森压力棒在各种应变率下对接收和预应变的样品进行了一组压缩测试。这些测试是在液氮温度下进行的,在该温度下,位错的热活化被认为高于双晶核的热活化。这些测试的结果与有限元分析相结合,以提供有关双应力作为预应变和应变率的函数的知识。此外,检查了撞击后的标本,以确定变形引起的孪晶的特征。结果表明,一个以上的{112} <111>型孪晶体系在高应力水平下是有活性的,这在较高的冲击压力下形成的孪晶具有非平行性质,这一点证明了这一点。将该观察结果合并到基于一维波和守恒方程的本构模型中,以通过解析多个方向的切应力并为每个平面应用孪生生长方程来预测孪生体积分数。与原样和预应变钢的实验结果相比,该模型的结果显示出相似的趋势。

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