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Technique for simulating high-cycle rolling to produce metallic materials reinforced by particles

机译:用于模拟高循环轧制的技术,以产生粒子增强的金属材料

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Abstract A technique is developed to simulate the high-cycle rolling used to produce particle-reinforced materials, such as an aluminum–copper composite material. The technique is based on the results of real rolling and on a mathematical model, which is based on the results of calculation with criterion conditions. The application of a criterion approach allowed us to predict the possibilities of formation of high-strength bonding of the components of the aluminum–copper composite material at retained integrity in the first rolling cycle and to determine the conditions that ensure breaks in the integrity of the reinforcing component in the next cycles in order to produce a particle-reinforced material.
机译:<标题>抽象 ara>开发了一种技术以模拟用于生产颗粒增强材料的高循环滚动,例如铝 - 铜复合材料。 该技术基于实际轧制的结果和在数学模型上,基于具有标准条件的计算结果。 标准方法的应用允许我们预测在第一轧制循环中在保留的完整性下形成铝铜复合材料部件的高强度键合的可能性,并确定确保完整性中断的条件 在下一个循环中加强组分以生产颗粒增强材料。

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