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Thermal Simulation on Mechanical Properties of Steel Q345for Continuous Casting Slab

机译:连铸坯用Q345钢力学性能的热模拟

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The modeling of solidification in Continuous Casting demands the mechanical properties of steels at high temperature. These mechanical properties parameters provide the design data for the target surface temperature curve and dynamic control modeling of secondary cooling system, and are used to research hot delivery and crack mechanisms of cast slab. The properties parameters of steels can be obtained by physics simulation experiment. Following processing parameters in Continuous Casting, the stress-strain curves and mechanical properties of steel Q345 were tested and analyzed. Then the curves of relationships between the yield strength, tensile strength, reduction of area, Young's modulus, plastic modulus of steel Q345 and temperature were obtained. We found the strength of steel Q345 cast slab felled down basically; the ductility was decreased below 700°C, in the range of 725°C-900°C and 1275°C-melting point. The plastic modulus was analyzed with the different temperatures and the different strains in detail. The parameters of mechanical properties for steel Q345 were obtained for using in elastic-plasticity stress model.
机译:连续铸造中的凝固模型要求钢在高温下具有机械性能。这些力学性能参数为目标表面温度曲线和二次冷却系统的动态控制建模提供了设计数据,并用于研究铸坯的热传递和裂纹机理。可以通过物理模拟实验获得钢的性能参数。根据连续铸造中的工艺参数,对Q345钢的应力-应变曲线和力学性能进行了测试和分析。得到了Q345钢的屈服强度,抗拉强度,断面收缩率,杨氏模量,塑性模量与温度之间的关系曲线。我们发现,Q345铸钢坯的强度基本下降了。延展性在725°C-900°C和1275°C熔点范围内降低到700°C以下。详细分析了不同温度和不同应变下的塑性模量。获得了用于Q345钢的力学性能参数,以用于弹塑性应力模型。

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