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Simulation of Microstructure during Laser Rapid Forming Solidification Based on Cellular Automaton

机译:基于元胞自动机的激光快速成形凝固过程中的微观组织模拟

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The grain microstructure of molten pool during the solidification of TC4 titanium alloy in the single point laser cladding was investigated based on the CAFE model which is the cellular automaton (CA) coupled with the finite element (FE) method. The correct temperature field is the prerequisite for simulating the grain microstructure during the solidification of the molten pool. The model solves the energy equation by the FE method to simulate the temperature distribution in the molten pool of the single point laser cladding. Based on the temperature field, the solidification microstructure of the molten pool is also simulated with the CAFE method. The results show that the maximum temperature in the molten pool increases with the laser power and the scanning rate. The laser power has a larger influence on the temperature distribution of the molten pool than the scanning rate. During the solidification of the molten pool, the heat at the bottom of the molten pool transfers faster than that at the top of the molten pool. The grains rapidly grow into the molten pool, and then the columnar crystals are formed. This study has a very important significance for improving the quality of the structure parts manufactured through the laser cladding forming.
机译:基于CAFE模型,即单元自动机(CA)和有限元(FE)方法,研究了TC4钛合金在单点激光熔覆中凝固过程中熔池的晶粒组织。正确的温度场是模拟熔池凝固过程中晶粒微观结构的前提。该模型通过有限元方法求解能量方程,以模拟单点激光熔覆熔池中的温度分布。在温度场的基础上,采用CAFE方法对熔池的凝固组织进行了模拟。结果表明,熔池中的最高温度随激光功率和扫描速率的增加而增加。激光功率对熔池温度分布的影响大于扫描速率。在熔池固化过程中,熔池底部的热量传递速度快于熔池顶部的热量传递速度。晶粒迅速生长到熔池中,然后形成柱状晶体。这项研究对于提高通过激光熔覆成形制造的结构部件的质量具有非常重要的意义。

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