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等离子熔积快速直接成形过程宏微观连成数值模拟

Micro-macro Integrated Numerical Simulation of the Plasma Deposition Manufacturing Process
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摘要 建立了等离子熔积快速直接成形(Plasma Deposition Manufacturing, PDM)过程多相混态场统一模型,基于蒙特卡罗法(Monte Carlo,MC)建立热影响区(Heat Affected Zone,HAZ)晶粒长大过程的数学模型。分析了不同热源功率工艺条件下熔池温度场和流场的变化规律以及特征点的温度循环曲线,进而探究了热源功率对热影响区晶粒尺寸与分布的作用机理。对AISI316合金等离子熔积过程进行了模拟,所得的计算结果与试验结果基本一致。 Presented a multi-phase continuum of the Plasma Deposition Manufacturing(PDM) process,and developed a numerical model of the grain growth process in the Heat Affected Zone(HAZ) with Monte Carlo(MC) method.The evolution of temperature and flow fields within the molten pool with different heat source power were analysed,and the influence of heat source power on the grain size and distribution was studied.An experiment of AISI316 deposition process was carried out which verify the feasibility of this simulation result.
出处 《机械管理开发》 2012年第1期1-3,6,共4页 Mechanical Management and Development
基金 国家自然科学基金资助项目(50875096) 国家863基金资助项目(2007AA04Z142)
关键词 等离子熔积 热源功率 晶粒生长 plasma deposition manufacturing heat source power MC approach grain growth
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