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激光粉末床熔融WC-12Co硬质合金温度场模拟OA北大核心CSTPCD

Temperature field simulation on WC-12Co cemented carbide formed by laser powder bed fusion

中文摘要英文摘要

结合有限元软件ANSYS建立三维有限元热模型,利用APDL命令及生死单元方法实现对高斯热源的施加和WC-12Co硬质合金打印过程的模拟,得到WC-12Co硬质合金在激光粉末床熔融(LPBF)成形过程中的温度场分布,研究不同工艺参数(激光功率、扫描速度)对温度场分布及熔池特征的影响.结果表明:WC-12Co硬质合金在LPBF过程成形时,利用有限元能够有效模拟其成形过程.位于热源前部的等温线比尾部更为密集,温度梯度更大;而扫描路径终端边缘处熔池中心的温度最高.随着激光功率的增大和扫描速度的减小,熔池宽度、深度和长度均相应增大.通过相关实验分析不同工艺参数对晶粒尺寸的影响,发现晶粒尺寸随扫描速度的增加而减小,随激光功率的增加而增大;但过高的激光功率会引起一定的热裂纹现象发生.

A three-dimensional finite element thermal model was established,combined with the finite element software ANSYS,and the simulation of applying a Gaussian heat source and the printing process of WC-12Co cemented carbide was achieved with the use of APDL commands and the birth-death unit method,and the temperature field distribution of WC-12Co cemented carbide in the laser powder bed fusion(LPBF)shaping process was finally obtained,and the effects of different process parameters(laser power,scanning speed)on its temperature field distribution and melt pool characteristics were investigated.The results show that the forming process of WC-12Co cemented carbide in LPBF process can be effectively simulated by using finite elements.In addition,the isotherms located at the front of the heat source are denser than those at the tail,with a larger temperature gradient;and the temperature in the center of the melt pool at the terminal edge of the scanning path is the highest.As the laser power increases and the scanning speed decreases,the width,depth and length of the molten pool increase accordingly.Relevant experiments were used to analyze the effect of different process parameters on grain size,and it is found that the grain size decreases with the increase of scanning speeds and increaseds with the increase of laser power;but too high laser power can cause certain thermal cracking phenomenon.

牛玉玲;李晓峰;赵宇霞;张利;刘斌;白培康

中北大学 材料科学与工程学院,太原 030051中北大学 机械工程学院,太原 030051

金属材料

激光粉末床熔融;WC-12Co;有限元;温度场;熔池尺寸

laser powder bed fusion;WC-12Co;finite element;temperature field;molten pool size

《材料工程》 2024 (002)

50-59 / 10

国家自然科学基金面上项目(52071299);国家自然科学基金青年项目(51804280);山西省关键核心技术和共性技术研发攻关专项(20201102009)

10.11868/j.issn.1001-4381.2022.000947

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