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电子束熔丝沉积Mo-Fe双金属制备工艺与性能研究
Preparation technology and properties of Mo-Fe bimetals deposited by electron beam freeform fabrication
【摘要】 电子束熔丝沉积技术由于所制备的材料具有晶粒细小、致密度高、综合力学性能好等诸多优点得到广泛应用。以TZM钼合金为基体,采用电子束为热源在基体表面沉积304不锈钢,制备Mo-Fe双金属材料,并研究电子束熔丝沉积工艺参数对双金属显微组织、熔合线元素分布、硬度及耐磨性的影响。试验结果表明:不同工艺参数下,钼合金与304不锈钢双金属结合良好;随热输入的增加,材料显微硬度和耐磨性能显著提高。当电子束束流为33 mA,送丝速度为1600 mm/min,行进速度为150 mm/min时,所得样品组织最为精细、硬度最高(503 HV)、耐磨性能最好。
【Abstract】 Electron beam freeform fabrication technology has been widely used because of the advantages of fine grain size, high density and good comprehensive mechanical properties. In this paper, 304stainless steel is deposited on the surface of TZM molybdenum alloy by electron beam as heat source to prepare Mo-Fe bimetallic material. The effects of electron beam freeform fabrication process parameters on bimetallic microstructure, fusion line element distribution, hardness and wear resistance are studied. The results show that under different process parameters, molybdenum alloy and 304 stainless steel are well bonded. With the increase of heat input, the microhardness and wear resistance of the material are significantly improved. In this research, when the electron beam current is 33 mA, the wire feeding speed is 1600 mm/min, and the travel speed is 150 mm/min, the obtained sample has the finest microstructure, the highest hardness(503 HV), and the best wear resistance.
【Key words】 electron beam freeform fabrication; Mo-Fe bimetallic; microstructure; hardness; wear resistance;
- 【文献出处】 现代交通与冶金材料 ,Modern Transportation and Metallurgical Materials , 编辑部邮箱 ,2023年05期
- 【分类号】TG146.412
- 【下载频次】3