文章摘要
黄桔,廖承志,杨屹,等.脉冲电流处理对轧制316L不锈钢的快速强化[J].精密成形工程,2023,15(12):134-141.
HUANG Ju,LIAO Cheng-zhi,YANG Yi,et al.Rapid Strengthening of Rolled 316L Stainless Steel by Electric Pulse Treatment[J].Journal of Netshape Forming Engineering,2023,15(12):134-141.
脉冲电流处理对轧制316L不锈钢的快速强化
Rapid Strengthening of Rolled 316L Stainless Steel by Electric Pulse Treatment
投稿时间:2023-07-14  
DOI:10.3969/j.issn.1674-6457.2023.12.015
中文关键词: 脉冲电流处理  轧制316L  力学性能  晶粒细化  微观组织
英文关键词: electric pulse treatment  rolled 316L  mechanical properties  grain refinement  microstructure
基金项目:四川省自然科学基金面上项目(2022NSFC0336)
作者单位
黄桔 四川大学 机械工程学院成都 610065 
廖承志 四川大学 机械工程学院成都 610065 
杨屹 四川大学 机械工程学院成都 610065 
秦义 思克莱德大学 设计制造及工程管理系格拉斯哥 G1 1XJ 
刘剑 四川大学 机械工程学院成都 610065 
薛令 四川大学 机械工程学院成都 610065 
李强 四川大学 机械工程学院成都 610065 
吴明霞 四川大学 机械工程学院成都 610065 
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中文摘要:
      目的 探究不同参数的脉冲电流处理(EPT)对轧制316L不锈钢拉伸性能、显微硬度及微观组织的影响。方法 将轧制的316L不锈钢作为原始样,调节流过样品的脉冲电流密度,分别为130、170、190、260、310 A/mm2,分析脉冲电流密度与其拉伸性能和显微硬度的关系。结果 轧制316L不锈钢的抗拉强度和显微硬度随着脉冲电流密度的增大呈现先增大后减小的趋势,其中当脉冲电流密度为170 A/mm2时达到峰值,抗拉强度由1 485 MPa提升到1 625 MPa,同时显微硬度也由431HV增大到473HV。通过电子背散射衍射分析微观组织可知,与原始样相比,经过脉冲电流处理的样品晶粒尺寸明显减小,马氏体含量明显增多,脉冲电流处理可以促使微观组织快速均匀化。结论 脉冲电流处理可以在短时间内实现轧制316L不锈钢组织的均匀化调控,有效改善轧制316L不锈钢的微观组织,减少轧钢形变织构,促使参与的奥氏体转变为马氏体,使微观组织趋于稳定,同时还可以使轧制316L不锈钢晶粒快速细化,达到细晶强化的效果,有效提高整体抗拉强度和显微硬度。
英文摘要:
      The work aims to explore the effect of electric pulse treatment (EPT) with different parameters on the tensile properties, microhardness, and microstructure of rolled 316L stainless steel. The rolled 316L stainless steel was used as the original sample, and the pulse current density flowing through the sample was adjusted. Then, the sample was treated with current of 130, 170, 190, 260, 310 A/mm2, respectively and the relationship between the pulse current density and the tensile properties and microhardness of the sample was analyzed. The tensile strength and microhardness of rolled 316L stainless steel showed an increasing and then decreasing trend with the increase of pulse current density, in which the peak value was reached when the pulse current density was 170 A/mm2, and the tensile strength increased from 1 485 MPa to 1 625 MPa, and microhardness increased from 431HV to 473HV. The microstructure of the samples was analyzed by electron backscattering diffraction, which showed that the grain size of the sample after electric pulse treatment decreased significantly compared with that of original sample, and the martensite content increased significantly compared with that of original sample. Electric pulse treatment could promote rapid homogenization of microstructure. Electric pulse treatment can achieve the uniform regulation of rolled 316L stainless steel microstructure in a short time, effectively improve the microstructure of rolled 316L stainless steel, reduce the rolled steel deformation weaving, and prompt the participation of austenite into martensite, so that the microstructure tends to stabilize. At the same time, it can make the rolled 316L stainless steel grain rapid refinement to achieve the effect of fine crystal strengthening, effectively improving the overall tensile strength and microhardness.
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