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采用定向能量沉积法在SCM420基体上沉积Fe-8Cr-3V-2Mo-2W的微观结构与力学性能及后热处理的影响

Microstructures and Mechanical Properties of Deposited Fe-8Cr-3V-2Mo-2W on SCM420 Substrate Using Directed Energy Deposition and Effect of Post-Heat Treatment.

作者信息

Jeong Ye Eun, Lee Jun Yeop, Lee Eun Kyung, Shim Do Sik

机构信息

Department of Ocean Advanced Materials Convergence Engineering, Korea Maritime and Ocean University, Busan 49112, Korea.

Interdisciplinary Major of Maritime AI Convergence, Department of Ocean Advanced Materials Convergence Engineering, Korea Maritime and Ocean University, Busan 49112, Korea.

出版信息

Materials (Basel). 2021 Mar 5;14(5):1231. doi: 10.3390/ma14051231.

Abstract

In this study, the Fe-8Cr-3V-2Mo-2W tool steel powder was deposited on the SCM420 substrate through the directed energy deposition (DED) process. This study focuses on the mechanical properties of the deposited Fe-8Cr-3V-2Mo-2W and the effect of heat treatment on it. The changes in the microstructural characteristics of the deposited region due to heat treatment after deposition were observed. The influence of heat treatment on the mechanical properties was then analyzed accordingly and hence, the hardness, wear, impact and tensile tests were conducted on the deposited material. These properties were compared with those of the commercial tool steel powder M2-deposited material and the carburized specimen. In the deposited Fe-8Cr-3V-2Mo-2W layer, an increased martensite phase fraction was obtained through post-heat treatment and the amount of precipitated carbides was also increased. This increased the hardness from 48 to 62 HRc after heat treatment and the wear resistance was significantly improved as well. The amount of impact energy absorbed decreased from 11 J before heat treatment to 6 J after heat treatment, but the tensile strength significantly increased from 607 to 922 MPa. When compared with the M2-deposited surface, the Fe-8Cr-3V-2Mo-2W deposits had 3% lower surface hardness and 76% lower fracture toughness but exhibited 56% higher tensile strength. When compared with the carburized SCM420, the Fe-8Cr-3V-2Mo-2W deposits exhibited 3% higher surface hardness and wear resistance, 90% lower fracture toughness and 5% higher tensile strength. This study shows that surface hardening through DED can exhibit similar or superior mechanical properties when compared to carburizing.

摘要

在本研究中,通过定向能量沉积(DED)工艺将Fe-8Cr-3V-2Mo-2W工具钢粉末沉积在SCM420基体上。本研究重点关注沉积态Fe-8Cr-3V-2Mo-2W的力学性能以及热处理对其的影响。观察了沉积后热处理导致的沉积区域微观结构特征的变化。随后相应地分析了热处理对力学性能的影响,因此对沉积材料进行了硬度、磨损、冲击和拉伸试验。将这些性能与商业工具钢粉末M2沉积材料和渗碳试样的性能进行了比较。在沉积的Fe-8Cr-3V-2Mo-2W层中,通过后热处理获得了更高的马氏体相分数,析出碳化物的数量也增加了。这使得热处理后的硬度从48 HRC提高到62 HRC,耐磨性也显著提高。吸收的冲击能量从热处理前的11 J降至热处理后的6 J,但拉伸强度从607 MPa显著提高到922 MPa。与M2沉积表面相比,Fe-8Cr-3V-2Mo-2W沉积物的表面硬度低3%,断裂韧性低76%,但拉伸强度高56%。与渗碳的SCM420相比,Fe-8Cr-3V-2Mo-2W沉积物的表面硬度和耐磨性高3%,断裂韧性低90%,拉伸强度高5%。本研究表明,与渗碳相比,通过DED进行表面硬化可表现出相似或更优异的力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f388/7962068/79c99bf842ca/materials-14-01231-g001.jpg

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