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Influence of Tempering Temperature and Time on Microstructure and Mechanical Properties of Additively Manufactured H13 Tool Steel
Authors:Kichang Bae  Hyoung-Seok Moon  Yongho Park  Ilguk Jo  Junghoon Lee
Affiliation:1.Department of Metallurgical Engineering, Pukyong National University, Busan 48513, Republic of Korea;2.Advanced Energy Materials and Components R&D Group, Korea Institute of Industrial Technology, Busan 46938, Republic of Korea;3.Department of Materials Science and Engineering, Pusan National University, Busan 46241, Republic of Korea;4.Department of Advanced Materials Engineering, Dong-Eui University, Busan 47340, Republic of Korea
Abstract:Among various processes for manufacturing complex-shaped metal parts, additive manufacturing is highlighted as a process capable of reducing the wastage of materials without requiring a post-process, such as machining and finishing. In particular, it is a suitable new manufacturing technology for producing AISI H13 tool steel for hot-worked molds with complex cooling channels. In this study, we manufactured AISI H13 tool steel using the laser power bed fusion (LPBF) process and investigated the effects of tempering temperature and holding time on its microstructure and mechanical properties. The mechanical properties of the sub-grain cell microstructure of the AISI H13 tool steel manufactured using the LPBF process were superior to that of the H13 tool steel manufactured using the conventional method. These sub-grain cells decomposed and disappeared during the austenitizing process; however, the mechanical properties could be restored at a tempering temperature of 500 °C or higher owing to the secondary hardening and distribution of carbides. Furthermore, the mechanical properties deteriorated because of the decomposition of the martensite phase and the accumulation and coarsening of carbides when over-tempering occurred at 500 °C for 5 h and 550 °C for 3 h.
Keywords:additive manufacturing   laser powder bed fusion   AISI H13 tool steel   post-heat treatment   tempering
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