Effect of Combined Tempering and Aging in the Austenite Reversion, Precipitation, and Tensile Properties of an Additively Manufactured Maraging 300 Steel

被引:0
|
作者
Fábio Faria Conde
Julian David Escobar
Johnnatan Rodriguez
Conrado Ramos Moreira Afonso
Marcelo Falcão Oliveira
Julian Arnaldo Avila
机构
[1] University of Sao Paulo (USP),Department of Materials Engineering
[2] University of São Paulo,Metallurgical and Materials Engineering Department
[3] EIA University,undefined
[4] Federal University of Sao Carlos (UFSCar),undefined
[5] Graduate Program in Materials Science and Engineering (PPG-CEM),undefined
[6] São Paulo State University (UNESP),undefined
[7] Universidad Autónoma de Occidente (UAO),undefined
[8] Cali,undefined
来源
Journal of Materials Engineering and Performance | 2021年 / 30卷
关键词
austenite reversion; maraging 300; additive manufacturing; laser powder-bed fusion; mechanical properties; x-ray measurements;
D O I
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中图分类号
学科分类号
摘要
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensitic matrix hardened by precipitation through aging treatment. In these steels, intercritical tempering can provide reverted austenite and precipitation of intermetallic products, increasing the ductility of additively manufactured parts due to austenite presence. Studies deal with postprocessing of additive manufactured parts of maraging steel; however, few focused on phases evolution during the heat treatments and their mechanical response. In the present work, a maraging 300 steel processed by laser-based powder-bed fusion was studied with a focus on microstructural and mechanical properties after applying several postprocessing heat treatments. Tensile tests assessed the mechanical properties, and the microstructure was analyzed by scanning and transmission electron microscopy. A synchrotron beamline with x-ray diffraction was used to conduct in situ measurements of martensite and austenite evolution. The in situ phase evolution revealed that isothermal heat treatments were efficient in promoting martensite-to-austenite reversion. Likewise, the presence of austenite significantly enhanced the ductility, however, at some mechanical strength expense.
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页码:4925 / 4936
页数:11
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