Microstructure engineering for superior wear and impact toughness strength of hypereutectoid powder metallurgy steel

IF 1.9 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Powder Metallurgy Pub Date : 2021-10-11 DOI:10.1080/00325899.2021.1954280
O. Altuntaş, A. Güral, S. Tekeli
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引用次数: 5

Abstract

ABSTRACT In this study, powder metallurgical steel samples containing 1.5% C by weight were produced by sintering in a vacuum atmosphere at 1200°C. The impact test and dry sliding wear test specimens were prepared in accordance with ISO 5754 and ASTM G-99 standards, respectively. The wear and impact toughness properties of spherical cementite in the bainitic matrix (SCBM) microstructured specimens produced with different heat treatment routes were compared with pearlite plus primary cementite, fully tempered martensitic, fully bainitic and spherical cementite microstructured specimens in ferritic matrix (SCFM). Microstructural characterisations of all specimens were performed by SEM, EBSD and XRD analyses methods. Compared to fully tempered martensitic and fully bainitic microstructured specimens with similar hardness, both the dry sliding wear and the impact toughness properties of the specimens having SCBM microstructures were improved with the increased austempering time after spheroidisation treatment.
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超共晶粉末冶金钢高耐磨和冲击韧性的显微组织工程
摘要在本研究中,通过在1200°C的真空气氛中烧结,制备了含1.5%重量碳的粉末冶金钢样品。冲击试验和干滑动磨损试样分别根据ISO 5754和ASTM G-99标准制备。比较了采用不同热处理工艺制备的贝氏体基体(SCBM)微结构球形渗碳体与珠光体加初生渗碳体、全回火马氏体、全贝氏体和铁素体基体球形渗碳体微结构试样的磨损和冲击韧性。通过SEM、EBSD和XRD分析方法对所有试样的微观结构进行了表征。与硬度相似的全回火马氏体和全贝氏体微结构试样相比,具有SCBM微结构试样的干滑动磨损和冲击韧性都随着球化处理后等温淬火时间的增加而提高。
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来源期刊
Powder Metallurgy
Powder Metallurgy 工程技术-冶金工程
CiteScore
2.90
自引率
7.10%
发文量
30
审稿时长
3 months
期刊介绍: Powder Metallurgy is an international journal publishing peer-reviewed original research on the science and practice of powder metallurgy and particulate technology. Coverage includes metallic particulate materials, PM tool materials, hard materials, composites, and novel powder based materials.
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