反复回火马氏体钢力学性能及组织演变的表征

Amitkumar Shelar, B. P. Ronge
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引用次数: 0

摘要

本研究的目的是了解马氏体H13钢在反复回火循环中的组织演变、力学性能和磨损行为。采用轴向观察显微镜、扫描电镜、x射线衍射仪对其微观结构进行了表征。通过单轴拉伸试验、夏比v形缺口冲击试验、洛氏硬度试验和磨损试验,分析反复回火循环中力学性能、冲击性能、硬度和磨损的变化。制备的试样在1030℃下淬火20分钟,油淬后在570℃下反复回火,每次保温2h。所记录的力学性能表明,由于二次硬化效应,合金碳化物的析出为基体提供强度,因此获得的最大极限抗拉强度是在二次回火时获得的,相应的磨损最小。退火后的试样呈现贝氏体组织,随着淬火和回火循环,组织中出现细针状组织和碳化物,残余奥氏体转变为马氏体,马氏体转变为回火马氏体。碳化物尺寸和马氏体板条分布控制着强度和断裂速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the mechanical properties and microstructural evolution of martensitic steel in repeated tempering cycles
The purpose of this study was to understand the behavior of martensitic H13 steel in accordance with the microstructural evolution, mechanical properties and wear in repeated tempering cycles. The microstructures were characterized by axio image observer microscope, scanning electron microscope (SEM), x-ray diffraction (XRD). Uniaxial tensile test, charpy v-notch impact test, rockwell hardness test and wear test were conducted to analyze the changes in mechanical properties, impact properties, hardness and wear in repeated tempering cycles. The specimen prepared were subjected to the hardening at 1030 °C for 20 minutes, oil quenched and subjected to repeated tempering cycles at 570 °C for 2hrs holding time each. The mechanical properties recorded indicates that the maximum ultimate tensile strength obtained was at double tempering due to secondary hardening effect i.e., alloy carbides precipitation offering strength to the matrix and corresponding wear was found to be minimum. The annealed specimen revealed bainitic microstructure and with hardening and repeated tempering cycles, fine needle like structure and carbides was observed in microstructure and retained austenite was converted into martensite and martensite was converted into tempered martensite. Carbide size and martensite lath distribution controls the strength and fracture rate.
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