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首页> 外文期刊>Industrial Engineering Letters >An Assessment of the Microstructure and Mechanical Properties of 0.26% Low Carbon Steel under Different Cooling Media: Analysis by one-way ANOVA
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An Assessment of the Microstructure and Mechanical Properties of 0.26% Low Carbon Steel under Different Cooling Media: Analysis by one-way ANOVA

机译:不同冷却介质对0.26%低碳钢组织和力学性能的评估:单向方差分析

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This study reports the effect of heat treatment on the microstructure and mechanical properties of 0.26% low carbon steel at 850oC using different cooling media. Annealing, normalizing and age-hardening heat-treatments were used for the experimental work. Hardness tests, fatigue tests, compression tests and metallography were carried out on the heat-treated and control samples. The results were further analyzed using the one-way ANOVA test. The results obtained showed significant differences in the microstructure and mechanical properties of the different heat-treated samples. The hardness profile determined using a Brinell ball indenter showed decrease in hardness of the heat-treated samples when compared with the control. Normalizing heat-treatment yielded a microstructure of better quality than annealing and age-hardening. A higher compressive strength of 155.97MPa and 151.52MPa was obtained with normalizing and annealing heat treatments respectively in comparison to age-hardening (149.93MPa), and the control test (150.56MPa). Improved fatigue strength was also obtained with annealing heat treatment. ANOVA test confirmed the results at 90% confidence and further showed that there was significant difference between the four test conditions. Keywords: Heat treatment, mechanical properties, fatigue, ANOVA, steel
机译:这项研究报告了使用不同的冷却介质在850oC下热处理对0.26%低碳钢的组织和力学性能的影响。实验工作使用了退火,正火和时效硬化处理。对热处理和对照样品进行了硬度测试,疲劳测试,压缩测试和金相分析。使用单向方差分析对结果进行进一步分析。获得的结果表明,不同热处理样品的微观结构和力学性能存在显着差异。与对照相比,使用布氏球压头测定的硬度分布显示出热处理样品的硬度降低。归一化热处理产生比退火和时效硬化质量更好的微观结构。与时效硬化(149.93MPa)和对照试验(150.56MPa)相比,通过正火和退火热处理分别获得了更高的抗压强度155.97MPa和151.52MPa。通过退火热处理也获得了改善的疲劳强度。方差分析测试以90%的置信度确认了结果,并进一步表明四种测试条件之间存在显着差异。关键字:热处理力学性能疲劳方差分析钢

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