首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Influence of tempering temperature on the fretting wear of low alloyed martensitic construction steel
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Influence of tempering temperature on the fretting wear of low alloyed martensitic construction steel

机译:回火温度对低合金马氏结构钢微动磨损的影响

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摘要

An experimental investigation was conducted to study the fretting wear behavior of low alloyed construction steel in the tempered fully martensitic state. The resulting damage mechanism and the resistance to fretting wear of martensitic steels subjected to different tempering temperature was evaluated and compared with the virgin (un-tempered) martensitic steel under the different loading conditions. The results show that the friction coefficient increases with the increase of the tempering temperature for all the applied loads. The fretting wear resistance mainly depends on the tempering temperature. Compared to the virgin (un-tempered) full martensite, most of the tempered martensites have better fretting wear resistance, in which the tempered martensitic (TM) steel of 200 degrees due to a good balance of strength and ductility has a super fretting wear resistance for all loading conditions. In addition, the correlation of fretting wear resistance with the initial hardness was discussed.
机译:进行了实验研究,以研究钢化型马氏体状态下低合金建筑钢的微动磨损行为。评价所产生的损伤机理和对经过不同回火温度的马氏体钢的耐心磨损的抗性,并与在不同的负载条件下的处女(未回火)马氏体钢相比。结果表明,摩擦系数随着所有施加负荷的回火温度的增加而增加。微动耐磨性主要取决于回火温度。与处女(不回火)全马氏体相比,大多数钢制马氏体具有更好的微动耐磨性,其中由于强度和延展性的良好平衡,200度的钢化马氏体(Tm)钢具有超级磨损耐磨性适用于所有装载条件。此外,讨论了与初始硬度的微动耐磨性的相关性。

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