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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Two-body abrasion resistance of high carbon steel treated by quenching-partitioning-tempering process
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Two-body abrasion resistance of high carbon steel treated by quenching-partitioning-tempering process

机译:淬火分配 - 回火过程处理高碳钢的双体耐磨性

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摘要

The two-body abrasion behavior of a high carbon steel was investigated by applying quenching-partitioning-tempering process (Q&PT). Increasing the partitioning temperature from 250 to 400 °C, much carbon was consumed to precipitate the cementite carbides and thus less carbon was left to participate in the partitioning process, resulting in the decrease of the retained austenite volume fraction and refinement of blocky austenite. Compared with quenching-tempering treatment, both impact toughness and wear resistance of the steel were improved by applying a series of Q&PT treatments, which was associated with the formation of film-like and blocky austenite during partitioning stage. The abrasion behavior of the specimens was evaluated by both the reciprocating sliding test and rubber wheel test to increase the comparability and validness of the results. It is found that the initial hardness appeared to play a greater role in the wear resistance in reciprocating sliding wear, while the amount of retained austenite transformed during abrasion showed proportional relationship with the wear resistance in the rubber wheel test. A significant difference in groove characteristics was found in the rubber wheel wear test, revealing the narrow and deep grooves with plastic deformation and stretch-out ridges for Q&PT specimens and wide and shallow grooves with delamination at the edges for QT specimen.
机译:通过施加淬火分配回火过程(Q&Pt)来研究高碳钢的双体磨损行为。将分配温度从250℃增加到400℃,消耗大量碳以沉淀渗碳碳酸盐碳化物,因此较少碳被留在分配过程中,导致保留的奥氏体体积分数和细胞细胞的细化降低。与淬火淬火处理相比,通过施加一系列Q&PT治疗来改善钢的冲击韧性和耐磨性,该Q&PT治疗与在分配阶段期间形成膜状和块状奥氏体的形成相关。通过往复滑动试验和橡胶轮测试评估标本的磨损行为,以增加结果的可比性和有效性。结果发现,初始硬度似乎在往复滑动磨损中的耐磨性中发挥更大的作用,而在磨损期间转化的保留奥氏体的量显示出与橡胶轮测试中的耐磨性的比例关系。在橡胶轮磨损试验中发现了凹槽特性的显着差异,揭示了具有塑性变形和QT PT标本的塑性变形和拉伸脊的狭窄和深沟,在Qt样本的边缘处具有分层的宽和浅槽。

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