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首页> 外文期刊>Industrial and organizational psychology >Abrasive Wear Behavior of Cryogenically Treated Boron Steel (30MnCrB4) Used for Rotavator Blades
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Abrasive Wear Behavior of Cryogenically Treated Boron Steel (30MnCrB4) Used for Rotavator Blades

机译:用于旋转器叶片的低温处理的硼钢(30mncrb4)的磨料磨损行为

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摘要

Rotavator blades are prone to significant wear because of the abrasive nature of sand particles. The aim of this research work is to investigate the effect of cryogenic treatment and post tempering on abrasive wear behavior, in the presence of angular quartz sand (grain size of 212-425 mu m), of rotavator blade material of boron steel (30MnCrB4). Cryogenic treatment has caused an improvement in the abrasive wear resistance and microhardness of 30MnCrB4 by 60% and 260.73%, respectively, compared to untreated material due to enhancement in hardness, the conversion of retained austenite into martensite, and the precipitation of secondary carbides in boron steel after exposure to cryogenic temperature. Economic analysis justifies the additional cost of cryogenic treatment.
机译:由于砂颗粒的磨蚀性,旋转器叶片易于磨损。 本研究的目的是探讨低温处理和后磨损对磨料磨损行为的影响,在角度石英砂(晶粒尺寸为212-425μm)的情况下,硼钢的旋转叶片材料(30mncrb4) 。 低温处理引起了磨料耐磨性和微硬度的改善,分别为30mncrb4的30mncrB4,相比,由于硬度的增强,将保留的奥氏体转化为马氏体的未经处理的材料,以及硼中二次碳化物的沉淀 暴露于低温温度后的钢。 经济学分析证明了低温治疗的额外成本。

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