首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effects of carbides on abrasive wear properties and failure behaviours of high speed steels with different alloy element content
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Effects of carbides on abrasive wear properties and failure behaviours of high speed steels with different alloy element content

机译:碳化物对不同合金元素含量的高速钢磨损性能和失效特性的影响

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摘要

High speed steels (HSSs) are effective materials applied in aggressive environments where abrasion resistances are required because they have hard carbides and relatively ductile matrix to bind carbides. But there are many kinds of carbides in HSSs, which lead to different effect on wear properties of HSSs. In this paper, three kinds of casting HSSs with VC, M6C or M2C type carbide were prepared respectively through the reasonable design of alloy elements, and then the effects of carbide type on wear behaviours were researched under different abrasive particle size and load using abrasive wear testing machine. The microstructures and failure behaviours of HSSs were analyzed by electron microscopy. The results showed the abrasive particle size and load had obvious effect on wear weight loss of high speed steel (HSS), but the carbide type decided the relative wear resistance of HSS. As the abrasive particle size or load increased, the wear weight loss of any HSS increased obviously. For the fine abrasive wear, the HSS with M6C had higher relative wear resistance than HSS with M2C. But the contrary was the case for the coarse abrasive wear. For any abrasive particle size and load, the HSS with VC had more excellent wear resistance than HSS with M6C or M2C type carbide. The relative wear resistance of HSS with VC was three times higher than that of HSS with M6C or M2C. The excellent wear resistance of HSS with VC was mainly attributed to VC characteristics, such as high hardness and good morphology, which can resist micro cutting of abrasive particles efficiently. (C) 2017 Elsevier B.V. All rights reserved.
机译:高速钢(HSSS)是应用于侵蚀性环境中的有效材料,因为它们具有耐碳化物和相对延展性基质来结合碳化物。但HSSS中有许多种类的碳化物,这导致HSSS的磨损性能不同。在本文中,通过合理的合金元素的合理设计,分别制备三种具有VC,M6C或M2C型碳化物的铸造HSSS,然后在不同的磨粒粒度和磨损的不同磨料粒度和负荷下研究了碳化物类型对磨损行为的影响测试机器。电子显微镜分析HSSS的微观结构和失效行为。结果表明,磨料粒度和载荷对高速钢(HSS)的耐磨性损失有明显影响,但碳化物型决定了HSS的相对耐磨性。随着磨料粒度或负荷增加,任何HSS的耐磨重量都明显增加。对于细磨料磨损,具有M6C的HSS具有比具有M2C的HSS更高的相对耐磨性。但是粗磨料磨损的情况相反。对于任何磨粒粒度和载荷,具有VC的HSS具有比具有M6C或M2C型碳化物的HSS更优异的耐磨性。具有VC的HSS的相对耐磨性比具有M6C或M2C的HSS高三倍。具有VC的HSS的优异耐磨性主要归因于VC特性,例如高硬度和良好的形态,可以有效地抵抗磨料颗粒的微切切割。 (c)2017 Elsevier B.v.保留所有权利。

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