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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Hot friction and wear behaviour of high speed steel and high chromium iron for rolls
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Hot friction and wear behaviour of high speed steel and high chromium iron for rolls

机译:轧辊用高速钢和高铬铁的热摩擦磨损性能

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The wear resistance at high temperature of different high speed steels (HSS) for rolls is evaluated on the basis of a tribological test aimed at reproducing the damage mechanisms occur during hot rolling. The test is positively used to highlight the different wear and friction behaviour of high speed steels and high chromium irons to be used in the early finishing stands of hot strip mill. The microstructure of these materials is given by a tempered martensitic matrix surrounded by an interconnected network of primary and eutectic carbides. In this paper a closer look into the properties of high speed steels is proposed. A wide range of microstructural conditions was obtained by changing the chemical composition and even by tempering the steels at different temperatures, in order to obtain different matrix microhardnesses. The wear behaviour can be explained on the basis of the operating mechanism, given by the combination of abrasion, triboxidation and by adhesion. While abrasion rules the tribological behaviour of HSS, triboxidation becomes more and more decisive in controlling the behaviour of HiCr irons. In these alloys the friction coefficient shows a transition (not observed in HSS), which was ascribed to the transition form a metal-oxide to an oxide-oxide contact, i.e., to the formation of wear protective layers. The tribological behaviour was correlated to the microstructure.
机译:轧辊用不同高速钢(HSS)在高温下的耐磨性是根据一项旨在再现热轧过程中发生的损伤机理的摩擦学试验进行评估的。该测试被积极用来强调用于热轧机早期精轧机架的高速钢和高铬铁的不同磨损和摩擦性能。这些材料的微观结构由回火的马氏体基体提供,该基体被一次和共晶碳化物的互连网络包围。本文提出了对高速钢性能的仔细研究。通过改变化学成分,甚至通过在不同温度下对钢进行回火,可以获得广泛的微观结构条件,以获得不同的基体显微硬度。磨损性能可以根据操作机理来解释,该机理由磨损,摩擦氧化和附着力共同给出。尽管磨损决定了高速钢的摩擦学行为,但摩擦氧化对于控制HiCr铁的行为越来越具有决定性。在这些合金中,摩擦系数显示出转变(在HSS中未观察到),该转变归因于从金属氧化物到氧化物接触的转变,即形成磨损保护层的转变。摩擦学行为与微观结构有关。

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