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Characteristics of Extrusive Wear and Transition of Wear Mechanisms in Elevated-Temperature Wear of a Carbon Steel

机译:碳钢高温磨损中的挤压磨损和磨损机理转变

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摘要

The dry sliding wear of a medium carbon steel with different microstructures was measured under the normal load range of 50-150 N at 400℃ by a pin-on-disc high-temperature wear setup. The wear behavior and wear mechanism were systematically studied; in particular, the characteristics of extrusive wear and the transition of wear mechanisms were investigated. Under low normal loads, the wear is oxidative type wear. Once the normal load reached a critical value, a mild-to-severe wear transition occurred, and subsequently an extrusive wear prevailed. The mild-to-severe wear transition depended on the microstructure of matrix; the critical normal load of the transition was 112.5 N for tempered sorbite, 125 N for lamellar pearlite, and 137.5 N for tempered martensite and tempered troostite. As oxidative wear prevailed, a thick oxide layer about 20-30 μm and a plate-like wear debris with regular outline were recognized. However, as the extrusive wear occurred, the wear rate abruptly increased but the friction coefficient was reduced. The extrusive wear predominated due to thermal softening of the matrix and presented a superthin oxide layer (less than 0.5 μm) and low oxide content on worn surfaces, accompanied by the appearance of ribbon-like wear debris.
机译:通过针盘高温磨损试验,在400-℃的正常载荷范围50-150 N下,测量了具有不同组织的中碳钢的干滑动磨损。系统地研究了磨损行为和磨损机理。特别是,研究了挤压磨损的特性和磨损机理的转变。在低标准负载下,磨损为氧化型磨损。一旦正常负载达到临界值,就会发生轻度到严重的磨损过渡,随后出现挤压磨损。从轻度到重度的磨损过渡取决于基体的微观结构。过渡的临界法向载荷对于回火的索氏体为112.5 N,对于层状珠光体为125 N,对于回火的马氏体和回火辉绿体为137.5N。由于普遍存在氧化磨损,因此发现了约20-30μm的厚氧化层和轮廓规则的板状磨损碎片。但是,随着挤压磨损的发生,磨损率突然增加,但摩擦系数降低。挤压磨损主要是由于基体的热软化造成的,并显示出超薄的氧化物层(小于0.5μm)和磨损表面上的低氧化物含量,并伴随着带状磨损碎片的出现。

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