首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Influence of microstructure on galling resistance of cold-work tool steels with different chemical compositions when sliding against ultra-high-strength steel sheets under dry condition
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Influence of microstructure on galling resistance of cold-work tool steels with different chemical compositions when sliding against ultra-high-strength steel sheets under dry condition

机译:显微组织对不同化学成分的冷作工具钢在干燥条件下滑动时对耐磨损性的影响

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The objective of this study was to determine the influence of a microstructure on the galling resistance of three variations of D2-grade steels that are used for the stamping of ultra-high-strength steel (UHSS) sheets. Standard D2 steel and two other types of D2-grade steel, having different microstructures, were used as the pins in a pin-on-flat galling test, and a dual-phase 980 (DP 980) sheet was used as the counterface. The friction coefficient was monitored as a function of the sliding distance, and the critical sliding distance for the onset of severe galling was indicated by the transition to a high and unstable friction coefficient. The best galling resistance was observed for the steel that contained a large amount of relatively small secondary carbides, whereas the worst galling resistance was obtained for standard D2 steel, which contained a large amount of coarse primary carbides. The test data also indicated that the galling resistance of the cold-worked tool steels was influenced by the type, size, and distribution of the carbides rather than simply by the total amount of carbides. Furthermore, it was inferred that the galling resistance of cold-worked tool steels could be improved by larger amounts of secondary carbides, smaller mean free paths between secondary carbides, and smaller mean diameters of both primary and secondary carbides. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的目的是确定微观结构对三种用于超高强度钢板(UHSS)冲压的D2级钢材的抗磨损性的影响。在扁平销钉磨损试验中,将标准D2钢和两种其他类型的具有不同微观结构的D2级钢用作销钉,并将双相980(DP 980)薄板用作对面。监测摩擦系数与滑动距离的关系,并通过过渡到高而不稳定的摩擦系数来指示发生严重磨损的临界滑动距离。对于包含大量相对较小的二次碳化物的钢,观察到了最佳的抗磨损性,而对于包含大量粗的初级碳化物的标准D2钢,则获得了最差的抗磨损性。测试数据还表明,冷加工工具钢的耐磨损性受碳化物的类型,尺寸和分布的影响,而不仅受碳化物总量的影响。此外,可以推断出,通过使用大量的二次碳化物,较小的二次碳化物之间的平均自由程以及较小的一次碳化物和二次碳化物的平均直径,可以改善冷加工工具钢的耐磨损性。 (C)2015 Elsevier B.V.保留所有权利。

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