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Microstructure control and wear resistance of grain boundary allotriomorphic ferrite/granular bainite duplex steel

机译:晶界同质亚铁素体/颗粒贝氏体双相钢的组织控制和耐磨性

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摘要

The abrasive wear resistance of a hot-rolled and air-cooled high strength low alloy (HSLA) steel with grain boundary allotriomorphic fertile/granular bainite (F_(GBA)/Bg) duplex microstructure was investigated by comparison with the granular bainitic steel with the same composition and other two commercial HSLA fenite/pearlite steels. The results from the wet sand/rubber wheel abrasion test show that the F_(GBA)/Bg duplex steel possesses remarkably higher wear resistance than the two fenite/pearlite steels, even higher than the granular bainitic steel with a higher hardness. The cross-sectional morphology of the worn surfaces reveals that the higher resistance to abrasive wear is mainly ascribed to the dispersive hard martensite/austenite (M/A) islands. The qualitative analysis on the work hardening characteristics and the microcrack initiation mechanisms indicates that in the F_(GBA)/Bg duplex steel, the existence of the grain boundary allotriomoiphic ferrite and the retained austenite in the self-tempered M/A islands improves the accommodated deformation capacity of the subsurface microstructure, and prevents the brittle exfoliation occurring in the granular bainitic steel.
机译:通过比较具有晶界同素异形可熔/颗粒贝氏体(F_(GBA)/ Bg)双相组织的热轧和风冷高强度低合金(HSLA)钢的耐磨性,与相同的成分和其他两种商业HSLA fenite /珠光体钢。湿砂/橡胶轮磨损试验的结果表明,F_(GBA)/ Bg双相钢的耐磨性显着高于两种贝氏体/珠光体钢,甚至高于具有更高硬度的粒状贝氏体钢。磨损表面的横截面形态表明,较高的耐​​磨性主要归因于分散的硬马氏体/奥氏体(M / A)岛。对加工硬化特性和微裂纹萌生机理的定性分析表明,在F_(GBA)/ Bg双相钢中,自回火M / A岛中存在晶界同质三方铁素体和残余奥氏体,改善了钢的容纳。表层组织的变形能力,并防止在贝氏体粒状钢中发生脆性剥落。

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