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首页> 外文期刊>Journal of Materials Research and Technology >Effect of machining on performance enhancement of superficial layer of high-strength alloy steel
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Effect of machining on performance enhancement of superficial layer of high-strength alloy steel

机译:加工对高强度合金钢浅层浅层性能的影响

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The microstructure of machined superficial layer significantly affects the mechanical properties and service life of mechanical components. Herein, to obtain a machined surface with excellent properties, a comprehensive application of theoretical calculations and test analysis research methods was conducted to investigate the influence mechanism of machining on performance and quality of machined superficial layer of high-strength alloy steel during machining, and reveal the intrinsic correlation between microstructure evolution, quality and performance of machined superficial layer. The results indicate that the machining can achieve gradient microstructure on the machined surface, which can improve the performance of machined surface greatly. From the surface to the inside region, the layers are respectively the recrystallized layer where compact nano-sized equiaxed grains are located, the rheological layer with clusters of high-density sub-grain structures, and the distorted layer with residual distorted grains. The maximum strain of superficial layer in the machined state is 2.81 times that of the original state. The grains are evidently refined and the grain size is reduced by 49.03%. The dislocation density is enhanced by 100.69%, while the number of small-angle grain boundaries (SAGB) and other substructures increase sharply, being 5.26 times that in the original state. By performance testing, the machining substantially enhances the hardness of the superficial layer of high-strength alloy steel with certain rise in toughness simultaneously, which is exactly the result of the combined effect of fine-grain strengthening and dislocation strengthening caused by the machining process above.
机译:机加工浅表层的微观结构显着影响机械部件的机械性能和使用寿命。在此,为了获得具有优异性能的加工表面,进行了理论计算和测试分析研究方法的综合应用,以研究加工过程中高强度合金钢加工浅表层性能和质量的影响机理,揭示机加工浅表层微观结构演化,质量和性能的内在相关性。结果表明,加工可以在加工表面上实现梯度微结构,可以大大提高加工表面的性能。从表面到内部区域,层分别是重结晶层,其中紧凑的纳米尺寸等化的晶粒位于,具有高密度亚粒结构簇的流变层,以及具有残余扭曲晶粒的扭曲层。机加工状态下的浅表层的最大应变为原始状态的2.81倍。明显地精制晶粒,晶粒尺寸减少49.03%。脱位密度增强100.69%,而小角度晶界(SAGB)和其他子结构的数量急剧增加,是原始状态的5.26倍。通过性能测试,加工基本上提高了高强度合金钢浅层层的硬度,同时韧性较大,这正是由上述加工过程引起的细粒强化和位错强化综合影响的结果。

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