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Effects of the Combined Laser-Ultrasonic Surface Hardening Induced Microstructure and Phase State on Mechanical Properties of AISI D2 Tool Steel

机译:组合激光超声表面硬化诱导微观结构和相位状态对AISI D2工具钢力学性能的影响

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The surface layers of AISI D2 tool steel were hardened by a laser heat treatment (LHT), by an ultrasonic impact treatment (UIT) and by a combined laser-ultrasonic treatment (LHT + UIT). The peculiarities of microstructure and phase formations in the surface layers were analyzed after the abovementioned surface treatments performed in the optimum regimes. Microstructural changes were studied using an optical and a transmission electron microscopy to corroborate the results of XRD analysis. Based on the experimentally obtained data regarding the grain/subgrain size, the dislocation density, and the volume fraction and size of carbides, the differentiated contributions of various hardening mechanisms to the mechanical characteristics (σ_(0.2), HV) were theoretically assessed. The results indicated that the contribution of the grain boundary hardening is the most influential one among the hardening mechanisms in the cases of the LHT (~47%) and combined LHT + UIT (~51%) processes. Conversely, the dislocation hardening (~34%) mainly contributes to the UIT induced hardening. The yield strength values calculated based on the microstructural studies correlate well with the experimental data describing the surface microhardness.
机译:通过激光热处理(LHT),通过超声波冲击处理(UIT)和通过组合的激光超声处理(LHT + UIT)来硬化AISI D2刀具钢的表面层。在最佳制度下进行的上述表面处理之后,分析了表面层中微观结构和相形成的特性。使用光学和透射电子显微镜进行微观结构改变,以证实XRD分析结果。基于关于谷粒/粒径的实验获得的数据,位错密度和碳化物的体积分数和大小,理论上评估了各种硬化机制对机械特性的分化贡献(σ_(0.2),HV)。结果表明,晶界硬化的贡献是LHT(〜47%)和合并LHT + UIT(约51%)过程中的硬化机制中最有影响力的一种。相反,脱位硬化(〜34%)主要有助于UIT诱导的硬化。基于微观结构研究计算的屈服强度值与描述表面显微硬度的实验数据吻合良好。

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