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Surface enhancement of cold work tool steels by friction stir processing with a pinless tool

机译:通过无针工具的摩擦搅拌处理对冷作工具钢进行表面增强

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The microstructure and mechanical properties of enhanced tool steel (AISI D2) surfaces produced using a friction stir welding (FSW) related procedure, called friction stir processing (FSP), are analysed in this work. The surface of the tool steel samples was processed using a WC-Co pinless tool and varying processing conditions. Microstructural analysis revealed that meanwhile the original substrate structure consisted of a heterogeneous distribution of coarse carbides in a ferritic matrix, the transformed surfaces consisted of very small carbides, homogenously distributed in a ferrite- bainite- martensite matrix. The morphology of the surfaces, as well as its mechanical properties, evaluated by hardness and tensile testing, were found to vary with increasing tool rotation speed. Surface hardness was drastically increased, relative to the initial hardness of bulk steel. This was attributed to ferrite and carbide refinement, as well as to martensite formation during solid state processing. At the highest rotation rates, tool sliding during processing deeply compromised the characteristics of the processed surfaces.
机译:在这项工作中,分析了使用摩擦搅拌焊接(FSW)相关程序生产的增强工具钢(AISI D2)表面的显微组织和力学性能,称为摩擦搅拌加工(FSP)。工具钢样品的表面使用WC-Co无针工具和变化的加工条件进行加工。显微组织分析表明,原始的基体结构由铁素体基体中的粗碳化物的异质分布组成,而相变表面则由均匀分布于铁素体-贝氏体-马氏体基体中的非常小的碳化物组成。发现通过硬度和拉伸试验评估的表面形态及其机械性能随着工具旋转速度的增加而变化。相对于散装钢的初始硬度,表面硬度急剧增加。这归因于铁素体和碳化物的细化,以及固态加工过程中马氏体的形成。在最高转速下,加工过程中的工具滑动会严重影响加工表面的特性。

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