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首页> 外文期刊>Journal of Materials Processing Technology >Effects of electrical discharge energy on machining performance and bending strength of cemented tungsten carbides
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Effects of electrical discharge energy on machining performance and bending strength of cemented tungsten carbides

机译:放电能量对硬质合金碳化钨加工性能和弯曲强度的影响

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This work elucidates the effect of electrical discharge energy on surface crack and bending strength of cemented tungsten carbide by electrical discharge machining (EDM). Cemented tungsten carbides graded K10 and P10 were used as workpiece materials, and the machining parameters of EDM were varied to study the effects of electrical discharge energy on material removal rate (MRR) and surface roughness. Moreover, the micro-cracks on the machined surface induced by EDM and the effects of electrical discharge energy on the bending strength were also examined. The experimental results reveal that the MRR increased with the electrical discharge energy. The surface cracks on the machined surface were more serious when the discharge energy was higher. The surface cracks and large discharge craters on the machined surface markedly reduced the bending strength. Thus, using EDM process to machine cemented tungsten carbides depends on carefully setting the machining parameters to prevent surface crack.
机译:这项工作阐明了放电能量通过放电加工(EDM)对硬质合金碳化钨表面裂纹和弯曲强度的影响。使用等级为K10和P10的硬质合金作为工件材料,并改变EDM的加工参数以研究放电能量对材料去除率(MRR)和表面粗糙度的影响。此外,还研究了由EDM引起的加工表面上的微裂纹以及放电能量对弯曲强度的影响。实验结果表明,MRR随放电能量的增加而增加。放电能量越高,加工表面的表面裂纹越严重。机加工表面的表面裂纹和大的出料口明显降低了弯曲强度。因此,使用EDM工艺加工硬质合金碳化物取决于仔细设置加工参数以防止表面裂纹。

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