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Application of EDM Hole-Drilling Method to the Measurement of Residual Stress in Tool and Carbon Steels

机译:EDM钻孔法在工具钢和碳钢残余应力测量中的应用

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摘要

This study adopts the application of the electrodischarge machining (EDM) hole-drilling method to the measurement of residual stress in AISI D2 cold work tool steel, AISI H13 hot work tool steel, and AISI 1045 medium carbon steel. A calibration procedure based on the thermal conductivity of the material is conducted to compensate for the additional compressive stress induced in the workpiece by the EDM hole-drilling operation. Since the formation of this white layer influences the magnitude of the induced stress, the scanning electron microscopy, transmission electron microscopy, and nanoindentation techniques are used to examine the microstructure and hardness of the white layer resolidified on the EDMed surface. The experimental results reveal that combination of the hole-drilling strain-gage method (ASTM standard E837) with an EDM drilling process provides the effective means of determining the residual stress in materials with high hardness and good wear resistance.
机译:本研究采用电火花加工(EDM)钻孔方法来测量AISI D2冷作工具钢,AISI H13热作工具钢和AISI 1045中碳钢的残余应力。进行基于材料导热率的校准程序,以补偿EDM钻孔操作在工件中引起的附加压应力。由于此白色层的形成会影响感应应力的大小,因此使用扫描电子显微镜,透射电子显微镜和纳米压痕技术来检查在EDMed表面重新固化的白色层的微观结构和硬度。实验结果表明,将钻孔应变计方法(ASTM标准E837)与EDM钻孔工艺相结合,可为确定具有高硬度和良好耐磨性的材料中的残余应力提供有效的手段。

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