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EVOLUTION OF WHITE LAYER AND RESIDUAL STRESS IN ELECTRICAL DISCHARGE MACHINING

机译:电气放电加工中白色层和残余应力的演变

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White layer and residual stress are the main reasons for the decrease in fatigue life of electrical discharge machined samples. Therefore, it is important to research the evolution of the white layer and residual stress in electrical discharge machining and explain the influence mechanism of machining parameters on them. In this study, the surface topography, white layer thickness, and residual stress of electrical discharge machined samples under different processing parameters were evaluated. The results indicated that surface roughness, white layer thickness, and residual stress increased as the discharge current (Ⅰ) and pulse-on time (t_(on)) increased. However, when the to,, was short, the effect of I (≤9.8A) on surface roughness is not very obvious. When the discharge energy is similar, surface roughness is high under high I conditions. When the discharge energy is similar and low, the average thickness of the white layer is thin under the low I. The effect of I on surface residual stress was greater than that of the t_(on). The I and t_(on) affect the white laver and residual stress by affecting the amount of melting and removal of the materials. These results were demonstrated that the input process of discharge energy has an important influence on residual stress and the white layer. Therefore, under the premise of ensuring the processing requirements, they can be controlled by selecting the appropriate combination of the t_(on) and I to improve the fatigue life of the workpiece.
机译:白色层和残余应力是电气放电加工样品疲劳寿命减少的主要原因。因此,重要的是研究电气放电加工中白色层和残余应力的演变,解释了加工参数对其的影响机理。在该研究中,评估了在不同处理参数下放电加工样品的表面形貌,白色层厚度和残余应力。结果表明,表面粗糙度,白色层厚度和残余应力随着放电电流(Ⅰ)和脉冲接通时间(T_(ON))增加。然而,当到,短暂时,I(≤9.8A)表面粗糙度的效果不是很明显。当放电能量相似时,在高I条件下表面粗糙度高。当放电能量相似且较低时,白色层的平均厚度在低I下薄。I在表面残余应力上的效果大于T_(ON)的效果。通过影响材料的熔化量和除去材料,I和T_(ON)影响白色紫外线和残余应力。这些结果表明,放电能量的输入过程对残余应力和白层具有重要影响。因此,在确保加工要求的前提下,可以通过选择T_(ON)和I的适当组合来控制改善工件的疲劳寿命。

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