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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Study on grinding force model in ultrasonic vibration-assisted grinding of alloy structural steel
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Study on grinding force model in ultrasonic vibration-assisted grinding of alloy structural steel

机译:合金结构钢超声波振动磨削磨削力模型研究

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摘要

Based on the micro-removal mechanism of the ultrasonic vibration-assisted grinding (UVAG), a new prediction model of alloy structural steel is proposed in this paper. In the grinding process, the abrasive grains mainly go through two stages: plowing stage and chip forming stage. Then, grinding force model of single grain under different material removal modes is established. The thickness of the abrasive grain, the number of grains involved in grinding, and the interference between the abrasive grains are essential factors that affect the grinding force. Considering the influence of ultrasonic vibration on these factors, the grinding force model of the grinding wheel is developed. The ultrasonic grinding experiments are conducted to validate this model. Findings show that the theoretically predicted results are consistent with the experimental results.
机译:基于超声波振动辅助研磨(UVAG)的微移除机构,本文提出了一种新的合金结构钢预测模型。 在研磨过程中,磨粒主要经过两个阶段:犁阶段和芯片形成阶段。 然后,建立了不同材料去除模式下单颗粒的研磨力模型。 研磨颗粒的厚度,研磨中涉及的颗粒的数量,以及磨料颗粒之间的干涉是影响研磨力的必要因素。 考虑到超声波振动对这些因素的影响,开发了研磨轮的研磨力模型。 进行超声波研磨实验以验证该模型。 调查结果表明,理论上预测结果与实验结果一致。

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