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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Effects of cutting parameters on ductile material removal mode percentage in rotary ultrasonic face machining
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Effects of cutting parameters on ductile material removal mode percentage in rotary ultrasonic face machining

机译:旋转超声端面加工中切削参数对韧性材料去除率的影响

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摘要

Rotary ultrasonic machining is an excellent method for processing hard brittle materials and has been investigated extensively via theoretical and experimental studies. However, there are few researches about rotary ultrasonic machining of ceramic matrix composite materials. Material removal mode presents both ductile-mode and brittle-fracture when machining hard brittle materials. The ratio of ductile-mode and brittle-fracture has a significant impact on processing status and processing quality. In this article, we developed a cutting force model for rotary ultrasonic face machining of ceramic matrix composite materials. Based on this model, we investigated the effects of cutting parameters on ductile-mode percentage of ceramic matrix composite materials. The cutting depth, feedrate and spindle speed are assumed to be three main factors that affect the ductile-mode percentage in rotary ultrasonic face machining. The primary aim of this article is to verify the correctness of the assumption using a three-variable three-level orthogonal experiment array. The experimental results agreed well with the assumption. The main factors deciding the ductile-mode percentage were found to be cutting depth and feedrate.
机译:旋转超声加工是加工硬质脆性材料的一种极好的方法,并且已通过理论和实验研究得到了广泛的研究。然而,关于陶瓷基复合材料的旋转超声加工的研究很少。在加工硬质脆性材料时,材料去除模式同时具有延性模式和脆性断裂。延性与脆性断裂的比例对加工状态和加工质量有重要影响。在本文中,我们开发了用于陶瓷基复合材料的旋转超声面加工的切削力模型。基于该模型,我们研究了切削参数对陶瓷基复合材料延性模态百分比的影响。切削深度,进给率和主轴转速被认为是影响旋转超声端面加工中延性模态百分比的三个主要因素。本文的主要目的是使用三变量三级正交实验数组来验证假设的正确性。实验结果与假设吻合得很好。决定延性模式百分比的主要因素是切削深度和进给速度。

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