首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of parameter matching on performance of high-speed rotary ultrasonic elliptical vibration-assisted machining for side milling of titanium alloys
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Influence of parameter matching on performance of high-speed rotary ultrasonic elliptical vibration-assisted machining for side milling of titanium alloys

机译:参数匹配对高速旋转超声椭圆形振动加工钛合金侧研磨性能的影响

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摘要

In this paper, a novel high-speed rotary ultrasonic elliptical vibration-assisted machining method (HRUEM) for side milling is proposed to overcome problems associated with short tool life and low process efficiency during the titanium alloy finishing process. First, a theoretical model of separate-type HRUEM is presented and matching mechanisms and vibration period delay coefficient are fully analyzed. Feasibility experiments were performed used to compare the HRUEM method under different parameter matching conditions for titanium alloy milling with the conventional milling (CM) method. Then, a detailed analysis of process outputs including cutting force, chip formation, tool flank wear, surface topography, and roughness was performed. Based on the analytical model, micro-chips can be achieved with reasonable parameter matching using separate-type HRUEM. The process was further investigated experimentally to determine the tool life. Negative relief angle cutting introduced by HRUEM is found to be crucial and may prevent improvement in tool life. However, tool life of separate-type HRUEM with no negative relief angle cutting can be extended several times compared to CM. In addition, microscope observations of the machined surface revealed more uniform microstructures with HRUEM under reasonable parameter matching cutting conditions.
机译:本文提出了一种新型高速旋转超声椭圆形振动辅助加工方法(HRUEM)用于侧研磨,克服钛合金整理过程中与短工具寿命和低工艺效率相关的问题。首先,提出了单独的HRUEM的理论模型,并充分分析了匹配机构和振动周期延迟系数。进行可行性实验用于将HRUEM方法与常规铣削(CM)法进行钛合金研磨的不同参数匹配条件下。然后,进行了处理输出的详细分析,包括切割力,芯片形成,工具侧面磨损,表面形貌和粗糙度。基于分析模型,可以使用单独式HRUEM使用合理参数匹配来实现微芯片。进一步实验研究该过程以确定刀具寿命。通过HRUEM引入的负浮雕角切割是至关重要的,可以防止工具寿命的改善。然而,与厘米相比,没有负解角切割的单独型HRUEM的刀具寿命可以延长几次。此外,在合理的参数匹配的切割条件下,机加工表面的显微镜观察揭示了具有Hruem的更均匀的微观结构。

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