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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of the frequency of pulsating high-pressure cutting fluid jets on the resulting chip length and surface finish
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Influence of the frequency of pulsating high-pressure cutting fluid jets on the resulting chip length and surface finish

机译:脉动高压切削液射流频率对切屑长度和表面光洁度的影响

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摘要

High-pressure cutting fluid supply is a proven technology for chip breaking when turning difficult-to-cut materials, such as Inconel 718. However, the technology is usually not suitable for the finish turning of safety-critical parts in aero engines. The acting force of the cutting fluid jet on the back of the chip causes chip breaking. The broken chips are then accelerated by the cutting fluid jet towards the workpiece surfaces where they cause damage on impact. One approach to minimize surface damage is a specific increase in the chip length. The center of gravity of the chips with an adjusted length is shifted out of the focus where the cutting fluid jet hits the chips. Hence, the already finished surface is subjected to fewer impacts of the chips. In this study, the adjustment of the chip length by pulsating high-pressure cutting fluid supply to prevent surface damage was investigated. A valve unit was used to generate two alternating cutting fluid supply pressure levels in certain time intervals. During the low-pressure stage, the force of the cutting fluid jet does not lead to chip breakage and the chip length increases until the valves switch and the high-pressure stage is released. The focus of this work was the analysis of the relationship between the duration of the low-pressure and high-pressure time intervals and the chip length. Additionally, the influence of the depth of cut, the feed, and the cutting speed on the chip length during pulsating high-pressure cutting fluid supply was investigated. Finally, a case study was carried out to evaluate the effectiveness of the pulsating high-pressure cutting fluid supply technology. Therefore, the shoulder surface of a demonstrator part was finished by face turning. Following, the cylindrical surface was finished with a continuous and pulsating high-pressure cutting fluid supply with varied supply parameters. Microscopic analyses of the surface prove that the pulsating high-pressure cutting fluid supply prevents the surface from being damaged by the impacts of chips.
机译:高压切削液供应是一种成熟的断屑技术,用于车削难以切削的材料,例如Inconel 718。然而,该技术通常不适用于航空发动机中安全关键部件的精车削。切削液射流在切屑背面的作用力导致切屑断裂。然后,破碎的切屑被切削液射流加速到工件表面,在冲击时造成损坏。最小化表面损伤的一种方法是专门增加芯片长度。调整长度的切屑的重心移出切削液射流撞击切屑的焦点。因此,已经完成的表面受到切屑的冲击较小。本研究研究了通过脉动高压切削液供应来调节切屑长度以防止表面损伤的方法。阀单元用于在特定时间间隔内产生两个交替的切削液供应压力水平。在低压阶段,切削液射流的力不会导致切屑断裂,切屑长度增加,直到阀门切换和高压阶段释放。这项工作的重点是分析低压和高压时间间隔的持续时间与切屑长度之间的关系。此外,还研究了脉动高压切削液供应过程中切削深度、进给量和切削速度对切屑长度的影响。最后,通过算例分析了脉动高压切削液供给技术的有效性。因此,演示零件的肩面通过面车削完成。随后,使用具有不同供应参数的连续脉动高压切削液供应对圆柱表面进行精加工。表面的显微分析证明,脉动高压切削液供应可防止表面因切屑冲击而损坏。

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