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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >The vibration behavior of impeller blades in the five-axis CNC flank milling process
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The vibration behavior of impeller blades in the five-axis CNC flank milling process

机译:叶轮叶片在五轴CNC侧面铣削过程中的振动行为

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摘要

Today, in most cases, impellers of centrifugal compressors are produced by flank milling on five-axis CNC milling machines. The complex three-dimensional geometry of the very thin blades consists of ruled surfaces. The flank milling process allows a fast production of the impellers and the surface of the blades is of high quality. The limited strength of the very thin blades and also the thin outer radial part of the disk lead to a high sensitivity to static and especially dynamic forces that are caused by the instationary flow in the impeller. The dynamic forces of rotating stall and surge are the most dangerous excitations of the bladed disk. Coupled vibrations may occur and damage the impeller. The highest static load is caused by the centrifugal forces. Therefore, most of the high-loaded impellers are manufactured from aluminum alloy or titanium because of the low density of this light metals and the relatively high strength. Most of the interests and the investigations in the last years are paid to the vibration behavior and the dynamic loads of the impeller during operation. But sometimes, the highest stress may occur during the production process and damage the impeller or weaken the strength and so cause later problems. Especially, excitations from the dynamic forces during the flank milling process have to be taken under consideration. The vibration behavior of the impeller is very complex and is affected by the vibration behavior of the cutter and the milling machine. In this paper, the change of the vibration behavior of centrifugal compressor impeller blades during the manufacturing process is investigated. During the finishing of the thin blades, the blade thickness is continuously changing and also the strength and the corresponding eigenfrequencies of the blade. The dynamic forces acting on the blades are caused by the cutter, the milling machine, and the cutting process. The quantity of the forces and the frequency of the excitation are determined by the rotational speed of the cutter, the feed, the number of edges, and the chip thickness. The results described in this paper give useful information about the change of the vibration behavior of the centrifugal impeller blades during the flank milling process and possible interaction with the cutter and the machine. Keywords Impeller - Compressor - Flank milling - Five-axis CNC milling - Ruled surfaces
机译:如今,在大多数情况下,离心式压缩机的叶轮是通过在五轴CNC铣床上进行侧面铣削来生产的。非常薄的叶片的复杂三维几何形状由直纹表面组成。侧面铣削工艺可以快速生产叶轮,并且叶片表面质量高。非常薄的叶片的有限强度以及圆盘的薄的径向外部部分导致对由叶轮中的不平稳流动引起的静态力尤其是动态力高度敏感。旋转失速和喘振的动力是叶片盘最危险的激励。可能会发生耦合振动并损坏叶轮。最高的静载荷是由离心力引起的。因此,由于这些轻金属的低密度和相对较高的强度,大多数高负荷叶轮是由铝合金或钛制成的。近年来,大多数兴趣和研究都涉及叶轮在运行过程中的振动行为和动态载荷。但是有时,最高的应力可能会在生产过程中发生,并损坏叶轮或削弱强度,从而引起后续问题。特别地,必须考虑在侧面铣削过程中来自动力的激励。叶轮的振动行为非常复杂,并受刀具和铣床的振动行为影响。本文研究了离心式压缩机叶轮叶片在制造过程中的振动行为变化。在薄叶片的精加工期间,叶片的厚度不断变化,并且叶片的强度和相应的本征频率不断变化。作用在刀片上的动力是由刀具,铣床和切割过程引起的。力的大小和激发的频率由切刀的旋转速度,进给,边的数量和切屑的厚度确定。本文描述的结果提供了有关在侧面铣削过程中离心式叶轮叶片的振动行为的变化以及与铣刀和机床的可能相互作用的有用信息。叶轮-压缩机-侧面铣削-五轴CNC铣削-直纹表面

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