汽轮机叶轮与轴锥度过盈配合的影响

Q3 Engineering Strojnicky Casopis Pub Date : 2018-11-01 DOI:10.2478/scjme-2018-0024
Nilesh S. Vishwakarma, Avinash Renuke, V. Phalle
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引用次数: 2

摘要

摘要在涡轮机械中,许多部件都存在干扰,以传递扭矩并保持它们之间的接触。存在叶轮和轴失去干涉并限制叶轮速度的瞬态情况。本文以离心式压缩机为例,分析了轴与叶轮锥度配对的影响。当离心式压缩机启动时,过渡状态占主导地位,其中离心式压缩机的叶轮与轴相比快速获得更高的温度。由于叶轮的热膨胀比轴大得多,因此叶轮和轴之间的干涉可能会减少。在减少干扰的情况下,叶轮应保持与轴的最小接触压力和扭矩传递能力。对于传统安装的叶轮,应力的积累是一个主要问题,尤其是在较高的速度下。本文提出了锥形过盈配合法与圆柱形叶轮总成相比较的重要性。针对相同的扭矩传递能力,对传统直装叶轮和锥形孔叶轮进行了有效的分析。分析表明,对于锥形孔的叶轮,叶轮应力减小,存在健康的接触压力。
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Effect of Tapered Interference Fit between Impeller and Shaft in Turbo Machines
Abstract In Turbo machines, there are many components which are provided with interference to transmit torque and to maintain contact between them. There are transient scenarios where impeller and shaft lose interference and limits the speed of the impeller. In this paper, a case study on centrifugal compressor has been presented to see the effect of taper pairing of shaft with impeller. When the centrifugal compressor starts then a transient condition is dominant wherein the impeller of the centrifugal compressor gains higher temperature quickly compared to shaft. Since the thermal expansion of the impeller will be much more than the shaft, interference between impeller and shaft is likely to reduce. With reduced interference, the impeller should retain minimum required contact pressure with the shaft and the torque transmitting capability. For conventional fitted impeller, stress built up is a major concern especially at higher speeds. This paper gives a proposal about the importance of tapered interference fit method compared to cylindrical fitted impeller assembly. An effective analysis between the conventional straight fitted impeller and impeller having tapered bore is presented for the same torque transfer capability. The analysis reveals that for the impeller with tapered bore, the stress for impeller reduces and a healthy contact pressure exists.
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来源期刊
Strojnicky Casopis
Strojnicky Casopis Engineering-Mechanical Engineering
CiteScore
2.00
自引率
0.00%
发文量
33
审稿时长
14 weeks
期刊最新文献
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