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Vertical-Vibration Suppressing Design of Accumulator with New Vibration-Measuring Method

机译:具有新型振动测量方法蓄电池的垂直振动抑制设计

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A compressor was developed using R32 which was a low GWP R32 refrigerant for coping with global warming. However, there is a tendency for vibrations of a compressor to also increase because the circulation of refrigerant increases according to specification for using R32 refrigerant. Since large vibrations of a compressor causes outdoor units to generate solid propagation sound, there is a need for a technology that can reduce vibration of a compressor. However, a vibration-measuring method to analyze such vibration had not been fully developed and it was difficult to specify the cause. Accordingly, a new vibration-measuring method was developed specifically for compressors. The use of this measuring method allowed to discover that one of the unresolved problems with sound of outdoor units was the vertical vibration of the accumulator housed in the compressor. Moreover, it was found that the accumulator vibrates vertically due to the acoustic resonance inside the casing, which led to develop a new (accumulator) design with a focus on resonance. There is a type of spatial resonance inside an accumulator that has a phase difference with the antinode of sound pressure appearing at the upper and lower ends of the space. The vertical force caused by the difference in the sound pressure becomes excitation force, which then causes vertical vibration of the accumulator. Therefore, preventing this resonance from occurring can help suppress the vertical vibration. In order to prevent the generation of resonance, a plate-shaped reflection member was placed inside the accumulator, and it proved to be effective in suppressing the vertical vibration.
机译:使用R32开发了一种压缩机,其是低GWP R32制冷剂,用于应对全球变暖。然而,由于制冷剂的循环根据使用R32制冷剂的规格增加,压缩机的振动趋势也增加。由于压缩机的大振动使室外单元产生固体传播声音,因此需要一种可以减少压缩机振动的技术。然而,用于分析这种振动的振动测量方法尚未完全开发,并且难以指定原因。因此,专门为压缩机开发了一种新的振动测量方法。使用这种测量方法可以发现室外单位声音的未解决问题之一是容纳在压缩机中的蓄能器的垂直振动。此外,人们发现,累加器垂直振动由于壳体,这导致开发重点放在谐振一个新的(蓄压器)的设计内的声共振。在蓄能器内部存在一种空间谐振,其具有与在空间的上端和下端出现的声压的抗灰度相差。由声压的差异导致的垂直力变为激励力,然后导致蓄能器的垂直振动。因此,防止这种共振发生可以有助于抑制垂直振动。为了防止产生共振,将板状反射构件放置在蓄能器内,并且证明是有效地抑制垂直振动。

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