Noise and Vibration Assessment of Automatic Facial Tissue Interfolder
碩士 === 東南科技大學 === 工業管理研究所 === 102 === In this paper, practical investigation analyzed the noise and vibration of automatic facial tissue interfolder. In this study, using the measuring instruments such as noise decibel meter, impulse-hammer, acceleration, spectrum analysis, and it was comparison of...
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ndltd-TW-102TNIO00410092016-12-04T04:07:45Z http://ndltd.ncl.edu.tw/handle/03459666650630418860 Noise and Vibration Assessment of Automatic Facial Tissue Interfolder 自動下紙摺疊機運轉噪音及振動評估改善研究 Ling Wang 王伶 碩士 東南科技大學 工業管理研究所 102 In this paper, practical investigation analyzed the noise and vibration of automatic facial tissue interfolder. In this study, using the measuring instruments such as noise decibel meter, impulse-hammer, acceleration, spectrum analysis, and it was comparison of results with ANSYS analysis of simulation. At the same time, quality control techniques noise and vibration sources folding machine were employed to find out and improve the sources and reasons of noise and vibration which were both from simulation and experimental results which reducing human health risks and impacts. From the experimental results, both noise measurement frequency and impact testing and ANSYS simulation analysis results showed there was no structural resonances. Noise level was ranging from 88-89 dB when the operative speed of the automatic facial tissue interfolder was 120 m/min and noise level was ranging from 89-90 dB at 130 m/min. As the increase of operative speed, noise decibels is rising higher slowly. The results of simulation Analysis are similar to the impact test. Natural frequency (1st bending mode) results in the range of 75-81Hz which are also similar to spectrum distribution. On the whole, simulation analysis can be used to predict noise and vibration. Chiu-Tang Lin Pin-hou Sun 林秋堂 孫稟厚 2014 學位論文 ; thesis 63 zh-TW |
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碩士 === 東南科技大學 === 工業管理研究所 === 102 === In this paper, practical investigation analyzed the noise and vibration of automatic facial tissue interfolder. In this study, using the measuring instruments such as noise decibel meter, impulse-hammer, acceleration, spectrum analysis, and it was comparison of results with ANSYS analysis of simulation.
At the same time, quality control techniques noise and vibration sources folding machine were employed to find out and improve the sources and reasons of noise and vibration which were both from simulation and experimental results which reducing human health risks and impacts.
From the experimental results, both noise measurement frequency and impact testing and ANSYS simulation analysis results showed there was no structural resonances. Noise level was ranging from 88-89 dB when the operative speed of the automatic facial tissue interfolder was 120 m/min and noise level was ranging from 89-90 dB at 130 m/min. As the increase of operative speed, noise decibels is rising higher slowly.
The results of simulation Analysis are similar to the impact test. Natural frequency (1st bending mode) results in the range of 75-81Hz which are also similar to spectrum distribution. On the whole, simulation analysis can be used to predict noise and vibration.
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author2 |
Chiu-Tang Lin |
author_facet |
Chiu-Tang Lin Ling Wang 王伶 |
author |
Ling Wang 王伶 |
spellingShingle |
Ling Wang 王伶 Noise and Vibration Assessment of Automatic Facial Tissue Interfolder |
author_sort |
Ling Wang |
title |
Noise and Vibration Assessment of Automatic Facial Tissue Interfolder |
title_short |
Noise and Vibration Assessment of Automatic Facial Tissue Interfolder |
title_full |
Noise and Vibration Assessment of Automatic Facial Tissue Interfolder |
title_fullStr |
Noise and Vibration Assessment of Automatic Facial Tissue Interfolder |
title_full_unstemmed |
Noise and Vibration Assessment of Automatic Facial Tissue Interfolder |
title_sort |
noise and vibration assessment of automatic facial tissue interfolder |
publishDate |
2014 |
url |
http://ndltd.ncl.edu.tw/handle/03459666650630418860 |
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