A New Guide Lifter for the Transceiver of USBL
A new guide lifter has been put forward for the transceiver of Ultra Short Base Line (USBL) with a worm gear reducer applied as self-locking of the lifter and a chain structure applied to drive the sliding shaft moving up and down. The new device is 7500 mm long and connected to the end of the trans...
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Format: | Article |
Language: | English |
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Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek
2021-01-01
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Series: | Tehnički Vjesnik |
Subjects: | |
Online Access: | https://hrcak.srce.hr/file/364694 |
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author | Chai Yongsheng Min Xiaochen Liu Mi Zhang Maoyuan Wei Shangtao Wang Changhui* Liang Mei |
author_facet | Chai Yongsheng Min Xiaochen Liu Mi Zhang Maoyuan Wei Shangtao Wang Changhui* Liang Mei |
author_sort | Chai Yongsheng |
collection | DOAJ |
description | A new guide lifter has been put forward for the transceiver of Ultra Short Base Line (USBL) with a worm gear reducer applied as self-locking of the lifter and a chain structure applied to drive the sliding shaft moving up and down. The new device is 7500 mm long and connected to the end of the transceiver. Linear motion products are introduced to ensure the shaft unable to rotate and the position measurements are provided by position sensors. A heavy self-sealing sliding bearing, which is 800 mm in length, keeps the shaft running reliably. Then the three-dimensional model is built and the structure parameters of the lifter are calculated. Later, the working process of the lifter is simulated to guarantee the movement parameters meet the request of USBL. Finally, the experiment on the intensity and stiffness of the lifter is carried out via the finite element model of the lifter built in ANSYS with the maximum load conditions and the result has been experimentally verified. This device provides a reliable approach of operating USBL which plays a vitally important role in ocean exploration and the research results are successfully applied to the scientific research vessels of Dayang No. 1 as well as Xiangyanghong No. 9. |
first_indexed | 2024-04-24T09:16:45Z |
format | Article |
id | doaj.art-24f72e35dfef439b84d9029e05fdec94 |
institution | Directory Open Access Journal |
issn | 1330-3651 1848-6339 |
language | English |
last_indexed | 2024-04-24T09:16:45Z |
publishDate | 2021-01-01 |
publisher | Faculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in Osijek |
record_format | Article |
series | Tehnički Vjesnik |
spelling | doaj.art-24f72e35dfef439b84d9029e05fdec942024-04-15T16:45:57ZengFaculty of Mechanical Engineering in Slavonski Brod, Faculty of Electrical Engineering in Osijek, Faculty of Civil Engineering in OsijekTehnički Vjesnik1330-36511848-63392021-01-0128171210.17559/TV-20150410111146A New Guide Lifter for the Transceiver of USBLChai Yongsheng0Min Xiaochen1Liu Mi2Zhang Maoyuan3Wei Shangtao4Wang Changhui*5Liang Mei6Yantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaYantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaYantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaYantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaYantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaYantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaYantai University, School of Mechatronics and Automobile Engineering, 32 Qingquan RD Laishan District, Yantai, ChinaA new guide lifter has been put forward for the transceiver of Ultra Short Base Line (USBL) with a worm gear reducer applied as self-locking of the lifter and a chain structure applied to drive the sliding shaft moving up and down. The new device is 7500 mm long and connected to the end of the transceiver. Linear motion products are introduced to ensure the shaft unable to rotate and the position measurements are provided by position sensors. A heavy self-sealing sliding bearing, which is 800 mm in length, keeps the shaft running reliably. Then the three-dimensional model is built and the structure parameters of the lifter are calculated. Later, the working process of the lifter is simulated to guarantee the movement parameters meet the request of USBL. Finally, the experiment on the intensity and stiffness of the lifter is carried out via the finite element model of the lifter built in ANSYS with the maximum load conditions and the result has been experimentally verified. This device provides a reliable approach of operating USBL which plays a vitally important role in ocean exploration and the research results are successfully applied to the scientific research vessels of Dayang No. 1 as well as Xiangyanghong No. 9.https://hrcak.srce.hr/file/364694designliftersimulationUltra Short Base Line (USBL) system |
spellingShingle | Chai Yongsheng Min Xiaochen Liu Mi Zhang Maoyuan Wei Shangtao Wang Changhui* Liang Mei A New Guide Lifter for the Transceiver of USBL Tehnički Vjesnik design lifter simulation Ultra Short Base Line (USBL) system |
title | A New Guide Lifter for the Transceiver of USBL |
title_full | A New Guide Lifter for the Transceiver of USBL |
title_fullStr | A New Guide Lifter for the Transceiver of USBL |
title_full_unstemmed | A New Guide Lifter for the Transceiver of USBL |
title_short | A New Guide Lifter for the Transceiver of USBL |
title_sort | new guide lifter for the transceiver of usbl |
topic | design lifter simulation Ultra Short Base Line (USBL) system |
url | https://hrcak.srce.hr/file/364694 |
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