Study on Full Time Dynamics Simulation of Two-track Rocket Sled

The analysis of vibration response of two-track rocket in experiment at each moment is the urgent problem in theory study and experiment field of the rocket sled. A dynamic analysis model of sled-pulley system is established for two-track rocket sled system, and the full-time dynamics simulation met...

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Main Authors: GU Kaixuan, GONG Mingsheng, WANG Lei, XIONG Chuang
Format: Article
Language:zho
Published: Editorial Department of Advances in Aeronautical Science and Engineering 2020-04-01
Series:Hangkong gongcheng jinzhan
Subjects:
Online Access:http://hkgcjz.cnjournals.com/hkgcjz/article/abstract/2019093?st=article_issue
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author GU Kaixuan
GONG Mingsheng
WANG Lei
XIONG Chuang
author_facet GU Kaixuan
GONG Mingsheng
WANG Lei
XIONG Chuang
author_sort GU Kaixuan
collection DOAJ
description The analysis of vibration response of two-track rocket in experiment at each moment is the urgent problem in theory study and experiment field of the rocket sled. A dynamic analysis model of sled-pulley system is established for two-track rocket sled system, and the full-time dynamics simulation method is adopted to solve the dynamic equations of rocket sled considering damping, rail clearance and irregularity. The results show that the obtained vibration response results are basically consistent with those obtained by the rocket sled with the same velocity, the simulation analysis method can be used to predict the vibration response of the two-track rocket sled, which can further enrich the theory of dynamics analysis for the rocket seld.
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last_indexed 2024-04-11T06:32:43Z
publishDate 2020-04-01
publisher Editorial Department of Advances in Aeronautical Science and Engineering
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spelling doaj.art-72ae56bba7f949f28e2bae2b9a8d1d982022-12-22T04:39:57ZzhoEditorial Department of Advances in Aeronautical Science and EngineeringHangkong gongcheng jinzhan1674-81902020-04-0111224525010.16615/j.cnki.1674-8190.2020.02.01420200214Study on Full Time Dynamics Simulation of Two-track Rocket SledGU Kaixuan0GONG Mingsheng1WANG Lei2XIONG Chuang3Test Department, AVIC Aerospace Life-support Industries Limited, Xiangyang 441003, ChinaTest Department, AVIC Aerospace Life-support Industries Limited, Xiangyang 441003, ChinaInstitute of Solid Mechanics, Beihang University, Beijing 100143, ChinaInstitute of Solid Mechanics, Beihang University, Beijing 100143, ChinaThe analysis of vibration response of two-track rocket in experiment at each moment is the urgent problem in theory study and experiment field of the rocket sled. A dynamic analysis model of sled-pulley system is established for two-track rocket sled system, and the full-time dynamics simulation method is adopted to solve the dynamic equations of rocket sled considering damping, rail clearance and irregularity. The results show that the obtained vibration response results are basically consistent with those obtained by the rocket sled with the same velocity, the simulation analysis method can be used to predict the vibration response of the two-track rocket sled, which can further enrich the theory of dynamics analysis for the rocket seld.http://hkgcjz.cnjournals.com/hkgcjz/article/abstract/2019093?st=article_issuetwo-track rocket sledsled-pulley systemdynamics analysis
spellingShingle GU Kaixuan
GONG Mingsheng
WANG Lei
XIONG Chuang
Study on Full Time Dynamics Simulation of Two-track Rocket Sled
Hangkong gongcheng jinzhan
two-track rocket sled
sled-pulley system
dynamics analysis
title Study on Full Time Dynamics Simulation of Two-track Rocket Sled
title_full Study on Full Time Dynamics Simulation of Two-track Rocket Sled
title_fullStr Study on Full Time Dynamics Simulation of Two-track Rocket Sled
title_full_unstemmed Study on Full Time Dynamics Simulation of Two-track Rocket Sled
title_short Study on Full Time Dynamics Simulation of Two-track Rocket Sled
title_sort study on full time dynamics simulation of two track rocket sled
topic two-track rocket sled
sled-pulley system
dynamics analysis
url http://hkgcjz.cnjournals.com/hkgcjz/article/abstract/2019093?st=article_issue
work_keys_str_mv AT gukaixuan studyonfulltimedynamicssimulationoftwotrackrocketsled
AT gongmingsheng studyonfulltimedynamicssimulationoftwotrackrocketsled
AT wanglei studyonfulltimedynamicssimulationoftwotrackrocketsled
AT xiongchuang studyonfulltimedynamicssimulationoftwotrackrocketsled