Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure

Soil deformation control is the key to shaft support. To better control soil deformation, improve construction efficiency, and reduce pollution, this study proposed a prefabricated prestressed supporting structure. The structure consisted of prefabricated steel structure units and special prestresse...

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Main Authors: Guoqing Zhao, Suyun Meng, Chengli Guan, Yuyou Yang
Format: Article
Language:English
Published: MDPI AG 2019-02-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/4/629
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spelling doaj-0a4475847b9943d88fff3881cab9f9ce2020-11-24T23:31:17ZengMDPI AGApplied Sciences2076-34172019-02-019462910.3390/app9040629app9040629Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed StructureGuoqing Zhao0Suyun Meng1Chengli Guan2Yuyou Yang3School of Engineering and Technology, China University of Geosciences, Beijing, Beijing 100083, ChinaSchool of Engineering and Technology, China University of Geosciences, Beijing, Beijing 100083, ChinaSchool of Engineering and Technology, China University of Geosciences, Beijing, Beijing 100083, ChinaSchool of Engineering and Technology, China University of Geosciences, Beijing, Beijing 100083, ChinaSoil deformation control is the key to shaft support. To better control soil deformation, improve construction efficiency, and reduce pollution, this study proposed a prefabricated prestressed supporting structure. The structure consisted of prefabricated steel structure units and special prestressed components. The structure units were applied to retain the soil. The screws were used for prestressing. Field prototype tests were conducted to assess the support effects and analyze the stress and deformation behaviors of the shaft. The earth pressure, the stress in the structure unit, and the lateral displacement of the soil were monitored. The measured earth pressure varied between the earth pressure at rest and the passive earth pressure. The stress of the supporting structure was far less than the yield strength of steel. Changes in the earth pressure and structural stress can be divided into four stages: rapid attenuation, fluctuation, slow change, and stabilization. Both the earth pressure and the structure stress completed the major attenuation within three days of prestressing. The surrounding soil moved out from the shaft under prestress conditions and exhibited an obvious space-time effect. The study of stress and deformation provides guidance for the construction of newly prefabricated prestressed structures.https://www.mdpi.com/2076-3417/9/4/629prefabricated structureprestressing supportworking shaftspace-time effectfield test
collection DOAJ
language English
format Article
sources DOAJ
author Guoqing Zhao
Suyun Meng
Chengli Guan
Yuyou Yang
spellingShingle Guoqing Zhao
Suyun Meng
Chengli Guan
Yuyou Yang
Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure
Applied Sciences
prefabricated structure
prestressing support
working shaft
space-time effect
field test
author_facet Guoqing Zhao
Suyun Meng
Chengli Guan
Yuyou Yang
author_sort Guoqing Zhao
title Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure
title_short Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure
title_full Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure
title_fullStr Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure
title_full_unstemmed Test Study on the Stress and Deformation Behaviors of a Shaft Supported by a Prefabricated Prestressed Structure
title_sort test study on the stress and deformation behaviors of a shaft supported by a prefabricated prestressed structure
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-02-01
description Soil deformation control is the key to shaft support. To better control soil deformation, improve construction efficiency, and reduce pollution, this study proposed a prefabricated prestressed supporting structure. The structure consisted of prefabricated steel structure units and special prestressed components. The structure units were applied to retain the soil. The screws were used for prestressing. Field prototype tests were conducted to assess the support effects and analyze the stress and deformation behaviors of the shaft. The earth pressure, the stress in the structure unit, and the lateral displacement of the soil were monitored. The measured earth pressure varied between the earth pressure at rest and the passive earth pressure. The stress of the supporting structure was far less than the yield strength of steel. Changes in the earth pressure and structural stress can be divided into four stages: rapid attenuation, fluctuation, slow change, and stabilization. Both the earth pressure and the structure stress completed the major attenuation within three days of prestressing. The surrounding soil moved out from the shaft under prestress conditions and exhibited an obvious space-time effect. The study of stress and deformation provides guidance for the construction of newly prefabricated prestressed structures.
topic prefabricated structure
prestressing support
working shaft
space-time effect
field test
url https://www.mdpi.com/2076-3417/9/4/629
work_keys_str_mv AT guoqingzhao teststudyonthestressanddeformationbehaviorsofashaftsupportedbyaprefabricatedprestressedstructure
AT suyunmeng teststudyonthestressanddeformationbehaviorsofashaftsupportedbyaprefabricatedprestressedstructure
AT chengliguan teststudyonthestressanddeformationbehaviorsofashaftsupportedbyaprefabricatedprestressedstructure
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