Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head
The development of steel in engineering structures or components faces the problems of high cost and high carbon emission, which demands new materials used as reinforcement to be proposed and applied. Bamboo is a green and renewable natural material, and has higher tensile strength parallel to grain...
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2021
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oai:doaj.org-article:afb3429148424349be1d6c08c175b1892021-11-25T18:49:02ZBearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head10.3390/polym132239762073-4360https://doaj.org/article/afb3429148424349be1d6c08c175b1892021-11-01T00:00:00Zhttps://www.mdpi.com/2073-4360/13/22/3976https://doaj.org/toc/2073-4360The development of steel in engineering structures or components faces the problems of high cost and high carbon emission, which demands new materials used as reinforcement to be proposed and applied. Bamboo is a green and renewable natural material, and has higher tensile strength parallel to grain compared to wood. Based on the excellent mechanical properties in the parallel-to-grain direction of bamboo fiber, this paper proposed an innovative bamboo fiber-reinforced polymer tendon with U-head (BFRP tendon). To analyze the tension capacity and mechanical behavior of the BFRP tendon, the thin-shell model and thick-shell model have been proposed in succession. Both models were compared with the results of tensile test and good agreement was achieved in the stress distribution and the ultimate load. The tension capacity of the BFRP tendon has been proved to be reliable, which can give full play to the advantages of bamboo fiber.Xiang LiShuaiyu ZhaoXinmiao MengXiaodong JiMDPI AGarticleBFRP tendonthin-shell modelthick-shell modeltension capacitymechanical behaviorOrganic chemistryQD241-441ENPolymers, Vol 13, Iss 3976, p 3976 (2021) |
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topic |
BFRP tendon thin-shell model thick-shell model tension capacity mechanical behavior Organic chemistry QD241-441 |
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BFRP tendon thin-shell model thick-shell model tension capacity mechanical behavior Organic chemistry QD241-441 Xiang Li Shuaiyu Zhao Xinmiao Meng Xiaodong Ji Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head |
description |
The development of steel in engineering structures or components faces the problems of high cost and high carbon emission, which demands new materials used as reinforcement to be proposed and applied. Bamboo is a green and renewable natural material, and has higher tensile strength parallel to grain compared to wood. Based on the excellent mechanical properties in the parallel-to-grain direction of bamboo fiber, this paper proposed an innovative bamboo fiber-reinforced polymer tendon with U-head (BFRP tendon). To analyze the tension capacity and mechanical behavior of the BFRP tendon, the thin-shell model and thick-shell model have been proposed in succession. Both models were compared with the results of tensile test and good agreement was achieved in the stress distribution and the ultimate load. The tension capacity of the BFRP tendon has been proved to be reliable, which can give full play to the advantages of bamboo fiber. |
format |
article |
author |
Xiang Li Shuaiyu Zhao Xinmiao Meng Xiaodong Ji |
author_facet |
Xiang Li Shuaiyu Zhao Xinmiao Meng Xiaodong Ji |
author_sort |
Xiang Li |
title |
Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head |
title_short |
Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head |
title_full |
Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head |
title_fullStr |
Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head |
title_full_unstemmed |
Bearing Capacity and Mechanical Behavior of an Innovative Bamboo Fiber-Reinforced Polymer Tendon with U-Head |
title_sort |
bearing capacity and mechanical behavior of an innovative bamboo fiber-reinforced polymer tendon with u-head |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/afb3429148424349be1d6c08c175b189 |
work_keys_str_mv |
AT xiangli bearingcapacityandmechanicalbehaviorofaninnovativebamboofiberreinforcedpolymertendonwithuhead AT shuaiyuzhao bearingcapacityandmechanicalbehaviorofaninnovativebamboofiberreinforcedpolymertendonwithuhead AT xinmiaomeng bearingcapacityandmechanicalbehaviorofaninnovativebamboofiberreinforcedpolymertendonwithuhead AT xiaodongji bearingcapacityandmechanicalbehaviorofaninnovativebamboofiberreinforcedpolymertendonwithuhead |
_version_ |
1718410668751716352 |