The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete

Fiber-reinforced technology is an important method to improve the stability and durability of growing basis material. To evaluate the factors affecting the interfacial strength properties of polypropylene fiber reinforced vegetation concrete, single polypropylene fiber drawing tests were conducted b...

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Main Author: Daxiang Liu, Deyu Liu, Baohua Zhang, Bin Zhong, Yueshu Yang, Jiangang Chen, Yu Ding, Zhenyao Xia and Wennian Xu
Format: Article
Language:English
Published: Technoscience Publications 2022-06-01
Series:Nature Environment and Pollution Technology
Subjects:
Online Access:https://neptjournal.com/upload-images/(47)D-1286.pdf
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author Daxiang Liu, Deyu Liu, Baohua Zhang, Bin Zhong, Yueshu Yang, Jiangang Chen, Yu Ding, Zhenyao Xia and Wennian Xu
author_facet Daxiang Liu, Deyu Liu, Baohua Zhang, Bin Zhong, Yueshu Yang, Jiangang Chen, Yu Ding, Zhenyao Xia and Wennian Xu
author_sort Daxiang Liu, Deyu Liu, Baohua Zhang, Bin Zhong, Yueshu Yang, Jiangang Chen, Yu Ding, Zhenyao Xia and Wennian Xu
collection DOAJ
description Fiber-reinforced technology is an important method to improve the stability and durability of growing basis material. To evaluate the factors affecting the interfacial strength properties of polypropylene fiber reinforced vegetation concrete, single polypropylene fiber drawing tests were conducted by using a modified apparatus. The mechanical interaction behavior between vegetation concrete and polypropylene fiber was discussed by using a polarizing microscope. The results indicate that the drawing curves between polypropylene fiber and vegetation concrete show a typical multi-peak characteristic. And the interfacial shear strength is the minimum at the optimum water content (20%) in the 1d sample. It should be noted that both interfacial peak strength (IPS) and interfacial residual strength (IRS) increase with the increase of dry density and curing time for vegetation concrete. Then through multiple linear regression analysis, the empirical formula of critical fiber length in reinforced vegetation concrete is obtained, which can improve the engineering durability of vegetation concrete in harsh conditions.
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spelling doaj.art-7737a18e22734a4db6356bf6c0e53d7e2022-12-22T00:32:55ZengTechnoscience PublicationsNature Environment and Pollution Technology0972-62682395-34542022-06-0121282983610.46488/NEPT.2022.v21i02.047The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation ConcreteDaxiang Liu, Deyu Liu, Baohua Zhang, Bin Zhong, Yueshu Yang, Jiangang Chen, Yu Ding, Zhenyao Xia and Wennian XuFiber-reinforced technology is an important method to improve the stability and durability of growing basis material. To evaluate the factors affecting the interfacial strength properties of polypropylene fiber reinforced vegetation concrete, single polypropylene fiber drawing tests were conducted by using a modified apparatus. The mechanical interaction behavior between vegetation concrete and polypropylene fiber was discussed by using a polarizing microscope. The results indicate that the drawing curves between polypropylene fiber and vegetation concrete show a typical multi-peak characteristic. And the interfacial shear strength is the minimum at the optimum water content (20%) in the 1d sample. It should be noted that both interfacial peak strength (IPS) and interfacial residual strength (IRS) increase with the increase of dry density and curing time for vegetation concrete. Then through multiple linear regression analysis, the empirical formula of critical fiber length in reinforced vegetation concrete is obtained, which can improve the engineering durability of vegetation concrete in harsh conditions.https://neptjournal.com/upload-images/(47)D-1286.pdfpolypropylene fiber, vegetation concrete, drawing characteristics, critical length, empirical formula
spellingShingle Daxiang Liu, Deyu Liu, Baohua Zhang, Bin Zhong, Yueshu Yang, Jiangang Chen, Yu Ding, Zhenyao Xia and Wennian Xu
The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete
Nature Environment and Pollution Technology
polypropylene fiber, vegetation concrete, drawing characteristics, critical length, empirical formula
title The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete
title_full The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete
title_fullStr The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete
title_full_unstemmed The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete
title_short The Drawing Characteristics and Critical Length of Single Polypropylene Fiber in Vegetation Concrete
title_sort drawing characteristics and critical length of single polypropylene fiber in vegetation concrete
topic polypropylene fiber, vegetation concrete, drawing characteristics, critical length, empirical formula
url https://neptjournal.com/upload-images/(47)D-1286.pdf
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