Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks

Abstract The columnar joint skeleton of 3D printed Acrylonitrile Butadiene Styrene (ABS) material, the skeleton of cement mortar and ultraviolet aging treatment are combined to pour the columnar joint rock mass (CJRM) test block. The strength, deformation, energy and failure modes of the specimens w...

Full description

Saved in:
Bibliographic Details
Main Authors: Zhenbo Xu, Zhende Zhu, Chao Jiang
Format: Article
Language:English
Published: Nature Portfolio 2024-12-01
Series:Scientific Reports
Subjects:
Online Access:https://doi.org/10.1038/s41598-024-81715-1
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1846101160684945408
author Zhenbo Xu
Zhende Zhu
Chao Jiang
author_facet Zhenbo Xu
Zhende Zhu
Chao Jiang
author_sort Zhenbo Xu
collection DOAJ
description Abstract The columnar joint skeleton of 3D printed Acrylonitrile Butadiene Styrene (ABS) material, the skeleton of cement mortar and ultraviolet aging treatment are combined to pour the columnar joint rock mass (CJRM) test block. The strength, deformation, energy and failure modes of the specimens with different dip angles were analyzed by uniaxial compression test. The influence of joint skeleton on the strength of the test block was analyzed. The effect of aging time on ABS parameters was evaluated. The results show that the uniaxial compressive strength and elastic modulus are ' U ' type with the increase of dip angle, the elastic strain energy is ' V ' type, and the dip angle of 45° is the minimum value. The four failure modes are: shear failure, splitting failure, shear tensile mixed failure, shear splitting mixed failure. The anisotropy of CJRM is extremely high. The skeleton reduces the strength and elastic modulus of the solid test block, and has the greatest influence on the strength of the test block with dip angle of 75°. With the increase of aging time, the strength and deformation parameters of ABS decreased, and the yellowness index and infrared spectrum peak area increased.
format Article
id doaj-art-f30fe7bdf19b4647964a09ba9d9aad0e
institution Kabale University
issn 2045-2322
language English
publishDate 2024-12-01
publisher Nature Portfolio
record_format Article
series Scientific Reports
spelling doaj-art-f30fe7bdf19b4647964a09ba9d9aad0e2024-12-29T12:29:53ZengNature PortfolioScientific Reports2045-23222024-12-0114111610.1038/s41598-024-81715-1Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocksZhenbo Xu0Zhende Zhu1Chao Jiang2College of Civil Engineering and Transportation, Hohai UniversityCollege of Civil Engineering and Transportation, Hohai UniversityCollege of Civil Engineering and Transportation, Hohai UniversityAbstract The columnar joint skeleton of 3D printed Acrylonitrile Butadiene Styrene (ABS) material, the skeleton of cement mortar and ultraviolet aging treatment are combined to pour the columnar joint rock mass (CJRM) test block. The strength, deformation, energy and failure modes of the specimens with different dip angles were analyzed by uniaxial compression test. The influence of joint skeleton on the strength of the test block was analyzed. The effect of aging time on ABS parameters was evaluated. The results show that the uniaxial compressive strength and elastic modulus are ' U ' type with the increase of dip angle, the elastic strain energy is ' V ' type, and the dip angle of 45° is the minimum value. The four failure modes are: shear failure, splitting failure, shear tensile mixed failure, shear splitting mixed failure. The anisotropy of CJRM is extremely high. The skeleton reduces the strength and elastic modulus of the solid test block, and has the greatest influence on the strength of the test block with dip angle of 75°. With the increase of aging time, the strength and deformation parameters of ABS decreased, and the yellowness index and infrared spectrum peak area increased.https://doi.org/10.1038/s41598-024-81715-13D printingColumnar jointed rock massUV aging of ABSMechanical propertiesLaboratory test
spellingShingle Zhenbo Xu
Zhende Zhu
Chao Jiang
Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks
Scientific Reports
3D printing
Columnar jointed rock mass
UV aging of ABS
Mechanical properties
Laboratory test
title Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks
title_full Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks
title_fullStr Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks
title_full_unstemmed Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks
title_short Study on uniaxial compression mechanical properties of 3D printed columnar joint test blocks
title_sort study on uniaxial compression mechanical properties of 3d printed columnar joint test blocks
topic 3D printing
Columnar jointed rock mass
UV aging of ABS
Mechanical properties
Laboratory test
url https://doi.org/10.1038/s41598-024-81715-1
work_keys_str_mv AT zhenboxu studyonuniaxialcompressionmechanicalpropertiesof3dprintedcolumnarjointtestblocks
AT zhendezhu studyonuniaxialcompressionmechanicalpropertiesof3dprintedcolumnarjointtestblocks
AT chaojiang studyonuniaxialcompressionmechanicalpropertiesof3dprintedcolumnarjointtestblocks