Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method

Cold recycled mixture (CRM) has been widely used around the world mainly because of its good ability to resist reflection cracking. In this study, mixed-mode cracking tests were carried out by the designed rotary test device to evaluate the cracking resistance of CRM. Through the finite element meth...

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Main Authors: Lei Gao, Xingkuan Deng, Ye Zhang, Xue Ji, Qiang Li
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/14/8/1993
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spelling doaj-61e15ae9e1e84e458a25839f3a213d882021-04-16T23:02:11ZengMDPI AGMaterials1996-19442021-04-01141993199310.3390/ma14081993Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element MethodLei Gao0Xingkuan Deng1Ye Zhang2Xue Ji3Qiang Li4Department of Civil and Airport Engineering, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 211106, ChinaDepartment of Civil and Airport Engineering, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 211106, ChinaDepartment of Civil and Airport Engineering, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 211106, ChinaDepartment of Civil and Airport Engineering, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 211106, ChinaCollege of Civil Engineering, Nanjing Forestry University, Nanjing 210037, ChinaCold recycled mixture (CRM) has been widely used around the world mainly because of its good ability to resist reflection cracking. In this study, mixed-mode cracking tests were carried out by the designed rotary test device to evaluate the cracking resistance of CRM. Through the finite element method, the heterogeneous model of CRM based on its meso-structure was established. The cracking process of CRM was simulated using the extended finite element method, and the influence of different notch lengths on its anti-cracking performance was studied. The results show that the mixed-mode fracture test method can effectively evaluate the cracking resistance of CRM by the proposed fracture parameters. The virtual tests under three of five kinds of mixed-cracking modes have good simulation to capture the cracking behavior of CRM. The effect of notch length on the initial crack angle and the crack propagation process of the CRM is mainly related to the distribution characteristics of its meso-structure. With the increase of the proportion of Mode II cracking, the crack development path gradually deviates, and the failure elements gradually increase. At any mixed-mode level, there is an obvious linear relationship between the peak load, fracture energy, and the notch length.https://www.mdpi.com/1996-1944/14/8/1993cold recycling mixturemixed-mode fracture performancefracture parameterscracking propagationArcan test
collection DOAJ
language English
format Article
sources DOAJ
author Lei Gao
Xingkuan Deng
Ye Zhang
Xue Ji
Qiang Li
spellingShingle Lei Gao
Xingkuan Deng
Ye Zhang
Xue Ji
Qiang Li
Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method
Materials
cold recycling mixture
mixed-mode fracture performance
fracture parameters
cracking propagation
Arcan test
author_facet Lei Gao
Xingkuan Deng
Ye Zhang
Xue Ji
Qiang Li
author_sort Lei Gao
title Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method
title_short Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method
title_full Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method
title_fullStr Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method
title_full_unstemmed Fracture Parameters and Cracking Propagation of Cold Recycled Mixture Considering Material Heterogeneity Based on Extended Finite Element Method
title_sort fracture parameters and cracking propagation of cold recycled mixture considering material heterogeneity based on extended finite element method
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-04-01
description Cold recycled mixture (CRM) has been widely used around the world mainly because of its good ability to resist reflection cracking. In this study, mixed-mode cracking tests were carried out by the designed rotary test device to evaluate the cracking resistance of CRM. Through the finite element method, the heterogeneous model of CRM based on its meso-structure was established. The cracking process of CRM was simulated using the extended finite element method, and the influence of different notch lengths on its anti-cracking performance was studied. The results show that the mixed-mode fracture test method can effectively evaluate the cracking resistance of CRM by the proposed fracture parameters. The virtual tests under three of five kinds of mixed-cracking modes have good simulation to capture the cracking behavior of CRM. The effect of notch length on the initial crack angle and the crack propagation process of the CRM is mainly related to the distribution characteristics of its meso-structure. With the increase of the proportion of Mode II cracking, the crack development path gradually deviates, and the failure elements gradually increase. At any mixed-mode level, there is an obvious linear relationship between the peak load, fracture energy, and the notch length.
topic cold recycling mixture
mixed-mode fracture performance
fracture parameters
cracking propagation
Arcan test
url https://www.mdpi.com/1996-1944/14/8/1993
work_keys_str_mv AT leigao fractureparametersandcrackingpropagationofcoldrecycledmixtureconsideringmaterialheterogeneitybasedonextendedfiniteelementmethod
AT xingkuandeng fractureparametersandcrackingpropagationofcoldrecycledmixtureconsideringmaterialheterogeneitybasedonextendedfiniteelementmethod
AT yezhang fractureparametersandcrackingpropagationofcoldrecycledmixtureconsideringmaterialheterogeneitybasedonextendedfiniteelementmethod
AT xueji fractureparametersandcrackingpropagationofcoldrecycledmixtureconsideringmaterialheterogeneitybasedonextendedfiniteelementmethod
AT qiangli fractureparametersandcrackingpropagationofcoldrecycledmixtureconsideringmaterialheterogeneitybasedonextendedfiniteelementmethod
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