Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling

The nanoindentation results of Polymethyl Methacrylate (PMMA) after hygrothermal aging under different indentation strain rates are analyzed. The influences of hygrothermal aging on its indentation size effects (ISE) and microindentation measurements are discussed. The theory of shear transformation...

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Main Authors: Hui Lin, Lin Lv, Tao Jin, Qing Yin
Format: Article
Language:English
Published: Elsevier 2021-01-01
Series:Polymer Testing
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S014294182032167X
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spelling doaj-8a85ca70860f46779479277630bda54b2021-03-18T04:31:12ZengElsevierPolymer Testing0142-94182021-01-0193106938Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modelingHui Lin0Lin Lv1Tao Jin2Qing Yin3Hangzhou Vocational & Technical College, Hangzhou, Zhejiang, 310018, China; Key Laboratory of E&M, Ministry of Education & Zhejiang Province, Zhejiang University of Technology, Hangzhou, 310014, China; Corresponding author. Hangzhou Vocational & Technical College, Hangzhou, Zhejiang, 310018, China.Hangzhou Vocational & Technical College, Hangzhou, Zhejiang, 310018, ChinaInstitute of Applied Mechanics, Taiyuan University of Technology, Taiyuan, 030024, China; State Key Laboratory for Strength and Vibration of Mechanical Structures, Xi'an Jiaotong University, Xi'an, 710049, ChinaCRRC Nanjing Puzhen Vehicle Co., Ltd., Nanjing, Jiangsu, 210000, ChinaThe nanoindentation results of Polymethyl Methacrylate (PMMA) after hygrothermal aging under different indentation strain rates are analyzed. The influences of hygrothermal aging on its indentation size effects (ISE) and microindentation measurements are discussed. The theory of shear transformation plasticity is utilized to analyze the ISE of PMMA after hygrothermal aging. The shear transformation zone (STz) sizes of PMMA under different conditions have been calculated and can be continuously described by aging time and strain rate. The characteristic deep, which represents the vanishment of ISE, is obtained and exhibits increases with strain rate and aging time. The objective measurements (i.e., elastic modulus and hardness) that represent the practical properties of the aged PMMA can be calculated: elastic modulus and hardness decrease with aging time. The effects of aging on the mechanical properties weaken with the increase with aging time, which results from the variation in the micro-mechanism. The prediction model can be constructed to explain the ISE of PMMA after hygrothermal aging through relating χ with aging time and strain rate. The proposed model agrees well with the experimental results.http://www.sciencedirect.com/science/article/pii/S014294182032167XPressure-sensitive polymerIndentation size effectsStrength differential effectsShear transformation mediated plasticityHygrothermal aging
collection DOAJ
language English
format Article
sources DOAJ
author Hui Lin
Lin Lv
Tao Jin
Qing Yin
spellingShingle Hui Lin
Lin Lv
Tao Jin
Qing Yin
Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling
Polymer Testing
Pressure-sensitive polymer
Indentation size effects
Strength differential effects
Shear transformation mediated plasticity
Hygrothermal aging
author_facet Hui Lin
Lin Lv
Tao Jin
Qing Yin
author_sort Hui Lin
title Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling
title_short Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling
title_full Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling
title_fullStr Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling
title_full_unstemmed Investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of PMMA. Part II: Analysis and modeling
title_sort investigation on the influences of hygrothermal aging on the indentation size effects and micro-indentation measurements of pmma. part ii: analysis and modeling
publisher Elsevier
series Polymer Testing
issn 0142-9418
publishDate 2021-01-01
description The nanoindentation results of Polymethyl Methacrylate (PMMA) after hygrothermal aging under different indentation strain rates are analyzed. The influences of hygrothermal aging on its indentation size effects (ISE) and microindentation measurements are discussed. The theory of shear transformation plasticity is utilized to analyze the ISE of PMMA after hygrothermal aging. The shear transformation zone (STz) sizes of PMMA under different conditions have been calculated and can be continuously described by aging time and strain rate. The characteristic deep, which represents the vanishment of ISE, is obtained and exhibits increases with strain rate and aging time. The objective measurements (i.e., elastic modulus and hardness) that represent the practical properties of the aged PMMA can be calculated: elastic modulus and hardness decrease with aging time. The effects of aging on the mechanical properties weaken with the increase with aging time, which results from the variation in the micro-mechanism. The prediction model can be constructed to explain the ISE of PMMA after hygrothermal aging through relating χ with aging time and strain rate. The proposed model agrees well with the experimental results.
topic Pressure-sensitive polymer
Indentation size effects
Strength differential effects
Shear transformation mediated plasticity
Hygrothermal aging
url http://www.sciencedirect.com/science/article/pii/S014294182032167X
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AT linlv investigationontheinfluencesofhygrothermalagingontheindentationsizeeffectsandmicroindentationmeasurementsofpmmapartiianalysisandmodeling
AT taojin investigationontheinfluencesofhygrothermalagingontheindentationsizeeffectsandmicroindentationmeasurementsofpmmapartiianalysisandmodeling
AT qingyin investigationontheinfluencesofhygrothermalagingontheindentationsizeeffectsandmicroindentationmeasurementsofpmmapartiianalysisandmodeling
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