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Published in: Journal of Polymer Research 4/2024

01-04-2024 | Review paper

Investigating the effects of sequential aging temperature profiles on the response of neoprene rubber

Authors: Sharif Alazhary, Mamoon Shaafaey, Amir Bahrololoumi, Roozbeh Dargazany

Published in: Journal of Polymer Research | Issue 4/2024

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Abstract

We conducted a comprehensive investigation to understand the effects of sequential aging temperature profiles on Neoprene rubber, aiming to provide a clearer understanding of the purpose, methodology, findings, and implications of our work. Two sequential thermal aging conditions were applied to the Neoprene rubber samples in a controlled, moisture-free environment. The characterization of the aged samples included crosslinking density analysis using swelling tests, Differential Scanning Calorimetry (DSC), and uni-axial tensile tests. Our study focused on unraveling the changes in the physical and mechanical properties of the Neoprene matrix resulting from thermal aging. Notably, we found that the degradation of Neoprene was influenced by both the temperature and the order of the aging profiles. Higher temperatures led to increased cross-linking density and improved thermal stability, indicating a prevalence of oxidation cross-linking over chain scission. This led to the creation of a more compact network structure within the material. Moreover, we introduced the concept of damage capacity, which revealed that different mechanisms of damage affect the material’s toughness with varying degrees of impact. This understanding emphasizes the limited capacity for damage and subsequent mechanisms’ reliance on the remaining capacity. The significance of our work lies in shedding light on the interplay between thermal aging conditions and the behavior of Neoprene rubber. The findings provide valuable insights for material design and have implications for a range of applications.

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Literature
1.
go back to reference Kaiser S, Rabbani R, Ahmed R, Kaiser S. Temperature dependent mechanical properties of natural and synthetic rubber in practical structures. Kaiser S, Rabbani R, Ahmed R, Kaiser S. Temperature dependent mechanical properties of natural and synthetic rubber in practical structures.
2.
go back to reference Shakiba M, Darabi MK, Abu Al-Rub RK, Little DN, Masad EA. Constitutive modeling of the coupled moisture-mechanical response of particulate composite materials with application to asphalt concrete. Journal of Engineering Mechanics, 141(2):04014120, 2015. Shakiba M, Darabi MK, Abu Al-Rub RK, Little DN, Masad EA. Constitutive modeling of the coupled moisture-mechanical response of particulate composite materials with application to asphalt concrete. Journal of Engineering Mechanics, 141(2):04014120, 2015.
3.
go back to reference Ayoub G, Zaïri F, Naït-Abdelaziz M, Gloaguen JM (2010) Modelling large deformation behaviour under loading– unloading of semicrystalline polymers: application to a high density polyethylene. Int J Plasticity 26(3):329–347CrossRef Ayoub G, Zaïri F, Naït-Abdelaziz M, Gloaguen JM (2010) Modelling large deformation behaviour under loading– unloading of semicrystalline polymers: application to a high density polyethylene. Int J Plasticity 26(3):329–347CrossRef
4.
go back to reference Ayoub G, Zaïri F, Naït-Abdelaziz M, Gloaguen JM (2011) Modeling the low-cycle fatigue behavior of visco- hyperelastic elastomeric materials using a new network alteration theory: Application to styrene-butadiene rubber. Journal of the Mechanics and Physics of Solids 59(2):473–495CrossRef Ayoub G, Zaïri F, Naït-Abdelaziz M, Gloaguen JM (2011) Modeling the low-cycle fatigue behavior of visco- hyperelastic elastomeric materials using a new network alteration theory: Application to styrene-butadiene rubber. Journal of the Mechanics and Physics of Solids 59(2):473–495CrossRef
5.
go back to reference Benxiang H, Yuanbing Z, Luo M-C, Wei Y-C, Liu G-X, Liao S, Zhao Y (2021) Influence of l- quebrachitol on the properties of centrifuged natural rubber. e-Polymers 21(1):420–427CrossRef Benxiang H, Yuanbing Z, Luo M-C, Wei Y-C, Liu G-X, Liao S, Zhao Y (2021) Influence of l- quebrachitol on the properties of centrifuged natural rubber. e-Polymers 21(1):420–427CrossRef
6.
go back to reference Kim YS, Ha SC, Yang Y, Kim YJ, Cho SM, Yang H, Kim YT (2005) Portable electronic nose system based on the carbon black–polymer composite sensor array. Sensors and Actuators B: Chemical 108(1–2):285–291CrossRef Kim YS, Ha SC, Yang Y, Kim YJ, Cho SM, Yang H, Kim YT (2005) Portable electronic nose system based on the carbon black–polymer composite sensor array. Sensors and Actuators B: Chemical 108(1–2):285–291CrossRef
7.
go back to reference Hossain M, Possart G (2009) Steinmann P A finite strain framework for the simulation of polymer curing. part i: elasticity. Comput Mechan 44(5):621–630CrossRef Hossain M, Possart G (2009) Steinmann P A finite strain framework for the simulation of polymer curing. part i: elasticity. Comput Mechan 44(5):621–630CrossRef
8.
go back to reference Thermal aging coupled with cyclic fatigue in cross-linked polymers: Constitutive modeling fe implementation. Int J Solids Struct, 252:111800, 2022 Thermal aging coupled with cyclic fatigue in cross-linked polymers: Constitutive modeling fe implementation. Int J Solids Struct, 252:111800, 2022
9.
go back to reference Bahrololoumi A, Mohammadi H, Moravati V, Dargazany R (2021) A physically-based model for thermo-oxidative and hydrolytic aging of elastomers. International Journal of Mechanical Sciences, 194:106193 Bahrololoumi A, Mohammadi H, Moravati V, Dargazany R (2021) A physically-based model for thermo-oxidative and hydrolytic aging of elastomers. International Journal of Mechanical Sciences, 194:106193
10.
go back to reference Bahrololoumi A, Morovati V, Shaafaey M, Dargazany R (2021) A multi-physics approach on modeling of hygrothermal aging and its effects on constitutive behavior of cross-linked polymers. J Mechan Phys Solids 156:104614CrossRef Bahrololoumi A, Morovati V, Shaafaey M, Dargazany R (2021) A multi-physics approach on modeling of hygrothermal aging and its effects on constitutive behavior of cross-linked polymers. J Mechan Phys Solids 156:104614CrossRef
11.
go back to reference Amir B, Roozbeh D (2019) Hydrolytic aging in rubber-like materials: a micro-mechanical approach to modeling. In ASME International Mechanical Engineering Congress and Exposition, volume 59469, page V009T11A029. American Society of Mechanical Engineers Amir B, Roozbeh D (2019) Hydrolytic aging in rubber-like materials: a micro-mechanical approach to modeling. In ASME International Mechanical Engineering Congress and Exposition, volume 59469, page V009T11A029. American Society of Mechanical Engineers
12.
go back to reference Kadapa C, Hossain M (2022) A unified numerical approach for soft to hard magneto-viscoelastically coupled polymers. Mechan Mater 166:104207CrossRef Kadapa C, Hossain M (2022) A unified numerical approach for soft to hard magneto-viscoelastically coupled polymers. Mechan Mater 166:104207CrossRef
13.
go back to reference Dadgar-Rad F, Hossain M (2022) Large viscoelastic deformation of hard-magnetic soft beams. Extreme Mechan Lett 54:101773CrossRef Dadgar-Rad F, Hossain M (2022) Large viscoelastic deformation of hard-magnetic soft beams. Extreme Mechan Lett 54:101773CrossRef
14.
go back to reference Dadgar-Rad Farzam, Hossain Mokarram (2022) Finite deformation analysis of hard-magnetic soft materials based on micropolar continuum theory. Int J Solid Struc 251:111747CrossRef Dadgar-Rad Farzam, Hossain Mokarram (2022) Finite deformation analysis of hard-magnetic soft materials based on micropolar continuum theory. Int J Solid Struc 251:111747CrossRef
15.
go back to reference Zhang F, Cui S (2022) A two-component statistical model for natural rubber. Polymer 242:124462CrossRef Zhang F, Cui S (2022) A two-component statistical model for natural rubber. Polymer 242:124462CrossRef
16.
go back to reference Di L, Xue B, Cao Y, Chen B (2022) Constitutive theory for direct coupling of molecular frictions and the viscoelasticity of soft materials. J Appl Mechan 89(5):051007CrossRef Di L, Xue B, Cao Y, Chen B (2022) Constitutive theory for direct coupling of molecular frictions and the viscoelasticity of soft materials. J Appl Mechan 89(5):051007CrossRef
17.
go back to reference Morovati V, Bahrololoumi A, Dargazany R (2021) Fatigue-induced stress-softening in cross-linked multi-network elastomers: Effect of damage accumulation. Int J Plastic 142:102993CrossRef Morovati V, Bahrololoumi A, Dargazany R (2021) Fatigue-induced stress-softening in cross-linked multi-network elastomers: Effect of damage accumulation. Int J Plastic 142:102993CrossRef
18.
go back to reference Bahrololoumi A, Morovati V, Poshtan EA, Dargazany R (2020) A multi-physics constitutive model to predict hydrolytic aging in quasi-static behaviour of thin cross-linked polymers. Int J Plastic 130:102676CrossRef Bahrololoumi A, Morovati V, Poshtan EA, Dargazany R (2020) A multi-physics constitutive model to predict hydrolytic aging in quasi-static behaviour of thin cross-linked polymers. Int J Plastic 130:102676CrossRef
19.
go back to reference Shaafaey M, Bahrololoumi A, Alazhary S, Mohammadi H, Dargazany R. (2021) Experimental characterization of hygrothermal aging: Competition between thermo-oxidation and hydrolysis phenomena. In ASME International Mechanical Engineering Congress and Exposition, volume 85680, page V012T12A032. American Society of Mechanical Engineers Shaafaey M, Bahrololoumi A, Alazhary S, Mohammadi H, Dargazany R. (2021) Experimental characterization of hygrothermal aging: Competition between thermo-oxidation and hydrolysis phenomena. In ASME International Mechanical Engineering Congress and Exposition, volume 85680, page V012T12A032. American Society of Mechanical Engineers
20.
go back to reference Aranda MT, García IG, Reinoso J, Mantič V (2022) Experimental evaluation of the similarity in the interface fracture energy between pmma/epoxy/pmma and pmma/epoxy joints. Engineering Fracture Mechanics, 259:108076 Aranda MT, García IG, Reinoso J, Mantič V (2022) Experimental evaluation of the similarity in the interface fracture energy between pmma/epoxy/pmma and pmma/epoxy joints. Engineering Fracture Mechanics, 259:108076
21.
go back to reference Liu D, Ma S, Yuan H, Markert B (2022) Computational modelling of poro-visco-hyperelastic effects on time-dependent fatigue crack growth of hydrogels. Int J Plastic 155:103307CrossRef Liu D, Ma S, Yuan H, Markert B (2022) Computational modelling of poro-visco-hyperelastic effects on time-dependent fatigue crack growth of hydrogels. Int J Plastic 155:103307CrossRef
22.
go back to reference Najmeddine A, Xu Z, Liu G, Croft ZL, Liu G, Esker AR, Shakiba M. 2022 Physics and chemistry-based constitutive modeling of photo-oxidative aging in semi-crystalline polymers Int J Solids Structures 239–240 111427 Najmeddine A, Xu Z, Liu G, Croft ZL, Liu G, Esker AR, Shakiba M. 2022 Physics and chemistry-based constitutive modeling of photo-oxidative aging in semi-crystalline polymers Int J Solids Structures 239–240 111427
23.
go back to reference Shariff MHBM, Hossain M, Bustamante R, Merodio J (2021) Modelling the residually stressed magneto-electrically coupled soft elastic materials. Int J Non-Linear Mechan 137:103802CrossRef Shariff MHBM, Hossain M, Bustamante R, Merodio J (2021) Modelling the residually stressed magneto-electrically coupled soft elastic materials. Int J Non-Linear Mechan 137:103802CrossRef
24.
go back to reference Jiang Y, Jin L, Huo Y (2021) Unusual stress and strain concentration behaviors at the circular hole of a large monodomain liquid crystal elastomer sheet. J Mechan Phys Solids 156:104615CrossRef Jiang Y, Jin L, Huo Y (2021) Unusual stress and strain concentration behaviors at the circular hole of a large monodomain liquid crystal elastomer sheet. J Mechan Phys Solids 156:104615CrossRef
25.
go back to reference Yarali E, Baniasadi M, Zolfagharian A, Chavoshi M, Arefi F, Hossain M, Bastola A, Ansari M, Foyouzat A, Dabbagh A, Ebrahimi M (2022) Magneto-/ electro-responsive polymers toward manufacturing, characterization, and biomedical/ soft robotic applications Appl Mater Today 26 101306 Yarali E, Baniasadi M, Zolfagharian A, Chavoshi M, Arefi F, Hossain M, Bastola A, Ansari M, Foyouzat A, Dabbagh A, Ebrahimi M (2022) Magneto-/ electro-responsive polymers toward manufacturing, characterization, and biomedical/ soft robotic applications Appl Mater Today 26 101306
26.
go back to reference Ghaderi A, Morovati V, Dargazany R (2021) A bayesian surrogate constitutive model to estimate failure probability of elastomers. Mechan Mater 162:104044CrossRef Ghaderi A, Morovati V, Dargazany R (2021) A bayesian surrogate constitutive model to estimate failure probability of elastomers. Mechan Mater 162:104044CrossRef
27.
go back to reference Bahrololoumi A, Shaafaey M, Ayoub G, Dargazany R (2022) A failure model for damage accumulation of cross-linked polymers during parallel exposure to thermal aging & fatigue. Int J Non-Linear Mechanics, 146:104142 Bahrololoumi A, Shaafaey M, Ayoub G, Dargazany R (2022) A failure model for damage accumulation of cross-linked polymers during parallel exposure to thermal aging & fatigue. Int J Non-Linear Mechanics, 146:104142
28.
go back to reference Mohammadi H, Morovati V, Korayem AE, Poshtan E, Dargazany R (2021) Constitutive modeling of elastomers during photo- and thermo-oxidative aging. Polymer Degradation and Stability, 191:109663 Mohammadi H, Morovati V, Korayem AE, Poshtan E, Dargazany R (2021) Constitutive modeling of elastomers during photo- and thermo-oxidative aging. Polymer Degradation and Stability, 191:109663
29.
go back to reference Mohammadi H, Morovati V, Poshtan E, Dargazany R (2020) Understanding decay functions and their contribution in modeling of thermal-induced aging of cross-linked polymers. Polymer Degradation and Stability, 175:109108 Mohammadi H, Morovati V, Poshtan E, Dargazany R (2020) Understanding decay functions and their contribution in modeling of thermal-induced aging of cross-linked polymers. Polymer Degradation and Stability, 175:109108
30.
go back to reference Collins I, Hossain M, Dettmer W, Masters I (2021) Flexible membrane structures for wave energy harvesting: A review of the developments, materials and computational modelling approaches. Renew Sustain Energy Rev 151:111478CrossRef Collins I, Hossain M, Dettmer W, Masters I (2021) Flexible membrane structures for wave energy harvesting: A review of the developments, materials and computational modelling approaches. Renew Sustain Energy Rev 151:111478CrossRef
31.
go back to reference Kadapa C, Li Z, Hossain M, Wang J (2021) On the advantages of mixed formulation and higher-order elements for computational morphoelasticity. J Mechan Phys Solids 148:104289CrossRef Kadapa C, Li Z, Hossain M, Wang J (2021) On the advantages of mixed formulation and higher-order elements for computational morphoelasticity. J Mechan Phys Solids 148:104289CrossRef
32.
go back to reference Mulderrig J, Li B, Bouklas N (2021) Affine and non-affine microsphere models for chain scission in polydisperse elastomer networks. Mechan Mater 160:103857CrossRef Mulderrig J, Li B, Bouklas N (2021) Affine and non-affine microsphere models for chain scission in polydisperse elastomer networks. Mechan Mater 160:103857CrossRef
33.
go back to reference Bahrololoumi A, Ghaderi A, Shaafaey M, Dargazany R (2021) A micro-mechanical constitutive model to predict hy- grothermal aging of cross-linked polymers. In ASME International Mechanical Engineering Congress and Exposition, volume 85680, page V012T12A039. American Society of Mechanical Engineers Bahrololoumi A, Ghaderi A, Shaafaey M, Dargazany R (2021) A micro-mechanical constitutive model to predict hy- grothermal aging of cross-linked polymers. In ASME International Mechanical Engineering Congress and Exposition, volume 85680, page V012T12A039. American Society of Mechanical Engineers
34.
go back to reference Shaafaey M, Miao W, Bahrololoumi A, Nabinejad O, Dargazany R (2022) Effects of hydrolytic aging on constitutive behavior of silicone adhesives in seawater and distilled water. Experimental Mechanics, 1–24 Shaafaey M, Miao W, Bahrololoumi A, Nabinejad O, Dargazany R (2022) Effects of hydrolytic aging on constitutive behavior of silicone adhesives in seawater and distilled water. Experimental Mechanics, 1–24
35.
go back to reference Lamnii H, Nait-Abdelaziz M, Ayoub G, Gloaguen JM, Maschke U, Mansoor B (2018) Effect of uv ageing on the fatigue life of bulk polyethylene. In MATEC Web of Conferences, volume 165, page 08002. EDP Sciences Lamnii H, Nait-Abdelaziz M, Ayoub G, Gloaguen JM, Maschke U, Mansoor B (2018) Effect of uv ageing on the fatigue life of bulk polyethylene. In MATEC Web of Conferences, volume 165, page 08002. EDP Sciences
36.
go back to reference Dinari A, Zaïri F, Chaabane M, Ismail J (2021) Benameur T Thermo-oxidative stress relaxation in carbon-filled sbr. Plastics, Rubber and Composites 50(9):425–440CrossRef Dinari A, Zaïri F, Chaabane M, Ismail J (2021) Benameur T Thermo-oxidative stress relaxation in carbon-filled sbr. Plastics, Rubber and Composites 50(9):425–440CrossRef
37.
go back to reference Alazhary S, Shaafaey M, Mohammadi H, Dargazany R (2023) Investigation of thermo-oxidative aging of silicone-based adhesives: substantiating separability between environmental and mechanical damages. J Polymer Res, 30(1):1–14 Alazhary S, Shaafaey M, Mohammadi H, Dargazany R (2023) Investigation of thermo-oxidative aging of silicone-based adhesives: substantiating separability between environmental and mechanical damages. J Polymer Res, 30(1):1–14
38.
go back to reference Ghaderi A, Morovati V, Bahrololoumi A, Dargazany RA (2020) A physics-informed neural network constitutive model for cross-linked polymers. In ASME International Mechanical Engineering Congress and Exposition, volume 84607, page V012T12A007. American Society of Mechanical Engineers Ghaderi A, Morovati V, Bahrololoumi A, Dargazany RA (2020) A physics-informed neural network constitutive model for cross-linked polymers. In ASME International Mechanical Engineering Congress and Exposition, volume 84607, page V012T12A007. American Society of Mechanical Engineers
39.
go back to reference Rodriguez AK, Mansoor B, Ayoub G, Colin X, Benzerga AA (2020) Effect of uv-aging on the mechanical and fracture behavior of low density polyethylene. Polymer Degrad Stab 180:109185CrossRef Rodriguez AK, Mansoor B, Ayoub G, Colin X, Benzerga AA (2020) Effect of uv-aging on the mechanical and fracture behavior of low density polyethylene. Polymer Degrad Stab 180:109185CrossRef
40.
go back to reference Rezig N, Bellahcene T, Aberkane M, Nait AM (2020) Thermo-oxidative ageing of a sbr rubber: Effects on mechanical and chemical properties. J Polymer Res 27(11):1–13CrossRef Rezig N, Bellahcene T, Aberkane M, Nait AM (2020) Thermo-oxidative ageing of a sbr rubber: Effects on mechanical and chemical properties. J Polymer Res 27(11):1–13CrossRef
41.
go back to reference Patel M, Soames M, Skinner AR (2004) Stephens TS Stress relaxation and thermogravimetric studies on room temperature vulcanised polysiloxane rubbers. Polymer Degrad Stab 83(1):111–116CrossRef Patel M, Soames M, Skinner AR (2004) Stephens TS Stress relaxation and thermogravimetric studies on room temperature vulcanised polysiloxane rubbers. Polymer Degrad Stab 83(1):111–116CrossRef
42.
go back to reference Celina MC (2013) Review of polymer oxidation and its relationship with materials performance and lifetime prediction. Polymer Degrad Stab 98(12):2419–2429CrossRef Celina MC (2013) Review of polymer oxidation and its relationship with materials performance and lifetime prediction. Polymer Degrad Stab 98(12):2419–2429CrossRef
43.
go back to reference Gillen KT, Celina M (2018) Predicting polymer degradation and mechanical property changes for combined radiation-thermal aging environments. Rubber Chem Technol 91(1):27–63CrossRef Gillen KT, Celina M (2018) Predicting polymer degradation and mechanical property changes for combined radiation-thermal aging environments. Rubber Chem Technol 91(1):27–63CrossRef
44.
go back to reference Ghazavi M, Abdollahi SF, Kutay ME (2022) Implementation of nchrp 9-44a fatigue endurance limit prediction model in mechanistic-empirical asphalt pavement analysis web application. Transportation Research Record, page 03611981221076114 Ghazavi M, Abdollahi SF, Kutay ME (2022) Implementation of nchrp 9-44a fatigue endurance limit prediction model in mechanistic-empirical asphalt pavement analysis web application. Transportation Research Record, page 03611981221076114
45.
go back to reference Abdelaziz MN, Ayoub G, Colin X, Benhassine M, Mouwakeh M (2019) New developments in fracture of rubbers: Predictive tools and influence of thermal aging. International Journal of Solids and Structures, 165:127–136 Abdelaziz MN, Ayoub G, Colin X, Benhassine M, Mouwakeh M (2019) New developments in fracture of rubbers: Predictive tools and influence of thermal aging. International Journal of Solids and Structures, 165:127–136
46.
go back to reference Starkova O, Gagani AI, Karl CW, Rocha IB, Burlakovs J, Krauklis AE (2022) Modelling of environmental ageing of polymers and polymer compositesmdash;durability prediction methods. Polymers 14(5) Starkova O, Gagani AI, Karl CW, Rocha IB, Burlakovs J, Krauklis AE (2022) Modelling of environmental ageing of polymers and polymer compositesmdash;durability prediction methods. Polymers 14(5)
47.
go back to reference Frigione M (2022) Assessment of the ageing and durability of polymers. Polymers 14(10) Frigione M (2022) Assessment of the ageing and durability of polymers. Polymers 14(10)
48.
go back to reference Krauklis AE, Karl CW, Rocha IB, Burlakovs J, Ozola-Davidane R, Gagani AI, Starkova O (2022) Modelling of environmental ageing of polymers and polymer compositesmdash;modular and multiscale methods. Polymers, 14(1) Krauklis AE, Karl CW, Rocha IB, Burlakovs J, Ozola-Davidane R, Gagani AI, Starkova O (2022) Modelling of environmental ageing of polymers and polymer compositesmdash;modular and multiscale methods. Polymers, 14(1)
49.
go back to reference Bahrololoumi A, Mohammadi H, Morovati V, Dargazany R (2020) A modified network alteration model to predict quasi- static behavior of the cross-linked polymers during hydrolytic aging. In ASME International Mechanical Engineering Congress and Exposi- tion, volume 84607, page V012T12A005. American Society of Mechanical Engineers Bahrololoumi A, Mohammadi H, Morovati V, Dargazany R (2020) A modified network alteration model to predict quasi- static behavior of the cross-linked polymers during hydrolytic aging. In ASME International Mechanical Engineering Congress and Exposi- tion, volume 84607, page V012T12A005. American Society of Mechanical Engineers
50.
go back to reference Shaafaey M, Bahrololoumi A, Mohammadi H, Alazhary S, Dargazany R (2021) Investigation of hygrothermal aging on the polyurethane-based (pub) adhesive: substantiating competition scenario between sub-aging thermo-oxidation and hydrolytic phenomena. J Polymer Res 28(12):1–25CrossRef Shaafaey M, Bahrololoumi A, Mohammadi H, Alazhary S, Dargazany R (2021) Investigation of hygrothermal aging on the polyurethane-based (pub) adhesive: substantiating competition scenario between sub-aging thermo-oxidation and hydrolytic phenomena. J Polymer Res 28(12):1–25CrossRef
51.
go back to reference Rey T, Chagnon G, Le Cam JB, Favier D (2013) Influence of the temperature on the mechanical behaviour of filled and unfilled silicone rubbers. Polymer Testing 32(3):492–501CrossRef Rey T, Chagnon G, Le Cam JB, Favier D (2013) Influence of the temperature on the mechanical behaviour of filled and unfilled silicone rubbers. Polymer Testing 32(3):492–501CrossRef
52.
go back to reference Labouriau A, Robison T, Meincke L, Wrobleski D, Taylor D, Gill J (2015) Aging mechanisms in rtv polysiloxane foams. Polymer Degrad Stab 121:60–68CrossRef Labouriau A, Robison T, Meincke L, Wrobleski D, Taylor D, Gill J (2015) Aging mechanisms in rtv polysiloxane foams. Polymer Degrad Stab 121:60–68CrossRef
53.
go back to reference Ghaderi A, Morovati V, Chen Y, Dargazany R (2022) A physics-informed multi-agents model to predict thermo- oxidative/hydrolytic aging of elastomers. International Journal of Mechanical Sciences, 223:107236 Ghaderi A, Morovati V, Chen Y, Dargazany R (2022) A physics-informed multi-agents model to predict thermo- oxidative/hydrolytic aging of elastomers. International Journal of Mechanical Sciences, 223:107236
54.
go back to reference Wang M, Wang R, Chen X, Kong Y, Huang Y, Lv Y, Li G (2022) Effectof non-rubber components on the crosslinking structure and thermo-oxidative degradation of natural rubber. Polymer Degradation and Stability, 196:109845 Wang M, Wang R, Chen X, Kong Y, Huang Y, Lv Y, Li G (2022) Effectof non-rubber components on the crosslinking structure and thermo-oxidative degradation of natural rubber. Polymer Degradation and Stability, 196:109845
55.
go back to reference Chaabane M, Ding N, Zaïri F (2021) An approach to assess the thermal aging effects on the coupling between inelasticity and network alteration in filled rubbers. Int J Non-Linear Mechan 136:103783CrossRef Chaabane M, Ding N, Zaïri F (2021) An approach to assess the thermal aging effects on the coupling between inelasticity and network alteration in filled rubbers. Int J Non-Linear Mechan 136:103783CrossRef
56.
go back to reference Payungwong N, Tuampoemsab S, Rojruthai P, Sakdapipanich J (2021) The role of model fatty acid and protein on thermal aging and ozone resistance of peroxide vulcanized natural rubber. J Rubber Res 24(4):543–553CrossRef Payungwong N, Tuampoemsab S, Rojruthai P, Sakdapipanich J (2021) The role of model fatty acid and protein on thermal aging and ozone resistance of peroxide vulcanized natural rubber. J Rubber Res 24(4):543–553CrossRef
57.
go back to reference Zaghdoudi M, Kömmling A, Jaunich M, Wolff D (2020) Erroneous or arrhenius: A degradation rate-based model for epdm during homogeneous ageing. Polymers, 12(9) Zaghdoudi M, Kömmling A, Jaunich M, Wolff D (2020) Erroneous or arrhenius: A degradation rate-based model for epdm during homogeneous ageing. Polymers, 12(9)
58.
go back to reference Tsai M-H, Ouyang H, Yang F, Wei M-K, Lee S (2022) Effects of ultraviolet irradiation on the aging of the blends of poly (lactic acid) and poly (methyl methacrylate). Polymer 252:124947CrossRef Tsai M-H, Ouyang H, Yang F, Wei M-K, Lee S (2022) Effects of ultraviolet irradiation on the aging of the blends of poly (lactic acid) and poly (methyl methacrylate). Polymer 252:124947CrossRef
59.
go back to reference Celina MC (2013) Review of polymer oxidation and its relationship with materials performance and lifetime prediction. Polymer Degrad Stab 98(12):2419–2429CrossRef Celina MC (2013) Review of polymer oxidation and its relationship with materials performance and lifetime prediction. Polymer Degrad Stab 98(12):2419–2429CrossRef
60.
go back to reference Courvoisier E, Bicaba Y, Colin X (2018) Multi-scale and multi-technique analysis of the thermal degradation of poly (ether ether ketone). Polymer Degrad Stab 151:65–79CrossRef Courvoisier E, Bicaba Y, Colin X (2018) Multi-scale and multi-technique analysis of the thermal degradation of poly (ether ether ketone). Polymer Degrad Stab 151:65–79CrossRef
61.
go back to reference Fayolle B, Richaud E, Colin X, Verdu J (2008) Degradation-induced embrittlement in semi-crystalline polymers having their amorphous phase in rubbery state. J Mater Sci 43:6999–7012CrossRef Fayolle B, Richaud E, Colin X, Verdu J (2008) Degradation-induced embrittlement in semi-crystalline polymers having their amorphous phase in rubbery state. J Mater Sci 43:6999–7012CrossRef
62.
go back to reference Li H, Li J, Ma Y, Yan Q, Ouyang B (2018) The role of thermo-oxidative aging at different temperatures on the crystal structure of crosslinked polyethylene. J Mater Sci: Mater Electron 29(5):3696–3703 Li H, Li J, Ma Y, Yan Q, Ouyang B (2018) The role of thermo-oxidative aging at different temperatures on the crystal structure of crosslinked polyethylene. J Mater Sci: Mater Electron 29(5):3696–3703
63.
go back to reference Liu Q, Shi W, Li K, Chen Z, Liu H (2019) Performance degradation prediction and reliability evaluation of rubber aging in natural environment under alternating cyclic thermal load. IEEE Access 7:63027–63035CrossRef Liu Q, Shi W, Li K, Chen Z, Liu H (2019) Performance degradation prediction and reliability evaluation of rubber aging in natural environment under alternating cyclic thermal load. IEEE Access 7:63027–63035CrossRef
64.
go back to reference Zhuo WY, Wang QL, Li G, Yang G, Zhang H, Xu W, Niu YH, Li GX (2022) Detection of the destruction mechanism of perfluorinated elastomer (ffkm) network under thermo-oxidative aging conditions. Chinese Journal of Polymer Science, p. 1–11, Zhuo WY, Wang QL, Li G, Yang G, Zhang H, Xu W, Niu YH, Li GX (2022) Detection of the destruction mechanism of perfluorinated elastomer (ffkm) network under thermo-oxidative aging conditions. Chinese Journal of Polymer Science, p. 1–11,
65.
go back to reference Arhant M, Lolive E, Bonnemains T, Davies P (2022) A study of pure hydrolysis of carbon fibre reinforced polyamide 6 composites tested under mode i loading. Composites Part A: Appl Sci Manufact 152:106719CrossRef Arhant M, Lolive E, Bonnemains T, Davies P (2022) A study of pure hydrolysis of carbon fibre reinforced polyamide 6 composites tested under mode i loading. Composites Part A: Appl Sci Manufact 152:106719CrossRef
66.
go back to reference Braun CA, Nam SL, de la Mata AP, Harynuk J, Chung HJ (2022) Dolez PI Hydrother- mal aging of polyimide film. J Appl Polymer Sci 139(20):52183CrossRef Braun CA, Nam SL, de la Mata AP, Harynuk J, Chung HJ (2022) Dolez PI Hydrother- mal aging of polyimide film. J Appl Polymer Sci 139(20):52183CrossRef
67.
go back to reference Celina M, Gillen KT, Assink RA (2005) Accelerated aging and lifetime prediction: Review of non-arrhenius behaviour due to two competing processes. Polymer Degrad Stab 90(3):395–404CrossRef Celina M, Gillen KT, Assink RA (2005) Accelerated aging and lifetime prediction: Review of non-arrhenius behaviour due to two competing processes. Polymer Degrad Stab 90(3):395–404CrossRef
68.
go back to reference Shaw JA, Jones AS, Wineman AS (2005) Chemorheological response of elastomers at elevated temperatures: Experiments and simulations. J Mechan Phys Solids 53(12):2758–2793CrossRef Shaw JA, Jones AS, Wineman AS (2005) Chemorheological response of elastomers at elevated temperatures: Experiments and simulations. J Mechan Phys Solids 53(12):2758–2793CrossRef
69.
go back to reference Zhang W, Liu X, Wang J, Tang J, Hu J, Lu T, Suo Z (2018) Fatigue of double-network hydrogels. Engi- neering Fracture Mechanics, 187:74–93. SI: 50th Anniversary Issue Zhang W, Liu X, Wang J, Tang J, Hu J, Lu T, Suo Z (2018) Fatigue of double-network hydrogels. Engi- neering Fracture Mechanics, 187:74–93. SI: 50th Anniversary Issue
70.
go back to reference Morovati V, Ghaderi A, Dargazany R (2020) Data-driven constitutive modeling of the progressive softening in elastomeric gels with interpenetrating networks. In ASME International Mechanical Engineering Congress and Exposition, volume 84607, page V012T12A043. American Society of Mechanical Engineers Morovati V, Ghaderi A, Dargazany R (2020) Data-driven constitutive modeling of the progressive softening in elastomeric gels with interpenetrating networks. In ASME International Mechanical Engineering Congress and Exposition, volume 84607, page V012T12A043. American Society of Mechanical Engineers
71.
go back to reference Klüppel M, Jungk J (2022) Thermo-oxidative aging and mechanical fatigue of elastomer compounds used in various fields of rubber industry. Springer Klüppel M, Jungk J (2022) Thermo-oxidative aging and mechanical fatigue of elastomer compounds used in various fields of rubber industry. Springer
72.
go back to reference Mao Y, Talamini B, Anand L (2017) Rupture of polymers by chain scission. Extreme Mechan Lett 13:17–24CrossRef Mao Y, Talamini B, Anand L (2017) Rupture of polymers by chain scission. Extreme Mechan Lett 13:17–24CrossRef
73.
go back to reference Talamini B, Mao Y, Anand L (2018) Progressive damage and rupture in polymers. J Mechan Phys Solids 111:434–457CrossRef Talamini B, Mao Y, Anand L (2018) Progressive damage and rupture in polymers. J Mechan Phys Solids 111:434–457CrossRef
74.
go back to reference Zhao Z, Lei H, Chen H-S, Zhang Q, Wang P, Lei M (2021) A multiscale tensile failure model for double network elastomer composites. Mechan Mater 163:104074CrossRef Zhao Z, Lei H, Chen H-S, Zhang Q, Wang P, Lei M (2021) A multiscale tensile failure model for double network elastomer composites. Mechan Mater 163:104074CrossRef
75.
go back to reference Lei M, Ren S, Wang S, Zhao Z, Xiao J, Wen L, Hou X (2022) A multiscale analysis framework for formation and failure of the thermoplastic interface. Mechan Mater 168:104270CrossRef Lei M, Ren S, Wang S, Zhao Z, Xiao J, Wen L, Hou X (2022) A multiscale analysis framework for formation and failure of the thermoplastic interface. Mechan Mater 168:104270CrossRef
76.
go back to reference Flory PJ, Rehner J Jr (1943) Statistical mechanics of cross-linked polymer networks i. rubberlike elasticity. J Chem Phys 11(11):512–520CrossRef Flory PJ, Rehner J Jr (1943) Statistical mechanics of cross-linked polymer networks i. rubberlike elasticity. J Chem Phys 11(11):512–520CrossRef
77.
go back to reference Dismukes JP, Ekstrom L, Paff RJ (1964) Lattice parameter and density in germanium-silicon alloys1. J Phys Chem 68(10):3021–3027CrossRef Dismukes JP, Ekstrom L, Paff RJ (1964) Lattice parameter and density in germanium-silicon alloys1. J Phys Chem 68(10):3021–3027CrossRef
78.
go back to reference Vryonis O, Virtanen ST, Andritsch T, Vaughan AS, Lewin PL (2019) Understanding the cross-linking reactions in highly oxidized graphene/epoxy nanocomposite systems. J Mater Sci 54(4):3035–3051CrossRef Vryonis O, Virtanen ST, Andritsch T, Vaughan AS, Lewin PL (2019) Understanding the cross-linking reactions in highly oxidized graphene/epoxy nanocomposite systems. J Mater Sci 54(4):3035–3051CrossRef
79.
80.
go back to reference Alcock B, Jørgensen JK (2015) The mechanical properties of a model hydrogenated nitrile butadiene rubber (hnbr) following simulated sweet oil exposure at elevated temperature and pressure. Polymer Testing 46:50–58CrossRef Alcock B, Jørgensen JK (2015) The mechanical properties of a model hydrogenated nitrile butadiene rubber (hnbr) following simulated sweet oil exposure at elevated temperature and pressure. Polymer Testing 46:50–58CrossRef
Metadata
Title
Investigating the effects of sequential aging temperature profiles on the response of neoprene rubber
Authors
Sharif Alazhary
Mamoon Shaafaey
Amir Bahrololoumi
Roozbeh Dargazany
Publication date
01-04-2024
Publisher
Springer Netherlands
Published in
Journal of Polymer Research / Issue 4/2024
Print ISSN: 1022-9760
Electronic ISSN: 1572-8935
DOI
https://doi.org/10.1007/s10965-024-03910-y

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