Keyword search (4,163 papers available)

"fatigue" Keyword-tagged Publications:

Title Authors PubMed ID
1 Trajectories of Alcohol-Related Problems Among First-Year Nursing Students: Nature, Predictors, and Outcomes Cheyroux P; Morin AJS; O' Connor RM; Colombat P; Vancappel A; Eltanoukhi R; Gillet N; 41797206
PSYCHOLOGY
2 Rubber Fatigue Revisited: A State-of-the-Art Review Expanding on Prior Works by Tee, Mars and Fatemi Wang X; Sedaghati R; Rakheja S; Shangguan W; 40219307
ENCS
3 5P Risk Classification Predicts Performance on Self-Reported but Not Objective Clinical Outcomes at 4-Weeks Post-Concussion in Children Teel E; Brossard-Racine M; Corbin-Berrigan LA; Gagnon I; 39988038
HKAP
4 Semantically-Enhanced Feature Extraction with CLIP and Transformer Networks for Driver Fatigue Detection Gao Z; Chen X; Xu J; Yu R; Zhang H; Yang J; 39771685
ENCS
5 Post-COVID-19 fatigue: the contribution of cognitive and neuropsychiatric symptoms Calabria M; García-Sánchez C; Grunden N; Pons C; Arroyo JA; Gómez-Anson B; Estévez García MDC; Belvís R; Morollón N; Vera Igual J; Mur I; Pomar V; Domingo P; 35488918
PSYCHOLOGY
6 Work Fatigue Profiles: Nature, Implications, and Associations With Psychological Empowerment. Blais AR, Gillet N, Houle SA, Comeau CA, Morin AJS 33329261
CONCORDIA
7 Kinematics and muscle activation patterns during a maximal voluntary rate activity in healthy elderly and young adults. Chadnova E, St-Onge N, Courtemanche R, Kilgour RD 27909885
PERFORM

 

Title:Rubber Fatigue Revisited: A State-of-the-Art Review Expanding on Prior Works by Tee, Mars and Fatemi
Authors:Wang XSedaghati RRakheja SShangguan W
Link:https://pubmed.ncbi.nlm.nih.gov/40219307/
DOI:10.3390/polym17070918
Publication:Polymers
Keywords:experimentfatiguelife predictionmagnetorheological elastomersrubber and elastomeric material
PMID:40219307 Category: Date Added:2025-04-13
Dept Affiliation: ENCS
1 School of Automobile and Transportation Engineering, Guangdong Polytechnic Normal University, Guangzhou 510665, China.
2 Department of Mechanical, Industrial and Aerospace, Concordia University, Montreal, QC H3G 1M8, Canada.
3 School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510641, China.

Description:

Rubber materials can endure substantial deformation while avoiding permanent damage or rupture, making them highly suitable for applications in the automotive industry and other sectors, particularly for noise and vibration reduction. However, rubber experiences degradation over time as defects or cracks appear and propagate under fluctuating loads. Therefore, it is of critical importance to prevent the failure of rubber components during service. As highlighted in prior literature surveys by Tee et al. in 2018, Mars and Fatemi in 2002 and 2004, significant research has focused on the mechanics and analysis of rubber fatigue. This body of work has grown rapidly and continues to evolve. Therefore, this study aims to compile and analyze the vast body of recent research on rubber fatigue conducted over the last decade, supplementing the reviews by Tee et al. in 2018, Mars and Fatemi in 2002 and 2004. The gathered studies were analyzed to identify current trends and emerging research gaps in the fatigue study of rubber, including advanced composite rubber materials such as magnetorheological elastomers (MREs). This review emphasizes the analysis techniques and fatigue experiments available for fatigue life prediction in rubber materials, while illustrating their practical applications in engineering analyses through specific examples.





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