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Compression fatigue and stress relaxation properties of single network polyacrylamide hydrogels

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dc.contributor.author Udayanandana, R
dc.contributor.author Silva, P
dc.date.accessioned 2019-08-30T04:57:30Z
dc.date.available 2019-08-30T04:57:30Z
dc.identifier.uri http://dl.lib.mrt.ac.lk/handle/123/14914
dc.description.abstract Double-network hydrogels of different chemical compositions have been developed in recent years for specific load-bearing applications such as tissue engineering, soft robots, and stretchable electronics. The broader commercial applications of these hydrogels have been limited by high manufacturing cost and complex synthesis processes. Single network hydrogels have a potential advantage when compared to the complexity and cost of synthesis processes, although their performance and limitations under different loading conditions have not been investigated thoroughly. This paper presents the limitations of single network polyacrylamide based hydrogel on compression fatigue, stress relaxation and creep properties. Single network polyacrylamide hydrogel was selected as model material due to simple processing and availability. The optimized formulation of hydrogel was used for sample preparation. Better pressure relieving property of hydrogel was observed by stress relaxation and creep properties of the hydrogel. Developed hydrogel displayed good fatigue properties up to 13,000 loading cycle at maximum stress of 520±50 kPa and 200 mm/min crosshead speed. en_US
dc.language.iso en en_US
dc.subject Single network polyacrylamide hydrogels en_US
dc.subject Ccompression fatigue en_US
dc.subject Stress relaxation en_US
dc.subject Creep en_US
dc.title Compression fatigue and stress relaxation properties of single network polyacrylamide hydrogels en_US
dc.type Conference-Abstract en_US
dc.identifier.faculty Engineering en_US
dc.identifier.department Department of Electronic and Telecommunication Engineeriong en_US
dc.identifier.year 2019 en_US
dc.identifier.conference Moratuwa Engineering Research Conference - MERCon 2019 en_US
dc.identifier.place Moraruwa, Sri Lanka en_US


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