A general solution for one dimensional chemo-mechanical coupled hydrogel rod
Smart hydrogels are environmentally sensitive hydrogels, which can produce a sensitive response to external stimuli, and often exhibit the characteristics of multi filed coupling. In this paper, a hydrogel rod under chemo-mechanical coupling was analytically studied based on a poroelastical model. T...
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Veröffentlicht in: | Acta mechanica Sinica 2018-04, Vol.34 (2), p.392-399 |
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description | Smart hydrogels are environmentally sensitive hydrogels, which can produce a sensitive response to external stimuli, and often exhibit the characteristics of multi filed coupling. In this paper, a hydrogel rod under chemo-mechanical coupling was analytically studied based on a poroelastical model. The already known constitutive and governing equations were simplified into the one dimensional case, then two different boundary conditions were considered. The expressions of concentration, displacement, chemical potential and stress related to time were obtained in a series form. Examples illustrate the interaction mechanism of chemical and mechanical effect. It was found that there was a balance state in the diffusion of concentration and the diffusion process could lead to the expansion or the stress change of the hydrogel rod. |
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In this paper, a hydrogel rod under chemo-mechanical coupling was analytically studied based on a poroelastical model. The already known constitutive and governing equations were simplified into the one dimensional case, then two different boundary conditions were considered. The expressions of concentration, displacement, chemical potential and stress related to time were obtained in a series form. Examples illustrate the interaction mechanism of chemical and mechanical effect. It was found that there was a balance state in the diffusion of concentration and the diffusion process could lead to the expansion or the stress change of the hydrogel rod.</description><edition>English ed.</edition><identifier>ISSN: 0567-7718</identifier><identifier>EISSN: 1614-3116</identifier><identifier>DOI: 10.1007/s10409-017-0728-x</identifier><language>eng</language><publisher>Beijing: The Chinese Society of Theoretical and Applied Mechanics; Institute of Mechanics, Chinese Academy of Sciences</publisher><subject>Chemical potential ; Classical and Continuum Physics ; Computational Intelligence ; Coupling ; Engineering ; Engineering Fluid Dynamics ; Hydrogels ; Research Paper ; Theoretical and Applied Mechanics</subject><ispartof>Acta mechanica Sinica, 2018-04, Vol.34 (2), p.392-399</ispartof><rights>The Chinese Society of Theoretical and Applied Mechanics; Institute of Mechanics, Chinese Academy of Sciences and Springer-Verlag GmbH Germany 2017</rights><rights>Copyright Springer Science & Business Media 2018</rights><rights>Copyright © Wanfang Data Co. 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Sin</addtitle><description>Smart hydrogels are environmentally sensitive hydrogels, which can produce a sensitive response to external stimuli, and often exhibit the characteristics of multi filed coupling. In this paper, a hydrogel rod under chemo-mechanical coupling was analytically studied based on a poroelastical model. The already known constitutive and governing equations were simplified into the one dimensional case, then two different boundary conditions were considered. The expressions of concentration, displacement, chemical potential and stress related to time were obtained in a series form. Examples illustrate the interaction mechanism of chemical and mechanical effect. It was found that there was a balance state in the diffusion of concentration and the diffusion process could lead to the expansion or the stress change of the hydrogel rod.</description><subject>Chemical potential</subject><subject>Classical and Continuum Physics</subject><subject>Computational Intelligence</subject><subject>Coupling</subject><subject>Engineering</subject><subject>Engineering Fluid Dynamics</subject><subject>Hydrogels</subject><subject>Research Paper</subject><subject>Theoretical and Applied Mechanics</subject><issn>0567-7718</issn><issn>1614-3116</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><recordid>eNp1kE9Lw0AQxRdRsFY_gLeAB0-rM5tkNzmW4j8oeNHzsklm25QkW3cbbL-9WyJ48jIDb37vMTzGbhEeEEA9BoQMSg6oOChR8MMZm6HEjKeI8pzNIJeKK4XFJbsKYQuQSlQ4Y6tFsqaBvOmS4Lpx37ohsc4nbqCkaXsaQlTisd5Q73hP9cYMbX0S3LjrqEk2x8a7NXWJd801u7CmC3Tzu-fs8_npY_nKV-8vb8vFitdpVux5TmVuZJVSRsLI2gLmVUbSKisqMClaBFEZLEprbVpRqWo0uTFYpo2QZSPSObufcr_NYM2w1ls3-vhl0N3hUGkSgAXEISN5N5E7775GCvs_VEQCMglFGSmcqNq7EDxZvfNtb_xRI-hTvXqqV8d69alefYgeMXlCZIc1-b_k_00_we19ug</recordid><startdate>20180401</startdate><enddate>20180401</enddate><creator>Wang, Xing-Quan</creator><creator>Yang, Qing-Sheng</creator><general>The Chinese Society of Theoretical and Applied Mechanics; Institute of Mechanics, Chinese Academy of Sciences</general><general>Springer Nature B.V</general><general>Department of Engineering Mechanics,Beijing University of Technology,Beijing 100124,China</general><scope>AAYXX</scope><scope>CITATION</scope><scope>2B.</scope><scope>4A8</scope><scope>92I</scope><scope>93N</scope><scope>PSX</scope><scope>TCJ</scope></search><sort><creationdate>20180401</creationdate><title>A general solution for one dimensional chemo-mechanical coupled hydrogel rod</title><author>Wang, Xing-Quan ; Yang, Qing-Sheng</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c348t-5e95a6b3e4e2a6cf015b4e6f7f2b0a31f102ba189fff3be97c1a5aa193d269d23</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2018</creationdate><topic>Chemical potential</topic><topic>Classical and Continuum Physics</topic><topic>Computational Intelligence</topic><topic>Coupling</topic><topic>Engineering</topic><topic>Engineering Fluid Dynamics</topic><topic>Hydrogels</topic><topic>Research Paper</topic><topic>Theoretical and Applied Mechanics</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Wang, Xing-Quan</creatorcontrib><creatorcontrib>Yang, Qing-Sheng</creatorcontrib><collection>CrossRef</collection><collection>Wanfang Data Journals - Hong Kong</collection><collection>WANFANG Data Centre</collection><collection>Wanfang Data Journals</collection><collection>万方数据期刊 - 香港版</collection><collection>China Online Journals (COJ)</collection><collection>China Online Journals (COJ)</collection><jtitle>Acta mechanica Sinica</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Wang, Xing-Quan</au><au>Yang, Qing-Sheng</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>A general solution for one dimensional chemo-mechanical coupled hydrogel rod</atitle><jtitle>Acta mechanica Sinica</jtitle><stitle>Acta Mech. Sin</stitle><date>2018-04-01</date><risdate>2018</risdate><volume>34</volume><issue>2</issue><spage>392</spage><epage>399</epage><pages>392-399</pages><issn>0567-7718</issn><eissn>1614-3116</eissn><abstract>Smart hydrogels are environmentally sensitive hydrogels, which can produce a sensitive response to external stimuli, and often exhibit the characteristics of multi filed coupling. In this paper, a hydrogel rod under chemo-mechanical coupling was analytically studied based on a poroelastical model. The already known constitutive and governing equations were simplified into the one dimensional case, then two different boundary conditions were considered. The expressions of concentration, displacement, chemical potential and stress related to time were obtained in a series form. Examples illustrate the interaction mechanism of chemical and mechanical effect. 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subjects | Chemical potential Classical and Continuum Physics Computational Intelligence Coupling Engineering Engineering Fluid Dynamics Hydrogels Research Paper Theoretical and Applied Mechanics |
title | A general solution for one dimensional chemo-mechanical coupled hydrogel rod |
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