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Separating viscoelasticity and poroelasticity of gels with diferent length and time scales
引用本文:Qi-Ming Wang,Anirudh C.Mohan,Michelle L.Oyen,Xuan-He Zhao. Separating viscoelasticity and poroelasticity of gels with diferent length and time scales[J]. Acta Mechanica Sinica, 2014, 30(1): 20-27. DOI: 10.1007/s10409-014-0015-z
作者姓名:Qi-Ming Wang  Anirudh C.Mohan  Michelle L.Oyen  Xuan-He Zhao
摘    要:Viscoelasticity and poroelasticity commonly coexist as time-dependent behaviors in polymer gels. Engineering applications often require knowledge of both behaviors separated; however, few methods exist to decouple viscoelastic and poroelastic properties of gels. We propose a method capable of separating viscoelasticity and poroelasticity of gels in various mechanical tests. The viscoelastic char- acteristic time and the poroelastic diffusivity of a gel define an intrinsic material length scale of the gel. The experimen- tal setup gives a sample length scale, over which the solvent migrates in the gel. By setting the sample length to be much larger or smaller than the material length, the viscoelasticity and poroelasticity of the gel will dominate at different time scales in a test. Therefore, the viscoelastic and poroelastic properties of the gel can be probed separately at different time scales of the test. We further validate the method by finite-element models and stress-relaxation experiments.

关 键 词:聚合物凝胶  孔隙弹性  时间相关  粘弹性  空间尺度  分离  弹性特性  机械性能试验

Separating viscoelasticity and poroelasticity of gels with different length and time scales
Qi-Ming Wang,Anirudh C. Mohan,Michelle L. Oyen,Xuan-He Zhao. Separating viscoelasticity and poroelasticity of gels with different length and time scales[J]. Acta Mechanica Sinica, 2014, 30(1): 20-27. DOI: 10.1007/s10409-014-0015-z
Authors:Qi-Ming Wang  Anirudh C. Mohan  Michelle L. Oyen  Xuan-He Zhao
Affiliation:1. Soft Active Materials Laboratory, Department of Mechanical Engineering and Materials Science, Duke University, Durham, NC, 27708, USA
2. Cambridge University Engineering Department, Trumpington St., CB2 1PZ, Cambridge, UK
Abstract:Viscoelasticity and poroelasticity commonly coexist as time-dependent behaviors in polymer gels. Engineering applications often require knowledge of both behaviors separated; however, few methods exist to decouple viscoelastic and poroelastic properties of gels. We propose a method capable of separating viscoelasticity and poroelasticity of gels in various mechanical tests. The viscoelastic characteristic time and the poroelastic diffusivity of a gel define an intrinsic material length scale of the gel. The experimental setup gives a sample length scale, over which the solvent migrates in the gel. By setting the sample length to be much larger or smaller than the material length, the viscoelasticity and poroelasticity of the gel will dominate at different time scales in a test. Therefore, the viscoelastic and poroelastic properties of the gel can be probed separately at different time scales of the test. We further validate the method by finite-element models and stress-relaxation experiments.  src=
Keywords:Poroviscoelasticity  Hydrogel. Tissue. Stressrelaxation test  Indentation
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