作者:Xing Gaoa, PiotrKus′mierczykb, ZhijunShic, ChangqingLiua, GuangYangc, Igor Sevostianovd, VadimV.Silb
关键字:Bacterial cellulosehydrogel Rheology, Fraction-exponentialoperators, Stress-relaxation test, Time-dependent behaviour
论文来源:期刊
具体来源:ScienceDirect
发表时间:2016年
	Biological hydrogels,e.g.bacterialcellulose(BC)hydrogel,attractedincreasinginterestin
	recent decadessincetheyshowagoodpotentialforbiomedicalengineeringasreplace-
	ments ofrealtissuesthanksmainlytotheirgoodbiocompatibilityand fibrous structure.To
	select potentialcandidatesforsuchapplications,acomprehensiveunderstandingoftheir
	performance underapplication-relevantconditionsisneeded.Mosthydrogelsdemon-
	strate time-dependentbehaviourduetothecontributionoftheirliquidphaseand
	reorientation of fibres inaprocessoftheirdeformation.Toquantifysuchtime-
	dependent behaviouriscrucialduetotheirexposuretocomplicatedloadingconditions
	in bodyenvironment.Somehydrogel-basedbiomaterialswithamulti-layered fibrous
	structure demonstrateapromiseasartificial skinandbloodvessels.Tocharacteriseand
	model time-dependentbehaviourofthesemulti-layeredhydrogelsalongtheirthrough-
	thickness directionistherebyofvitalimportance.Hence,aholisticstudycombining
	mechanical testingandmicro-morphologicalobservationsofBChydrogelwithanalytical
	modelling ofitsrelaxationbehaviourbasedonfraction-exponentialoperatorswas
	performed. Theresultsshowagoodpotentialtouseafraction-exponentialmodelto
	describe suchbehaviourofmulti-layeredhydrogels,especiallyatstagesofstressdecayat
	low forcesandofstressequilibriumathighforces.