首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Poroviscoelastic characterization of particle-reinforced gelatin gels using indentation and homogenization.
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Poroviscoelastic characterization of particle-reinforced gelatin gels using indentation and homogenization.

机译:使用压痕和均质化的颗粒增强明胶凝胶的多孔弹性表征。

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Hydrogels are promising materials for bioengineering applications, and are good model materials for the study of hydrated biological tissues. As these materials often have a structural function, the measurement of their mechanical properties is of fundamental importance. In the present study gelatin gels reinforced with ceramic microspheres are produced and their poroviscoelastic response in spherical indentation is studied. The constitutive responses of unreinforced gels are determined using inverse finite element modeling in combination with analytical estimates of material parameters. The behavior of composite gels is assessed by both analytical and numerical homogenization. The results of the identification of the constitutive parameters of unreinforced gels show that it is possible to obtain representative poroviscoelastic parameters by spherical indentation without the need for additional mechanical tests. The agreement between experimental results on composite gelatin and the predictions from homogenization modeling show that the adopted modeling tools are capable of providing estimates of the poroviscoelastic response of particle-reinforced hydrogels.
机译:水凝胶是用于生物工程应用的有前途的材料,并且是用于水合生物组织研究的良好模型材料。由于这些材料通常具有结构功能,因此测量其机械性能至关重要。在本研究中,制备了用陶瓷微球增强的明胶,并研究了其在球形压痕中的多孔弹性响应。未增强的凝胶的本构响应是使用逆有限元建模结合材料参数的分析估计值确定的。复合凝胶的行为通过分析和数值均化来评估。未增强凝胶的本构参数的鉴定结果表明,可以通过球形压痕获得代表性的粘弹性参数,而无需进行额外的机械测试。复合明胶的实验结果与均质化模型预测之间的一致性表明,采用的建模工具能够提供颗粒增强水凝胶的粘弹性响应的估计值。

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