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Fiber reinforced hydrogel composite assembly

机译:纤维增强水凝胶复合组件

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This research work started with the development of a robotic system that mimics the process of spider web formation. The robotic system is able to convert small samples of biopolymer or synthetic polymer solution into 3D patterned non-woven structure. Fiber obtained from this system varies from sub micron diameter to 25 micron diameter depending upon the spinning process (dry spinning or wet spinning). The system is now being used to deposit fibers onto surfaces or into gels in order to build webs or fiber-reinforced hydrogel assembly. Currently we are using this approach to mimic the soft tissue structures such as cartilage or vertebral disc. For the matrix we are using epoxy-amine based hydrogel assembly. The fibrous 3D structure is used as reinforced to enhance the mechanical properties of hydrogel and also helps in controlling the swellability. In order to understand the hydrogel-fiber composite assembly, we have formulated various epoxy-amine gels which can be design from completely hydrophobic in nature to hydrophilic gel having swellability upto or more than 500% in water.
机译:这项研究工作始于模仿蜘蛛网形成过程的机器人系统的开发。机器人系统能够将少量的生物聚合物或合成聚合物溶液样品转换为3D图案非织造结构。根据纺丝工艺(干法纺丝或湿法纺丝),从该系统获得的纤维直径从亚微米到25微米不等。该系统现在用于将纤维沉积到表面或凝胶上,以构建纤维网或纤维增强的水凝胶组件。当前,我们正在使用这种方法来模仿诸如软骨或椎间盘的软组织结构。对于基质,我们使用基于环氧胺的水凝胶组件。纤维状3D结构被用作增强材料以增强水凝胶的机械性能,并且还有助于控制可溶胀性。为了理解水凝胶-纤维复合材料组件,我们配制了各种环氧-胺凝胶,可以设计为从本质上是完全疏水性的到在水中具有高达500%或以上的溶胀性的亲水性凝胶。

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