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首页> 外文期刊>International Journal of Heat and Mass Transfer >Water-matrix interaction at the drop-drop interface during drop-on-demand printing of hydrogels
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Water-matrix interaction at the drop-drop interface during drop-on-demand printing of hydrogels

机译:水凝胶按需滴印过程中在滴-滴界面处的水-基质相互作用

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摘要

Hydrogel-based soft materials have been used in numerous applications in healthcare, food, pharmaceutical, and cosmetic industries. Manufacturing hydrogels whose functional properties and compositions are voxelized at superior spatial resolutions can significantly improve current applications as well as will enable a new generation of soft materials. However, it remains challenging to control the structure and composition of soft materials reliably. In this context, the drop-on-demand (DOD) printing of hydrogels shows excellent potential to address this manufacturing challenge. Despite this potential, a lack of mechanistic understanding of the behavior of printed hydrogel drops makes it challenging to design and optimize DOD printing protocols for a wide variety of hydrogels. In particular, the curing of hydrogel drops, which requires dehydration of printed hydrogel drops, is poorly understood. In this study, thus, a hypothesis was postulated and tested that water-matrix interaction at drop-drop interfaces during curing processes determine the quality of hydrogels printed. Both computational and experimental studies were performed to establish a mechanism of the water-matrix interaction within printed hydrogel drops. The results were further discussed to establish a dimensionless similarity parameter that can characterize water transports during the hydrogel dehydration process.
机译:基于水凝胶的软材料已经在医疗保健,食品,制药和化妆品行业中得到了广泛的应用。以超高的空间分辨率将其功能特性和组成体素化的水凝胶的制造可以显着改善当前的应用,并可以实现新一代的软材料。然而,可靠地控制软材料的结构和组成仍然是挑战。在这种情况下,水凝胶的按需滴印(DOD)印刷显示出解决这一制造挑战的巨大潜力。尽管有这种潜力,但是对印刷的水凝胶滴的行为缺乏机械的理解,使得为各种水凝胶设计和优化DOD印刷方案具有挑战性。尤其是,对水凝胶滴的固化(其要求印刷的水凝胶滴的脱水)的了解很少。因此,在这项研究中,假设并测试了一种假设,即在固化过程中水滴与液滴界面的水-基质相互作用决定了印刷的水凝胶的质量。进行了计算和实验研究,以建立印刷的水凝胶液滴内水-基质相互作用的机制。进一步讨论了结果,以建立无量纲的相似性参数,该参数可表征水凝胶脱水过程中的水传输。

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