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A High Coordination of Cross-Links Is Beneficial for the Strength of Cross-Linked Fibers

机译:交联的高度协调有利于交联纤维的强度

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摘要

The influence of the coordination of (reversible) cross-links on the mechanical properties of aligned fiber bundles is investigated. Two polymeric systems containing cross-links of different coordination (two- and three-fold coordination) but having the same binding energy are investigated. In particular, the response to loading of these systems is compared. Mechanical parameters (strength, stiffness and work-to-fracture) are obtained by computational loading tests. The influence of coordination is studied for simple test systems with pre-defined topologies that maximize strength as well as for more realistic fiber bundles containing nine chains. The results show that a higher coordination of cross-links has a beneficial effect on the strength and the stiffness of the systems, while the work-to-fracture was found larger for the system having a smaller coordination of cross-links. It can be concluded that controlling the coordination of cross-links is a versatile tool to specifically tailor the mechanical properties of polymeric structures.
机译:研究了(可逆)交联的配位对排列的纤维束机械性能的影响。研究了两个包含不同配位(两重和三重配位)但具有相同结合能的交联聚合物体系。特别是,比较了这些系统对负载的响应。力学参数(强度,刚度和断裂功)通过计算载荷测试获得。对于具有最大强度的预定义拓扑的简单测试系统以及包含九个链的更实际的纤维束,研究了协调的影响。结果表明,交联的较高配位对体系的强度和刚度有有益的影响,而交联的配位较小的体系的断裂功较大。可以得出结论,控制交联的配位是一种通用工具,可以专门定制聚合物结构的机械性能。

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