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The quest for stiff strong and tough hybrid materials: an exhaustive exploration

机译:寻求坚硬坚固和坚韧的混合材料:详尽的探索

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摘要

How to arrange soft materials with strong but brittle reinforcements to achieve attractive combinations of stiffness, strength and toughness is an ongoing and fascinating question in engineering and biological materials science. Recent advances in topology optimization and bioinspiration have brought interesting answers to this question, but they provide only small windows into the vast design space associated with this problem. Here, we take a more global approach in which we assess the mechanical performance of thousands of possible microstructures. This exhaustive exploration gives a global picture of structure–property relationships and guarantees that global optima can be found. Landscapes of optimum solutions for different combinations of desired properties can also be created, revealing the robustness of each of the solutions. Interestingly, while some of the major hybrid designs used in engineering are absent from the set of solutions, the microstructures emerging from this process are reminiscent of materials, such as bone, nacre or spider silk.
机译:如何布置具有坚固但易碎的增强材料的软质材料,以实现刚度,强度和韧性的有吸引力的组合,这是工程和生物材料科学领域一个持续而有趣的问题。拓扑优化和生物启发方面的最新进展为该问题带来了有趣的答案,但它们仅提供了与该问题相关的广阔设计空间的小窗口。在这里,我们采用一种更全球化的方法,在其中我们评估了数千种可能的微结构的机械性能。这种详尽的探索给出了结构-财产关系的全局图,并保证可以找到全局最优值。还可以创建针对所需特性的不同组合的最佳解决方案,以揭示每种解决方案的稳健性。有趣的是,虽然解决方案集中缺少工程学中使用的一些主要混合设计,但此过程中出现的微观结构让人联想到材料,例如骨头,珍珠质或蜘蛛丝。

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