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TWO-PHASE THERMAL METAMATERIAL

机译:两相热超材料

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摘要

The capability of thermal metamaterials is required from single function to multifunction under different external heat conditions. The methods to develop thermal materials by simple structural transformations have been explored. While, the components of traditional thermal metamaterial are mainly set as solid materials, which is difficult to change the composition of materials, such as recombing and fixing the spatial position of material, because of material rigidity. Therefore, the potential of thermal materials is limited. Liquid has fluidity in spatial structure, for which the efficient combination of solid-liquid materials provides an avenue for dynamically modeling thermal field.Herein, we propose the concept of two-phase thermal metamaterial, which is switchable by microscale elements. On one side, we develop a switchable thermal meta-unit manipulated by micro-element under the gradient field and explore the process of heat transfer by focusing on radiation and conduction under translucent media condition. Otherwise, we propose a method to achieve a non-reciprocal heat transfer system by the design of two-phase media. The propose of two-phase thermal metamaterials set a general background for a variety of applications for complex conditions.
机译:在不同的外部热量条件下,单一功能需要热超材料的能力。探讨了通过简单的结构转换开发热材料的方法。虽然,传统的热超材料的组件主要被设定为固体材料,这难以改变材料的组成,例如重组和固定材料的空间位置,因为材料刚性。因此,热材料的电位受到限制。液体具有在空间结构,为此,固 - 液材料的有效的组合提供了一种用于动态建模热field.Herein的途径流动性,我们提出了两相热超材料,其是由微尺度元件切换的概念。在一侧上,我们开发了一个可切换的热元单元中的梯度场下由微元件操纵和通过专注于辐射和传导半透明介质的条件下探索传热过程。否则,我们提出了一种通过两相介质的设计实现非互易传热系统的方法。两相热超材料的提法为复杂条件的各种应用设定了一般背景。

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