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首页> 外文期刊>Advanced materials interfaces >Brazed Carbon Nanotube Arrays: Decoupling Thermal Conductance and Mechanical Rigidity
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Brazed Carbon Nanotube Arrays: Decoupling Thermal Conductance and Mechanical Rigidity

机译:钎焊碳纳米管阵列:去耦导流和机械刚度

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摘要

Bonding two solids at their interface is the most effective way to achieve a mechanically robust and thermally conducting interface. However, for hightemperature applications, bonded interfaces between dissimilar materials experience high thermomechanical stress that degrades their performance in terms of cyclic stability (under thermal load) and lifetime. The present study shows that integrating a carbon nanotube (CNT) array as a stress-relief element to a traditional braze joint mitigates the adverse effects of thermomechanical stress while preserving mechanical robustness and excellent heat transfer characteristic at the interface. A substantial reduction in total thermal interface resistance is achieved (from 41 mm~2 K W~(?1) for bare CNT array to less than 3 mm~2 K W~(?1) for a CNT array integrated with braze alloy). A brazed metal/insulator interface (between Cu and quartz) with a CNT array between them exhibits low thermal interface resistance even after extreme thermal cycling whereas the same interface delaminates readily when brazed without a CNT array. The reported technique provides a promising route for substantially improving the problematic high-temperature interface, a major hindrance in achieving stable and efficient operation for systems such as thermoelectric generators that operate at elevated temperatures (above 400 °C).
机译:在其界面处粘合两个固体是实现机械稳健和导热界面的最有效方法。然而,对于高温应用,不同材料之间的粘合界面经历了高热机械应力,从而在循环稳定性(在热负荷下)和寿命方面降低了它们的性能。本研究表明,将碳纳米管(CNT)阵列作为应力消除元件集成到传统的钎焊关节中,减轻了热机械应力的不利影响,同时在界面处保持机械鲁棒性和优异的传热特性。实现总热界面电阻的大幅度降低(从41mm〜2kW〜(α1),对于与钎焊合金一体化的CNT阵列的CNT阵列小于3mm〜2kW〜(Δ1))。钎焊金属/绝缘体界面(在Cu和石英之间)在它们之间具有CNT阵列,即使在极端热循环之后也表现出低的热界面电阻,而在没有CNT阵列的情况下钎悬时,相同的接口分层。报告的技术提供了一个有希望的路线,用于大大改善有问题的高温界面,这是实现在高温下操作的稳定和有效操作的主要障碍,以实现升高的温度(400°C以上的热电发电机。

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