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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Inserts thermal coupling analysis in hexagonal honeycomb plates used for satellite structural design
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Inserts thermal coupling analysis in hexagonal honeycomb plates used for satellite structural design

机译:在用于卫星结构设计的六角形蜂窝板中插入热耦合分析

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摘要

Mechanical joints and fasteners are essential elements in joining structural components in mechanical systems. The thermal coupling effect between the adjacent inserts depends to a great extent on the thermal properties of the inserts and the clearance. In this paper the Finite-Element Method (FEM) has been employed to study the insert thermal coupling behaviour of the hexagonal honeycomb panel. Fully coupled thermal analysis was conducted in order to predict thermal coupling phenomena caused by the adjacent inserts under extreme thermal loading conditions. Detailed finite elements models for a honeycomb panel are developed in this study including the insert joints. New approach of the adhesive joint is modelled. Thermal simulations showed that the adjacent inserts cause thermal interference and the adjacent inserts are highly sensitive to the effect of high temperatures. The clearance and thermal interference between the adjacent inserts have an important influence on the satellite equipments (such as the electronics box), which can cause the satellite equipments failures. The results of the model presented in this analysis are significant in the preliminary satellites structural dimensioning which present an effective approach of development by reducing the cost and the time of analysis.
机译:机械接头和紧固件是在机械系统中连接结构部件的基本要素。相邻刀片之间的热耦合效应在很大程度上取决于刀片的热性能和间隙。在本文中,有限元方法(FEM)已被用于研究六角形蜂窝板的嵌件热耦合行为。进行了完全耦合的热分析,以便预测在极端热负荷条件下相邻刀片引起的热耦合现象。在这项研究中开发了蜂窝板的详细有限元模型,包括插入接头。对胶接的新方法进行了建模。热模拟表明,相邻的刀片会产生热干扰,并且相邻的刀片对高温的影响高度敏感。相邻插件之间的间隙和热干扰对卫星设备(例如电子箱)有重要影响,这可能会导致卫星设备故障。在此分析中提出的模型的结果在初步卫星结构尺寸确定中具有重要意义,这些结构尺寸通过减少分析成本和时间提供了一种有效的开发方法。

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