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首页> 外文期刊>International Journal of Solids and Structures >Modelisation of thermoelastic linear behaviour of tungsten filaments in simple and twin helical spring configurations
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Modelisation of thermoelastic linear behaviour of tungsten filaments in simple and twin helical spring configurations

机译:钨丝在简单和双螺旋弹簧构型中的热弹性线性行为建模

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摘要

By trying to increase the luminosity or the life expectancy of an incandescent lamp, an idea consists of a series of successive rolling up of the tungsten filament. This gives geometrical configurations of filaments named simple, twin, or triple helical spring, etc... In this paper, we will limit only to the cases of the simple and twin helical spring filaments. Under the combined effects of the high temperature and the stresses induced by its own weight, the filament creeps by becoming plastically deformed in a permanent and a continuously manner, until the rupture. The theoretical study of the behaviour of these filaments needs the knowledge of internal efforts distribution, deformations modes, and their evolutions. The present work consists on an elastic structural analysis which must be the first step. Since the objective is also to study the influence of the filament self-weight solicitation, the orientation (or position) with respect to gravitational direction should be taken into account. Numerical results are obtained by finite element method. They showed a negligible influence of the solicitations due to the variation of the temperature with respect to those of the self-weight, and a relative sensitivity to the position changes for the twin helical spring filament. For this later, we have developed an analytical method which is only valid in the case of a vertical position. Because of some difficulties, the comparison between the numerical and analytical results could not be carried out directly. However, the analytical approach proved to be qualitatively useful for the analysis of numerical results. (c) 2007 Elsevier Ltd. All rights reserved.
机译:通过尝试增加白炽灯的发光度或预期寿命,一个想法是由一系列连续的钨丝卷起组成。这给出了名为简单螺旋弹簧,双螺旋弹簧或三重螺旋弹簧等的细丝的几何构型。在本文中,我们将仅限于简单螺旋弹簧螺旋和双螺旋弹簧丝的情况。在高温和由其自身重量引起的应力的共同作用下,长丝通过以永久和连续的方式塑性变形直至蠕变而蠕变。这些细丝的行为的理论研究需要了解内部作用力分布,变形模式及其演化。目前的工作基于弹性结构分析,这必须是第一步。由于目的还在于研究灯丝自重吸引的影响,因此应考虑相对于重力方向的方向(或位置)。数值结果是通过有限元方法获得的。由于温度相对于自重的变化以及对双螺旋弹簧丝的位置变化的相对敏感性,它们对拉拔的影响可忽略不计。为此,我们开发了一种仅在垂直位置有效的分析方法。由于某些困难,无法直接进行数值和分析结果之间的比较。然而,事实证明,这种分析方法对于数值结果的分析在质量上是有用的。 (c)2007 Elsevier Ltd.保留所有权利。

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