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Analysis of the deformation of a perforated sheet under thermal and tension load using finite element method

机译:多孔板在热和拉力作用下的变形的有限元分析

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Two-dimensional and three-dimensional finite element methods have been used to analyze the deformation behavior of a shadow mask of perforated sheet due to thermal and tension load. The shadow mask inside the Braun tube of a TV set has numerous slits through which the electron beams are guided to land on the designed phosphor of red, green or blue. Its thermal deformation, therefore, causes mislanding of the electron beam and results in depolarization of the screen. For realistic finite element analysis, the effective thermal conductivity and the effective elastic modulus are calculated, and the shadow mask is modeled as a shell without slits. Next, transient thermal analysis of the shadow mask is performed, wherein thermal radiation is a major heat transfer mechanism. Analysis of the resulting thermal deformation follows, from which the mislanding of the electron beam is obtained. The present finite element scheme may be efficiently used for the thermal deformation design of a shadow mask and in developing prototypes of large screen flat TV.
机译:二维和三维有限元方法已被用于分析穿孔板的荫罩由于热和张力载荷而引起的变形行为。电视机的布劳恩管内部的荫罩有许多缝隙,电子束通过这些缝隙被导引到着陆的红色,绿色或蓝色荧光粉上。因此,它的热变形会引起电子束的误着陆并导致屏幕的去极化。为了进行实际的有限元分析,计算了有效的导热系数和有效的弹性模量,并将荫罩建模为没有缝隙的壳体。接下来,进行荫罩的瞬态热分析,其中热辐射是主要的热传递机制。随后分析所得的热变形,由此获得电子束的误着陆。本发明的有限元方案可以有效地用于荫罩的热变形设计和开发大屏幕平板电视的原型。

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