首页> 外文会议>Asia-Pacific international symposium on aerospace technology;APISAT 2010 >Debris Protection Capability Numerical Simulation of Multi-layer Insulation
【24h】

Debris Protection Capability Numerical Simulation of Multi-layer Insulation

机译:多层隔热的防碎屑能力数值模拟

获取原文

摘要

Multi-layer insulation (MLI) is one kind of important spacecraft thermal protection structures, arranged outside surface of satellite. In this paper, based on the LS-DYNA software, the shell-type finite-element method was used to establish MLI impact model and two aspects were carried out: First, in condition of constant impact velocity, impact models of six configurations were established and simulated (2 mm aluminum plate, one stacking of MLI, two stackings of MLI, one stacking of MLI covered 2 mm aluminum plate, two stackings of MLI covered 2mm aluminum plate, one stacking of MLI placed 10 mm in front of 2 mm aluminum plate). The ballistic limit energies of those six configurations were obtained, and the debris protection capability of MLI was also evaluated by being equivalent to aluminum plate in impact kinetic energy. Second, for three kinds of structures (2 mm aluminum plate, one stacking of MLI covered 2 mm aluminum plate, one stacking of MLI placed 10 mm in the front of 2 mm aluminum plate), ballist ic limit diameters under different velocities were obtained and the ballistic limit curves of those structures were given. The results show that the debris protection capability can be improved by increasing the space between the MLI and the aluminum plate or increase the number of stacking of MLL
机译:多层绝缘(MLI)是一种重要的航天器热保护结构,布置在卫星的外表面。本文基于LS-DYNA软件,利用壳型有限元方法建立了MLI冲击模型,并从两个方面进行了研究:首先,在恒定冲击速度的条件下,建立了六种构型的冲击模型。并进行模拟(2毫米铝板,一堆MLI,两堆MLI,一堆MLI覆盖2毫米铝板,两堆MLI覆盖2毫米铝板,一堆MLI放在2毫米铝前10毫米盘子)。获得了这六种构型的弹道极限能量,并且还通过等效于铝板的冲击动能来评估了MLI的防碎屑能力。其次,对于三种结构(2毫米铝板,一叠MLI覆盖2毫米铝板,一叠MLI放置在2毫米铝板的前面),获得了不同速度下的弹道极限直径,并且给出了这些结构的弹道极限曲线。结果表明,通过增加MLI与铝板之间的间距或增加MLL的堆叠数量,可以提高碎片防护能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号