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首页> 外文期刊>International journal of impact engineering >Multi-layer Insulation Material Models Suitable For Hypervelocity Impact Simulations
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Multi-layer Insulation Material Models Suitable For Hypervelocity Impact Simulations

机译:适用于超高速冲击模拟的多层绝缘材料模型

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摘要

MLI (multi-layer insulation) is present in many spacecraft missions and typically consists of multiple layers of aluminized Kapton separated by fine gauze. It has been observed, depending on the type and position within the structure, that MLI can influence the ballistic performance of panels under hypervelocity impact (HVI) despite being extremely lightweight. Due to the very thin nature of the foils, <10 μm, it is often considered too computationally expensive to explicitly include such materials in HVI simulations of typical structures used in space. Accurate resolution of the foils would require a prohibitive number of elements. This paper reports on the development of a discrete modelling approach that efficiently facilitates the inclusion of such materials and allows for each layer of the MLI to be explicitly represented in the numerical model. Mesomechanical simulations of planar plate impact experiments (PPI) and an HVI event on MLI are presented where each layer of the MLI is explicitly represented with a number of elements through the thickness. The results of these models are then compared with the developed discrete approach suitable for including in larger scale simulations of impacts on real space structures. The current study applies previously developed material models to structural materials such as Carbon Fiber Reinforced Plastics (CFRP). This paper further describes simulation of an HVI event on a CFRP-Aluminum/honeycomb structure at oblique incidence, thereby illustrating that the developed approach for modelling MLI provides a practical method for the inclusion of such materials in full-scale simulations.
机译:MLI(多层绝缘)存在于许多航天器飞行任务中,通常由多层铝化的Kapton组成,并用细纱布隔开。据观察,根据结构的类型和位置,尽管MLI非常轻巧,但它仍可在超高速冲击(HVI)下影响面板的弹道性能。由于箔片的非常薄的特性(小于10μm),通常认为将此类材料显式地包含在空间中使用的典型结构的HVI模拟中在计算上过于昂贵。箔片的精确分辨率将需要大量的元素。本文报道了一种离散建模方法的发展,该方法可以有效地促进此类材料的包含,并允许在数值模型中明确表示MLI的每一层。提出了平板冲击实验(PPI)和MLI上的HVI事件的细观力学模拟,其中MLI的每一层都通过厚度明确地表示为许多元素。然后将这些模型的结果与开发的离散方法进行比较,该方法适用于对真实空间结构的影响进行大规模模拟。当前的研究将先前开发的材料模型应用于结构材料,例如碳纤维增强塑料(CFRP)。本文进一步描述了在CFRP-铝/蜂窝结构上斜向入射HVI事件的模拟,从而说明了开发的MLI建模方法提供了一种实用的方法,可以在全面模拟中包含此类材料。

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