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Effect of geometrical parameters on the effective elastic modulus for an X-type lattice truss panel structure

机译:几何参数对X型晶格桁架面板结构有效弹性模量的影响

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The lattice truss panel structure (LTPS), which is a high strength material with high efficiency of heat transfer, has a good potential to be used as compact heat exchanger. The core of LTPS is a periodic porous structure, and the effective elastic modulus (EEM) will be different from the base material. It is essential to calculate the EEM for the design of this type of heat exchanger. This paper presents a study on the EEM of X-type LTPS by homogenization method, which has been verified by finite element method (FEM). It reveals that the effects of seven geometrical parameters of the X-type LTPS on EEM are not identical, and the relationship between the seven parameters and EEM has been established. Results calculated by homogenization method and FEM show a good agreement. The EEM decreases with the increase of truss length, stamping angle, shearing angle and node length, while it increases with the increase of truss width, truss thickness and face sheet thickness. Unlike the conventional foam material, there is no clear correlation between the EEM and the relative density, and a formula has been fitted to calculate the EEM of LTPS.
机译:格子桁架面板结构(LTPS)是一种具有高传热效率的高强度材料,具有用作紧凑型热交换器的良好潜力。 LTPS的核心是周期性的多孔结构,有效弹性模量(EEM)与基材不同。对于此类热交换器的设计,计算EEM至关重要。本文通过均质化方法对X型LTPS的EEM进行了研究,并已通过有限元方法(FEM)进行了验证。结果表明,X型LTPS的七个几何参数对EEM的影响并不相同,并且已经建立了这七个参数与EEM之间的关系。均质法和有限元法计算结果吻合良好。 EEM随桁架长度,冲压角,剪切角和节点长度的增加而减小,而随桁架宽度,桁架厚度和面板厚度的增加而增大。与传统的泡沫材料不同,EEM与相对密度之间没有明确的相关性,并且已采用公式来计算LTPS的EEM。

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