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Metallic microlattice materials: A current state of the art on manufacturing, mechanical properties and applications

机译:金属微晶格材料:制造,机械性能和应用方面的最新技术

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摘要

Metallic microlattice is a new class of material that combines useful mechanical properties of metals with smart geometrical orientations providing greater stiffness, strength-to- weight ratio and good energy absorption capacity than other types of cellular materials used in sandwich construction such as honeycomb, folded and foam. Metallic microlattices consist of micro struts stacked in different arrangements and most of the volume is occupied by air voids. Relative density and strut stacking order are the prime design variables of this ultralight material and the mechanical properties could be engineered by controlling these parameters. The base metal i.e. stainless steel, titanium alloy etc. used in producing microlattices, obviously, would affect its behavior. A number of processes are reported in literature to produce metallic microlattices, which could significantly affect its mechanical properties. This paper presents an overview of manufacturing and processing of microlattices with the corresponding mechanical properties. Current techniques adopted for modeling its structural response are discussed herein. Possible future uses of microlattices and the demonstrated use of cellular materials analogous to applications of microlattices are also explored in this paper as practical applications are yet to be demonstrated for this innovative ultralight material.
机译:金属微晶格是一类新型材料,它将金属的有用机械性能与灵巧的几何取向相结合,与夹心结构中使用的其他类型的蜂窝状材料(例如蜂窝状,折叠状和蜂窝状)相比,具有更高的刚度,强度重量比和良好的能量吸收能力。泡沫。金属微晶格由以不同排列方式堆叠的微撑杆组成,大部分体积被空隙占据。相对密度和支柱堆叠顺序是这种超轻材料的主要设计变量,并且可以通过控制这些参数来设计机械性能。显然,用于生产微晶格的贱金属即不锈钢,钛合金等会影响其性能。文献中报道了许多产生金属微晶格的方法,这些过程可能会显着影响其机械性能。本文概述了具有相应机械性能的微晶格的制造和加工。本文讨论了用于对其结构响应建模的当前技术。本文还探讨了微晶格的未来可能用途以及类似于微晶格应用的已证明的细胞材料用法,因为这种创新的超轻材料尚未得到实际应用的证明。

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