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3D lightweight double arrow-head plate-lattice auxetic structures with enhanced stiffness and energy absorption performance

机译:具有增强刚度和吸能性能的 3D 轻量化双箭头板晶格辅助结构

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摘要

In lightweight engineering, higher specific stiffness and strength for low-density are constant quests, additivelymanufactured auxetic truss-lattices have attracted great attentions due to their outstanding and designable mechanical properties. Recent advances revealed that the novel family of plate-lattices can enhance the stiffness and energy absorption capacity compared to truss-lattices. In this study, three types of novel 3D double arrowhead plate-lattice (DAPL) auxetic structures are proposed based on the polygon tessellations of 3D double arrowhead truss-lattice (DATL) structures. The compression tests are carried out on 3D printed plate-lattice structures to validate the finite element analysis and the influences of geometrical parameters on elastic constants are also investigated numerically. The results indicate that the 3D DAPL structures present auxetic behavior with enhanced stiffness, and the geometrical tessellation mode has no significant effect on specific stiffness for both 3D DATL and DAPL structures. The quasi-static crushing responses of 3D DAPL and DATL structures are studied and reveal that the plate-lattices can significantly improve the quasi-static energy absorption performances compared with truss-lattices for the same relative density. Finally, the low-velocity impact tests are performed on 3D DAPL structures and the results reveal that 3D DAPL have good impact resistance compared with other lattice structures for low densities. This paper combines the concept of plate-lattice with auxetic mechanism which will provide the guidance for the functional applications of lightweight materials.
机译:在轻量化工程中,低密度的更高比刚度和强度是不变的追求,增材制造的辅助桁架格材因其出色的可设计机械性能而备受关注。最近的进展表明,与桁架格相比,新型板格家族可以提高刚度和吸能能力。本研究基于三维双箭头桁架-晶格(DATL)结构的多边形镶嵌,提出了3种新型三维双箭头板-晶格(DAPL)辅助结构。在3D打印板晶格结构上进行了压缩测试,验证了有限元分析的有效性,并数值研究了几何参数对弹性常数的影响。结果表明,三维DAPL结构表现出增强刚度的辅助行为,几何镶嵌模式对三维DATL和DAPL结构的比刚度均无显著影响。研究了三维DAPL和DATL结构的准静态压碎响应,结果表明,在相同相对密度下,板-晶格与桁架-晶格相比,板-晶格的准静态吸能性能显著提高。最后,对三维DAPL结构进行了低速冲击试验,结果表明,与其他低密度晶格结构相比,三维DAPL具有良好的抗冲击性能。本文将板晶格的概念与辅助机理相结合,为轻量化材料的功能应用提供指导。

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