Dual Graded Lattice Structures: Generation Framework and Mechanical Properties Characterization

格子(音乐) 材料科学 晶体结构 微观结构 几何学 复合材料 数学 结晶学 物理 化学 声学
作者
Khaled G. Mostafa,Guilherme A. Momesso,Xiuhui Li,David S. Nobes,Ahmed Jawad Qureshi
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:13 (9): 1528-1528 被引量:29
标识
DOI:10.3390/polym13091528
摘要

Additive manufacturing (AM) enables the production of complex structured parts with tailored properties. Instead of manufacturing parts as fully solid, they can be infilled with lattice structures to optimize mechanical, thermal, and other functional properties. A lattice structure is formed by the repetition of a particular unit cell based on a defined pattern. The unit cell’s geometry, relative density, and size dictate the lattice structure’s properties. Where certain domains of the part require denser infill compared to other domains, the functionally graded lattice structure allows for further part optimization. This manuscript consists of two main sections. In the first section, we discussed the dual graded lattice structure (DGLS) generation framework. This framework can grade both the size and the relative density or porosity of standard and custom unit cells simultaneously as a function of the structure spatial coordinates. Popular benchmark parts from different fields were used to test the framework’s efficiency against different unit cell types and grading equations. In the second part, we investigated the effect of lattice structure dual grading on mechanical properties. It was found that combining both relative density and size grading fine-tunes the compressive strength, modulus of elasticity, absorbed energy, and fracture behavior of the lattice structure.
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