4.5 Article

Compression Experiment and Failure Analysis of Additive Manufactured Multi-Layer Lattice Sandwich Structure

期刊

出版社

WORLD SCIENTIFIC PUBL CO PTE LTD
DOI: 10.1142/S1758825121500770

关键词

Multi-layer lattice sandwich structure; compression experiment; failure mode; sensitivity analysis; size effect; selective laser melting

资金

  1. National Natural Science Foundation of China [U1906233, 51975087]
  2. Key R&D Program of Shandong Province [2019JZZY010801]
  3. Fundamental Research Funds for the Central Universities [DUT19ZD204, DUT20ZD213, DUT20LAB308, DUT20JC23]

向作者/读者索取更多资源

This study systematically investigates the failure mode of additive manufactured multi-layer lattice sandwich structures under quasi-static compression, revealing a complex failure mechanism. The results provide helpful guidance for the design of multi-layer lattice sandwich structures in practical applications.
The rapid development of additive manufacturing technology provides a new opportunity for the fabrication and research of multi-layer lattice sandwich structures, and thereby some excellent performances can be further discovered. Based on the manufacturing-experiment-analysis technical route, the failure mode of the additive manufactured aluminum multi-layer alloy lattice sandwich structure under quasi-static compression is systematically studied in this paper. Through the combination of experimental observation and finite element analysis, the complex failure mechanism of the multi-layer lattice sandwich structure is revealed. The results show that the multi-layer lattice sandwich structure under quasi-static compression conditions mainly manifests as a layer-by-layer failure mode of the internal lattice structure, which includes the yield, plastic buckling and material damage. At the same time, in comparison with the force-displacement curve and the structural deformation in the key locations, the analysis accuracy of the finite element model can be verified by the compression experiment. Based on the verified finite element model, the most significant influence of different face panel thicknesses, as well the rod radiuses and tilting angles on the energy absorption (EA) is identified via sensitivity analysis. Furthermore, size factors on the structural EA are revealed. This study can provide a helpful guidance for the design of multi-layer lattice sandwich structures in practical applications.

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