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- W4285181964 abstract "With the rapid development of additive manufacturing technology, especially the laser selective melting forming(SLM)technology, a major change in the manufacturing mode from reducing materials and equal materials to additive materials has been realized. The development and maturity of additive manufacturing technology provide a way to realize the manufacturing of three dimensional lattice structure. The three dimensional lattice structures have the advantages such as light weight, strong stiffness, large porosity and huge surface area and good designability, because of the complex spatial topology structure. Though optimized design the three dimensional lattice structure have some special properties in mechanics, thermal [1], acoustics, optics, electromagnetism and other aspects. And due to the special properties, the three dimensional lattice structures will be widely used in aerospace and other fields. For the engineering application of lattice structure, the macro mechanical properties of lattice structure are usually evaluated by homogeneous equivalent method. If the conventional finite element model is adopted, the energy doubling cost and calculation cost of data will increase greatly. Therefore, in engineering, it is usually obtained by obtaining the different configurations of lattice structure cells The apparent equivalent thermodynamic performance under different volume fraction is one of the most important requirements. In this paper, engineering parameter models are established for typical cubic cell structures. the mechanical simulation analysis of an aerospace three-dimensional lattice cold plate is completed. The simulation analysis is in good agreement with the experimental data structure. Compared with the traditional cold plate, the weight of an aerospace cold plate with three-dimensional lattice structure based on additive manufacturing is reduced by 15% and the first-order frequency is increased by 50.4% without reducing the heat dissipation performance." @default.
- W4285181964 created "2022-07-14" @default.
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- W4285181964 date "2022-01-01" @default.
- W4285181964 modified "2023-09-29" @default.
- W4285181964 title "Research on the Three-Dimensional Lattice Structure of Cold Plate of an Aerospace Electronic Equipment Based on Additive Manufacturing" @default.
- W4285181964 cites W1970450917 @default.
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- W4285181964 doi "https://doi.org/10.1007/978-981-19-1309-9_78" @default.
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