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Shear properties of the re-entrant auxetic structure made via electron beam melting

机译:通过电子束熔化制造的再参赛剂扶示结构的剪切性能

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While the tensile/compressive mechanical properties of the re-entrant auxetic cellular structure have been relatively well modeled, their shear properties including the shear modulus and shear strength have not been investigated. This paper focuses on the analytical modeling of the shear properties of this auxetic structure utilizing beam analysis. The modeling results were further compared with results from both simulation and experimentation. It was found that in addition to the effective length reduction effect, the size effect also becomes significant for the shearing of this re-entrant auxetic structures. Due to the size effect, it was expected that the re-entrant auxetic structure could not be effectively homogenized based on the developed analytical property model, and additional design factors must be considered in the future.
机译:虽然再参赛剂扶手蜂窝结构的拉伸/压缩力学性能已经相对良好地建模,但是它们尚未研究其包括剪切模量和剪切强度的剪切性能。本文侧重于利用光束分析的这种辅助结构的剪切性能的分析建模。与模拟和实验的结果相比,进一步比较了建模结果。结果发现,除了有效的长度减小效果之外,尺寸效应也对该重新参赛者辅助结构的剪切变得显着。由于尺寸效应,预计基于发达的分析性能模型无法有效地均匀地均质均匀化,并将在未来考虑其他设计因素。

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