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Strain gradient theory based on a new framework of non-local model
Authors:Dake Yi  Tzu Chiang Wang  Zhongmin Xiao
Affiliation:1. LNM, Institute of Mechanics, Chinese Academy of Sciences, Beijing, 100080, China
2. School of MAE, Nanyang Technological University, Singapore, 639798, Singapore
Abstract:A new framework of non-local model for the strain energy density is proposed in this paper. The global strain energy density of the representative volume element is treated as a non-local variable and can be obtained through a special integral of the local strain energy density. The local strain energy density is assumed to be dependent on both the strain and the rotation-gradient. As a result of the non-local model, a new strain gradient theory is derived directly, in which the first and second strain gradients, as well as the triadic and tetradic stress, are introduced in the context of work conjugate. For power law hardening materials, size effects in thin metallic wire torsion and ultra-thin cantilever beam bend are investigated. It is found that the result predicted by the theoretical model is well consistent with the experimental data for the thin wire torsion. On the other hand, the calculation result for the micro-cantilever beam bend clearly shows the size effect.
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