Modeling of Micro- to Mesoscopic Deformation Behavior of Semi-Crystalline Polymer Based on Laminar Composite Model
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- UCHIDA Makoto
- Okayama Univ. Graduate School of Natural Science and Technology
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- TADA Naoya
- Okayama Univ. Graduate School of Natural Science and Technology
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- TOMITA Yoshihiro
- 福井工業大学
Bibliographic Information
- Other Title
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- 積層複合体モデルに基づく結晶性高分子材料のミクロ・メゾスケールの変形挙動のモデル化
Description
Since semi-crystalline polymer has very complex hierarchical structure, it is essential to construct a suitable multiscale mechanical model for the prediction of its mechanical characteristics. For the establishment of the triple scale mechanical model of semi-crystalline polymer, which can reflect the non-uniform deformations in micro-, meso- and macroscopic scales, computationally efficient model to relate structures and deformations in micro- to mesoscopic scales is indispensable. In this paper, to solve the problems, tangent modulus method was introduced into the constitutive equations for crystalline and amorphous phases consisting of the microstructure of semi-crystalline polymer. Furthermore, we proposed a new laminar composite model connecting deformations in micro- to mesoscopic scales based on the equilibrium of stress acting on the interface between the phases and the compatibility of deformation along the interface. Appropriate time steps for stable simulation and validity of the proposed model were examined through the computational simulation of uniaxial tension of single lamellar and spherulite models of high density polyethylene. It has been clarified that the proposed model could predict an elasto-viscoplastic deformation behavior of semi-crystalline polymer in markedly less computational time and memory.
Journal
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- TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A
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TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A 77 (778), 902-915, 2011
The Japan Society of Mechanical Engineers
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Details 詳細情報について
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- CRID
- 1390001204477608576
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- NII Article ID
- 130000874082
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- COI
- 1:CAS:528:DC%2BC3MXht1WltrrP
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- ISSN
- 18848338
- 03875008
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
- KAKEN
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- Abstract License Flag
- Disallowed