Three-Dimensional Strain Calculation of Rubber Composite with Fiber-Shaped Particles by Feature Point Tracking Using X-Ray Computed Tomography
Author:
Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-48153-7_14
Reference5 articles.
1. Muraoka, K., Ohta, T., Ohkubo, H., Yagi, N., Masuda, T.: Effects of deformation history on viscoelasticity of filled rubber compounds. Soc. Rubbers Sci. Technol. Japan. 76(11), 405–409 (2003)
2. Shohara, K., Uotani, K., Yamane, H.: Influence of surface treatment and crosslinking density on the rheological and mechanical properties of particle filled elastomers. Soc. Rheol. Japan. 32(2), 79–84 (2004)
3. Ranganathan, R., Ozisik, R., Keblinski, P.: Viscoelastic damping in crystalline composites: A molecular dynamics study. Compos. Part B. 93, 273–279 (2016)
4. Kulhavy, P., Petru, M., Syrovatkova, M.: Possibilities of the additional damping of unidirectional fiber composites by implementation of viscoelastic neoprene and rubber layers. Shock. Vib. 2017, 1–15 (2017)
5. Kak, A.C., Slaney, M.: Principles of Computerized Tomographic Imaging. Society of Industrial and Applied Mathematics, Philadelphia (2001)
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