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Homogenization for chemical vapor infiltration process

Publication ,  Journal Article
Zhang, C; Bai, Y; Xu, S; Yue, X
Published in: Communications in Mathematical Sciences
January 1, 2017

Multi-scale modeling and numerical simulations of the isothermal chemical vapor infiltration (CVI) process for the fabrication of carbon fiber reinforced silicon carbide (C/SiC) composites were presented in [Bai, Yue and Zeng, Commun. Comput. Phys., 7(3):597-612, 2010]. The homogenization theory, which played a fundamental role in the multi-scale algorithm, will be rigorously established in this paper. The governing system, which is a multi-scale reaction-diffusion equation, is different in the two stages of CVI process, so we will consider the homogenization for the two stages respectively. One of the main features is that the reaction only occurs on the surface of fiber, so it behaves as a singular surface source. The other feature is that in the second stage of the process when the micro pores inside the fiber bundles are all closed, the diffusion only occurs in the macro pores between fiber bundles and we face up with a problem in a locally periodic perforated domain.

Duke Scholars

Published In

Communications in Mathematical Sciences

DOI

EISSN

1945-0796

ISSN

1539-6746

Publication Date

January 1, 2017

Volume

15

Issue

4

Start / End Page

1021 / 1040

Related Subject Headings

  • Applied Mathematics
  • 4904 Pure mathematics
  • 4901 Applied mathematics
  • 1502 Banking, Finance and Investment
  • 0102 Applied Mathematics
  • 0101 Pure Mathematics
 

Citation

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Zhang, C., Bai, Y., Xu, S., & Yue, X. (2017). Homogenization for chemical vapor infiltration process. Communications in Mathematical Sciences, 15(4), 1021–1040. https://doi.org/10.4310/CMS.2017.v15.n4.a5
Zhang, C., Y. Bai, S. Xu, and X. Yue. “Homogenization for chemical vapor infiltration process.” Communications in Mathematical Sciences 15, no. 4 (January 1, 2017): 1021–40. https://doi.org/10.4310/CMS.2017.v15.n4.a5.
Zhang C, Bai Y, Xu S, Yue X. Homogenization for chemical vapor infiltration process. Communications in Mathematical Sciences. 2017 Jan 1;15(4):1021–40.
Zhang, C., et al. “Homogenization for chemical vapor infiltration process.” Communications in Mathematical Sciences, vol. 15, no. 4, Jan. 2017, pp. 1021–40. Scopus, doi:10.4310/CMS.2017.v15.n4.a5.
Zhang C, Bai Y, Xu S, Yue X. Homogenization for chemical vapor infiltration process. Communications in Mathematical Sciences. 2017 Jan 1;15(4):1021–1040.

Published In

Communications in Mathematical Sciences

DOI

EISSN

1945-0796

ISSN

1539-6746

Publication Date

January 1, 2017

Volume

15

Issue

4

Start / End Page

1021 / 1040

Related Subject Headings

  • Applied Mathematics
  • 4904 Pure mathematics
  • 4901 Applied mathematics
  • 1502 Banking, Finance and Investment
  • 0102 Applied Mathematics
  • 0101 Pure Mathematics