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      Influence of Oxidation Damages on Mechanical Properties of SiC/SiC Composite Using Domestic Hi-Nicalon Type SiC Fibers

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          Abstract

          Here, we show that when the oxidation treatment temperature exceeded 600°C, the tensile strength of SiC/SiC begins to decrease. Oxidation leads to the damages on the PyC fiber/matrix interface, which is replaced by SiO 2 at higher temperature. The fracture mode converts from fiber pull-out to fiber-break as the fiber/matrix interface is filled with SiO 2. Oxidation time also plays an important role in affecting the tensile strength of SiC/SiC. The tensile modulus decreases with temperature from RT to 800°C, then increases above 800°C due to the decomposition of remaining CSi x O y and crystallization of the SiC matrix. A special surface densification treatment performed in this study is confirmed to be an effective approach to reduce the oxidation damages and improve the tensile strength of SiC/SiC after oxidation.

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          Most cited references24

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          Silicon carbide composites as fusion power reactor structural materials

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            Effect of frequency and environment on fatigue behavior of a CVI SiC/SiC ceramic matrix composite at 1200°C

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              Continuous SiC fiber, CVI SiC matrix composites for nuclear applications: Properties and irradiation effects

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                Author and article information

                Contributors
                Journal
                Scanning
                Scanning
                SCANNING
                Scanning
                Hindawi
                0161-0457
                1932-8745
                2020
                8 December 2020
                : 2020
                : 8840963
                Affiliations
                Key Laboratory of Advanced Functional Composites Technology, Aerospace Research Institute of Materials & Processing Technology, Beijing 100076, China
                Author notes

                Academic Editor: Jian Chen

                Author information
                https://orcid.org/0000-0002-3648-6474
                Article
                10.1155/2020/8840963
                7744235
                690fd30e-aac4-4ff0-b3e3-91a9f3756239
                Copyright © 2020 Enze Jin et al.

                This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 1 October 2020
                : 15 November 2020
                : 27 November 2020
                Categories
                Research Article

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