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Effect of oxygen content on tensile strength of polymer-derived SiC fibers 被引量:1

Effect of oxygen content on tensile strength of polymer-derived SiC fibers
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摘要 Air-curing is usually applied to the polymer-derived SiC fibers and, as a result, oxygen is embedded to the material. An effective relationship between oxygen content of the SiC fibers and mass gain of their precursor fibers was established. Results also showed that oxygen content has a great influence on the mechanical properties and excellent tensile strength is usually obtained at the oxygen content of 12%~13%, similar to the density of SiC fibers. Oxygen content has a positive effect on the ceramic yield, and thus, is good to the density and tensile strength; while, oxygen content is also negative to volume content of SiC phase and crystallization of the SiC fibers, and thus, detrimental to the density and tensile strength. Both of the two effects result in the peak behavior of the tensile strength of SiC fibers. Air-curing is usually applied to the polymer-derived SiC fibers and, as a result, oxygen is embedded to the material. An effective relationship between oxygen content of the SiC fibers and mass gain of their precursor fibers was established. Results also showed that oxygen content has a great influence on the mechanical properties and excellent tensile strength is usually obtained at the oxygen content of 12%~13%, similar to the density of SiC fibers. Oxygen content has a positive effect on the ceramic yield, and thus, is good to the density and tensile strength; while, oxygen content is also negative to volume content of SiC phase and crystallization of the SiC fibers, and thus, detrimental to the density and tensile strength. Both of the two effects result in the peak behavior of the tensile strength of SiC fibers.
出处 《中国有色金属学会会刊:英文版》 CSCD 2002年第5期894-898,共5页 Transactions of Nonferrous Metals Society of China
基金 Project( 715 -0 11-0 16 )supportedbyNationalAdvancedMaterialsCommitteeofChina
关键词 碳化硅光纤 抗张强度 机械性能 氧含量 聚合陶瓷 SiC fiber oxygen content mechanical property polymer-derived ceramic
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