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Effect of reduced pressure on oxidation and thermal stability of polycarbosilane-derived SiC fibers

机译:减压对聚碳硅烷衍生SiC纤维氧化和热稳定性的影响

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摘要

To clarify the effects of reduced pressure on the thermal stability of polycarbosilane-derived SiC fibers (Nicalon, Hi-Nicalon and Hi-Nicalon S), the heat-treatments were conducted at 1623 and 1723 K under total pressures (p T) of 1–105 Pa. The oxidation behavior and thermal stability of the fibers were investigated through examinations of mass change, grain growth, specific resistivity, fiber morphology and tensile strength. All the fibers were definitely oxidized in the active-oxidation regime at p T ≤ 102 Pa and T = 1723 K. Nicalon and Hi-Nicalon S were subjected to serious degradation of fiber strength. Hi-Nicalon had a strength of 1.2 GPa even after heat-treatment at p T = 1 Pa.
机译:为了阐明减压对聚碳硅烷衍生的SiC纤维(Nicalon,Hi-Nicalon和Hi-Nicalon S)的热稳定性的影响,在总压力下于1623和1723 K进行热处理(p T )在1–105 Pa之间。通过检​​查质量变化,晶粒长大,比电阻率,纤维形态和拉伸强度,研究了纤维的氧化行为和热稳定性。在p T≤102 Pa s和T = 1723 K时,所有纤维均在活性氧化状态下被明确氧化。Nicalon和Hi-Nicalon S的纤维强度严重降低。即使在p T = 1 Pa的条件下进行热处理,Hi-Nicalon的强度仍为1.2 GPa。

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  • 来源
    《Journal of Materials Science 》 |2003年第24期| 4973-4979| 共7页
  • 作者单位

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University 1-1;

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University 1-1;

    Sanyo Special Steel Co. Ltd.;

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