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Influence of fiber orientation and matrix processing on the tensile and creep performance of Nextel 610 reinforced polymer derived ceramic matrix composites

机译:纤维取向和基体处理对Nextel 610增强聚合物衍生陶瓷基复合材料拉伸和蠕变性能的影响

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摘要

The tensile and creep performance of two Nextel~ ® 610 (N610) reinforced polymer derived ceramic composites (UMOX™, OXIPOL) is studied up to 1200 ℃. Independent of the fiber orientation ( ±45° or 0°/90°) all samples exhibit a segment where the strain rate was constant. The creep performance in ± 45° is matrix dominated and shows a more pronounced primary creep regime, due to changes within the matrix. The following creep regime with a constant strain rate might be attributed to viscous flow of the SiOC within the matrix based on activation energy (283 kJ/mol) and stress exponent (0.6). In 0°/90° orientation the creep and tensile performance is independent of oxidation, but directly influenced by grain structure of the fiber. The coarser and non-uniform microstructure of the fibers in UMOX™ decreases the stationary creep rates and changes the diffusional creep mechanism. The possibility to modify the microstructure of the fiber during the manufacturing process might be used to adjust e.g. the strength and creep stability of these materials related to the desired applications.
机译:研究了两种Nextel〜®610(N610)增强聚合物衍生的陶瓷复合材料(UMOX™,OXIPOL)的拉伸和蠕变性能,最高温度为1200℃。与纤维取向(±45°或0°/ 90°)无关,所有样品均显示出应变率恒定的段。在±45°范围内的蠕变性能受基质支配,并且由于基质内部的变化而显示出更明显的初级蠕变状态。以下具有恒定应变率的蠕变状态可能归因于基于活化能(283 kJ / mol)和应力指数(0.6)的SiOC在基体内的粘性流动。在0°/ 90°取向下,蠕变和拉伸性能与氧化无关,但直接受到纤维晶粒结构的影响。 UMOX™中纤维的较粗且不均匀的微观结构降低了固定蠕变速率并改变了扩散蠕变机理。在制造过程中改变纤维的微观结构的可能性可以用来调整例如。这些材料的强度和蠕变稳定性与所需的应用有关。

著录项

  • 来源
    《Materials Science and Engineering》 |2014年第22期|171-179|共9页
  • 作者单位

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Ceramic Composite Structures, Institute of Structures and Design, German Aerospace Center, Stuttgart, Germany;

    EADS Deutschland GmbH, Airbus Group Innovations, Munich, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

    Advanced Ceramics, University of Bremen, Am Biologischen Garten 2, 28359 Bremen, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ceramic-matrix composites (CMCs); Oxides; Creep; High-temperature properties;

    机译:陶瓷基复合材料(CMC);氧化物;蠕变;高温特性;

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