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Damage tolerant, translucent oxide fiber/glass matrix composites

机译:耐损伤的半透明氧化物纤维/玻璃基复合材料

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摘要

Starting out from damage-tolerant oxidic composites with carbon (C)-coated fibers, the main part of our investigations was concentrated on Nextel 440-fibers/glass matrix composites. The matrix glasses were chosen in consideration of suitable thermal expansion coefficients and optical refractive indices. The fiber pull-out is enabled by a CVD coating with boron nitride (BN). In comparison with a single BN layer, a BN/TiO_2-double layer yields better mechanical and optical properties. All composites are made by means of a traditional lab method including hot pressing.Varying differences of the thermal expansion coefficients of fibers and matrix glasses (minus, zero, plus) allow the preparation of composites presenting various mechanical properties and also different damage tolerances. A composite, which is both damage-tolerant and translucent at one and the same time requires an identical thermal expansion coefficient and, in addition, an identical optical refractive index of the fibers and the matrix. Bubbles must be avoided in any case.
机译:从具有碳(C)涂层纤维的耐损伤性氧化复合材料开始,我们研究的主要内容集中在Nextel 440纤维/玻璃基复合材料上。考虑合适的热膨胀系数和光学折射率来选择基质玻璃。通过用氮化硼(BN)进行的CVD涂层可以拉出光纤。与单层BN层相比,BN / TiO_2双层具有更好的机械和光学性能。所有复合材料都是通过传统的实验室方法(包括热压)制成的。纤维和基体玻璃的热膨胀系数不同(负,零,正)不同,因此可以制备出具有各种机械性能和不同损伤容限的复合材料。同时具有损伤耐受性和半透明性的复合材料需要相同的热膨胀系数,此外,还要求纤维和基体具有相同的光学折射率。在任何情况下都必须避免气泡。

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