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Acid corrosion resistance and mechanism of E-glass fibers: Boron factor

机译:电子玻璃纤维的耐酸腐蚀性和机理:硼因子

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Acid corrosion and stress corrosion characteristics of E-glass fibers with and without boron (B_2O_3 or B) were carefully studied, using 1 N H_2SO_4 acid at 96 C and room temperature, respectively. The effect of boron on glass resistance to the acid attack is elucidated in conjunction with structural roles of B, Al, and Ca in the glass. Scanning electron microscopy with energy dispersive spectrometer (SEM/EDS) characterization was performed on the selective fiber samples before and after the acid leaching. For high boron-containing fibers, the results showed the formation of alteration layer enriched in Si as a result of depletion of both Ca and Al. Chemical analysis of the high boron fibers before and after 24 h acid leaching and the solution after 24 h test further confirmed that B, Ca, and Al in the glass fibers preferentially dissolved in the acid solution. Glass fiber dissolution mechanisms were discussed with a proposal that acid corrosion attack in boron-containing E-glass is controlled by hydrolysis of aluminoborate complex species (less than 10 nm) separated from the silicate glass network, whereas the acid corrosion attack in boron-free E-glass is controlled by hydrolysis of the silicate network, where 4-coordinated aluminum in the network is locally charge compensated by Ca.
机译:分别在1 C和室温下使用1 N H_2SO_4酸,仔细研究了含硼和不含硼的电子玻璃纤维的酸腐蚀和应力腐蚀特性。结合玻璃中B,Al和Ca的结构作用,阐明了硼对玻璃抗酸侵蚀的作用。在酸浸之前和之后,对选择性纤维样品进行了具有能量色散谱仪(SEM / EDS)表征的扫描电子显微镜。对于高含硼纤维,结果表明由于Ca和Al的耗尽,形成了富含Si的蚀变层。酸浸24小时前后的高硼纤维和24小时试验后的溶液的化学分析进一步证实,玻璃纤维中的B,Ca和Al优先溶解在酸溶液中。讨论了玻璃纤维的溶解机理,并提出了以下建议:含硼E玻璃中的酸腐蚀攻击是由与硅酸盐玻璃网络分离的铝硼酸盐复合物(小于10 nm)的水解控制的,而无硼中的酸腐蚀攻击是通过控制电子玻璃是通过硅酸盐网络的水解来控制的,其中网络中的4位配位铝由Ca局部补偿。

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