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A Novel Alkali and Alkaline Earth Silicate Glass forMarine Applications

机译:一种用于海洋的新型碱金属和碱土硅酸盐玻璃

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Aims: To test the corrosion properties of a novel alkali and alkaline earth silicate glass. Place and Duration of Study: Department of Metallurgical and Materials Engineering, between 1999-2001.Methodology: We included a glass which contains 75% mole lithium disilicate (Li2O.2SiO2-LS2) and 25% mole barium disilicate (BaO.2SiO2-BS2) phases. 1 mole% of P2O5 was used as nucleating agent. The scanning electron microscope (JEOL JSM-330) was used to observe the glass microstructures. X-ray diffraction (XRD) was carried out on the samples using a diffractometer (Philips PW1820) employing Cu Kα. In the chemical durability tests, the corrosive environment was boiling solutions of 0.625N HCl and 5% wt. NaOH along with boiling water. Another reference composition was also used, which included equal moles of LS2 and BS2, for the corrosion tests. Results: When A and B glass were compared, the basic and boiling water corrosion value of B glass in terms of weight loss, (3.12; 0.38) is higher than that of A glass (4.2; 0.70). Slight differences were observed in the corrosion properties in basic and boiling water environment when A and B glass were compared. However, the weight loss of A glass in acidic environment, was 3.55% wt whereas that of B glass was determined to be 0.4% wt. Conclusion: The chemical durability of A and B glasses against acidic environment was comparable to that of soda-lime glass. It was concluded that this novel composition is a candidate for the substitution of soda-lime glass in marine applications.
机译:目的:测试新型碱金属和碱土金属硅酸盐玻璃的腐蚀性能。研究的地点和持续时间:冶金与材料工程系,1999-2001年。方法:我们提供了一种玻璃,该玻璃包含75%(摩尔)的二硅酸锂(Li2O.2SiO2-LS2)和25%(摩尔)的二硅酸钡(BaO.2SiO2)。 -BS2)阶段。 1摩尔%的P 2 O 5用作成核剂。用扫描电子显微镜(JEOL JSM-330)观察玻璃的微观结构。使用CuKα的衍射仪(Philips PW1820)对样品进行X射线衍射(XRD)。在化学耐久性测试中,腐蚀性环境为沸点为0.625N HCl和5%(重量)的溶液。 NaOH和沸水。还使用另一参考组合物,其包括等摩尔的LS2和BS2,用于腐蚀测试。结果:当比较A和B玻璃时,就重量损失而言,B玻璃的碱性和沸水腐蚀值(3.12; 0.38)高于A玻璃(4.2; 0.70)。比较A和B玻璃时,在碱性和沸水环境下的腐蚀性能存在细微差异。然而,在酸性环境中,A玻璃的重量损失为3.55重量%,而B玻璃的重量损失被确定为0.4重量%。结论:A和B玻璃在酸性环境下的化学耐久性与钠钙玻璃相当。结论是,这种新颖的组合物是替代钠钙玻璃在海洋应用中的候选者。

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