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Effects of alkaline-earth metal oxides on structure and properties of iron phosphate glasses

机译:碱土金属氧化物对磷酸铁玻璃结构和性能的影响

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In order to figure out the effects of alkaline-earth metal oxides on structure and properties of iron phosphate glass, the glass system (100-x) (60P(2)O(5)-40Fe(2)O(3))-x RO (RO = MgO, CaO, SrO, x = 5,10,15,20 mol%) was investigated. Structure and properties were studied by XRD, FTIR, DSC, while chemical durability tests were carried in acid and alkali solution under harsh conditions for 120 h. Results from XRD show that not all glasses are amorphous. There are several crystals emerging in the three series of glasses. Meanwhile, FTIR tests demonstrate that as more RO was doped, the glass network depolymerized,with phosphate chains turning shorter; vibrations of all bands indicate the formation of P-O-R bands. Densities of all samples would move up with more RO, glasses with SrO being higher than those doped with MgO and CaO. The glass transition temperature (T-g) of all glasses increases, while the glass crystalline temperature (T-c) of glasses containing MgO and CaO grows up as well. However, glasses with SrO slump dramatically, which deteriorates thermal stability in this system. As for the chemical stability, weight loss for all glasses falls eventually with time both for acid and alkali solutions. The residential materials after alkali corrosion have several crystals when removed to XRD tests. Meanwhile, almost all samples left more intact after acid corrosion when compared with those suffering from alkali corrosion, indicating the superior add resistance to alkali for glasses. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了弄清楚碱土金属氧化物对磷酸铁玻璃结构和性能的影响,玻璃系统(100-x)(60P(2)O(5)-40Fe(2)O(3))-研究了x RO(RO = MgO,CaO,SrO,x = 5,10,15,20 mol%)。通过XRD,FTIR,DSC研究了结构和性能,同时在酸性和碱性溶液中于苛刻条件下进行了120小时的化学耐久性测试。 XRD的结果表明,并非所有玻璃都是非晶态的。这三个系列的眼镜中出现了几种晶体。同时,FTIR测试表明,随着更多的RO掺杂,玻璃网络解聚,磷酸盐链变短。所有频带的振动表明P-O-R频带的形成。随着RO的增加,所有样品的密度将上升,SrO的玻璃高于掺杂MgO和CaO的玻璃。所有玻璃的玻璃化转变温度(T-g)都会增加,而含有MgO和CaO的玻璃的玻璃结晶温度(T-c)也会升高。但是,具有SrO的玻璃会急剧坍塌,从而降低该系统的热稳定性。至于化学稳定性,对于酸和碱溶液,所有玻璃的重量损失最终都会随着时间而下降。碱腐蚀后的住宅材料在移至XRD测试时会具有多个晶体。同时,与遭受碱腐蚀的样品相比,几乎所有样品在遭受酸腐蚀后仍保持完好无损,这表明玻璃对碱的耐添加性更高。 (C)2015 Elsevier B.V.保留所有权利。

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