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Study on mechanical strength and water resistance of organosilicon waterproofing agent blended recycled gypsum plaster

机译:有机硅防水剂的机械强度和耐水性研究结合回收石膏膏药

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In this study, organosilicon waterproofing agent blended recycled gypsum plasters (ROGPs) were prepared to determine their mechanical strength and water resistance. According to the results, the water to plaster ratio of ROGP increased steeply. Additionally, the mechanical strength and water resistance of ROGP decreased abruptly as the waterproofing agent increased, thus indicating the waterproofing agent’s loss of water resistance. Correspondingly, the water to plaster ratio and mechanical strength of organosilicon waterproofing agent blended commercial gypsum plasters (COGPs) slightly increased and decreased, respectively. Furthermore, the water resistance of COGP increased, and the suitable waterproofing agent was 1.0 %. The analysis shows that the large aspect ratio of ROGP and long-chain polymers increase their water to plaster ratios, whereas their mechanical strength and water resistance decrease owing to the resulting large plate-shaped crystals and poor overlapping between the crystals in hardened ROGP. The loss of water resistance is consequence of the oxidation of Si-H in ROGP. Therefore, different mechanical strength and water resistance development trends could be observed in ROGP and COGP. In principle, this study will contribute to the efficient utilization of recycled gypsum plaster.
机译:在本研究中,制备有机硅防水剂混合再生的石膏膏药(Rogps)以确定其机械强度和耐水性。根据结果​​,水与罗格的膏药比急剧增加。另外,随着防水剂的增加,罗格的机械强度和耐水性突然下降,因此指示防水剂的耐水性损失。相应地,有机硅防水剂的水塑比和机械强度的水分分别略微增加和减少。此外,Cogp的耐水性增加,合适的防水剂为1.0%。分析表明,罗格普和长链聚合物的大纵横比将它们的水增加到膏药比,而它们的机械强度和耐水性由于所得到的大型板状晶体和硬化的罗格中的晶体之间的差而重叠而降低。腐败的耐水性是罗格斯氧化的结果。因此,在Rogp和Cogp中可以观察到不同的机械强度和耐水性发育趋势。原则上,该研究将有助于利用再生石膏膏药。

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