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Mechanism behind the improvement of coupling agent in interface bonding performance between organic transparent resin and inorganic cement matrix

机译:改善有机透明树脂与无机水泥基体界面结合性能的偶联剂的机理

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摘要

Resin light conductive cementitious materials (RLCCM) is a kind of advanced composite materials with good prospects for development, but there is the most vulnerable area on the interface of RLCCM. To find out the effect of coupling agent on interface bonding mechanism of organic-inorganic composite, the micro-hardness, micro-topography, surface morphology structure and chemical reaction of organic transparent resin and inorganic cement matrix interface were evaluated by the micro-hardness tester, environmental scanning electron microscopy (ESEM), atomic force microscope (AFM) and Fourier transform infrared spdctroscopy (FTIR) tests. The results show that the silane coupling agent A-151 and aluminate coupling agent not only reduced the transparent resin performance weakened region thickness up to 100 mu.m and the micro-hardness in the transition region was increased by 19.6% and 39.9%, respectively, but also improved the micro-hardness of the surface of the cement matrix in the range of 30 20 pin to 22.2 and 21.9 MPa, respectively. The interface treated with silane coupling agent A-151, the interfacial micro cracks caused by the sampling process have narrowed and discontinuous in the direction of length. The interface treated with aluminate coupling agent, although the boundary between transparent resin and cement matrix still exists, but the micro cracks caused by the sampling process is almost disappeared, and two substances are closely combined together to present a natural transition state. Silane coupling agent A-151 and cement hydration products formed flat spherical particle diameter of about 78 nm, and these particles mosaiced and fused in the surface of hydrate as a whole, therefore the surface become more denser and smoother. Hydrolyzing silane coupling agent A151 to produce silanol (-SiOH), which could react with hydroxy (-OH) function groups of CSH to form Si O-Si bond. Hydrophilic inorganic groups of aluminate coupling agent reacted with hydroxyl (-OH) function groups of CSH to form A1-O-Si bond, and hydrophilic organic groups and resin make crosslinking, twisting reaction happened. (C) 2017 Elsevier Ltd. All rights reserved.
机译:树脂光导胶凝材料(RLCCM)是一种具有良好发展前景的高级复合材料,但RLCCM的界面上存在最脆弱的区域。为了了解偶联剂对有机-无机复合材料界面键合机理的影响,通过显微硬度计评估了有机透明树脂与无机水泥基体界面的显微硬度,显微形貌,表面形态结构以及化学反应。 ,环境扫描电子显微镜(ESEM),原子力显微镜(AFM)和傅立叶变换红外光谱(FTIR)测试。结果表明,硅烷偶联剂A-151和铝酸酯偶联剂不仅降低了透明树脂性能,使薄弱区域的厚度减小到了100μm,而且过渡区域的显微硬度分别提高了19.6%和39.9%。 ,但也分别在30 20 pin至22.2 MPa和21.9 MPa的范围内提高了水泥基体表面的显微硬度。用硅烷偶联剂A-151处理的界面,由采样过程引起的界面微裂纹在长度方向上变窄且不连续。用铝酸盐偶联剂处理的界面,尽管仍然存在透明树脂和水泥基体之间的边界,但由采样过程引起的微裂纹几乎消失了,并且两种物质紧密结合在一起以呈现自然的过渡态。硅烷偶联剂A-151和水泥水合产物形成约78nm的扁平球形颗粒直径,并且这些颗粒在整个水合物表面上镶嵌和融合,因此表面变得更致密和光滑。水解硅烷偶联剂A151生成硅烷醇(-SiOH),该硅烷醇可与CSH的羟基(-OH)反应形成Si O-Si键。铝酸盐偶联剂的亲水性无机基团与CSH的羟基(-OH)官能团反应形成A1-O-Si键,亲水性有机基团与树脂发生交联,发生加捻反应。 (C)2017 Elsevier Ltd.保留所有权利。

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