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Structural characteristics of poly(vinyl alcohol)-calcium carbonate composites prepared by sequential method

机译:序贯法制备聚乙烯醇-碳酸钙复合材料的结构特征

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Composites of poly(vinyl alcohol) (PVA) and calcium carbonate (CaCO3) were prepared by a sequential method involving first in situ synthesis of CaCO3 in PVA solution, then physical crosslinking of synthetic suspension and subsequently washing of resultant elastic gel followed by consolidation. The phase and composition, mechanical properties and microstructure of the composites and possible molecular interactions between both components were evaluated. X-ray diffraction analysis revealed that calcium carbonate was mainly composed of aragonite and calcite. Compression tests confirmed the composites prepared by this sequential method had good mechanical properties and that the compressive strength of the composites increased with higher content of calcium carbonate. PVA formed an interconnected network and needle-like CaCO3 crystals together with some fine grains were well compatible with PVA. In situ synthesis induced a spectral shift of hydroxyl groups and C-O bonds of PVA and the suppression of the characteristic adsorption of calcite was also observed, according to Fourier transform infrared spectroscopy measurements.
机译:聚乙烯醇(PVA)和碳酸钙(CaCO3)的复合物是通过顺序方法制备的,该方法包括首先在PVA溶液中原位合成CaCO3,然后对合成悬浮液进行物理交联,然后洗涤所得弹性凝胶,然后固结。评价了复合物的相和组成,机械性能和微观结构以及两种组分之间可能的分子相互作用。 X射线衍射分析表明碳酸钙主要由文石和方解石组成。压缩测试证实了用这种连续方法制备的复合材料具有良好的机械性能,并且复合材料的压缩强度随着碳酸钙含量的增加而增加。 PVA形成了互连的网络,针状CaCO3晶体以及一些细晶粒与PVA很好地相容。根据傅立叶变换红外光谱法测量,原位合成引起了PVA的羟基和C-O键的光谱移动,并且还观察到方解石特征吸附的抑制。

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