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首页> 外文期刊>Turkish journal of chemistry >Improving the mechanical and thermal properties of chlorinated poly(vinyl chloride) by incorporating modified CaCO$_{3}$ nanoparticles as a filler
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Improving the mechanical and thermal properties of chlorinated poly(vinyl chloride) by incorporating modified CaCO$_{3}$ nanoparticles as a filler

机译:通过加入改性的CaCO $ _ {3} $纳米粒子作为填充剂来改善氯化聚氯乙烯的机械和热性能

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摘要

Chlorinated poly(vinyl chloride) (CPVC)/calcium carbonate nanocomposites were successfully prepared by the incorporation of calcium carbonate (CaCO$_{3})$ nanoparticles into the CPVC matrix. The compatibility between the two phases was obtained by surface modification of the CaCO$_{3}$ nanoparticles with stearic acid, leading to improved material performance. The effects of the addition of different amounts of CaCO$_{3}$ nanoparticles to the CPVC on the thermal, mechanical, and morphological characteristics of the CPVC/CaCO$_{3}$ nanocomposites were investigated. The thermal stability of the CPVC/CaCO$_{3}$ nanocomposites was evaluated by thermogravimetric analysis~and differential scanning calorimetry. In addition, the surface texture of the CPVC and the dispersion of the CaCO$_{3}$ were evaluated using scanning electron microscopy. Important enhancements in the thermal and mechanical properties of the modified CPVC/CaCO$_{3}$ nanocomposites were obtained by incorporating different amounts (2.00%, 3.75%, and 5.75%) of surface-modified CaCO$_{3}$ nanoparticles within the CPVC polymer matrix. The results reveal that 3.75% of CaCO$_{3}$ was the optimum amount, where the CPVC/CaCO$_{3}$ nanocomposite shows the highest impact strength, the highest tensile strength, the highest thermal stability, and the lowest elongation percentage$. $Replacement of the commercial impact modifier used in industry with the prepared surface-modified CaCO$_{3}$ nanoparticles for the development of CPVC was successfully achieved.
机译:通过将碳酸钙(CaCO $ _ {3})$纳米粒子掺入CPVC基质中,成功制备了氯化聚(氯乙烯)/碳酸钙纳米复合材料。通过使用硬脂酸对CaCO $ _ {3} $纳米颗粒进行表面改性,可以获得两相之间的相容性,从而改善了材料性能。研究了向CPVC中添加不同量的CaCO $ _ {3} $纳米粒子对CPVC / CaCO $ _ {3} $纳米复合材料的热学,机械和形态学特性的影响。通过热重分析和差示扫描量热法评估了CPVC / CaCO $ _ {3} $纳米复合材料的热稳定性。另外,使用扫描电子显微镜评价了CPVC的表面质地和CaCO 3的分散性。通过掺入不同量(2.00%,3.75%和5.75%)的表面改性的CaCO $ _ {3} $纳米颗粒,可以大大提高改性CPVC / CaCO $ _ {3} $纳米复合材料的热和机械性能。在CPVC聚合物基质中。结果表明,最佳的量为CaCO $ _ {3} $的3.75%,其中CPVC / CaCO $ _ {3} $纳米复合材料的冲击强度最高,拉伸强度最高,热稳定性最高,而最低伸长率成功地用工业上制备的表面改性的CaCO $ _ {3} $纳米粒子替代了工业上使用的商业抗冲改性剂,以开发CPVC。

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