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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Modification of Syndiotactic Polypropylene with Nano-Calcium Carbonate and Halloysite
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Modification of Syndiotactic Polypropylene with Nano-Calcium Carbonate and Halloysite

机译:用纳米碳酸钙和霍罗伊钛矿改性合并聚丙烯

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Composites of syndiotactic polypropylene (sPP) with 5 to 17 vol.% of halloysite and 2.5 to 7.5 vol.% of stearic acid modified nano-calcium carbonate, having an average grain size of 80 nm, were prepared and examined. The effect of fillers on thermal properties of sPP was different; halloysite increased markedly peak crystallization temperature. The composites with the highest filler contents, 7.5 vol.% of calcium carbonate and 17 vol.% of halloysite, exhibited a solid-like behavior at 170°C, with the storage modulus exceeding the loss modulus in the entire frequency range, that is 512 to 0.1 rad s~(-1). The composites with halloysite exhibited decreased hod impact strength compared to neat sPP. On the contrary, 2.7 fold improvement of the impact strength was found for the composites with nano-calcium carbonate. Moreover, nano-calcium carbonate did not worsen the drawability of the materials during uniaxial drawing. It was found that debonding at calcium carbonate/sPP interface occurred both during the impact test and tensile drawing facilitating the plastic deformation of the polymer.
机译:制备并检查霍罗伊镁(SPP)和5至17体积%,霍氏矿石的百分比和2.5至7.5体积%。填料对SPP热性质的影响是不同的; HalloySite显着增加了峰结晶温度。具有最高填料含量的复合材料,7.5体积%。碳酸钙的百分比和17体积%。霍罗伊石的百分比,在170°C下表现出坚固的行为,储存模量超过整个频率范围内的损耗模量,即512至0.1 rad s〜(-1)。与纯净的SPP相比,霍罗伊矿的复合材料表现出降低的HOD冲击强度。相反,对具有纳米碳酸钙的复合材料发现了2.7倍的冲击强度的改善。此外,纳米碳酸钙在单轴拉伸期间纳米碳酸钙并未恶化了材料的可拉伸性。发现在碳酸钙/ SPP界面处剥离在促进聚合物的塑性变形的冲击试验和拉伸拉伸期间发生。

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