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PVC的微发泡处理及PVC/CaCO3的原位复合

Preparation of Microporous PVC and in Situ Composite Technology of PVC/CaCO3

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【作者】 熊传溪董丽杰汪庆刚王涛鲁圣军向妮娅

【Author】 XIONG Chuan-xi, DONG Li-jie, WANG Qing-gang, WANG Tao, LU Sheng-jun, XIANG Ni-ya (School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, Hubei 430070, China)

【机构】 武汉理工大学材料学院武汉理工大学材料学院 湖北武汉430070湖北武汉430070湖北武汉430070

【摘要】 研究了用原位生成法制备PVC/纳米CaCO3复合母粒的过程. 首先利用混合溶剂将PVC粉料溶胀,同时带入发泡剂偶氮二异丁腈,在112oC下进行固相微发泡. 利用已发泡的PVC,采用原位生成法制备了纳米CaCO3/PVC复合母粒. 通过扫描电镜观察,发现已发泡PVC颗粒表面布满微孔,纳米级CaCO3填充在PVC孔洞里. PVC/纳米CaCO3复合母粒同时起到了增韧增强的作用.

【Abstract】 This article describes the preparation of PVC/nanometer CaCO3 composite particles by an in situ method. Porous polyvinyl chloride (PVC) particles were swelled by compound solvent with foaming agent 2,2-azo- bis-iso-butyronitrile (AIBN). When heated at 112oC, PVC particles were foamed because AIBN decomposed to gas. When the volume percentage of cyclohexanone in compound solvent reaches 11.7%, the porosity of microporous PVC increases to the maximum of 35.9%. Microporous PVC, Ca(OH)2 and some additives were dispersed uniformly in water and then aerated with CO2, thus PVC/nano-CaCO3 composite particles was prepared by this in situ method. Chemical analysis indicated that the maximal content of synthesized CaCO3 reached 20%. SEM micrographs show that microporous PVC particles had many cavities and nanometer CaCO3 were filled in these cavities at the same time. It is inferred that nanometer CaCO3/PVC mixture toughens and reinforces PVC.

【基金】 国家高技术研究发展计划(863计划)资助项目(编号: 2002AA333110)
  • 【文献出处】 过程工程学报 ,The Chinese Journal of Process Engineering , 编辑部邮箱 ,2004年04期
  • 【分类号】TQ325.3
  • 【被引频次】13
  • 【下载频次】340
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