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作 者:万星辰 石敏 王红 杨涛 潘刚伟 吴绥菊[1] 姚理荣[1] Wan Xingchen;Shi Min;Wang Hong;Yang Tao;Pan Gangwei;Wu Suiju;Yao Lirong(School of Textile and Clothing,Nantong University,Nantong 226019;Anhui Product Quality Supervision and InspectionInstitute,Hefei 230051)
机构地区:[1]南通大学纺织服装学院,南通226019 [2]安徽省产品质量监督检验研究院,合肥230051
出 处:《化工新型材料》2020年第3期157-160,165,共5页New Chemical Materials
基 金:国家重点研发计划“防辐射纺织材料及装备的设计、制备及评价”(2018YFC0810301);江苏省研究生科研与实践创新计划项目“无铅轻质X射线防护材料的制备及性能研究”(KYCX18-2429)。
摘 要:采用熔融共混法制备铋/聚丙烯共混材料(Bi/PP),利用旋转流变仪对其熔融流变特性进行测试分析。再通过熔融纺丝法制备初生纤维,采用扫描电镜、单纤维强力仪等对初生纤维的结构及性能进行表征。研究表明:共混材料表现非牛顿流体特性;共混材料的表观黏度与温度及剪切速率呈负相关;相同温度下,随铋粉含量增加,共混物的表观黏度也相应上升,铋粉在PP基体中的分散性较好但团聚增多,初生纤维内部孔隙结构增多,力学性能有所降低。Bismuth(Bi)/polypropylene(PP)blends were prepared by melt blending,and its melt rheological properties were investigated by rotational rheometer.The structure and properties of as-spun fibers were characterized by scanning electron microscopy and fiber strength tester.The results showed that Bi/PP exhibited non-newtonian fluid properties.The apparent viscosity of Bi/PP was negatively correlated with temperature and shear rate.At the same temperature,the apparent viscosity of the blend increased with the increase of Bi powder,but its agglomeration increased.Although Bi powder had good dispersibility in PP matrix.Moreover,the internal pore structure of asspunfiber increased with the increase of Bi powder,resulting in decreased mechanical properties.
分 类 号:TB333[一般工业技术—材料科学与工程]
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