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塑料输液容器用聚丙烯组合盖外盖材料增韧研究 被引量:2

Toughening Modification of PP Outer Cap Composite Used in Combinational Closures of Plastic Infusion Containers
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摘要 采用聚乙烯(PE)、弹性体及其他助剂增韧改性聚丙烯(PP),熔融共混挤出造粒制备塑料输液容器用PP组合盖(拉环式)外盖材料。通过正交试验优化了各组分之间的配比,考察了弹性体、PE对PP组合盖(拉环式)外盖材料力学性能及外盖拉环开启力的影响。结果表明,弹性体用量对复合材料的性能影响最显著,当弹性体用量从15份(质量份,下同)增加到30份时,材料的冲击强度先增大后减小,最高达35kJ/m2,拉伸强度减小,外盖拉环开启力减小,最小达64N;扫描电子显微镜观察显示,当弹性体的用量小于25份时,弹性体在体系中分散均匀;综合考虑,满足外盖拉环开启力小、拉伸强度大和冲击强度大的最佳配方为PP 65份,PE 20份,弹性体25份,抗氧剂及其他助剂共5份。 Polypropylene (PP) composite for outer-cap ring of plastic infusion containers was prepared via melt extrusion blending of polyethylene (PE), elastomer, PP, and other additives. The ratio of PP, PE, and elastomer was optimized by orthogonal factorial design. The mechanical properties of the composite and the open force of outer-cap ring were studied. It showed that the most important factor affecting the mechanical properties and the open force of outer-cap ring was the content of elastomer. The impact strength of the composite increased first and then decreased, the tensile strength and open force of outer-cap ring decreased with increasing contents of elastomer. SEM observations revealed that elastomer was finely distributed in the composite when the content of elastomer was less than 25 mass %. It could be concluded that the optimized recipe was: PP 65 mass %, PE 20 mass %, elastomer 25 mass %, and antioxidant and other additives 5 %.
出处 《中国塑料》 CAS CSCD 北大核心 2011年第8期57-61,共5页 China Plastics
基金 广东省教育部科技部产学研结合项目基地建设专项(2009B090200025) 广东省中国科学院全面战略合作计划项目(2009B091300067) 粤港澳关键领域重点突破招标项目(201001061)
关键词 聚丙烯 输液容器 组合盖 外盖 增韧 拉环开启力 polypropylene infusion container combinational closure outer cap tougheness open force
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  • 1刘娟,陈颖,汪国华.大力发展我国的非PVC大输液包装容器[J].中国药业,2005,14(1):15-16. 被引量:14
  • 2谭绍早.聚丙烯抗菌塑料的制备及性能研究[J].中国塑料,2005,19(2):41-44. 被引量:29
  • 3李大魁,刘文彬,诸明,王又红,陈兰英.硝酸甘油输注时在输液管道中的损失[J].中国医院药学杂志,1989,9(1):13-16. 被引量:10
  • 4PEHLIVAN H, BALKOSE D, ULKU S, et al. Characterization of pure and silver exchanged natural zeolite filled polypropylene composite films [ J]. Compos Sci Technol, 2005, 65 (13): 2049-2058.
  • 5GHOSH K, MAITI S N. Melt rheological properties of silver-powde-filled polypropylene composites [ J]. Polym Plastic Technol Eng, 1997, 36 (5) : 703 -722.
  • 6LEONG Y W, ISHAK Z A M, ARIFFIN A. Mechanical and thermal properties of talc and calcium carbonate filled hybrid composites [J]. J Appl Polym Sci, 2004, 91 (5) : 3327 - 3336.
  • 7何曼君.高分子物理[M].上海:复旦大学出版社,2000..
  • 8朱绍男.聚丙烯塑料的应用与开发.北京:轻工业出版社.1988.23
  • 9Schmidt F M,Agassant J F,Bellet M.Polym.Eng.Sci.,1998,38(9):1399.
  • 10Wang S,Makinouchi A.Advance in Polymer Technology,1998,17(3):189.

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