Preparation and properties of high melt strength PBS and its environmentally friendly foaming materials

IF 1.3 4区 医学 Q4 MATERIALS SCIENCE, BIOMATERIALS Cellular Polymers Pub Date : 2021-10-30 DOI:10.1177/02624893211053674
Xiao-Ming Zhou, Yi-fan Liu
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Abstract

In order to improve the melt strength of Poly(butylene succinate) (PBS) resin, the silane graft-crosslinked PBS copolyester materials were prepared by melt blending method with vinyltriethyl silane as graft material and benzyl peroxide (BPO) as initiator. At the same time, the environmentally friendly compound foaming agent (citric acid and sodium bicarbonate) was used as foaming agent. The results showed that the tensile properties and melt strength of PBS resin were greatly improved after silane grafting and cross-linking, and the graft and cross-linking reaction between PBS resin and silane occurred, forming a three-dimensional space network structure, and the viscosity and elasticity of polymer melt was changed, which increased the entropy elasticity of the material and strengthened the polymer melt strength. The additional amount of compound foaming agent and the cross-linking degree of material had important influence on the diameter and distribution of PBS foaming material.
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高熔体强度PBS及其环保发泡材料的制备与性能
为了提高聚丁二酸丁二醇酯(PBS)树脂的熔融强度,以乙烯三乙基硅烷为接枝材料,过氧化苄(BPO)为引发剂,采用熔融共混法制备了硅烷接枝交联PBS共聚酯材料。同时采用环保型复合发泡剂(柠檬酸和碳酸氢钠)作为发泡剂。结果表明,经过硅烷接枝交联后,PBS树脂的拉伸性能和熔体强度得到了很大的提高,PBS树脂与硅烷发生接枝交联反应,形成三维空间网络结构,聚合物熔体的粘度和弹性发生改变,增加了材料的熵弹性,增强了聚合物熔体强度。复合发泡剂的添加量和材料的交联度对PBS发泡材料的直径和分布有重要影响。
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来源期刊
Cellular Polymers
Cellular Polymers 工程技术-材料科学:生物材料
CiteScore
3.10
自引率
0.00%
发文量
9
审稿时长
3 months
期刊介绍: Cellular Polymers is concerned primarily with the science of foamed materials, the technology and state of the art for processing and fabricating, the engineering techniques and principles of the machines used to produce them economically, and their applications in varied and wide ranging uses where they are making an increasingly valuable contribution. Potential problems for the industry are also covered, including fire performance of materials, CFC-replacement technology, recycling and environmental legislation. Reviews of technical and commercial advances in the manufacturing and application technologies are also included. Cellular Polymers covers these and other related topics and also pays particular attention to the ways in which the science and technology of cellular polymers is being developed throughout the world.
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