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首页> 外文期刊>Journal of Polymer Research >Effect of the shell thickness of methacrylate-butadiene-styrene core-shell impact modifier on toughening polyvinyl chloride
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Effect of the shell thickness of methacrylate-butadiene-styrene core-shell impact modifier on toughening polyvinyl chloride

机译:甲基丙烯酸丁二烯 - 苯乙烯 - 苯乙烯 - 苯乙烯壳体冲击改性剂在增韧聚氯乙烯中的影响

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The shell thickness of methyl methacrylate-butadiene-styrene (MBS) graft copolymer with a core-shell structure is found to be the most important factor in the toughening of rigid polyvinyl chloride (PVC). When the total shell thickness is too thin, the shell layer is simply unable to fully protect and cover the inner rubbery core, and these MBS particles tend to connect with one another through the partially exposed core, which leads to the aggregation of MBS in PVC and results in the poor toughening efficiency of MBS. However, when the total shell thickness is too thick, the shell thickness results in a hard core of these core-shell MBS particles and the loss of the rubbery nature required of an efficient impact modifier. Both the PMMA thickness and PS thickness in the shell structure have also significantly influenced the toughening efficiency of MBS; the thickness of PMMA and PS should be between the critical values of 4.2 nm similar to 6.7 nn for PMMA and 7.4 nn similar to 9.8 nn for PS, and MBS displays high efficiency in toughening rigid PVC. gamma(c)/V-f(2) and gamma(y)/V-f(2), which are relative to the critical characteristic ligament of polymer materials, are used as the criterions of the brittle-ductile transition, and the brittle-ductile transitions of PVC and MBS with various shell structures was investigated in this paper.
机译:发现甲基丙烯酸甲酯 - 丁二烯 - 苯乙烯(MBS)接枝共聚物与核 - 壳结构的壳厚度是刚性聚氯乙烯(PVC)增韧中最重要的因素。当总壳厚度太薄时,壳层根本无法完全保护和覆盖内部橡胶芯,并且这些MBS颗粒倾向于通过部分暴露的核心彼此连接,这导致PVC中MB的聚集在一起导致MBS的增韧效率差。然而,当总壳厚度太厚时,壳体厚度导致这些核心壳MBS颗粒的硬核和有效冲击改性剂所需的橡胶状本性的损失。壳结构的PMMA厚度和PS厚度也显着影响了MBS的增韧效率; PMMA和PS的厚度应在4.2nm的临界值之间,类似于PMMA的6.7 nn,7.4 nn类似于PS的9.8 nn,MBS在增韧刚性PVC中显示出高效率。 γ(c)/ vf(2)和γ(y)/ vf(2),其相对于聚合物材料的临界特征韧带,用作脆性延性转变的标准,以及脆性延展转变的标准本文研究了具有各种壳结构的PVC和MB。

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