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首页> 外文期刊>RSC Advances >Introduction of a long-chain branching structure by ultraviolet-induced reactive extrusion to improve cell morphology and processing properties of polylactide foam
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Introduction of a long-chain branching structure by ultraviolet-induced reactive extrusion to improve cell morphology and processing properties of polylactide foam

机译:通过紫外线诱导的反应挤出引入长链分支结构,以改善聚乳酸泡沫的泡孔形态和加工性能

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In this paper, long-chain branched polylactide (LCB-PLA) prepared by UV-induced reaction extrusion with trimethylolpropane triacrylate (TMPTA) was foamed by supercritical carbon dioxide (scCO2), and the effect of the long-chain branching structure on the cell morphologies of PLA foams was investigated. The LCB-PLA displayed higher complex viscosity, melting point and crystal nucleation potential under scCO2, and these factors could influence the foaming behavior of PLA which was proved by the different cell morphologies of samples foamed after various saturation times. The advantage of LCB-PLA on foaming was remarkable at high temperature and high pressure. LCB-PLA with more than 0.5% TMPTA showed nano-cells while the other samples showed micro-cells at 142 °C under 12 MPa, and the samples displayed elliptic cells with horizontal semimajor axis in linear PLA and circular cells or oval cells with vertical semimajor axis in LCB-PLA with increasing temperature. The improved cell morphology with reduced coalescence, no collapse and uniform cell distribution was also shown in LCB-PLA under higher pressure. All these results were due to the increasing matrix strength and higher crystal nucleation potential of LCB-PLA. The findings indicate that LCB-PLA possesses better foaming behavior at high temperature and high pressure. The wide foaming processing window of LCB-PLA would benefit the high temperature and high pressure foaming of PLA such as bead foaming and continuous extrusion foaming, thus broadening its application.
机译:本文利用超临界二氧化碳(scCO 2 )对三羟甲基丙烷三丙烯酸酯(TMPTA)进行紫外线诱导反应挤出制备的长支链聚丙交酯(LCB-PLA)发泡。 ),并研究了长链支化结构对PLA泡沫塑料泡孔形态的影响。 LCCO-PLA在scCO 2 条件下表现出较高的复数粘度,熔点和晶体成核潜能,这些因素可能影响PLA的发泡行为,这在不同的孔中得到了证明。各种饱和时间后发泡的样品的形态。 LCB-PLA在发泡方面的优势在高温高压下显着。具有大于0.5%TMPTA的LCB-PLA在142°C和12 MPa下显示纳米细胞,而其他样品在线性PLA中显示水平半长轴的椭圆形细胞,而在垂直PLA中显示圆形细胞或椭圆形细胞LCB-PLA中的半长轴随温度升高而变化。 LCB-PLA在较高压力下也显示出改善的细胞形态,减少的聚结,无塌陷和均匀的细胞分布。所有这些结果是由于LCB-PLA的基体强度增加和晶体成核潜力提高。研究结果表明,LCB-PLA在高温高压下具有更好的发泡性能。 LCB-PLA的宽广的发泡加工窗口将有利于PLA的高温高压发泡,例如珠粒发泡和连续挤出发泡,从而扩大了其应用范围。

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