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首页> 外文期刊>Journal of Materials Science >Microcellular processing of polylactide–hyperbranched polyester–nanoclay composites
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Microcellular processing of polylactide–hyperbranched polyester–nanoclay composites

机译:聚丙交酯-超支化聚酯-纳米粘土复合材料的微孔加工

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摘要

The effects of addition of hyperbranched polyesters (HBPs) and nanoclay on the material properties of both solid and microcellular polylactide (PLA) produced via a conventional and microcellular injection-molding process, respectively, were investigated. The effects of two different types of HBPs (i.e., Boltorn H2004® and Boltorn H20®) at the same loading level (i.e., 12%), and the same type of HBP at different loading levels (i.e., Boltorn H2004® at 6 and 12%), as well as the simultaneous addition of 12% Boltorn H2004® and 2% Cloisite®30B nanoclay (i.e., HBP–nanoclay) on the thermal and mechanical properties (both static and dynamic), and the cell morphology of the microcellular components were noted. The addition of HBPs and/or HBP with nanoclay decreased the average cell size, and increased the cell density. The stress–strain plots of all the solid and microcellular PLA-H2004 blends showed considerable strain softening and cold drawing, indicating a ductile fracture mode. Among the two HBPs, samples with Boltorn H2004® showed higher strain-at-break and specific toughness compared to Boltorn H20®. Moreover, the sample with Boltorn H2004® and nanoclay exhibited the highest strain-at-break (626% for solid and 406% for microcellular) and specific toughness (405% for solid and 334% for microcellular). Finally, the specific toughness, strain-at-break, and specific strength of microcellular samples were found to be lower than their solid counterparts.
机译:分别研究了添加超支化聚酯(HBP)和纳米粘土对通过常规和微孔注塑工艺生产的固体和微孔聚丙交酯(PLA)材料性能的影响。两种不同类型的HBP(即Boltorn H2004 ®和Boltorn H20 ®)在相同的载荷水平(即12%)和相同类型的HBP的作用下不同负载水平下的HBP(即Boltorn H2004 ®分别为6%和12%),以及同时添加12%Boltorn H2004 ®和2%Cloisite ® 30B纳米粘土(即HBP-纳米粘土)的热和机械性能(静态和动态),以及微孔组件的细胞形态被记录下来。 HBP和/或HBP与纳米粘土的添加减少了平均细胞大小,并增加了细胞密度。所有固体和微孔PLA-H2004共混物的应力-应变图均显示出相当大的应变软化和冷拔,表明其韧性断裂模式。在两种HBP中,与Boltorn H20 ®相比,具有Boltorn H2004 ®的样品显示出更高的断裂应变和比韧性。此外,具有Boltorn H2004 ®和纳米粘土的样品表现出最高的断裂应变(固体为626%,微孔为406%)和比韧性(固体为405%,微孔为334%) 。最后,发现微孔样品的比韧性,断裂应变和比强度低于固态样品。

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