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用于激光烧结应用的纳米粘土/聚合物复合粉末:纳米粘土等离子体处理的效果

Nanoclay/Polymer Composite Powders for Use in Laser Sintering Applications: Effects of Nanoclay Plasma Treatment.

作者信息

Almansoori Alaa, Majewski Candice, Rodenburg Cornelia

机构信息

1Department of Material Science and Engineering, University of Sheffield, Sheffield, UK.

Southern Technical University, Basra, Iraq.

出版信息

JOM (1989). 2017;69(11):2278-2285. doi: 10.1007/s11837-017-2408-5. Epub 2017 Jun 12.

Abstract

Plasma-etched nanoclay-reinforced Polyamide 12 (PA12) powder is prepared with its intended use in selective laser sintering (LS) applications. To replicate the LS process we present a downward heat sintering (DHS) process, carried out in a hot press, to fabricate tensile test specimens from the composite powders. The DHS parameters are optimized through hot stage microscopy, which reveal that the etched clay (EC)-based PA12 (EC/PA12) nanocomposite powder melts at a temperature 2°C higher than that of neat PA12, and 1-3°C lower than that of the nonetched clay-based nanocompsite (NEC/PA12 composite). We show that these temperature differences are critical to successful LS. The distribution of EC and NEC onto PA12 is investigated by scanning electron microscopy (SEM). SEM images show clearly that the plasma treatment prevents the micron-scale aggregation of the nanoclay, resulting in an improved elastic modulus of EC/PA12 when compared with neat PA12 and NEC/PA12. Moreover, the reduction in elongation at break for EC/PA12 is less pronounced than for NEC/PA12.

摘要

通过等离子体蚀刻制备了纳米粘土增强聚酰胺12(PA12)粉末,其预期用途是用于选择性激光烧结(LS)应用。为了模拟LS工艺,我们提出了一种在热压机中进行的向下热烧结(DHS)工艺,以从复合粉末制备拉伸试验样品。通过热台显微镜对DHS参数进行了优化,结果表明,基于蚀刻粘土(EC)的PA12(EC/PA12)纳米复合粉末的熔点比纯PA12高2°C,比未蚀刻粘土基纳米复合材料(NEC/PA12复合材料)低1-3°C。我们表明,这些温度差异对于成功进行LS至关重要。通过扫描电子显微镜(SEM)研究了EC和NEC在PA12上的分布。SEM图像清楚地表明,等离子体处理可防止纳米粘土的微米级团聚,与纯PA12和NEC/PA12相比,EC/PA12的弹性模量有所提高。此外,EC/PA12的断裂伸长率降低比NEC/PA12的情况不那么明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca63/6954011/c8153cc9d813/11837_2017_2408_Fig1_HTML.jpg

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