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纳米氧化硼和氧化锌掺杂的含木质素纤维素纳米晶体改善了高密度聚乙烯的热性能、机械性能和燃烧性能。

Nano Boron Oxide and Zinc Oxide Doped Lignin Containing Cellulose Nanocrystals Improve the Thermal, Mechanical and Flammability Properties of High-Density Poly(ethylene).

作者信息

Bajwa Dilpreet S, Holt Greg, Stark Nicole, Bajwa Sreekala G, Chanda Saptaparni, Quadir Mohiuddin

机构信息

Mechanical and Industrial Engineering Department, Montana State University, Bozeman, MT 59717, USA.

Cotton Production and Processing Research Unit, United States Department of Agriculture, Agricultural Research Service, Lubbock, TX 79403, USA.

出版信息

Polymers (Basel). 2023 Dec 21;16(1):36. doi: 10.3390/polym16010036.

Abstract

The widely used high-density polyethylene (HDPE) polymer has inadequate mechanical and thermal properties for structural applications. To overcome this challenge, nano zinc oxide (ZnO) and nano boron oxide (BO) doped lignin-containing cellulose nanocrystals (L-CNC) were blended in the polymer matrix. The working hypothesis is that lignin will prevent CNC aggregation, and metal oxides will reduce the flammability of polymers by modifying their degradation pathways. This research prepared and incorporated safe, effective, and eco-friendly hybrid systems of nano ZnO/L-CNC and nano BO/L-CNC into the HDPE matrix to improve their physio-mechanical and fire-retardant properties. The composites were characterized using Fourier transform infrared spectroscopy, scanning electron microscopy, energy dispersive X-ray analysis, thermo-gravimetric analysis, differential scanning calorimetry, dynamic mechanical analysis, horizontal burning test, and microcalorimetry test. The results demonstrated a substantial increase in mechanical properties and a reduction in flammability. The scanning electron microscope (SEM) images showed some agglomeration and irregular distribution of the inorganic oxides.

摘要

广泛使用的高密度聚乙烯(HDPE)聚合物在结构应用中具有不足的机械和热性能。为了克服这一挑战,将纳米氧化锌(ZnO)和纳米氧化硼(BO)掺杂的含木质素纤维素纳米晶体(L-CNC)共混于聚合物基体中。工作假设是木质素将防止CNC聚集,并且金属氧化物将通过改变其降解途径来降低聚合物的可燃性。本研究制备了纳米ZnO/L-CNC和纳米BO/L-CNC的安全、有效且环保的混合体系,并将其引入HDPE基体中以改善其物理机械性能和阻燃性能。使用傅里叶变换红外光谱、扫描电子显微镜、能量色散X射线分析、热重分析、差示扫描量热法、动态力学分析、水平燃烧试验和微量量热试验对复合材料进行了表征。结果表明机械性能有显著提高且可燃性降低。扫描电子显微镜(SEM)图像显示无机氧化物存在一些团聚和不规则分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4d2/10780719/cdf3f9d2192c/polymers-16-00036-g001.jpg

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