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由超高碳酸镁含量的天然橡胶复合材料的弹性体降解制成的天然刚性和硬塑料

Natural Rigid and Hard Plastic Fabricated from Elastomeric Degradation of Natural Rubber Composite with Ultra-High Magnesium Carbonate Content.

作者信息

Dasaesamoh Abedeen, Khotmungkhun Kittikhun, Subannajui Kittitat

机构信息

Material Science and Engineering Program, School of Materials Science and Innovation, Faculty of Science, Mahidol University, Bangkok 10400, Thailand.

出版信息

Polymers (Basel). 2023 Jul 18;15(14):3078. doi: 10.3390/polym15143078.

Abstract

It is known that natural rubber is an elastomeric polymer; hence, the main uses are usually limited to soft applications. For the process to reverse the elastomeric effect of natural rubber to obtain rigid plastic from a natural material, an ultra-high amount of magnesium carbonate particles was added to the natural rubber to study the effect of magnesium carbonate in the reduction of elastomeric properties. High magnesium carbonate ratios of 80-180 phr were mixed in the natural rubber in the latex form to maximize the mixing capability since it was more difficult to achieve these mixture ratios with only two roll mill or extruder processes. The more magnesium carbonate powders in the composite, the higher torques were measured from the moving die rheometer (MDR) test. The powder was thoroughly mixed inside the composite, which was observed from energy-dispersive X-ray spectrometer (EDX) mapping; however, the matrix of composites was filled with porosity due to the CO formation when latex with magnesium carbonate was assimilated with acid during the vulcanization process. The strength of the composite dropped, and the elongations were shortened. On the other hand, the hardness of composites was drastically increased. The composite lost the elastomeric property, and the hard natural rubber composites were obtained.

摘要

众所周知,天然橡胶是一种弹性体聚合物;因此,其主要用途通常限于软质应用。为了使天然橡胶的弹性效应逆转,从而从天然材料中获得硬质塑料,向天然橡胶中添加了超大量的碳酸镁颗粒,以研究碳酸镁对降低弹性性能的影响。以乳胶形式在天然橡胶中混入80 - 180 phr的高碳酸镁比例,以最大化混合能力,因为仅通过双辊磨机或挤出机工艺更难达到这些混合比例。复合材料中碳酸镁粉末越多,从动态硫化仪(MDR)测试中测得的扭矩越高。从能量色散X射线光谱仪(EDX)图谱可以观察到,粉末在复合材料内部充分混合;然而,在硫化过程中,当含碳酸镁的乳胶与酸同化时,由于一氧化碳的形成,复合材料的基体充满了孔隙。复合材料的强度下降,伸长率缩短。另一方面,复合材料的硬度急剧增加。复合材料失去了弹性性能,从而获得了硬质天然橡胶复合材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea83/10384260/2c7c34952d70/polymers-15-03078-g001.jpg

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