不同碳填料增强杂化纳米复合材料的断口学和拉伸性能研究

Balachandra P. Shetty, G. J. Naveen
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引用次数: 0

摘要

弹性体的使用在包括汽车、医疗和食品包装在内的各种行业中变得越来越重要。弹性体对不同机械应力的适应性使其成为这些应用的热门选择。然而,弹性体的力学性能可以通过添加合适的填料进一步提高。在本研究中,研究了不同的碳填料,即炭黑、碳石墨和碳纳米管对弹性体材料抗拉强度的影响。采用溶液浇铸法制备了不同浓度的碳纳米管、碳纳米管和碳纳米管填料的普通有机硅的不同组合。填料的浓度范围为5% ~ 15%,间隔为5%。测试了每种组合的抗拉强度,结果表明,碳纳米管组合在15%载荷下的抗拉强度最大。本研究结果强调了填料选择对提高弹性体力学性能的重要性。碳填料,特别是碳纳米管,在提高弹性体材料的抗拉强度方面已被证明是有效的。这对各个行业,特别是汽车和医疗领域应用的新材料的开发具有重要意义。由于弹性体具有吸收机械冲击和振动的能力,因此弹性体在汽车工业中的应用变得越来越重要。弹性材料在医疗领域也有应用,例如人造皮肤、血液泵、药物输送系统和植入物的开发。弹性体在食品包装中的使用也变得流行,因为它们有能力提供抗氧和防潮的屏障。在弹性体材料中使用碳填料有可能显著提高其机械性能,特别是其抗拉强度。该研究为不同碳填料对弹性体抗拉强度的影响提供了有价值的见解,这可以帮助开发用于各种工业应用的新材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fractography and Tensile studies on the effect of different carbon fillers reinforced hybrid nanocomposites
The use of elastomers has become increasingly important in a variety of industries, including automotive, medical, and food packaging. The adaptability of elastomers to different mechanical stresses has made them a popular choice for these applications. However, the mechanical properties of elastomers can be further enhanced by adding suitable fillers. In this study, the effects of different carbon fillers, namely carbon black, carbon graphite, and carbon nanotubes, on the tensile strength of elastomeric materials were investigated. Different combinations of plain silicone with varying concentrations of CB, CG, and CNT fillers were prepared using a solution casting method. The concentrations of the fillers ranged from 5% to 15% with an interval of 5%. The tensile strength of each combination was measured, and the results showed that the maximum tensile strength was achieved with the combination of CNT at 15% loading. The results of this study highlight the importance of filler selection in enhancing the mechanical properties of elastomers. Carbon fillers, particularly CNTs, have shown to be effective in improving the tensile strength of elastomeric materials. This has important implications for various industries, particularly in the development of new materials for applications in the automotive and medical fields. The use of elastomers in the automotive industry has become increasingly important due to their ability to absorb mechanical shocks and vibrations. Elastomeric materials have also found applications in the medical field, such as in the development of artificial skin, blood pumps, drug delivery systems, and implants. The use of elastomers in food packaging has also become popular due to their ability to provide a barrier against oxygen and moisture. The use of carbon fillers in elastomeric materials has the potential to significantly enhance their mechanical properties, particularly their tensile strength. This study provides valuable insights into the effects of different carbon fillers on the tensile strength of elastomers, which can help in the development of new materials for various industrial applications.
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