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Assessment of oil palm ash and compounding ingredients on tensile properties of acrylonitrile-butadiene rubber using statistical design

机译:用统计设计评估油棕榈灰和复合成分对丙烯腈 - 丁二烯橡胶拉伸性质的评价

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摘要

Various types of chemical ingredients are needed in the rubber compounding process to obtain desired properties for a commercially useful application. To content with this, Plackett-Burman design (PBD) provides an efficient way of dealing with a large number of variables and identifying the most important parameter. This study reviews the exploitation of PBD to screen the significant effect of different compounding ingredients as well as oil palm ash (OPA) to the tensile properties of acrylonitrile butadiene rubber (NBR). The two most significant components were chosen for each tensile property. Furthermore, three-dimensional plots and their respective contour plots were used to investigate the simultaneous interactions of different factors on the responses studied. Based on the result obtained, the tensile strength showed an increasing trend when N-cyclohexyl-2-benzothiazole sulfenamide (CBS) concentration increased; however, the increase in stearic acid has resulted in a decline in tensile strength. On the other hand, the sulphur crosslinker with the largest effect value has shown a significant reduction towards the elongation at break. For tensile modulus, sulphur and OPA which are the two most significant variables had contributed to a synergistic effect as the concentration increased.
机译:在橡胶复合过程中需要各种类型的化学成分,以获得商业上有用的应用的所需性质。提出内容,Plackett-Burman设计(PBD)提供了处理大量变量并识别最重要的参数的有效方法。本研究审查了PBD的利用,以筛选不同配体成分以及油棕灰(OPA)对丙烯腈丁二烯橡胶(NBR)的拉伸性质的显着影响。为每个拉伸性能选择两个最重要的组分。此外,使用三维图及其各自的轮廓图来研究不同因素对所研究的反应的同时相互作用。基于所得的结果,拉伸强度显示当N-环己基-2-苯并噻唑硫代磺酰胺(CBS)浓度增加时呈增加趋势;然而,硬脂酸的增加导致拉伸强度下降。另一方面,具有最大效果值的硫交联剂显示出朝突破的伸长率显着降低。对于拉伸模量,硫和OPA是两个最重要的变量有助于协同效应随着浓度的增加而产生的。

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