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Influence of Amino Acids on Anti-Oxidative Properties of Green Natural Rubber and Natural Rubber Compound

机译:氨基酸对绿色天然橡胶和天然橡胶化合物抗氧化性能的影响

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This research was to study the efficiency of amino acids such as alanine, asparagine and cysteine, which were applied as antioxidant both in green and vulcanized natural rubbers (NR) for STR5L and RSS3, comparing with the use of synthetic antioxidant, i.e., N-(1, 3-dimethylbutyl)-N'-phenyl-p-phenylenediamine (6-PPD). In the case of green NR, the rubber was mixed with antioxidants on a two-roll mill machine. Then, the specimens were shaped by hydraulic hot press. In the case of cured NR, conventional system of the sulfur vulcanization was carried out at 150°C for t95. Both green and vulcanized NR's specimens were subjected to heat aging test at 100°C for 24, 48, 72 and 96 hours. Another mixed green and cured NR were also tested the plasticity by Wallace plastometer and ozone resistance following ISO 1431/1, respectively. From the experiment, it was found that although plasticity retention index (PRI) of the green NR mixed with each type of amino acids were lower than those mixed with 6-PPD, alanine exhibits the best antioxidative property among all of amino acids. Considering at the reduction in tensile properties, stress at 200% strain of both raw STR5L and RSS3 mixed with 1 phr of 6-PPD after heat aging test were totally lower than those applied with alanine, asparagine, and cysteine. In addition, for the cured NR specimens, the tensile results are agreeable with the PRI's value of the raw NR. However, NR vulcanizates preserved with each amino acid inhibited the crack length under ozone test better than that mixed with 6-PPD. Anti-oxidative mechanism of amino acids as well as 6-PPD is available as chain breaking donors (CB-D) mechanism. This might be concluded that alanine can be applied as a natural antioxidant in the green and vulcanized NR better than other amino acids, but not for 6-PPD. Moreover, three types of amino acid can be used as a good antiozonant for the sulphur vulcanized NR.
机译:本研究是为了研究氨基酸,如丙氨酸,天冬酰胺和半胱氨酸,其被应用为无论是在绿色和硫化天然橡胶(NR)为STR5L和RSS3抗氧化剂,与使用合成的抗氧化剂的比较,即,N-效率(1,3-二甲基丁基)-N'-苯基 - 对苯二胺(6-PPD)。在绿色NR的情况下,橡胶用双辊磨机上的抗氧化剂混合。然后,将试样通过油压式热压成形。在固化NR的情况下,硫黄硫化的常规系统中在150℃下为T95进行。绿色和硫化NR的试样进行在100℃下加热老化试验24,48,72和96小时。另一混合的绿色和固化NR还测试通过,分别按照ISO1分之1431华莱士塑性和耐臭氧性的可塑性。从实验中,发现,虽然绿色NR与每种类型的氨基酸混合的塑性保留指数(PRI)较用6-PPD,丙氨酸展品中的所有氨基酸的最好的抗氧化特性混合的低级。在在两个原始STR5L的200%应变和RSS3在拉伸性能的降低,应力考虑与热老化试验后1phr的6-PPD的混合比用丙氨酸,天冬酰胺和半胱氨酸施加被完全降低。此外,对于固化的NR试样,拉伸结果是同意与原料NR的PRI的值。然而,随着每个氨基酸保留NR硫化抑制下臭氧试验中的裂纹长度比用6-PPD混合更好。氨基酸的抗氧化机制以及6-PPD可作为断链供体(CB-d)机制。这可能会得出结论,丙氨酸可以作为一种天然抗氧化剂在绿色和硫化NR比其他氨基酸更好的为6-PPD应用,但不是。此外,三种类型的氨基酸,可以作为良好的抗臭氧剂的硫化NR硫。

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