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Application of Factorial Design in Determination of Physico-Mechanical Properties of NR/SBR Alloy - Influence of Sulfur Curing System

机译:析因设计在NR / SBR合金物理力学性能测定中的应用-硫固化体系的影响。

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摘要

In this research physico-mechanical properties including tensile strength, elongation at break, hardness, resilience, abrasion resistance, and compression set of unsaturated natural rubber and styrene butadiene rubber (NR/SBR) alloy cured by sulfur curing system were investigated. Factorial design method was employed in order to formulate the sulfur curing system. Three different curing agents were used and their effects on physico-mechanical properties of the alloy were investigated. The results show that with increasing each curing agent, curing time and scorch time reduce and maximum torque increases. Tensile strength, % elongation at break, tear strength, and compression set decrease while hardness, resilience, and abrasion increase.The results show that application of factorial design significantly reduces research and development costs by decreasing the number of experimental configurations to be studied and the results are accurate. Results from factorial design procedure very well match the experimental results with accuracy in order of 2% variations.
机译:在这项研究中,研究了通过硫化体系固化的不饱和天然橡胶和丁苯橡胶(NR / SBR)合金的拉伸强度,断裂伸长率,硬度,回弹性,耐磨性和压缩永久变形的物理机械性能。为了设计硫磺硫化体系,采用了析因设计方法。使用了三种不同的固化剂,并研究了它们对合金物理力学性能的影响。结果表明,随着每种固化剂的增加,固化时间和焦烧时间减少,最大扭矩增加。拉伸强度,断裂伸长率%,撕裂强度和压缩永久变形降低,而硬度,回弹力和耐磨性增加。结果表明,阶乘设计的应用通过减少要研究的实验配置的数量和减少了研发成本而显着降低了研发成本。结果是准确的。析因设计程序的结果与实验结果非常吻合,准确度相差2%。

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