Selection of performance indicators on dielectric strength and viscosity for chlorinated polyvinyl chloride with N-Methyl-2-pyrrolidone: Optimization using central composite design-response surface methodology

Selva Kumar Shanmugaya Pandian, G. Balachandran, Hariharasudhan Thangaraj, Mariaamalraj Samykannu
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Abstract

N-methyl-2-pyrrolidone is a highly polar aprotic solvent that is frequently utilized across a broad range of applications in industry. The composition of chlorinated polyvinyl chloride is commonly flame-resistant and mechanically strong. In this research, the central composite design technique uses response surface methodology to perform a parametric study. The effect of the input variables wt.% (16%, 20%, 24%), stirring speed (300, 600, 900 r/min), and stirring time (20 min, 30 min, 40 min) on the output responses (dielectric strength kV/mm, and viscosity Pascal) were examined. The output responses were recorded during the experiments according to the experimental design. The factors impacting the response were identified through analysis of variance. According to the predicted vs. actual diagram, the confirmed experiments fit well with the predictions. Based on the response surface, the parameter interaction profile was analyzed. According to the contour plots related to each interaction, the maximum value can be achieved within different stirring parameters. Based on the result of optimization, the optimum values of dielectric strength and viscosity were found in (wt.% of chlorinated polyvinyl chloride—18.101%), (stirring speed—664 r/min), (stirring time—21.860 min). The output response obtained from the response surface methodology is the dielectric strength (18.5 kV/mm) and viscosity (37.67 Pa).
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选择 N-甲基-2-吡咯烷酮氯化聚氯乙烯介电强度和粘度的性能指标:采用中心复合设计-响应面方法进行优化
N- 甲基-2-吡咯烷酮是一种极性很强的无水溶剂,在工业中应用广泛。氯化聚氯乙烯的成分通常具有阻燃性和机械强度。在本研究中,中心复合设计技术采用响应面方法进行参数研究。研究了输入变量 wt.%(16%、20%、24%)、搅拌速度(300、600、900 r/min)和搅拌时间(20 分钟、30 分钟、40 分钟)对输出响应(介电强度 kV/mm 和粘度 Pascal)的影响。根据实验设计记录了实验过程中的输出响应。通过方差分析确定了影响响应的因素。根据预测与实际对比图,确认的实验结果与预测结果非常吻合。根据响应面,分析了参数相互作用曲线。根据与各相互作用相关的等高线图,在不同的搅拌参数范围内可以达到最大值。根据优化结果,介电强度和粘度的最佳值出现在(氯化聚氯乙烯重量百分比-18.101%)、(搅拌速度-664 r/min)和(搅拌时间-21.860 min)。根据响应面方法得出的输出响应为介电强度(18.5 kV/mm)和粘度(37.67 Pa)。
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