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首页> 外文期刊>Journal of Applied Polymer Science >Taguchi-based analysis of polyamide 6/acrylonitrile-butadiene rubberanoclay nanocomposites: The role of processing variables
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Taguchi-based analysis of polyamide 6/acrylonitrile-butadiene rubberanoclay nanocomposites: The role of processing variables

机译:基于Taguchi的聚酰胺6 /丙烯腈-丁二烯橡胶/纳米粘土纳米复合材料的分析:加工变量的作用

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摘要

Applying the Taguchi method of experimental design, we prepared various polyamide 6 (PA6)/acrylonitrile butadiene rubber (NBR)anoclay nanocomposites under different processing conditions by melt mixing in an internal mixer. The effects of the processing variables, including the rotor speed, chamber temperature, and mixing order on the morphology, that is, the rubber particle size and interlayer distance, and the mechanical properties, that is, the tensile modulus and impact strength, were then investigated. As demonstrated with the Taguchi approach, the lower temperature associated with higher rotor speeds improved the mechanical properties of the 90/5/5 PA6/NBRanoclay systems. However, it was revealed that the mixing order did not affect the mechanical properties for the assigned composition. Hence, the simultaneous mixing of all the ingredients is seemingly the simplest way of mixing to obtain the desired mechanical properties. These results were confirmed with transmission and scanning electron microscopy observations and X-ray diffraction measurements. Image analysis corresponding to the mean particle size of the NBR constituent was also performed. The optimum processing condition to achieve the appropriate mechanical properties is ultimately predicted by the Taguchi analysis and corresponded to a chamber temperature of 230°C and a screw speed of 80 rpm. Moreover, the simultaneous mixing of all of the ingredients was suggested for convenience.
机译:应用田口实验设计方法,通过在内部混合器中熔融混合,在不同的加工条件下制备了各种聚酰胺6(PA6)/丙烯腈丁二烯橡胶(NBR)/纳米粘土纳米复合材料。然后,处理变量(包括转子速度,腔室温度和混合顺序)对形态(即橡胶粒度和中间层距离)以及机械性能(即拉伸模量和冲击强度)的影响调查。如Taguchi方法所示,较低的温度与较高的转子转速相关联,从而改善了90/5/5 PA6 / NBR /纳米粘土系统的机械性能。但是,发现混合顺序不影响所分配的组合物的机械性能。因此,所有成分的同时混合似乎是混合以获得所需机械性能的最简单方法。通过透射和扫描电子显微镜观察以及X射线衍射测量证实了这些结果。还进行了与NBR成分的平均粒径相对应的图像分析。通过Taguchi分析最终可以预测达到适当机械性能的最佳加工条件,该条件对应于230°C的腔室温度和80 rpm的螺杆速度。此外,为方便起见,建议同时混合所有成分。

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