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Design of experimental design as a tool for the processing and characterization of HDPE composites with sponge-gourds (Luffa-Cylindrica) agrofiber residue.

机译:实验设计的设计,作为加工和表征带有海绵葫芦(Luffa-Cylindrica)农残纤维的HDPE复合材料的工具。

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摘要

Sponge-gourd (Luffa-Cylindrica) agrofiber residue (LC)-HDPE composites were manufactured by extrusion and injection moulding. The effects of fiber content, fiber size, screw speed and barrel zones temperatures on tensile strength at yield (TS) point, modulus of elasticity (MOE), flexure stress (FS) and Izod pendulum impact resistance were evaluated by using a design of experiments (DOE)-24 Factorial with centerpoint. Furthermore, a model was also determined for each response variable as well as to generate foreknowledge for additional combinations of the experimental factors. The design analysis showed that the LC-fiber content is the most important experimental factor, since it significantly affected three out of the four mechanical properties studied, specifically MOE, FS and Izod Impact resistance. The second most important parameter is the LC-fiber size. Additionally, the design analysis showed that screw speed and temperature of barrel zones did not present any influence on the properties investigated. Finally, the models were validated by comparing the results from additional experimental runs with the predicted values obtained from the respective model.
机译:通过挤压和注塑成型制造海绵状(Luffa-Cylindrica)农残纤维(LC)-HDPE复合材料。通过实验设计评估了纤维含量,纤维尺寸,螺杆速度和料筒区温度对屈服点(TS)的拉伸强度,弹性模量(MOE),弯曲应力(FS)和悬臂梁冲击强度的影响。 (DOE)-24具有中心点的阶乘。此外,还为每个响应变量确定了一个模型,并为实验因子的其他组合生成了预知。设计分析表明,LC纤维含量是最重要的实验因素,因为它显着影响了所研究的四个机械性能中的三个,特别是MOE,FS和Izod耐冲击性。第二个最重要的参数是LC纤维尺寸。此外,设计分析表明,螺杆转速和桶区温度对所研究的性能没有任何影响。最后,通过将其他实验获得的结果与从各个模型获得的预测值进行比较来验证模型。

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