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Simultaneous optimization of the mechanical properties of postconsumer natural fiber/plastic composites: processing analysis

机译:同时优化消费后天然纤维/塑料复合材料的力学性能:加工分析

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摘要

In this work, manufacturing steps of composites were simultaneously analyzed to optimize four mechanical properties (flexural and tensile moduli, impact strength, and tensile stress at yield) of flax fiber/postconsumer recycled plastic composite. Eight parameters of the extrusion-injection process (extrusion: temperature profile and screw speed; injection: temperature profile in the barrel, mold temperature, injection speed, injection pressure, injection time, and back pressure) were selected. Process optimization, taking into account simultaneously all the mechanical properties (multi-responses optimization), required four steps: determination of influential factors by a screening design and an evaluation of the selected factors effects on the mechanical properties, modeling of the relationships between mechanical properties and significant factors by a Box-Behnken experimental design and a multiple linear regression analysis, identification of the potentially optimum conditions using the desirability function approach (Derringer-Suich model), and determination the optimum composite manufacturing conditions by a comparative analysis of the material relative qualities.
机译:在这项工作中,同时分析了复合材料的制造步骤,以优化亚麻纤维/消费后回收塑料复合材料的四个机械性能(弯曲和拉伸模量,冲击强度和屈服拉伸应力)。选择了挤压-注射过程的八个参数(挤压:温度曲线和螺杆速度;注射:机筒中的温度曲线,模具温度,注射速度,注射压力,注射时间和背压)。同时考虑所有机械性能的工艺优化(多响应优化)需要四个步骤:通过筛选设计确定影响因素,评估所选因素对机械性能的影响,对机械性能之间的关系进行建模Box-Behnken实验设计和多重线性回归分析确定重要因素,使用期望函数法(Derringer-Suich模型)确定潜在的最佳条件,并通过材料相对比的比较分析确定最佳复合材料制造条件品质。

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