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Experimental study of influence injection moulding on shrinkage material sisal-glass fiber biocomposite using response surface methodology(RSM)

机译:利用响应面法(RSM)对收缩材料Sisal-玻璃纤维生物复合材料影响的试验研究(RSM)

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Shrinkage is one of the properties of plastic materials,which the greater the shrinkage percentage value can result poor product quality and possible product defects.Therefore,it is important to know the shrinkage value of a material so that the geometry design of a product can be achieved properly.In this final project,shrinkage control is carried out by adjusting injection process parameters,until minimum shrinkage is obtained.The parameters set to control shrinkage values are melting temperature,holding pressure,and injection pressure.According to ASTM D955 to determine the shrinkage value of a material the specimen is made through the injection process.To obtain the minimum shrinkage value,an experimental design was carried out by using response surface method to reach the optimum injection process parameters with Box-Behnken parameter design.As the next step,the injection specimens which made from sisal fiber biocomposite material with composition of 80% Polypropelene,10% MAPP,and 10% sisal fiber with injection process parameters according to the design.The injection result specimens were measured by calipers,Minitab 18 software was used to process the injection result.This result is used to determine the optimum value of the injection process parameters.Furthermore,with the optimum injection process parameters,the injection process is carried out again with the same material.The specimens obtained were measured to carry out a confirmation test,so that the minimum shrinkage value was obtained.From the statistical response surface analysis using Minitab 18 software,the optimum injection process parameters were obtained at 185° C,holding pressure 35 bar and injection pressure 60 bar with shrinkage values of 1.05%.
机译:收缩是塑料材料的特性,即收缩百分比值越大,产品质量差和可能的产品缺陷。因此,了解材料的收缩值,使产品的几何设计可以是正确实现。在该最终项目中,通过调节注入工艺参数来进行收缩控制,直到获得最小收缩。设置为控制收缩值的参数是熔化温度,保持压力和注射压力。根据ASTM D955来确定通过注射过程制作样品的物质的收缩值。为了获得最小收缩值,通过使用响应面方法进行实验设计,以便与Box-Behnken参数设计达到最佳喷射过程参数。下一步,由Sisal纤维生物复合材料制成的注射样品,其组合物为80%聚丙烯,10%MAPP和10%Sisal纤维具有注射工艺参数根据设计参数。通过卡钳测量喷射结果样本,Minitab 18软件用于处理注射效果。该结果用于确定注射过程参数的最佳值.Furtimore,利用最佳喷射工艺参数,注射过程再次用相同的材​​料进行。测量所得样品以进行确认试验,从而获得最小收缩值。通过Minitab 18软件,通过Minitab 18软件进行统计响应表面分析。 ,最佳注入工艺参数在185℃,保持压力35巴和注射压力60巴,收缩值为1.05%。

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