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Tensile Strength Analysis of High Density Polyethylene for Injection Moulded Parts

机译:注塑件高密度聚乙烯的拉伸强度分析

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This paper investigates the performance of pure high density polyethylene (p-HDPE) and recycled high density polyethylene (r-HDPE) by comparing the tensile strength of both materials. The specimens were injected by injection moulding machine and the parameters investigated were melting temperature (200-240°C), injection pressure (75-95 MPa), and holding time (20-30 s). Response Surface Methodology (RSM) was used to accommodate the experimental run as well as to analyse the experimental results. The result from Analysis of Variance (ANOVA) showed that the melting temperature is the most significant parameters affecting the tensile strength of both materials with the F-value is 307.58, followed by injection pressure (77.32) and holding time (19.67). The result also showed that the tensile strength of both materials increase with increasing of melt temperature, injection pressure and holding time. The optimal tensile strength of p-HDPE (27.04 MPa) was obtained at the melting temperature of 240°C, injection pressure of 95 MPa and holding time of 20 s. On the other hand, the optimal tensile strength of r-HDPE (16.058 MPa) was achieved at the melting temperature of 240°C, injection pressure of 95 MPa, and holding time of 29 s. The reduction percentage of tensile strength for r-HDPE as compared to p-HDPE was in the range of 43.478% - 40.703%. Even though the tensile strength of r-HDPE has been reduced by around 40% as compared to p-HDPE, the r-HDPE can still be utilised for packaging application such as containers, bottles, and jars. Therefore, this will help to significantly reduce waste in order to sustain the environment.
机译:本文通过比较两种材料的拉伸强度来研究纯高密度聚乙烯(P-HDPE)和再循环的高密度聚乙烯(R-HDPE)的性能。通过注射成型机注入样品,参数研究是熔化温度(200-240°C),注射压力(75-95MPa)和保持时间(20-30秒)。响应表面方法(RSM)用于适应实验运行以及分析实验结果。由差异分析(ANOVA)的结果表明,熔化温度是影响两种材料的抗拉强度的最重要参数,其具有F值为307.58,然后注射压力(77.32)和保持时间(19.67)。结果还表明,两种材料的拉伸强度随着熔体温度,注射压力和保持时间的增加而增加。 P-HDPE(27.04MPa)的最佳拉伸强度在240℃的熔融温度下获得,注射压力为95MPa,保持时间为20秒。另一方面,在240℃,注射压力的95MPa的熔融温度下实现R-HDPE(16.058MPa)的最佳拉伸强度,并保持29秒的时间。与P-HDPE相比,R-HDPE的拉伸强度的减少百分比范围为43.478%-40.703%。尽管与P-HDPE相比,R-HDPE的拉伸强度降低约40%,但仍可用于包装应用,例如容器,瓶子和罐子。因此,这将有助于显着减少废物以维持环境。

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