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The Effects of Thermoform Molding Conditions on Polyvinylchloride and Polyethylene Double Layer Package Materials

机译:热成型成型条件对聚氯乙烯和聚乙烯双层包装材料的影响

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摘要

This work reports the effects of thermoform molding process conditions on polyvinylchloride (PVC) and polyethylene (PE) double layer package materials. Mechanical and microstructural properties of the package material were examined by different test methods which are tensile properties, tear resistances and scanning electron microscopy (SEM). Furthermore, package materials, which are produced in different conditions by thermoform molding. Effect of different mold depths and process temperatures on the samples are determined by thermal aging process at 60 C in first, third, and seventh days. With increase in mold depth from 25 mm to 75 mm, there is a significant increase in tensile strength from ~45 MPa to ~55 MPa, thermoform temperature at 150℃. The highest elongation of the material was obtained thermoform temperature at 165℃ as 80%, mold depth at 35 mm. Tensile strength and elongation (%) of the material generally decrease by aging time with changing of mold depth (25, 35, and 75 mm) of the double layer package material. In addition, tear resistances of the material decrease via aging time in various thermoform temperatures (150°C, 165°C, and 175°C) due to the orientation of the segments. Scanning electron microscopic (SEM) images of the materials were taken for aging process in first, third, and seventh days.
机译:这项工作报告了热成型成型工艺条件对聚氯乙烯(PVC)和聚乙烯(PE)双层包装材料的影响。通过不同的测试方法检查了包装材料的机械和微观结构性能,这些方法包括拉伸性能,抗撕裂性和扫描电子显微镜(SEM)。此外,通过热成型模制在不同条件下生产的包装材料。在第一天,第三天和第七天,通过在60°C下进行热老化过程来确定不同模具深度和工艺温度对样品的影响。随着模具深度从25 mm增加到75 mm,在150℃的热成型温度下,拉伸强度从〜45 MPa显着增加到〜55 MPa。该材料的最高伸长率是在165℃的热成型温度为80%,模具深度为35 mm时获得的。随着双层包装材料的模具深度(25、35和75 mm)的变化,材料的拉伸强度和伸长率(%)通常会随着时效时间而降低。另外,由于段的取向,在各种热成型温度(150°C,165°C和175°C)下,材料的抗撕裂性会随着老化时间而降低。在第一,第三和第七天拍摄材料的扫描电子显微镜(SEM)图像以进行时效处理。

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