Utilizing thermal imaging for non-destructive thermoformability assessment in vacuum-air pressure thermoforming of plastic-coated paperboards

Sanaz Afshariantorghabeh
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Abstract

Abstract. This study addressed the limitations of traditional post-production analyses in refining thermoforming operation by employing non-destructive, real-time thermal analysis, specifically employing thermal imaging. The focus was on assessing the thermoformability of plastic-coated paperboards, a recent area of interest in manufacturing. Three paperboards underwent vacuum and air pressure thermoforming, with continuous temperature monitoring. Findings revealed correlations between the temperature distributions, the thermal profiles, and the material shape formability. Direct analysis of the thermal images enabled accurate measurement of contact areas between the mold and material. Furthermore, temperature profiles were closely related to shape profiles, particularly concerning the depth, which might be due to exothermic response of the studied materials during the induced stretching process.
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利用热成像技术对涂塑纸板的真空-气压热成型进行无损热成型性评估
摘要这项研究通过采用非破坏性实时热分析,特别是热成像技术,解决了传统生产后分析在改进热成型操作方面的局限性。重点是评估塑料涂层纸板的热成型性,这也是最近制造业关注的一个领域。三张纸板分别进行了真空和气压热成型,并对温度进行了连续监测。研究结果显示了温度分布、热曲线和材料形状成型性之间的相关性。通过直接分析热图像,可以精确测量模具和材料之间的接触面积。此外,温度曲线与形状曲线密切相关,特别是在深度方面,这可能是由于所研究材料在诱导拉伸过程中的放热反应所致。
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