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Warpage-Crystallinity Relations in Rotational Molding of Polypropylene

机译:聚丙烯滚塑中的翘曲-结晶度关系

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摘要

The authors present a study of the crystalline properties of selected series of polypropylene (PP) materials in relation to their warpage at conditions relevant for rotational molding. The PP materials have different crystallization temperatures and kinetics. The authors study the crystalline features of the materials using hot-press experiments and differential scanning calorimetry (DSC). In the DSC, the authors do constant cooling rate runs as well as isothermal crystallization and subsequent heating. A multimode crystallization kinetics model was fitted to the DSC cooling runs. Regression analysis was done to relate the results from the crystallization experiments to warpage. The derived empirical model shows that the crystallization temperature, crystallization half-time, and heat of fusion are the most significant parameters influencing warpage. Materials with warpage deviating from the model average are discussed taking aspects of the multimode kinetics into account. The present work could represent a basic platform for understanding and predicting the warpage during rotational molding process. [PUBLICATION ABSTRACT]
机译:作者介绍了在与滚塑相关的条件下,所选系列的聚丙烯(PP)材料的结晶性能与其翘曲有关的研究。 PP材料具有不同的结晶温度和动力学。作者使用热压实验和差示扫描量热法(DSC)研究了材料的晶体特征。在DSC中,作者进行了恒定的冷却速度运行,等温结晶和随后的加热。将多模结晶动力学模型拟合到DSC冷却运行。进行了回归分析,以将结晶实验的结果与翘曲联系起来。推导的经验模型表明,结晶温度,结晶半衰期和熔化热是影响翘曲的最重要参数。讨论了翘曲偏离模型平均值的材料,并考虑了多模动力学的各个方面。目前的工作可以代表一个基本的平台,用于理解和预测在滚塑过程中的翘曲。 [出版物摘要]

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  • 来源
    《Polymer Engineering and Science》 |2009年第3期|p.523-530|共8页
  • 作者单位

    T. Glomsaker,1 E.L. Hinrichsen,1 Â. Larsen,1 P. Doshev,2 E. Ommundsen31 SINTEF Materials and Chemistry, Blindem, N-0314 Oslo, Norway2 Borealis Polyolefine GmbH, St.-Peter Strasse 25, A-4021 Linz, Austria3 Norner Innovation, Asdalstrand 291, N-3960 Stathelle, NorwayCorrespondence to: Age Larsen, e-mail: age.larsen@sintef.noContract grant sponsor: Research Council of Norway and Borealis.DOI 10.1002/pen.21322Published online in Wiley InterScience (www.interscience.wiley.com).© 2009 Society of Plastics Engineers,;

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