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A Methodology for Obtaining Material Properties of Polymeric Foam at Elevated Temperatures

机译:在高温下获得聚合物泡沫材料性能的方法

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摘要

A new methodology to characterise the elastic properties of polymeric foam core materials at elevated temperatures is proposed. The focus is to determine reliable values of the tensile and compressive moduli and Poisson’s ratio based on strain data obtained using digital image correlation (DIC). In the paper a detailed coverage of the source of uncertainties in the experimental procedure is provided. The uncertainties include those associated with the load introduction, the measurement and the data processing. The design of the specimens and loading jigs are developed and assessed in terms of the introduction of uniform strain. It is shown that due to the mismatch in stiffness between the jig material and the foam the introduction of a uniform strain through the cross section of the specimens is difficult to obtain. A means for correcting for the non-uniform strain across the specimen cross section is developed. To validate the methodology, tests are firstly conducted at room temperature on Divinycell PVC H100 foam. It is shown that the material is highly anisotropic with a stiffness of 50% less in the plane of the foam sheet compared to the through-thickness direction. It is also shown that because of the compliance of the foam, jig misalignment causes large errors in the measurement, and a means for correcting for this is defined. Tests are then conducted in a temperature controlled chamber at elevated temperatures ranging from 20°C to 90°C. A nonlinear reduction in Young’s modulus is obtained with significant degradation occurring after 70°C. The Poisson’s ratio remains fairly stable at different temperatures. A strong theme in the paper is the accuracy and precision of the DIC data and the factors which introduce scatter in the data, along with the uncertainties that this introduces. Particular attention is paid to the affect of the correlation parameters on the derived strain data.
机译:提出了表征高温下聚合物泡沫芯材料弹性性能的新方法。重点是根据使用数字图像相关(DIC)获得的应变数据来确定拉伸模量和压缩模量以及泊松比的可靠值。在本文中,详细介绍了实验过程中不确定性的来源。不确定性包括与负荷引入,测量和数据处理相关的不确定性。根据均匀应变的引入来开发和评估试样和加载夹具的设计。结果表明,由于夹具材料和泡沫材料之间的刚度不匹配,很难通过试样的横截面引入均匀的应变。开发了一种用于校正整个试样横截面的不均匀应变的方法。为了验证该方法,首先在室温下对Divinycell PVC H100泡沫进行了测试。结果表明,该材料是高度各向异性的,与在整个厚度方向上相比,在泡沫板平面上的刚度小了50%。还显示出由于泡沫的顺应性,夹具未对准导致测量中的大误差,并且定义了用于对此进行校正的手段。然后在温度受控的室内在20°C至90°C的高温下进行测试。杨氏模量呈非线性下降,在70°C后会发生明显的降解。在不同温度下,泊松比保持相当稳定。本文的一个重要主题是DIC数据的准确性和精确性以及在数据中引入分散的因素,以及由此带来的不确定性。特别注意相关参数对导出的应变数据的影响。

著录项

  • 来源
    《Experimental Mechanics》 |2012年第1期|p.3-15|共13页
  • 作者单位

    School of Engineering Sciences, University of Southampton, Highfield, Southampton, SO17 1BJ, UK;

    School of Engineering Sciences, University of Southampton, Highfield, Southampton, SO17 1BJ, UK;

    School of Engineering Sciences, University of Southampton, Highfield, Southampton, SO17 1BJ, UK;

    Department of Mechanical and Manufacturing Engineering, Aalborg University, Fibigerstræde 16, DK-9220, Aalborg East, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polymeric foam core material; Thermal degradation; DIC; Sandwich structures;

    机译:聚合物泡沫芯材料;热降解;DIC;三明治结构;

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