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Effect of Peel Side on Optimum Condition for Measuring Flexible Film Peel Strength in T-Peel Adhesion Test

机译:T-剥离粘合力试验中剥离面对测量柔性膜剥离强度的最佳条件的影响

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摘要

Standardized methods for conducting a T-peel test have been well established for rigid materials, but are not suitable for flexible film because of variations in peel strength. The purpose of this paper is to provide an experimental procedure for a T-peel adhesion test and determine optimum conditions by considering the effect from alternate peel sides. A new testing apparatus is developed to solve the variation problem of using standardized methods for flexible packaging film. The optimum conditions are achieved using a parameter design method. The dynamic signal-to-noise ratio provides the optimum condition, as it has a minimum variation of peel strength evaluated from the peel side of the aluminum (Al) and cast polypropylene (CPP) layers. An experimental design is employed using an orthogonal array with four control factors consisting of peel angle, peel speed, data region, and spring thickness. The variation caused by the different peel surfaces of each specimen is investigated to observe which peel side gives the best condition for the T-peel test. Three optimum conditions for flexible film are discussed: the aluminum peel side condition, the CPP peel side condition, and the harmonized condition. Based on the signal-to-noise ratio (SNR) used to evaluate the improved condition in a confirmation test, the CPP peel side has the highest SNR, followed by the aluminum peel side, and then the harmonized condition. The SNR for the CPP peel side condition increased by 22 % from the aluminum peel side condition; thus, it is advised that the CPP peel side condition be used. The SNR of the harmonized condition is lower than the CPP and aluminum conditions, but it provides a convenient design that can be used without regard for peel side.
机译:已经针对硬质材料很好地建立了进行T型剥离试验的标准方法,但由于剥离强度的变化,不适用于柔性膜。本文的目的是为T型剥离粘合力测试提供实验程序,并通过考虑交替剥离面的影响来确定最佳条件。开发了一种新的测试设备以解决使用标准化方法用于软包装膜的变化问题。使用参数设计方法可以达到最佳条件。动态信噪比提供了最佳条件,因为从铝(Al)和铸造聚丙烯(CPP)层的剥离面评估的剥离强度变化最小。使用正交阵列进行实验设计,该正交阵列具有四个控制因子,包括剥离角,剥离速度,数据区域和弹簧厚度。研究由每个样品的不同剥离表面引起的变化,以观察哪个剥离面为T剥离试验提供了最佳条件。讨论了柔性膜的三个最佳条件:铝剥离侧条件,CPP剥离侧条件和协调条件。根据用于在确认测试中评估改善条件的信噪比(SNR),CPP剥离面具有最高SNR,其次是铝剥离面,然后是协调状态。 CPP剥离侧条件的SNR比铝剥离侧条件提高了22%;因此,建议使用CPP剥离侧条件。协调条件下的SNR低于CPP和铝条件,但它提供了方便的设计,无需考虑剥离面即可使用。

著录项

  • 来源
    《Journal of testing and evaluation》 |2014年第1期|50-62|共13页
  • 作者

    Rozzeta Dolah; Zenichi Miyagi;

  • 作者单位

    Dept. of Mechanical Engineering, School of Science and Technology, Building D 105, Meiji Univ., Higashi Mita 1-1-1, Tama-ku, Kawasaki-shi, Kanagawa-ken, 214-8571 Japan UTM Razak School of Engineering and Advanced Technology, Universiti Teknologi Malaysia, Jalan Semarak, 54100 Kuala Lumpur, Malaysia;

    Dept. of Mechanical Engineering, School of Science and Technology, Building D 105, Meiji Univ., Higashi Mita 1-1-1, Tama-ku, Kawasaki-shi, Kanagawa-ken, 214-8571, Japan;

  • 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

    aluminum-CPP flexible film; robust parameter design method; dynamic signal-to-noise ratio; T-peel test; peel strength;

    机译:铝-CPP柔性膜;健壮的参数设计方法;动态信噪比;T-剥离试验;剥离强度;

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