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Electrical studies on biopolyurethane from cashew nut husk tannin

机译:腰果壳单宁中生物聚氨酯的电学研究

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摘要

Purpose - This paper aims to focus on the evaluation of the electrical properties of bio-based polyurethane material derived from cashew nut husk tannin and also the effect of temperature and frequency on the dielectric values and alternate current (AC) conductivity. Design/methodology/approach - Bio-based polyurethane is prepared from cashew nut husk tannin as polyol, their dielectric constant and dielectric loss factor are measured using an inductance capacitance resistance (LCR) metre, and the AC conductivity is determined using dielectric constant and loss values. Findings - The dielectric constant values are high, and the values decrease with an increase in frequency but increase with an increase in temperature. The AC conductivity values are low; hence, the material can be categorized as insulators or semi-conductors. Because the polyurethanes have a good dielectric value and are cost-effective, as they are derived from renewable biomaterial waste, they have promising applications for the future. Research limitations/implications - The experiment is carried out up to the frequency of 200 KHz because of the limitation in the instrument. But for the institute of printed circuits (IPC) and other specifications, the values of dielectric loss and dielectric constant will be generally coated for 1 MHz. Practical implications - The high dielectric constant and loss values show that the polyurethane can be opted for use as capacitors in electronic devices, and the values are comparable to the requirements of IPC4101A/24IPC; hence, they are suitable for the application as printed circuit board (PCB) laminate. Social implications - The use of biomaterial waste in the production of polyurethane will bring down the dependence of polyurethane industry on fossil fuel reserve, reduce carbon dioxide foot print and reduce the cost of production. Originality/value - The motivation of the work was its ecological aspect and also aims on the use of an alternative bio-based material in the PCB industry.
机译:目的-本文旨在重点评估腰果皮单宁衍生的生物基聚氨酯材料的电性能,以及温度和频率对介电值和交流电(AC)电导率的影响。设计/方法/方法-生物基聚氨酯是由腰果壳单宁酸作为多元醇制备的,其介电常数和介电损耗因子是使用电感电容电阻(LCR)米测量的,而交流电导率是使用介电常数和损耗确定的价值观。发现-介电常数值高,并且该值随频率的增加而降低,但随温度的升高而增加。交流电导率值低;因此,该材料可以分为绝缘体或半导体。由于聚氨酯具有良好的介电值并且具有成本效益,因为它们源自可再生的生物材料废物,因此它们在未来具有广阔的应用前景。研究的局限性/意义-由于仪器的局限性,实验频率高达200 KHz。但是对于印刷电路研究所(IPC)和其他规范,介电损耗和介电常数的值通常会覆盖1 MHz。实际意义-高介电常数和损耗值表明,聚氨酯可以选择用作电子设备中的电容器,其值可与IPC4101A / 24IPC的要求相媲美;因此,它们适合用作印刷电路板(PCB)层压板。社会影响-在聚氨酯生产中使用生物材料废物将降低聚氨酯行业对化石燃料储量的依赖,减少二氧化碳足迹并降低生产成本。原创性/价值-这项工作的动机是其生态方面,也旨在在PCB工业中使用替代的生物基材料。

著录项

  • 来源
    《Circuit World》 |2015年第1期|41-46|共6页
  • 作者单位

    Department of Chemistry, University College of Engineering Nagercoil, Anna University, Nagercoil, India;

    Department of Chemistry, Thiagarajar College of Engineering, Madurai, India;

    Department of Chemistry, University College of Engineering Nagercoil, Anna University, Nagercoil, India;

  • 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

    Printed circuit board; Bio-based polyurethane; Dielectric property;

    机译:印刷电路板;生物基聚氨酯;介电性能;

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