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Some Low Temperature Properties of Elastomers

机译:弹性体的一些低温特性

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摘要

A modification of the apparatus employed in measuring the Young's modulus of elastomers at low temperatures is described. The changes made in the apparatus permit the use of a simplified technique which can be adapted to routine testing procedure. The effects of various softeners on the low temperature bending moduli and the brittle point temperatures of stocks based on four butadiene‐acrylonitrile (B/A) type copolymers are given. It is shown that the softeners tested have the same relative effects in all four types and that a wide variation in low temperature properties is imparted to the stocks by the different softeners. Bending modulus curves and brittle point temperatures are given for typical test stocks based on Thiokol FA, and ``mass'' and ``emulsion'' polymerized polybutadiene. It is shown that continued exposure to low temperature affects the Young's modulus of some but not all typical vulcanizates. Data are presented showing this effect on an uncured Hevea gum stock held at 0°C. Certain softeners have been found to induce time effects in one of the B/A type stocks, which exhibits no crystallization, and hence no progressive stiffening in the absence of the given softeners. A method for measuring and evaluating creep under dead load at low temperatures is presented. Accompanying data indicate that in the case of those stocks tested, the creep constant defined reaches a maximum at a definite temperature which is a characteristic of the given stock.
机译:描述了用于在低温下测量弹性体的杨氏模量的设备的修改。在设备中进行的更改允许使用简化的技术,该技术可适用于常规测试程序。给出了各种软化剂对基于四种丁二烯-丙烯腈(B / A)型共聚物的原料的低温弯曲模量和脆点温度的影响。结果表明,所测试的软化剂在所有四种类型中均具有相同的相对效果,并且不同的软化剂使原料的低温性能差异很大。给出了基于Thiokol FA,``质量''和``乳液''聚合聚丁二烯的典型测试原料的弯曲模量曲线和脆点温度。结果表明,持续暴露于低温会影响某些但并非全部典型的硫化橡胶的杨氏模量。呈现的数据显示了对保持在0°C的未固化的橡胶胶原料的这种影响。已经发现某些软化剂会在一种B / A型原料中引起时间效应,这种软化剂没有结晶,因此在不存在给定软化剂的情况下也没有渐进硬化。提出了一种在低温下恒载下蠕变的测量和评估方法。伴随的数据表明,对于那些测试的坯料,定义的蠕变常数在确定的温度下达到最大值,这是给定坯料的特征。

著录项

  • 来源
    《Journal of Applied Physics 》 |1944年第11期| 共12页
  • 作者

    Conant F. S.; Liska J. W.;

  • 作者单位

    Physics Research Division, Firestone Tire & Rubber Company, Akron, Ohio;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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