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Some Physical Properties of Elastomers at Low Temperature

机译:弹性体在低温下的一些物理性质

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摘要

Little has been published concerning the effect of low temperature on the elasticity of rubbers. Since in many applications this is the only property which justifies their use, some attention must be paid to this problem. Rubbers can be characterized by the temperature at which they become brittle and by the width of the transition region. The sharpness of the transition between the elastic and the glassy states is greatest when the testing time is long compared to the molecular relaxation times. Other physical factors such as sample shape, stress at which the modulus is calculated, and the previous history of the sample affect the absolute nature of the elastic properties measured. A test is described which gives the values of the elastic constants at slow rates of extension, at moderate extensions, on previously flexed samples. For these conditions the superiority of gum stocks at low temperature decrease in the order polybutadiene, natural rubber, Butyl, Neoprene FR. The comparative values of the stocks can be changed by compounding variations. Addition of plasticizer shifts the relative modulus vs. temperature curve down the temperature scale without producing a significant change in shape. Addition of reinforcing materials decreases the sharpness of the transition without changing the position of the curve.
机译:关于低温对橡胶弹性的影响的文献很少。由于在许多应用程序中这是证明其使用合理的唯一属性,因此必须对此问题进行一些注意。橡胶的特征在于它们变脆的温度和过渡区域的宽度。当测试时间长于分子弛豫时间时,弹性态和玻璃态之间的过渡的锐度最大。其他物理因素(例如样品形状,计算模量时的应力以及样品的先前历史记录)会影响所测量弹性特性的绝对性质。描述了一种测试,该测试给出了先前弯曲的样品在缓慢延伸速率,中等延伸速率下的弹性常数值。对于这些条件,在低温下口香糖原料的优势按聚丁二烯,天然橡胶,丁基,氯丁橡胶FR的顺序降低。股票的比较值可以通过复合变化来更改。增塑剂的添加使相对模量与温度的关系曲线在温度范围内下降,而不会产生明显的形状变化。增强材料的添加会降低过渡的清晰度,而不会更改曲线的位置。

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  • 来源
    《Journal of Applied Physics》 |1945年第1期|共5页
  • 作者单位

    The B. F. Goodrich 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
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