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首页> 外文期刊>Journal of Applied Physics >Ultimate Tensile Properties of Elastomers. IV. Dependence of the Failure Envelope, Maximum Extensibility, and Equilibrium Stress‐Strain Curve on Network Characteristics
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Ultimate Tensile Properties of Elastomers. IV. Dependence of the Failure Envelope, Maximum Extensibility, and Equilibrium Stress‐Strain Curve on Network Characteristics

机译:弹性体的极限拉伸性能。 IV。破坏包络,最大可扩展性和平衡应力-应变曲线对网络特性的依赖性

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摘要

Uniaxial tensile data from tests at different rates of extension over a wide temperature range are considered for butyl, silicone, Viton B, SBR, and natural rubber vulcanizates (series A) and for six Viton A-HV vulcanizates (series B) of differing crosslink densities. For series A and for A-6 in series B, equilibrium stress-strain data were obtained at large deformations by an indirect method. The ultimate tensile properties of all vulcanizates were previously characterized by a time- and temperature-independent failure envelope. The failure envelope''s maximum extension ratio, (λb)max, is shown to be equal to or less than (λ∞)max, the maximum extension ratio (hypothetical) in the absence of rupture and also the maximum extension ratio of network models. Failure and equilibrium data for series A vulcanizates are represented by a specific function of the equilibrium modulus and the maximum extensibility; except for SBR and possibly Viton B, equilibrium and failure data are sensibly identical; thus, (λb)max≅(λ∞)max. For series B vulcanizates, qualitative considerations indicate that (λ∞)max/(λb)max is greater than unity and possibly dependent on crosslink density. Consideration of network models suggests that (λ∞)max should be directly proportional to Mc½ and inversely proportional to (0/M)½. For series A, no correlation between (λb)max and (0/M)½ was found. For series B, it is shown that (λb)max∝Mcβ, where β is a constant in the neighborhood of 0.7. For all vulcanizates, (σb)max≅104(λb)max-1, where (σb)max is the stress in psi (based on the undeformed cross section) at (λb)max.
机译:对于丁基橡胶,硅橡胶,Viton B,SBR和天然橡胶硫化橡胶(A系列)以及六种不同交联的Viton A-HV硫化橡胶(B系列),考虑了在较宽的温度范围内以不同的扩展速率进行测试的单轴拉伸数据密度。对于A系列和B系列中的A-6,通过间接方法获得了大变形时的平衡应力-应变数据。以前,所有硫化橡胶的极限拉伸性能都由与时间和温度无关的失效范围来表征。失效包络线的最大扩展率(λb)max等于或小于(λ∞)max,不存在破裂时的最大扩展率(假设),以及网络的最大扩展率楷模。系列A硫化胶的破坏和平衡数据由平衡模量和最大可延展性的特定函数表示。除了SBR和可能的Viton B外,平衡和破坏数据明显相同。因此,(λb)max≅(λ∞)max。对于B系列硫化胶,定性考虑表明(λ∞)max /(λb)max大于1,并可能取决于交联密度。对网络模型的考虑表明,(λ∞)max应该与Mc½成正比,而与(0 / M)1/2成反比。对于系列A,未发现(λb)max和(0 / M)1/2之间的相关性。对于系列B,表明(λb)max∝Mcβ,其中β在0.7附近是一个常数。对于所有硫化橡胶,(σb)max≅104(λb)max-1,其中(σb)max是在(λb)max处的psi应力(基于未变形的横截面)。

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  • 来源
    《Journal of Applied Physics》 |1965年第10期|共10页
  • 作者

    Smith Thor L.; Frederick J. E.;

  • 作者单位

    Stanford Research Institute, Menlo Park, California;

  • 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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