首页> 外文会议>Asia-Pacific Symposium on Engineering Plasticity and Its Applications;AEPA; 20060925-29;20060925-29; Nagoya(JP);Nagoya(JP) >Application of Time-Temperature-Stress Superposition Principle to Nonlinear Creep of Poly(methyl methacrylate)
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Application of Time-Temperature-Stress Superposition Principle to Nonlinear Creep of Poly(methyl methacrylate)

机译:时间-温度-应力叠加原理在聚甲基丙烯酸甲酯非线性蠕变中的应用

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摘要

The uniaxial tensile creep of a commercial grade Poly(methyl methacrylate) was measured for 4000 seconds under various temperatures and stress levels ranging from 14 ℃ to 26℃ and 6 MPa to 32 MPa. The resultant creep compliance curves depart from each other for stresses beyond a critical value which varies with temperature, indicating nonlinear viscoelastic behavior. The time-temperature-stress superposition principle (TTSSP) was used to construct a smooth master compliance curve with a much longer time-scale interval from the short-term tests at higher stresses and temperatures. It is shown that the master curve covers a period of over 290 days, which is nearly 3.9 decades longer than the test duration. Moreover, it is verified that the time-temperature shift factors are dependent on stresses at which the shifts are applied, and that the time-stress shift factors are dependent on reference temperatures.
机译:在14℃至26℃和6 MPa至32 MPa的各种温度和应力水平下,对商用级聚甲基丙烯酸甲酯的单轴拉伸蠕变进行了4000秒的测量。对于超过随温度变化的临界值的应力,所得的蠕变柔量曲线会彼此偏离,表明存在非线性粘弹性行为。使用时间-温度-应力叠加原理(TTSSP),可以在较高的应力和温度下进行短期测试,从而构建一条平滑的主柔量曲线,并具有更长的时间刻度间隔。结果表明,主曲线覆盖了290天以上的时间,比测试持续时间长了近3.9个十年。此外,已证实时间-温度偏移因子取决于施加偏移的应力,并且时间-应力偏移因子取决于参考温度。

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