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Changes in Elastic and Viscoelastic Properties of Poly(Methyl Methacrylate) by Physical Aging

机译:物理老化聚(甲基丙烯酸甲酯)弹性和粘弹性的变化

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The influence of physical aging on mechanical properties of glassy polymers was investigated in this paper. After annealing above T_g to release the previous thermal and stress history, the polymethyl methacrylate (PMMA) samples were quenched to 27°C, aged for various times (t_a), and were then stretched at the same temperature by two ways: (1) step stresses with four different magnitudes varying from 15MPa to 30MPa; (2) constant rate stretch up to fracture. The physical aging effect was monitored by measuring the initial instantaneous elastic modulus (E) and the fracture strength (σ_f) from the stress-strain curves as a function of t_a up to 1368h. It is shown that both E and σ_f of the material increase with aging time and approach to their asymptotic values, which satisfy the KWW rule, while the isochronous creep compliance decreases with log t_a in a linear manner within the aging time range considered in this paper.
机译:本文研究了物理老化对玻璃聚合物力学性能的影响。在以上退火后释放先前的热和应力历史,将聚甲基丙烯酸甲酯(PMMA)样品淬灭至27℃,老化为各个时间(T_A),然后通过两种方式在相同的温度下拉伸:(1)步骤应力,四种不同的大小从15MPa到30MPa变化; (2)恒定率伸展到骨折。通过测量初始瞬时弹性模量(e)和来自应力 - 应变曲线的裂缝强度(σ_f)的函数来监测物理老化效果,该函数高达1368h。结果表明,材料的e和σ_与老化时间和渐近值的方法增加,这使得满足Kww规则的渐近值,而在本文考虑的老化时间范围内,同步蠕变顺应性随着LOG T_A的线性方式减少。

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