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Mechanics of the rate-dependent elastic-plastic deformation of glassy polymers from low to high strain rates

机译:玻璃态聚合物从低应变率到高应变率的速率依赖性弹塑性变形的力学

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摘要

A combined experimental and analytical investigation has been performed to understand the mechanical behavior of two amorphous polymers-polycarbon ate and poly(methyl methacrylate)-at strain rates ranging from 10(-4) to 10(4) s(-1). This range in strain rates was achieved in uniaxial tension and compression tests using a dynamic mechanical analyzer (DMA), a servo-hydraulic testing machine, and an aluminum split-Hopkinson pressure bar. DMA tension tests were used to characterize the viscoelastic behavior of these materials, with focus on the rate-dependent shift of material transition temperatures. Uniaxial compression tests on the servo-hydraulic machine (10(-4) to 1 s(-1)) and the split-Hopkinson pressure bar (10(3) to 10(4) s(-1)) were used to characterize the rate-dependent yield and post-yield behavior. Both materials were observed to exhibit increased rate sensitivity of yield under the same strain rate/temperature conditions as the beta-transition of the viscoelastic behavior. A physically based constitutive model for large strain deformation of thermoplastics was then extended to encompass high-rate conditions. The model accounts for the contributions of different molecular motions which become operational and important in different frequency regimes. The new features enable the model to not only capture the transition in the yield behavior, but also accurately predict the post-yield, large strain behavior over a wide range of temperatures and strain rates. (c) 2005 Elsevier Ltd. All rights reserved.
机译:进行了组合的实验和分析研究,以了解两种无定形聚合物(聚碳酸酯和聚甲基丙烯酸甲酯)在10(-4)到10(4)s(-1)范围内的应变速率的力学行为。使用动态机械分析仪(DMA),伺服液压测试机和铝制霍普金森压力棒在单轴拉伸和压缩测试中可以达到此应变速率范围。 DMA张力测试用于表征这些材料的粘弹性行为,重点是材料转变温度的速率依赖性变化。使用伺服液压机(10(-4)到1 s(-1))和分叉式霍普金森压力棒(10(3)到10(4)s(-1))进行单轴压缩测试来表征利率相关的收益率和收益后行为。观察到两种材料在与粘弹性行为的β-转变相同的应变速率/温度条件下均显示出增加的速率敏感性。然后将用于热塑性塑料大应变变形的基于物理的本构模型扩展为包含高速率条件。该模型解释了不同分子运动的贡献,这些分子运动在不同的频率范围内变得可操作并且很重要。新功能使该模型不仅可以捕获屈服行为的转变,还可以准确预测在宽温度和应变速率范围内的屈服后大应变行为。 (c)2005 Elsevier Ltd.保留所有权利。

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