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Temperature and speed of testing influence on the densification and recovery of polyurethane foams

机译:测试温度和速度对聚氨酯泡沫的致密化和回收率的影响

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摘要

Polyurethane foams with densities of 35, 93, and 200 kg/m3 were tested in compression at three levels of temperatures as: —60 °C, 23 °C, and 80 °C. The influence of speed of testing from 2 mm/min up to 6 m/s (0.0014 to 545 s~') on the response of the foams is analyzed. Testing is done separately on the rise direction and on the in-plane direction of the foams, and differences in their behavior are commented. With interpolation functions which approximate the plateau and densification region, the specific strain energy is calculated together with the energy efficiency and onset strain of densification. A Nagy-type phenomenological strain-rate-dependent model is proposed to generate engineering stress-strain curves and is validated through comparison with experimental stress-strain curves obtained at different speeds of testing. Starting from a reference experimental curve, two material parameters which are density and temperature dependent are established. Foam recovery for each density of the polyurethane foams is analyzed as a function of direction of testing, temperature, and speed of testing.
机译:密度为35、93和200 kg / m3的聚氨酯泡沫在以下三个温度水平下进行了测试:-60°C,23°C和80°C。分析了测试速度从2 mm / min到6 m / s(0.0014至545 s')对泡沫响应的影响。在泡沫的上升方向和面内方向上分别进行测试,并评述其行为的差异。利用近似于平稳区和致密化区域的插值函数,可以计算出比应变能以及能量效率和致密化的起始应变。提出了一种Nagy型现象学应变率相关模型来生成工程应力-应变曲线,并通过与在不同测试速度下获得的实验应力-应变曲线进行比较来进行验证。从参考实验曲线开始,建立了密度和温度相关的两个材料参数。根据测试方向,温度和测试速度来分析每种密度的聚氨酯泡沫的泡沫回收率。

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