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首页> 外文期刊>Journal of Materials Science >Stiffness and energy dissipation in polyurethane auxetic foams
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Stiffness and energy dissipation in polyurethane auxetic foams

机译:聚氨酯膨胀泡沫的刚度和能量耗散

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Auxetic open cell polyurethane (PU) foams have been manufactured and mechanically characterised under cyclic tensile loading. The classical manufacturing process for auxetic PU foams involves multiaxial compression of the conventional parent foam, and heating of the compressed specimens above the Tm of the foam polymer. Eighty cylindrical specimens were fabricated using manufacturing routes modified from those in the open literature, with different temperatures (135 °C, 150 °C), compression ratios and different cooling methods (water or room temperature exposure). Compressive tensile cyclic loading has been applied to measure tangent modulus, Poisson’s ratios and energy dissipated per unit volume. The results are used to obtain relations between manufacturing parameters, mechanical and hysteresis properties of the foams. Compression, both radial and axial, was found to be the most significant manufacturing parameter for the auxetic foams in this work.
机译:在循环拉伸载荷下已经制造了开孔聚氨酯泡沫(PU),并对其进行了机械表征。膨胀型PU泡沫的经典制造工艺涉及常规母体泡沫的多轴压缩,以及将压缩样品加热到泡沫聚合物的T 以上。使用从公开文献中修改的制造路线制造了80个圆柱形标本,它们具有不同的温度(135°C,150°C),压缩比和不同的冷却方法(水或室温暴露)。压缩拉伸循环载荷已用于测量切线模量,泊松比和每单位体积的耗散能量。结果用于获得泡沫的制造参数,机械性能和滞后性能之间的关系。在这项工作中,径向和轴向压缩被认为是高发泡沫最重要的制造参数。

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