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首页> 外文期刊>The Journal of Chemical Physics >Viscoelasticity of liquid organic foam: Relaxations, temporal dependence, and bubble loading effects on flow behavior
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Viscoelasticity of liquid organic foam: Relaxations, temporal dependence, and bubble loading effects on flow behavior

机译:液态有机泡沫的粘弹性:松弛,时间依赖性和气泡载荷对流动行为的影响

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Liquid organic foams are prepared using a new blowing process based on the chemical generation of carbon dioxide. The foams are volumetrically stable for periods up to hours and can be fabricated with gas volume fractions ranging from 0.10 to 0.95. Both the "fresh" and temporal dependences of the linear viscoelastic response of these materials are evaluated. The organic foams exhibit rheological behavior characteristic of their aqueous counterparts: a weak dependence of the shear moduli over an extended frequency/time regime that is bounded by both a fast and slow relaxation. The onset of the fast mechanical response of the organic foams occurs at approximately the same frequency as in aqueous foams despite the continuous phase viscosity differing by orders of magnitude between the systems. This suggests that the viscosity does not affect the time scale of the "anomalous" viscous loss characteristic of these materials, which challenges currently proposed mechanisms for this dissipation and leaves the origin of the loss behavior unclear. The relative contribution of cell growth and bubble motion to the slow relaxation is also discerned by evaluating the relation between the transient and dynamic responses of the foam. Finally, the development of elasticity in the foam due to bubble interactions is analyzed and a bubble slip process is postulated to account for the lack of a true elastic response of the foam at intermediate time scales (between the fast and slow mechanical response) when gas fractions exceed 0.64.
机译:液态有机泡沫是使用一种新的吹塑工艺制备的,该工艺基于二氧化碳的化学生成。泡沫在长达数小时的时间内具有体积稳定性,并且可以制造的气体体积分数范围为0.10至0.95。评估了这些材料的线性粘弹性响应的“新鲜”和时间依赖性。有机泡沫表现出其水性对应物的流变行为特征:在扩展的频率/时间范围内剪切模量的弱依赖性,其受快速和缓慢弛豫的限制。尽管系统之间的连续相粘度相差几个数量级,但有机泡沫快速机械响应的发生与含水泡沫的频率大致相同。这表明粘度不影响这些材料的“异常”粘性损失特性的时间尺度,这挑战了目前提出的这种耗散机制,并使损失行为的根源不清楚。通过评估泡沫的瞬态响应和动态响应之间的关系,也可以看出气泡增长和气泡运动对缓慢松弛的相对贡献。最后,分析了由于气泡相互作用而在泡沫中产生的弹性,并推测了气泡滑移过程,以解释当气体发生时,在中间时间尺度(快速和慢速机械响应之间)缺乏泡沫的真实弹性响应的情况。分数超过0.64。

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