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Rheological determination of the swollen gel strength of superabsorbent polymer hydrogels

机译:流变学测定高吸收性聚合物水凝胶的溶胀强度

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To measure the swollen gel strength of hydrogels, single isolated samples with a certain shape, e.g. spherical or cylindrical, are often tested. However, the commercial superabsobent polymer (SAP) hydrogels are mostly sugar-like particles with irregular shapes. Therefore, the usual testing of the strength of the swollen state of the gels is impossible. In this paper, an experimental method is investigated for the measuring the swollen gel strength of SAPs. Firstly, we determined absorbency under load (AUL) of a typical SAP sample and then the mechanical strength of the swollen sample was measured by a rheological method. The characterization was conducted by a controlled strain rheometer at 25 degrees C. Dependency of the theological properties of the sample on strain and frequency was investigated. To determine the linear viscoelastic (LVE) zone, dynamic storage modulus (G) and loss modulus (G'), measurements were carried out at constant frequency and in a range of strains on the SAP sample. Furthermore, G was obtained at constant strain over a range of frequencies. The storage modulus of the swollen SAP gel (already absorbed saline under 0.3-0.9 psi) was measured to be above 1000 Pa at 25 degrees C. (C) 2006 Elsevier Ltd. All rights reserved.
机译:为了测量水凝胶的溶胀凝胶强度,需要分离单个具有一定形状的样品,例如球形或圆柱形,经常进行测试。但是,市售的超吸收性聚合物(SAP)水凝胶大多是具有不规则形状的糖样颗粒。因此,不可能对凝胶的溶胀状态的强度进行常规测试。本文研究了一种测量SAPs凝胶强度的实验方法。首先,我们确定了典型SAP样品在负载下的吸收度(AUL),然后通过流变方法测量了溶胀样品的机械强度。通过在25℃下的受控应变流变仪进行表征。研究了样品的流变学性质对应变和频率的依赖性。为了确定线性粘弹性(LVE)区域,动态储能模量(G)和损耗模量(G'),在SAP样品上以恒定频率和一定应变范围进行测量。此外,在一定频率范围内以恒定应变获得G。溶胀的SAP凝胶(在0.3-0.9 psi下已经吸收的盐水)的储能模量在25摄氏度下测量为高于1000 Pa。(C)2006 Elsevier Ltd.保留所有权利。

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