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Compressibility and compactibility studies of chitosan, xanthan gum, and their mixtures

机译:壳聚糖,黄原胶及其混合物的可压缩性和可压缩性研究

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The compressibility and compactibility studies of binary mixtures containing chitosan (CS) and xanthan gum (XG) were highlighted in this article. The compress_ibility of the examined powders was studied according to Heckel and Gurnham equations. Results indicated that CS exhibits more ductile character than XG. Moreover, in this study percolation theory has been applied to the tensile strength of different compacts obtained from CS_XG mixtures. The obtained percolation thresholds showed that higher pressures must be applied to form compacts with a specific strength as the mass fraction of XG was increased. Additionally, the values of the maximum tensile strength showed that the percolation threshold of CS occurs at equal mass fraction of the two polymers. Scanning electron microscope, light microscope techniques, and molecular mechanical calculations were also conducted in order to study the interactions between CS and XG. The obtained results revealed that 1:1 ratio (by weight) represents the maximum interactions between the two polymers.
机译:本文重点介绍了含有壳聚糖(CS)和黄原胶(XG)的二元混合物的可压缩性和可压缩性研究。根据Heckel和Gurnham方程研究了所研究粉末的可压缩性。结果表明,CS比XG具有更大的延展性。此外,在本研究中,渗流理论已应用于从CS_XG混合物中获得的不同压块的拉伸强度。所获得的渗透阈值表明,随着XG的质量分数增加,必须施加更高的压力以形成具有特定强度的压坯。另外,最大抗拉强度的值表明CS的渗透阈值发生在两种聚合物的相等质量分数下。为了研究CS和XG之间的相互作用,还进行了扫描电子显微镜,光学显微镜技术和分子力学计算。所得结果表明,1:1(重量比)代表两种聚合物之间的最大相互作用。

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