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The Physicochemical Characteristics of Prosthetic Materials and Their Influence on Their Clinical Properties

机译:修复材料的理化特性及其对临床特性的影响

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摘要

The use of elastic materials favours degradation of their surface. The period of their clinical usefulness is then shortened, and their further utilisation in the oral cavity may have the reverse effect. The surface properties of such material as well as the influence of the humidity on their surface are very important as they determine the prosthetic materials behavior in the mouth. The surface of such material should be resistant to water. Inverse gas chromatography is an accurate, sensitive technique for studying surface properties. Thanks to using a unique equipment specially designed for IGC technique, Surface Energy Analyzer, it was possible to characterize the surface at 0 and 80% of humidity. Our results show that increased humidity does not affect surface properties of studied prosthetic materials. Their ability to dispersive and specific interactions change in very limited degree. IGC experiment was also applied for the estimation of Hansen solubility parameters that indicate ability of a material to dispersive, polar, and hydrogen-bonding interactions. Relation between the surface characteristics and practical use of soft lining materials with implications for their clinical usefulness is also discussed.
机译:弹性材料的使用有利于其表面的降解。然后缩短了它们的临床使用期限,并且它们在口腔中的进一步利用可能产生相反的效果。这种材料的表面特性以及湿度对其表面的影响非常重要,因为它们决定了口腔中修复材料的性能。这种材料的表面应耐水。反相气相色谱法是研究表面性质的准确,灵敏的技术。由于使用了专门为IGC技术设计的独特设备,即表面能分析仪,因此可以在0%和80%的湿度下表征表面。我们的结果表明,增加的湿度不会影响所研究的义肢材料的表面性能。它们分散和特定相互作用的能力变化非常有限。 IGC实验还用于估算Hansen溶解度参数,该参数指示材料对分散,极性和氢键相互作用的能力。还讨论了软衬材料的表面特性与实际使用之间的关系,并对其临床实用性产生了影响。

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