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A New Measuring System for the Determination of the Ice Adhesion Strength on Smooth Surfaces

机译:一种新的测量系统,用于测定光滑表面上的冰粘附强度

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摘要

To gain knowledge about cause-effect relationships for the adhesion of ice on surfaces with different chemical groups, we wanted to study the effect of thin polymer layers on the ice adhesion strength. To minimize the effect of roughness, smooth substrates that have generally relatively low ice adhesion strengths were chosen. To be able to obtain highly reproducible values for the region of low ice adhesion and to measure small differences of ice adhesion at surfaces with different chemical compositions, a new measuring system for the determination of the ice adhesion strength which is based on a modified spin-coater was developed. We show its technical potential on the basis of first results on pure silicon wafers and selected hydrophilic polymer layers. Furthermore, we investigated the effect of the water quality on the ice adhesion strength. The obtained data are discussed in the context of physicochemical properties of the layers and of the chemical characteristics of the used polymers.
机译:为了获得关于冰粘附的造成关系的知识,我们希望研究薄聚合物层对冰粘附强度的影响。为了最小化粗糙度的影响,选择具有通常相对较低的冰粘合强度的光滑基材。为了能够获得低冰粘合区域的高度可再现值,并测量具有不同化学组成的表面的冰粘附的小差异,一种用于测定基于改性旋转的冰粘合强度的新测量系统涂布机是开发的。我们在纯硅晶片和选择的亲水聚合物层上的第一次结果的基础上展示了其技术潜力。此外,我们研究了水质对冰粘合强度的影响。所获得的数据在层的物理化学性质和使用的聚合物的化学特性的情况下讨论。

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