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Measurements of correct ice adhesion forces to metal test plates in nano-scale by using SPM

机译:使用SPM测量在纳米尺度上正确的冰对金属测试板的附着力

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摘要

To prevent many problems caused by ice adhesion, its control technology is required. To settle this technology, obtaining the correct ice adhesion force is a key point. However, ice adhesion forces obtained by current conventional methods are apparent values including a force breaking ice. Thus, authors developed a method to measure correct ice adhesion force and accurate ice diameter in a nano-scale by SPM and both for copper were measured. To construct a database to store the correct ice adhesion forces and diameters for various metals, first, the ice adhesion forces and the ice diameters for aluminum, titanium, carbon steel, and stainless steel are measured at -5 degrees C by the SPM. Additionally, to easily compare our results with other works, shearing stresses of the metals are also given by the ice adhesion forces and ice adhesion areas. Validities of our results are proven by comparing them with the surface energies and other works. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:为了防止由冰粘附引起的许多问题,需要其控制技术。为了解决该技术,获得正确的冰附着力是关键。然而,通过当前的常规方法获得的冰附着力是包括破坏冰的力的表观值。因此,作者开发了一种通过SPM在纳米级上测量正确的冰附着力和准确的冰直径的方法,并且对铜都进行了测量。要构建数据库以存储各种金属的正确冰附着力和直径,首先,通过SPM在-5摄氏度下测量铝,钛,碳钢和不锈钢的冰附着力和冰直径。另外,为了轻松地将我们的结果与其他工作进行比较,冰的粘附力和冰的粘附面积也给出了金属的剪切应力。通过将它们与表面能和其他功进行比较,可以证明我们的结果的有效性。 (C)2016 Elsevier Ltd和IIR。版权所有。

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