Mechanical and Aerospace Engineering, University of Virginia, 122 Engineer's Way, Charlottesville, VA 22904, United States.
Mechanical and Aerospace Engineering, University of Virginia, 122 Engineer's Way, Charlottesville, VA 22904, United States; Smart Materials/Nanophysics, Istituto Italiano di Tecnologia, Via Morego 30, Genoa 16163, Italy.
Adv Colloid Interface Sci. 2016 Mar;229:57-79. doi: 10.1016/j.cis.2015.12.007. Epub 2015 Dec 19.
Large majority of superhydrophobic surfaces have very limited mechanical wear robustness and long-term durability. This problem has restricted their utilization in commercial or industrial applications and resulted in extensive research efforts on improving resistance against various types of wear damage. In this review, advances and developments since 2011 in this field will be covered. As such, we summarize progress on fabrication, design and understanding of mechanically durable superhydrophobic surfaces. This includes an overview of recently published diagnostic techniques for probing and demonstrating tribo-mechanical durability against wear and abrasion as well as other effects such as solid/liquid spray or jet impact and underwater resistance. The review is organized in terms of various types of mechanical wear ranging from substrate adhesion, tangential surface abrasion, and dynamic impact to ultrasonic processing underwater. In each of these categories, we highlight the most successful approaches to produce robust surfaces that can maintain their non-wetting state after the wear or abrasive action. Finally, various recommendations for improvement of mechanical wear durability and its quantitative evaluation are discussed along with potential future directions towards more systematic testing methods which will also be acceptable for industry.
绝大多数超疏水表面的机械耐磨强度和长期耐久性都非常有限。这个问题限制了它们在商业或工业应用中的使用,因此人们进行了广泛的研究来提高其对各种类型磨损损伤的抵抗能力。在这篇综述中,将涵盖 2011 年以来该领域的进展和发展。因此,我们总结了在机械耐用超疏水表面的制造、设计和理解方面的进展。这包括对最近发布的用于探测和证明耐磨和耐磨损性能的诊断技术的概述,以及其他影响,如固/液喷雾或射流冲击和水下阻力。综述是根据各种类型的机械磨损来组织的,从基底附着、切向表面磨损和动态冲击到水下超声处理。在这些类别中的每一个,我们都强调了生产能够在磨损或磨损作用后保持其不粘性的坚固表面的最成功方法。最后,讨论了提高机械耐磨强度的各种建议及其定量评估方法,以及朝着更系统的测试方法发展的潜在方向,这些方法也将为工业界所接受。