Nisa Zaib Un, Chuan Lee Kean, Guan Beh Hoe, Ayub Saba, Ahmad Faiz
Department of Fundamental and Applied Sciences, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Perak, Malaysia.
Department of Mechanical Engineering, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Perak, Malaysia.
Nanomaterials (Basel). 2022 Jun 26;12(13):2194. doi: 10.3390/nano12132194.
Erosion caused by the repeated impact of particles on the surface of a substance is a common wear method resulting in the gradual and continual loss of affected objects. It is a crucial problem in several modern industries because the surfaces of various products and materials are frequently subjected to destructively erosive situations. Polymers and their hybrid materials are suitable, in powdered form, for use as coatings in several different applications. This review paper aims to provide extensive information on the erosion behaviors of thermoset and thermoplastic neat resin and their hybrid material composites. Specific attention is paid to the influence of the properties of selected materials and to impingement parameters such as the incident angle of the erodent, the impact velocity of the erodent, the nature of the erodent, and the erosion mechanism. The review further extends the information available about the erosion techniques and numerical simulation methods used for wear studies of surfaces. An investigation was carried out to allow researchers to explore the available selection of materials and methods in terms of the conditions and parameters necessary to meet current and future needs and challenges, in technologically advanced industries, relating to the protection of surfaces. During the review, which was conducted on the findings in the literature of the past fifty years, it was noted that the thermoplastic nature of composites is a key component in determining their anti-wear properties; moreover, composites with lower glass transition, higher ductility, and greater crystallinity provide better protection against erosion in advanced surface applications.
颗粒反复撞击物质表面所造成的侵蚀是一种常见的磨损方式,会导致受影响物体逐渐持续损耗。这在多个现代工业中都是一个关键问题,因为各种产品和材料的表面经常会遭受具有破坏性的侵蚀情况。聚合物及其混合材料以粉末形式适用于多种不同应用中的涂层。这篇综述文章旨在提供关于热固性和热塑性纯树脂及其混合材料复合材料侵蚀行为的广泛信息。特别关注所选材料的性能以及诸如侵蚀剂的入射角、侵蚀剂的冲击速度、侵蚀剂的性质和侵蚀机制等冲击参数的影响。该综述进一步扩展了有关用于表面磨损研究的侵蚀技术和数值模拟方法的现有信息。进行了一项调查,以便研究人员根据满足技术先进行业当前和未来与表面保护相关的需求及挑战所需的条件和参数,探索可用的材料和方法选择。在对过去五十年文献中的研究结果进行综述时,注意到复合材料的热塑性本质是决定其抗磨性能的关键因素;此外,具有较低玻璃化转变温度、较高延展性和较大结晶度的复合材料在先进表面应用中能提供更好的抗侵蚀保护。