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Effect of Laser and Plasma Surface Cleaning on Mechanical Properties of Adhesive Bonded Joints

机译:激光和等离子表面清洁对胶接接头力学性能的影响

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摘要

The use of adhesives in place of traditional joining techniques as welding and riveting is becoming increasingly common in structural design. Compared to other conventional joining processes, adhesive bonding offers several advantages: including acoustic insulation, vibration attenuation, structure lightening, corrosion reduction and uniform stress distribution. These benefits can be offset if the surfaces to be bonded are not carefully cleaned, degreased and prepared. Many approaches to surface treatments based on physical or chemical modifications have been developed in the years in order to improve the surface activity. Although widely used and very efficient, these techniques present several disadvantages. Physical methods based on mechanical abrasion are supposed to extend bonding area as they increase the roughness, but cause an extensive degradation to the specimens and they are often not easy to reproduce. On the other hand, chemical treatments are typically used with the aim of modifying both morphology and chemical structure of the substrates layers, but they present serious environmental problems of waste disposal, which has moved investigations to an industrial alternative to these processes. According, the use of energetic methods of surface cleaning, such as laser and plasma cleaning processes have been recently consolidated since they are useful to modify the topmost layers of the substrates, increasing their reactivity, without affecting the bulk material properties. These treatments offer an effective and environment-friendly processing of different materials, providing strong and durable bonds with adhesives through modification of the surface morphology and functionalities. In this study, the effects of laser and low pressure plasma treatments on mechanical properties of adhesive bonded joints has been investigated and compared performing lap-shear tests.
机译:在结构设计中,使用粘合剂代替传统的连接技术进行焊接和铆接变得越来越普遍。与其他传统的连接工艺相比,胶粘剂粘合具有几个优点:包括隔音,减振,减轻结构重量,减少腐蚀和应力分布均匀。如果未仔细清洁,除脂和准备待粘合的表面,则可以抵消这些好处。多年来,已经开发了许多基于物理或化学修饰的表面处理方法,以提高表面活性。尽管被广泛使用并且非常有效,但是这些技术存在一些缺点。基于机械磨蚀的物理方法被认为会增加粘合区域,因为它们会增加粗糙度,但会导致标本大量降解,而且通常不容易复制。另一方面,化学处理通常用于改变基底层的形态和化学结构的目的,但是它们存在废物处理的严重环境问题,这已经将研究转向了这些方法的工业替代。因此,近来巩固了诸如激光和等离子体清洁工艺之类的表面清洁的高能方法的使用,因为它们可用于修饰基材的最上层,增加其反应性,而不影响本体材料的性能。这些处理方法可对各种材料进行有效且环保的处理,通过改变表面形态和功能性,使其与胶粘剂牢固牢固地结合在一起。在这项研究中,已经研究了激光和低压等离子体处理对胶接接头机械性能的影响,并进行了搭接剪切试验。

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