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SURFACE PREPARATION OF ALUMINA FOR IMPROVED ADHESIVE BOND STRENGTH IN ARMOR APPLICATIONS

机译:铝的表面制备可改善装甲应用中的胶粘强度

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摘要

Surface treatments of alumina have been investigated with the aim of increasing the strength of the bond created between the alumina and a toughened epoxy adhesive. Four surface conditions have been assessed: as-fired; grit blasted; and krypton fluoride excimer laser treated under two sets of conditions. Compared with the as-fired surface, the grit blasted surface was rougher with poorer wettability, probably due to surface contamination. It was found that the laser treatments removed some of the sintering additives and caused rounding of the alumina grains, slightly increasing the surface roughness. Further, the laser treatment led to an increased surface energy and wettability, which has been linked tentatively to an observed increase in the hydroxyl groups on the surface. The adhesive bond strength was assessed by testing joints in tension and shear. It was found that the laser treated surfaces demonstrated slight improvements in bond strength, with a cohesive failure of the adhesive in tension for surfaces subjected to one of the two laser treatments, compared with fai lure at the interface for the as-fired, grit blasted and other laser treated samples in tension and for all samples in shear. Thus, it has been demonstrated that modifications to the surface of alumina can result in mechanical and chemical changes which affect roughness, wettability, bond strength and the locus of failure.
机译:已经研究了氧化铝的表面处理,其目的是提高氧化铝与增韧的环氧粘合剂之间形成的结合强度。评估了四个表面条件:烧成;喷砂和氟化k准分子激光在两组条件下进行了处理。与煅烧表面相比,喷砂表面较粗糙,润湿性较差,可能是由于表面污染所致。发现激光处理去除了一些烧结添加剂并引起氧化铝颗粒的圆化,从而稍微增加了表面粗糙度。此外,激光处理导致增加的表面能和润湿性,这已初步地与观察到的表面羟基的增加有关。通过测试拉伸和剪切接头来评估粘合剂的粘合强度。已发现,与经过烧成,喷砂处理的界面处的烟丝相比,经激光处理的表面在粘合强度方面略有改善,对于经受两种激光处理之一的表面而言,粘合剂的内聚力会失效。以及其他经过激光处理的样品处于拉伸状态,所有样品均处于剪切状态。因此,已证明对氧化铝表面的改性可导致机械和化学变化,其影响粗糙度,润湿性,粘结强度和破坏的场所。

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  • 来源
    《Advances in ceramic armor VIII》|2012年|149-159|共11页
  • 会议地点 Daytona Beach FL(US);Daytona Beach FL(US);Daytona Beach FL(US)
  • 作者单位

    Lockheed Martin UK, Reddings Wood, Ampthill, Bedfordshire, MK.45 2HD, UK,Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, Surrey, GU2 7XH, UK;

    Lockheed Martin UK, Reddings Wood, Ampthill, Bedfordshire, MK.45 2HD, UK;

    Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, Surrey, GU2 7XH, UK;

    Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, Surrey, GU2 7XH, UK;

    Lockheed Martin UK, Reddings Wood, Ampthill, Bedfordshire, MK.45 2HD, UK;

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  • 原文格式 PDF
  • 正文语种 eng
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