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Shear strength of epoxy adhesive joint between steel substrates with indented patterns

机译:用缩进图案钢基材环氧粘合接头的剪切强度

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Indented patterns, about 40 m wide and 30 m deep, were created by pressing down a hardened steel file onto the surface of steel substrates using Instron test machine. We examined the penetration of epoxy into those micro-indented patterns and their interactions with Kevlar fibres (diameter of around 12 m), and their influences on the shear strength of epoxy adhesive joints. To ensure complete wetting of the patterned substrate surface, resin pre-coating was applied first. Three different acetone/resin (without hardener) solutions were prepared for this purpose: they contained 1 wt%, 3 wt% and 5 wt% of resin in acetone, respectively. For the purpose of comparison, plain steel substrates polished by #120 sandpaper were also prepared. It had been found that the patterned substrate coated by the 3 wt% resin/acetone solution yielded the highest shear strength, showing about 20% improvement in comparison with that of polished steel substrates. Only limited Kevlar fibres were found within the indented patterns due to their relatively large spacing and shallowness, and, furthermore, due to the random fibre distribution of Kevlar fibres of around 14 mm in length. The limited Kevlar fibre bridging activities were reflected by only around 4% improvement in the shear strength.
机译:使用Instron试验机将硬化的钢锉放在钢基板表面上,产生约40米宽和30米深的凹痕图案。我们研究了环氧树脂的渗透到这些微凹面的图案及其与kevlar纤维(直径约为12μm)的相互作用,以及它们对环氧粘合剂剪切强度的影响。为了确保图案化基板表面的完全润湿,首先施加树脂预涂层。为此目的制备三种不同的丙酮/树脂(没有硬化剂)溶液:它们分别在丙酮中含有1wt%,3wt%和5wt%的树脂。为了比较的目的,还制备了#120砂纸抛光的普通钢基板。已经发现,由3wt%树脂/丙酮溶液涂覆的图案化基材产生的剪切强度最高,与抛光钢基材相比,显示出约20%的改善。由于其相对大的间隔和浅作用,凹痕图案中仅发现了有限的凯夫拉纤维,并且由于长度约为14mm的Kevlar纤维的随机纤维分布。有限的Kevlar纤维桥接活动仅在剪切强度的提高约4%的情况下反映。

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