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首页> 外文期刊>Nanoscale Research Letters >Improved Bond Strength of Cyanoacrylate Adhesives Through Nanostructured Chromium Adhesion Layers
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Improved Bond Strength of Cyanoacrylate Adhesives Through Nanostructured Chromium Adhesion Layers

机译:通过纳米结构的铬粘附层提高了氰基丙烯酸酯粘合剂的结合强度

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The performance of many consumer products suffers due to weak and inconsistent bonds formed to low surface energy polymer materials, such as polyolefin-based high-density polyethylene (HDPE), with adhesives, such as cyanoacrylate. In this letter, we present an industrially relevant means of increasing bond shear strength and consistency through vacuum metallization of chromium thin films and nanorods, using HDPE as a prototype material and cyanoacrylate as a prototype adhesive. For the as received HDPE surfaces, unmodified bond shear strength is shown to be only 0.20?MPa with a standard deviation of 14?%. When Cr metallization layers are added onto the HDPE at thicknesses of 50?nm or less, nanorod-structured coatings outperform continuous films and have a maximum bond shear strength of 0.96?MPa with a standard deviation of 7?%. When the metallization layer is greater than 50?nm thick, continuous films demonstrate greater performance than nanorod coatings and have a maximum shear strength of 1.03?MPa with a standard deviation of 6?%. Further, when the combination of surface roughening with P400 grit sandpaper and metallization is used, 100-nm-thick nanorod coatings show a tenfold increase in shear strength over the baseline, reaching a maximum of 2.03?MPa with a standard deviation of only 3?%. The substantial increase in shear strength through metallization, and the combination of roughening with metallization, may have wide-reaching implications in consumer products which utilize low surface energy plastics.
机译:由于与低表面能聚合物材料(例如基于聚烯烃的高密度聚乙烯(HDPE))与粘合剂(例如氰基丙烯酸酯)形成的弱且不一致的键,许多消费产品的性能受到影响。在这封信中,我们介绍了一种工业相关的方法,该方法通过将HDPE用作原型材料并将氰基丙烯酸酯用作原型粘合剂,通过对铬薄膜和纳米棒进行真空金属化来提高粘结剪切强度和一致性。对于原样的HDPE表面,未改性的粘结剪切强度显示仅为0.20?MPa,标准偏差为14?%。当以50?nm或更小的厚度将Cr金属化层添加到HDPE上时,纳米棒结构涂层的性能优于连续膜,其最大粘结剪切强度为0.96?MPa,标准偏差为7?%。当金属化层的厚度大于50?nm时,连续膜表现出比纳米棒涂层更好的性能,其最大剪切强度为1.03?MPa,标准偏差为6%。此外,当结合使用P400粗砂纸进行表面粗糙处理和金属化处理时,厚度为100 nm的纳米棒涂层的抗剪强度比基线高10倍,最高达到2.03?MPa,标准偏差仅为3?3。 %。通过金属化,剪切强度的显着提高,以及粗糙化与金属化的结合,可能对使用低表面能塑料的消费品产生广泛的影响。

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