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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >A detailed experimental study of the effects of pre-bond contamination with a hydraulic fluid, thermal degradation, and poor curing on fracture toughness of composite-bonded joints
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A detailed experimental study of the effects of pre-bond contamination with a hydraulic fluid, thermal degradation, and poor curing on fracture toughness of composite-bonded joints

机译:液压油预粘结污染,热降解和不良固化对复合粘结接头断裂韧性的影响的详细实验研究

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摘要

Adhesive bonding is applied by the aircraft industry both for assembling composite structural parts and implementing composite patch repairs in damaged structural parts. In both applications, there exist several scenarios, related to surface contamination and processing, that could affect bonding quality and thus, degrade bond strength. In this paper, the detailed effects of pre-bond contamination with a hydraulic fluid, thermal degradation of the composite substrate, as well as poor curing (lower curing temperature) on strength of composite-bonded joints were studied experimentally by conducting mode I fracture toughness tests on double-cantilever beam specimens. These three application scenarios are possible to appear in the implementation of a composite patch repair in a damaged composite structural part. The experimental results showed a contradictory effect as the presence of the hydraulic fluid and poor curing degrades the fracture toughness whereas thermal degradation enhances fracture toughness of the composite-bonded joints. These findings are explained by means of extended non-destructive inspection, surface analysis, and evaluation of fracture surfaces.
机译:飞机工业应用粘合剂粘结来组装复合结构部件并在受损的结构部件中实施复合修补程序。在这两种应用中,都存在几种与表面污染和加工有关的场景,这些场景可能会影响粘合质量,从而降低粘合强度。在本文中,通过进行I型断裂韧性实验研究了液压液预粘结污染,复合基材的热降解以及不良的固化(较低的固化温度)对复合粘结接头强度的影响。对双悬臂梁试样进行测试。这三种应用场景可能会出现在受损的复合结构部件的复合修补程序实施中。实验结果显示出矛盾的效果,因为液压油的存在和不良的固化会降低断裂韧性,而热降解会增强复合粘结接头的断裂韧性。通过扩展的非破坏性检查,表面分析和断裂表面评估来解释这些发现。

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