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 >Failure behavior of adhesively bonded joints with a rubber modified epoxy adhesive under tensile-shear combined cyclic loading
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Failure behavior of adhesively bonded joints with a rubber modified epoxy adhesive under tensile-shear combined cyclic loading

机译:橡胶改性环氧粘合剂在拉伸剪切结合循环载量下粘合接头的故障行为

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摘要

Rubber-modified epoxy adhesives are used widely as structural adhesive owing to their properties of high fracture toughness. In many cases, these adhesively bonded joints are exposed to cyclic loading. Generally, the rubber modification decreases the static and fatigue strength of bulk adhesive without flaw. Hence, it is necessary to investigate the effect of rubber-modification on the fatigue strength of adhesively bonded joints, where industrial adhesively bonded joints usually have combined stress condition of normal and shear stresses in the adhesive layer. Therefore, it is necessary to investigate the effect of rubber-modification on the fatigue strength under combined cyclic stress conditions. Adhesively bonded butt and scarf joints provide considerably uniform normal and shear stresses in the adhesive layer except in the vicinity of the free end, where normal to shear stress ratio of these joints can cover the stress combination ratio in the adhesive layers of most adhesively bonded joints in industrial applications. In this study, to investigate the effect of rubber modification on fatigue strength with various combined stress conditions in the adhesive layers, fatigue tests were conducted for adhesively bonded butt and scarf joints bonded with rubber modified and unmodified epoxy adhesives, wherein damage evolution in the adhesive layer was evaluated by monitoring strain the adhesive layer and the stress triaxiality parameter was used for evaluating combined stress conditions in the adhesive layer. The main experimental results are as follows: S-N characteristics of these joints showed that the maximum principal stress at the endurance limit indicated nearly constant values independent of combined stress conditions, furthermore the maximum principal stress at the endurance limit for the unmodified adhesive were nearly equal to that for the rubber modified adhesive. From the damage evolution behavior, it was observed that the initiation of the damage evolution shifted to early stage of the fatigue life with decreasing stress triaxiality in the adhesive layer, and the rubber modification accelerated the damage evolution under low stress triaxiality conditions in the adhesive layer.
机译:由于它们的高裂缝韧性的性质,橡胶改性的环氧粘合剂被广泛用作结构粘合剂。在许多情况下,这些粘合的接头暴露于环状载荷。通常,橡胶改性降低了散裂粘合剂的静态和疲劳强度而无缺陷。因此,有必要研究橡胶改性对粘合接头的疲劳强度的影响,其中工业粘合接头通常具有粘合剂层中的正常和剪切应力的组合应力条件。因此,有必要研究橡胶改性对循环应力条件下疲劳强度的影响。粘合的对接和围巾接头在粘合剂层中提供相当均匀的正常和剪切应力,除了自由端附近,其中这些接头的正常剪切应力比可以覆盖大多数粘合接头的粘合剂层中的应力组合比在工业应用中。在该研究中,为了研究橡胶改性对粘合剂层中各种组合应力条件的疲劳强度的影响,对粘接的对接和围巾接头进行疲劳试验,与橡胶改性和未改性的环氧粘合剂粘合,其中粘合剂中的损伤进化通过监测应变来评估层,粘合剂层和应力三轴性参数用于评估粘合剂层中的组合应力条件。主要实验结果如下:这些关节的SN特性表明,耐久性极限的最大主应力表示与组合应力条件无关的几乎恒定的值,此外,未修饰粘合剂的耐久极限的最大主要应力几乎等于对于橡胶改性粘合剂。从损伤的进化行为中,观察到损伤进化的启动转移到疲劳寿命的早期阶段,粘合剂层中的应力三轴减少,橡胶改性加速了粘合剂层中的低应力三轴性条件下的损伤演化。

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