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Research on influence of loading speed of structural two-component epoxy adhesives on adhesive bond strength

机译:结构双组分环氧胶粘剂负载量对粘接强度影响的研究

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摘要

Adhesive bonds belong among a prospective technology of materials connecting, they are applied in many industrial branches when single applications use many advantages of these constructional bonds among which also good shear strength can be ranked. Just the shear strength of the adhesive bond belongs among factors determining an applicability of single adhesives. Standards describing the experimental determination of the adhesive bond shear strength specify the time which is needed for reaching the bond failure. For an extension of adhesives specification for given application the definition of the shear strength can be spread also of other speeds. The paper deals just with the determination of the time influence which is necessary for breaking a steel test adherent on the resultant shear strength of structural adhesives. An electron microscopy was used for an evaluation of fracture surfaces. The aim of the performed experiment is to describe the influence of changeable rate of deformation of the adhesive bond on the shear strength. From the result of the constructional carbon steel S235J0 testing the increase of the breaking strength and yield strength at increasing loading speed is obvious. At increasing loading speed the fall of the elongation of the adhesive bonded material occurred. From the results it is obvious that the loading speed of the adhesive bonds has a positive influence on the strength results of tested adhesive bonds. It came to the increase of the adhesive bond strength up of 21-57% at the speed 500 mm·min-1.
机译:胶粘剂属于材料连接的一种预期技术,当单个应用使用这些结构性胶粘剂的许多优点时,它们也可用于许多工业分支,其中还可以排名良好的剪切强度。仅粘合剂的剪切强度属于决定单一粘合剂的适用性的因素之一。描述粘合剂粘结剪切强度实验确定的标准规定了达到粘结破坏所需的时间。对于给定应用的粘合剂规范的扩展,剪切强度的定义也可以以其他速度传播。本文仅涉及确定时间影响的时间,这对于破坏钢制测试粘合剂对结构粘合剂的最终剪切强度是必要的。电子显微镜用于评估断裂表面。进行实验的目的是描述粘合剂的变形率对剪切强度的影响。从结构碳钢S235J0的测试结果来看,在增加加载速度时,断裂强度和屈服强度的增加是明显的。随着加载速度的增加,粘合材料的伸长率下降。从结果可以明显看出,粘合剂的加载速度对测试的粘合剂的强度结果具有积极的影响。在500 mm·min-1的速度下,粘接强度提高了21-57%。

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