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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 >Optimization of the Design of a Double-Cup Specimen Using the Finite Element Method for Testing Adhesive Bonds Under Tensile Loads
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Optimization of the Design of a Double-Cup Specimen Using the Finite Element Method for Testing Adhesive Bonds Under Tensile Loads

机译:在拉伸载荷下使用有限元方法测试胶粘剂的双杯试样设计的优化

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The aim of this research was to optimize the geometry of a double-cup specimen for tensile testing of adhesive bonds. For this purpose, the influence of the geometry of the double-cup specimen on the stress distribution when subjected to static tensile loads was studied through the finite element method.The work was divided into three stages: construction of a finite element model representative of double-cup test, selection of the appropriate parameters for the design of the double cup, and finally the use of the specimen optimized geometry for tensile strength estimation of three different adhesive bonds in order to validate the model.The results obtained show that the tensile strength of an adhesive bond as well as its stress distribution can be determined.
机译:这项研究的目的是优化用于粘接剂拉伸测试的双杯样品的几何形状。为此,通过有限元方法研究了双杯试样的几何形状对承受静态拉力的应力分布的影响。工作分为三个阶段:建立代表双杯的有限元模型。杯试验,选择合适的参数以设计双杯,最后使用样品优化的几何形状估算三种不同胶粘剂的拉伸强度,以验证模型。所得结果表明,拉伸强度可以确定粘合力的大小及其应力分布。

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