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The effects of curing temperature on fracture energy and cohesive parameters for the adhesive Araldite 2015

机译:固化温度对粘性Araldite裂缝能量和粘性参数的影响2015

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This paper attempts to investigate the effects of curing temperature on the fracture energy, the glass transition temperature (T-g) and cohesive parameters for the adhesive Araldite 2015. Relationship between curing temperature and the glass transition temperature was taken into account. Tensile tests were performed on the dogbone-shaped bulk specimens to evaluate the effect of curing temperature on the mechanical properties of the adhesive. DCB test results were used to obtain the cohesive laws of the adhesive Araldite 2015. The exponential and PPR cohesive zone models were used to obtain some of the fracture properties. Inverse analyses were also performed, if the experimental softening curves are incompatible with the numerical ones. It was seen that softening behavior of the adhesive can be easily controlled by the shape parameters available in the PPR cohesive zone model. It is seen from the DCB test results that curing the adhesive about the temperature at which the T-g is obtained caused the adhesive to have more ductility, higher load-carrying capacity and higher fracture energy than curing it below or above the temperature at which T-g is attained. Here, the T-g is the T-g of the fully cured network. Experimental and numerical R curves were obtained to account for deviations between experiments and simulations. A good agreement between the numerical and experimental load-displacement curves was achieved showing the adequacy of the cohesive model used.
机译:本文试图研究固化温度对Araldite 2015胶粘剂断裂能、玻璃化转变温度(T-g)和内聚参数的影响。考虑了固化温度和玻璃化转变温度之间的关系。对狗骨状块状试样进行拉伸试验,以评估固化温度对粘合剂机械性能的影响。DCB测试结果用于获得粘合剂Araldite 2015的内聚规律。指数和PPR内聚带模型用于获得一些断裂特性。如果实验软化曲线与数值软化曲线不一致,也进行了反分析。可以看出,胶粘剂的软化行为可以很容易地由PPR内聚区模型中可用的形状参数控制。从DCB试验结果可以看出,与在低于或高于达到T-g的温度下固化相比,在获得T-g的温度下固化粘合剂可使粘合剂具有更高的延展性、更高的承载能力和更高的断裂能。这里,T-g是完全固化网络的T-g。获得了实验和数值R曲线,以解释实验和模拟之间的偏差。数值荷载-位移曲线和实验荷载-位移曲线之间取得了良好的一致性,表明了所用粘性模型的充分性。

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