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Effect of carbon black nanoparticles concentration on the mechanical properties of a structural epoxy adhesive

机译:炭黑纳米颗粒浓度对结构环氧胶粘剂力学性能的影响

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The present work describes the influence of different carbon black nanoparticles with different concentrations on the mechanical properties of a structural epoxy adhesive cured by dielectric and thermal heating. This work was undertaken to improve the understanding of the effect of carbon black nanoparticles concentration on the stiffness (Young's modulus), strength (yield strength) and deformation of the adhesive. Two kinds of spherical carbon black nanoparticles with different dielectric properties and sizes were used. Specimens with different amounts of carbon black were manufactured for each nanoparticle. The mechanical properties of the adhesive were measured in bulk specimens. The mechanical properties were found to vary as a function of the carbon black amount. For the dielectric cure, the strength and stiffness of the adhesive decrease as the amount of carbon black nanoparticles increases. On the other hand, the adhesive showed an increase of the deformation with an increase of the carbon black concentration. The thermal cure showed a mechanical behaviour similar as the dielectric cure, but the curing time increases substantially. A scanning electron microscopy analysis was performed to analyse the surface fracture of the adhesive. The fracture surfaces of specimens cured by dielectric and thermal heating and without nanoparticles are similar, typical of brittle adhesive. For high carbon black amount, the fracture surfaces are typical of ductile adhesive.
机译:本工作描述了不同浓度的不同炭黑纳米颗粒对通过介电和热固化的结构环氧胶粘剂机械性能的影响。进行这项工作是为了更好地理解炭黑纳米颗粒浓度对胶粘剂的刚度(杨氏模量),强度(屈服强度)和变形的影响。使用了两种具有不同介电性质和尺寸的球形炭黑纳米颗粒。为每个纳米颗粒制造了具有不同量炭黑的样品。在散装样品中测量粘合剂的机械性能。发现机械性能随炭黑量的变化而变化。对于介电固化,粘合剂的强度和刚度随炭黑纳米颗粒数量的增加而降低。另一方面,随着炭黑浓度的增加,粘合剂显示出变形的增加。热固化显示出与介电固化相似的机械性能,但是固化时间大大增加。进行扫描电子显微镜分析以分析粘合剂的表面断裂。通过介电和热固化而没有纳米颗粒的试样的断裂表面相似,是脆性粘合剂的典型特征。对于高含量的炭黑,断裂表面是韧性粘合剂的典型特征。

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