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首页> 外文期刊>International Journal of Adhesion & Adhesives >Effect of coating thickness on the stress profile at the epoxy/silicone interface subjected to pull-off loading: A finite element analysis
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Effect of coating thickness on the stress profile at the epoxy/silicone interface subjected to pull-off loading: A finite element analysis

机译:涂层厚度对应力曲线的涂层厚度对拉开载荷的环氧/硅氧烷界面的影响:有限元分析

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AbstractPrevious experimental studies of silicone coatings have shown three distinct types of release behavior in the tensile flat punch test, depending on coating thickness. The mechanical response in the punch test is highly dependent upon the Poisson's ratio of the coating and its confinement ratio (punch radius divided by coating thickness). This study developed a high accuracy finite-element model of the punch test using the adaptive p-method with extensive mesh refinement to produce smooth stress profiles up to the punch edge. Stress distributions were found for a wide range of confinement parameters and Poisson's ratios. At a typical Poisson's ratio of 0.49, the highest center stress occurred for the intermediate thickness coatings—not thin or thick. Also, the thickest coatings demonstrated steadily increasing high stress towards the edge, while other thicknesses showed the steep singularity at the edge with a protective stress depression bordering inside it. The results further help explain why the critical pull-off force continues to increase as the thickness decreases, even with different release mechanisms. The stress profiles for thick coatings have almost no sensitivity to Poisson's ratio, unlike other thicknesses which show high sensitivity. Edge peeling is most likely to occur for all thick coatings, while other debonding modes are most likely for thin and intermediate thickness coatings. Together, results show the stress mechanics of the flat punch test follow three distinct types of confinement.]]>
机译:<![cdata [ 抽象 取决于涂层厚度,硅涂层的先前实验研究显示了拉伸平冲冲头试验中的三种不同类型的释放行为。冲头测试中的机械响应高度依赖于泊松涂层的比例及其限制比(冲头半径除以涂层厚度)。本研究开发了使用具有广泛网格细化的自适应P用于打孔测试的冲头测试的高精度有限元模型,以产生直到冲压边缘的平滑应力分布。找到了广泛的监禁参数和泊松比率的应力分布。在典型的泊松比为0.49,中间厚度涂层的最高中心应力 - 不薄或厚。而且,最厚的涂层朝着边缘稳定地提高了高应力,而其他厚度在边缘处呈现陡峭的奇异性,其具有内部的保护性应力凹陷。结果进一步有助于解释为什么由于厚度降低,即使具有不同的释放机制,临界拉出力也会继续增加。与显示出高灵敏度的其他厚度,厚涂层的应力曲线几乎没有对泊松比的敏感性。对于所有厚涂层,最有可能发生边缘剥离,而其他剥离模式最有可能适用于薄和中间厚度涂层。结果表明,扁平冲击试验的应力力学遵循三种不同类型的限制。 ]]>

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