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Analysis of nano-creep deformation of epoxy adhesive in optical fiber connector for long-term reliability prediction

机译:光纤连接器中环氧树脂胶粘剂的纳米蠕变变形分析,以长期可靠度预测

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摘要

We describe a comprehensive analysis of the nano-creep deformation of an epoxy adhesive used in physical-contact optical fiber connectors. To design a highly reliable multicore fiber connector and predict the long-term reliability of commercially installed optical connectors, we focus on the change in fiber withdrawal, which is a key parameter for achieving physical-contact connection. We also propose an adhesive creep model that includes long-term time dependence by detailing through a finite element analysis the parameters that influence the fiber withdrawal, such as shear stress with connection, thermal stress, residual stress, swelling, and cure shrinkage. The measurement results for fiber withdrawal under several environmental conditions provided in this paper support the behaviors considered in our proposed model. From our obtained short-term results and rheological approach, we predict the nano-creep deformation observed in the connector over the long term by applying the time-temperature superposition principle, and discuss the correspondence with exposure test results. Our verified mechanism and estimated values of creep deformation prove the high reliability of the optical connectors and also provide guidelines for determining the need to update installed connectors and for designing future connection devices such as physical-contact multicore fiber connectors.
机译:我们描述了用于物理接触式光纤连接器的环氧树脂胶粘剂的纳米蠕变变形的综合分析。为了设计高度可靠的多芯光纤连接器并预测商业安装的光连接器的长期可靠性,我们关注光纤引出的变化,这是实现物理接触连接的关键参数。我们还提出了一种粘着蠕变模型,该模型通过有限元分析详细描述了影响纤维拉拔的参数,例如与连接有关的剪切应力,热应力,残余应力,溶胀和固化收缩,从而包括长期时间依赖性。本文提供的几种环境条件下纤维拉拔的测量结果支持了我们提出的模型中考虑的行为。根据我们获得的短期结果和流变方法,我们通过应用时间-温度叠加原理,预测了长期在连接器中观察到的纳米蠕变变形,并讨论了与暴露测试结果的对应关系。我们经过验证的机制和蠕变变形的估计值证明了光学连接器的高度可靠性,并且还为确定更新安装的连接器以及设计未来的连接设备(例如物理接触式多芯光纤连接器)提供了指导。

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