首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Strength development and diffusion in symmetric and asymmetric pairs of amorphous COCs in the vicinity of Tg: A new modified temperature-pressure dependent model
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Strength development and diffusion in symmetric and asymmetric pairs of amorphous COCs in the vicinity of Tg: A new modified temperature-pressure dependent model

机译:Tg附近对称和不对称非晶态COC对的强度发展和扩散:新的修正的温度-压力相关模型

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摘要

The strength development and healing of symmetric and asymmetric interfaces of amorphous cyclic olefin copolymers (COC) was studied by assessment of diffusion and lap-shear strength measurement of samples bonded at different temperatures, pressures and healing times. Amorphous COCs comprise copolymers of norbornene and ethylene whereby COCs with differing norbornene content have different glass transition temperature (T _g) and molecular weight. For similar thermal bonding conditions near Tg, the symmetric pairs have larger bond strength than asymmetric pairs. The activation energy calculated using Arrhenius model was independent of molecular weight and norbornene content. The free volume of COCs increased with norbornene content. In the asymmetric pairs, the adherend consisting of the COC grade with lower T _g and larger free volume dominated the diffusion compared to the other COC adherend. The penetration depth for molecular diffusion calculated using the Flory-Huggins theory was consistent with that estimated using the experimental values of the radius of gyration and bond strength. A new modified model that incorporates the combined effects of pressure, temperature and healing time could be used to predict the bond strength of both symmetric and asymmetric COC joints. Moreover, the new model facilitates determination of more reliable values of the activation energy.
机译:通过评估在不同温度,压力和愈合时间下粘结的样品的扩散和搭接剪切强度测量,研究了非晶态环状烯烃共聚物(COC)对称和不对称界面的强度发展和愈合。非晶态COC包括降冰片烯和乙烯的共聚物,其中降冰片烯含量不同的COC具有不同的玻璃化转变温度(T_g)和分子量。对于接近Tg的相似热粘合条件,对称对的粘合强度要大于非对称对。使用Arrhenius模型计算的活化能与分子量和降冰片烯含量无关。 COCs的自由体积随降冰片烯含量的增加而增加。在不对称对中,与其他COC被粘物相比,由T_g较低和较大自由体积的COC级组成的被粘物主导了扩散。使用Flory-Huggins理论计算的分子扩散渗透深度与使用回转半径和结合强度的实验值估算的渗透深度一致。结合压力,温度和愈合时间的综合影响的新修改模型可用于预测对称和不对称COC接头的粘结强度。此外,新模型有助于确定活化能的更可靠值。

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