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Original Articles

Long-Term Hydrothermal Aging Behavior and Life-Time Prediction of Polyamide 6

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Pages 239-252 | Received 10 May 2014, Accepted 10 Dec 2014, Published online: 20 Feb 2015

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Ruiguang Li, Lin Ye & Guangxian Li. (2018) Long-Term Hydrothermal Aging Behavior and Aging Mechanism of Glass Fibre Reinforced Polyamide 6 Composites. Journal of Macromolecular Science, Part B 57:2, pages 67-82.
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Articles from other publishers (6)

Mathis Mortensen Brette, Allan Hjarbæk Holm, Aleksey D. Drozdov & Jesper de Claville Christiansen. (2023) Pure Hydrolysis of Polyamides: A Comparative Study. Chemistry 6:1, pages 13-50.
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Mingda Wang, Yongjun Qiu, Tao Chen & Liming Zhao. (2023) The catalytic mechanism and limiting factor of polyamide hydrolysis for chemical recycling: the classic hydrolysis of polyamide 4. Journal of Polymer Research 30:5.
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Yongpeng Lei, Ling Luo, Zhenhang Kang, Jifeng Zhang & Boming Zhang. (2021) Modified Halpin–Tsai equation for predicting interfacial effect in water diffusion process. Science and Engineering of Composite Materials 28:1, pages 180-189.
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Dylan Jubinville, Mohamed Abdelwahab, Amar K. Mohanty & Manjusri Misra. (2019) Comparison in composite performance after thermooxidative aging of injection molded polyamide 6 with glass fiber, talc, and a sustainable biocarbon filler. Journal of Applied Polymer Science 137:17.
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Valentina Sabatini, Tommaso Taroni, Riccardo Rampazzo, Marco Bompieri, Daniela Maggioni, Daniela Meroni, Marco Aldo Ortenzi & Silvia Ardizzone. (2020) PA6 and Halloysite Nanotubes Composites with Improved Hydrothermal Ageing Resistance: Role of Filler Physicochemical Properties, Functionalization and Dispersion Technique. Polymers 12:1, pages 211.
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Joanna Izdebska. 2016. Printing on Polymers. Printing on Polymers 353 370 .

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