会议论文详细信息
2018 5th Global Conference on Polymer and Composite Materials
High temperature polymerization monitoring of an epoxy resin using ultrasound
材料科学;化学
Maréchal, P.^1 ; Ghodhbani, N.^1 ; Duflo, H.^1
Laboratoire Ondes et Milieux Complexes, Normandie Univ, UNIHAVRE, CNRS, LOMC, Le Havre
76600, France^1
关键词: Experimental conditions;    High-temperature polymerization;    Physical and mechanical properties;    Temperature sensitivity;    Ultrasonic attenuation;    Ultrasonic inspections;    Ultrasonic parameters;    Ultrasonic properties;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/369/1/012010/pdf
DOI  :  10.1088/1757-899X/369/1/012010
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

In this study, the real time ultrasonic monitoring is investigated to quantify changes in physical and mechanical properties during the manufacture of composite structures. In this context, an experimental transmission was developed with the aim of characterizing a high temperature polymerization reaction and post-curing properties using an ultrasonic method. First, the monitoring of ultrasonic parameters of a thermosetting resin is carried out in a device reproducing the experimental conditions for manufacturing a composite material with a process known as RTM, that is to say an isothermal polymerization at T = 160°C. During this curing, the resin is changing from its initial viscous liquid state to its final viscous solid state. Between those states, a glassy transition stage is observed, during which the physical properties are strongly changing, i.e. an increase of the ultrasonic velocity up to its steady value and a transient increase of the ultrasonic attenuation. Second, the ultrasonic inspection of the thermosetting resin is performed during a heating and cooling process to study the temperature sensitivity after curing. This type of characterization leads to identifying the ultrasonic properties dependence before, during and after the glassy transition temperature Tg. Eventually, this study is composed of two complementary parts: the first is useful for the curing optimization, while the second one is fruitful for the post-processing characterization in a temperature range including the glassy transition temperature Tg.

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