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PREPREG AND INFUSION PROCESSES FOR MODERN WIND TURBINE BLADES

机译:现代风轮机叶片的预浸和灌注过程

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The different elements of wind turbine blades have been analyzed for their main function, performance requirements and drivers. Key drivers can be simplified to either performance or cost. The use of prepreg and infusion to make these blade elements has then been compared and shows, from a comparison of test laminates, that prepreg typically delivers higher mechanical performance on both glass and carbon. One of the main process differences, cure temperature, has been overcome with the introduction of M79 which cures at 70°-80°C. M79 combines this low cure temperature with a much lower reaction enthalpy allowing shorter cure cycles. This means that prepregs can now be cured in the same molds, at the same temperatures and with the same foam as used in a conventional infusion process. Although prepreg and infusion are usually used separately for making blade elements, they may also be used in combination: co-infused and co-cured using prepregs for the hard to infuse unidirectional load-carrying elements and infusion for the other elements. This can thus simplify the production process. The conclusion is that unidirectional prepregs are ideally suited for the performance driven parts of the blade such as in load carrying elements.
机译:对风力涡轮机叶片的不同元件进行了主要功能,性能要求和驱动因素的分析。关键驱动因素可以简化为性能或成本。然后,对预浸料和浸渍法制造这些刀片元件的使用进行了比较,并通过对测试层压板的比较表明,预浸料通常可在玻璃和碳纤维上提供更高的机械性能。 M79的引入克服了主要工艺差异之一,即固化温度,该M79可在70°-80°C的温度下固化。 M79将较低的固化温度与较低的反应焓结合在一起,从而缩短了固化周期。这意味着预浸料现在可以在与传统灌注工艺相同的模具中,相同的温度和相同的泡沫下固化。尽管预浸料和灌注材料通常单独用于制造叶片元件,但它们也可以组合使用:使用预浸料共灌注和共固化用于难于注入单向承载元件,而灌注则用于其他元件。因此,这可以简化生产过程。结论是,单向预浸料非常适合叶片的性能驱动部件,例如在负载元件中。

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