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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Rapid consolidation and curing of advanced composites using electron beam irradiation
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Rapid consolidation and curing of advanced composites using electron beam irradiation

机译:使用电子束辐射快速合并和固化先进复合材料

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摘要

A low-cost, low-waste manufacturing method for advanced thermoset composite parts could improve market penetration of composites compared to other engineering materials such as aluminum or steel. Such a method could combine some of the new trends in composites manufacturing such as resin infusion (eliminates need for prepreg), out-of-autoclave consolidation, and snap curing. The feasibility of a hybrid process with these characteristics has been demonstrated by uniting liquid composite molding, resin curing by electron beam irradiation, and high pressure consolidation with specialized elastomeric tooling. To demonstrate feasibility, a mold set was designed to make flat, square four-ply woven carbon fiber parts by (1) vacuum-infusing dry preforms with an electron beam–curable epoxy resin in minutes, (2) applying 690?kPa of uniform pressure and consolidating in seconds using an elastomer-faced specialized elastomeric tooling tool and simple hydraulic press, and (3) curing in seconds using a 3?MeV electron beam source. To better understand how various process parameters affect part performance, parameters are varied in a simple design of experiments, and flexural strength and stiffness, thickness distribution, fiber and void volume fractions, surface roughness, and cross-sectional characteristics (via microscopy) are measured and compared.
机译:对于先进的热固性复合部件的低成本,低垃圾制造方法可以改善复合材料的市场渗透与铝或钢等其他工程材料相比。这种方法可以将复合材料制造中的一些新趋势结合在诸如树脂输注(消除预浸料坯的需要),外釜固结和甜蜜灭菌器中的一些新趋势。通过将液体复合成型,通过电子束照射的树脂固化,以及具有专用弹性体工具的高压固结来证明杂化过程的可行性。为了证明可行性,设计模具套装以使平坦的四层编织碳纤维部件(1)用电子束可固化的环氧树脂在几分钟内施用(2)施加690μl均匀使用弹性体面对的专用弹性体工具工具和简单的液压机,在几秒钟内进行压力和固结,并使用3Ω·MEV电子束源在几秒钟内固化。为了更好地了解各种过程参数影响部分性能,参数在简单的实验设计中变化,测量抗弯强度和刚度,厚度分布,纤维和空隙体积分数,表面粗糙度和横截面特性(通过显微镜)并比较。

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