首页> 外文会议>International SAMPE Symposium and Exhibition >ADVANCES IN VACUUM INFUSION PROCESSING USING SPACER FABRICS AS ENGINEERED REINFORCING INTERLAMINAR INFUSION MEDIA
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ADVANCES IN VACUUM INFUSION PROCESSING USING SPACER FABRICS AS ENGINEERED REINFORCING INTERLAMINAR INFUSION MEDIA

机译:使用间隔织物作为工程增强层间输液介质的真空输液加工进展

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The US Environmental Protection Agency is expected to finalize standards for Maximum Achievable Control Technology that once promulgated could significantly restrict capacity. ~2 While it is lobbying the EPA and Congress for more lenient regulations, the FRP industry is strongly encouraging manufacturers to change from open-mold to cleaner, more efficient closed-mold processes such as vacuum infusion. However, processing limitations of available technology, such as incomplete/slow infusion, uneven distribution/pooling of resin, long set-up time, and material waste has hampered this transition. Interlaminar infusion technology, and in particular the application of three-dimensional spacer fabrics as engineered reinforcing infusion media, addresses these processing concerns. This paper will discus the various applications of three-dimensional spacer fabrics to vacuum infusion processing through practical examples ranging from sporting goods to aerospace.
机译:预计美国环境保护局将最终确定最大可实现的控制技术标准,曾经颁布的可实现显着限制能力。 〜2虽然它在宽阔的环保署和国会进行更多宽松的法规,但FRP行业强烈促使制造商从开放式更改为清洁剂,更高效的闭模过程,如真空输注。然而,处理可用技术的限制,例如不完全/缓慢的输注,不均匀的树脂分布/汇集,长设置时间和材料废物阻碍了这种过渡。 InterlaMinar Infusion技术,特别是三维间隔织物作为工程增强输液介质的应用,解决了这些处理问题。本文将通过实际示例进行三维间隔织物的各种应用,通过实际示例从体育用品到航空航天的实际例子。

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