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Investigation of Processing Conditions of Melded Parts to Determine Process Boundaries

机译:研究熔化零件的加工条件以确定加工边界

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摘要

Melding, a novel method for producing seamless joints in thermosetting composites utilising the Quickstep~(TM) process, is explored in this paper. The effect of processing conditions on the quality of melded joins is examined and a set of processing boundaries defined so that the strength of melded joints is optimized. HexPly~R 914c pre-preg material was exposed to a range of processing temperatures prior to joining via the melding process. Differential Scanning Calorimetry analysis was carried out to investigate the degree of cure of material prior to final joining, and it was found that minimal cure occurs at temperatures below 120 deg C. After consolidation and cure of the melded parts, short beam shear testing was conducted to evaluate the strength of the melded interface. Exposure temperatures between 65 deg C and 120 deg C were found to optimize short beam shear join strength. Mode I double cantilever beam and mode II end notched flexural tests showed no detrimental effect of elevated exposure temperatures prior to joining.
机译:本文探讨了利用Quickstep〜(TM)工艺在热固性复合材料中生产无缝接缝的新方法-熔化。检查了加工条件对熔接质量的影响,并定义了一组加工边界,从而优化了熔接强度。在通过熔融工艺进行连接之前,将HexPly〜R 914c预浸料暴露在一定的加工温度范围内。进行了差示扫描量热法分析,以研究最终连接之前材料的固化程度,发现在低于120摄氏度的温度下发生的固化最少。在熔融零件固结和固化之后,进行了短梁剪切测试评估融合界面的强度。发现暴露温度在65摄氏度和120摄氏度之间可以优化短梁剪切连接强度。 I型双悬臂梁和II型端部切口弯曲试验表明,在加入之前,升高的暴露温度没有不利影响。

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