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首页> 外文期刊>CERAMICS INTERNATIONAL >New large-scale production method for C/C-SiC ceramics: Investigating the influence of chopped and nonwoven CF
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New large-scale production method for C/C-SiC ceramics: Investigating the influence of chopped and nonwoven CF

机译:用于C / C-SIC陶瓷的新型大规模生产方法:研究切碎和非织造CF的影响

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摘要

Carbon fibre reinforced carbon and silicon carbide dual matrix composites are a commercially produced using the liquid silicon infiltration (LSI) process. In comparison to the state of the art LSI process, the first production step-the shaping of the carbon fibre reinforced plastic green body-is realised through thermoset injection moulding. Using this method, the complete process can be automated. Simultaneously, the injection moulding technology allows complex geometries with near net shape in short cycle times of about two to five minutes. Thereby, this large-scale process offers a wide range of shot weights from a few mg up to 100 kg, also in multi-component technology. Also, several manufacturing steps can be omitted. This improves the reproducibility, and working in closed environments improves the employees' health protection. Further process steps, like pyrolysis and silicon infiltration follow the state of the art. Although, this promising approach significantly shortens the fibres, the defined plastic processing is highly reproducible and generates similar mechanical properties like manual processes, due to the better fibre/matrix interaction in the plastic composite. In addition, continuous fibre preforms can be inserted to fulfil higher requirements.
机译:碳纤维增强碳和碳化硅双基质复合材料是使用液态硅浸润(LSI)工艺的商业生产。与现有技术的方法相比,第一生产步骤 - 通过热固性注塑成型来实现碳纤维增强塑料绿体的成形。使用此方法,可以自动处理完整的过程。同时,注塑技术允许复杂的几何形状,近净形状的短循环时间约为2至5分钟。因此,这种大型过程提供了多种镜头重量,从几毫克高达100公斤,也是多组分技术。而且,可以省略几个制造步骤。这提高了重现性,在封闭环境中工作提高了员工的健康保护。进一步的处理步骤,如热解和硅渗透遵循现有技术。虽然,这种有希望的方法显着缩短了纤维,但是由于塑料复合材料中的纤维/基质相互作用更好,所限定的塑料处理是高度可再现的并且产生类似的机械性能,如手动工艺。此外,可以插入连续的纤维预制件以满足更高的要求。

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