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Exploring the Potential to Uniquely Manufacture Curved VARTM Epoxy Composites Using Cost-Effective FDM Molds
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作者 Syed Monis Raza Kazmi Jens Schuster Johannes Lutz 《Open Journal of Composite Materials》 2020年第3期45-65,共21页
The Resin Infusion or the VARTM (Vacuum Assisted Resin Transfer Molding) process has significant potential to be used to manufacture curved composites. Another way to produce curved or complex geometry is to use 3D pr... The Resin Infusion or the VARTM (Vacuum Assisted Resin Transfer Molding) process has significant potential to be used to manufacture curved composites. Another way to produce curved or complex geometry is to use 3D printers. 3D or FDM (Fused Deposition Modelling) printers are now being used to produce relatively cheaper curved parts using thermoplastics such as PLA. However, the strength and mechanical performance of these parts is limited and can be enhanced if the polymer is reinforced with a type of fiber for instance. Research is being carried out to produce fiber rein-forced thermoplastic composites but that process is expected to be more expensive than the alternative methods such as injection or compression molding. Furthermore, to understand the manufacture of a hybrid composite using thermoplastics, fibers and epoxy resin, research and investigation need to be carried out. In this research</span></span></span></span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><span style="font-family:Verdana;"><span style="font-family:Verdana;"><span style="font-family:Verdana;">, there are</span></span></span></span></span><span><span><span><span><span style="font-family:""><span style="font-family:Verdana;"> single-sided, double-sided, reusable, disposable and consumable molds. Most of the molds were created either using an FDM printer or manually. These molds were then used to manufacture flat and curved composite structures via the resin injection process, </span><i><span style="font-family:Verdana;">i.e.</span></i><span style="font-family:Verdana;"> VARTM with epoxy resin system and glass/carbon/flax fiber reinforcement. By replacing the costly metallic molds by significantly cheaper molds, the cost of production was expected to further reduce. Furthermore, using double-sided PLA molds was not expected to be a threat to the overall cost of the composite part in question compared to double-sided matched molds used in compression molding. Shear strength, tensile strength and charpy impact str 展开更多
关键词 3D Printing FDM VARTM curved composites 3D Molds Reusable Molds Consumable Molds Disposable Molds
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变刚度复合材料加筋壁板的压缩试验及仿真研究 被引量:1
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作者 原崇新 潘杰 +4 位作者 屈蒙 谭源 董青海 党磊 李志远 《航空科学技术》 2024年第3期41-46,共6页
受益于自动铺丝等自动化制造技术,曲线纤维复合材料的工程应用已经成为现实,但曲线纤维复合材料在加筋壁板上的性能优势仍缺乏相应的试验数据验证。本文对比分析了直线纤维与优化后的曲线纤维复合材料加筋壁板的压缩性能,采用了自动铺... 受益于自动铺丝等自动化制造技术,曲线纤维复合材料的工程应用已经成为现实,但曲线纤维复合材料在加筋壁板上的性能优势仍缺乏相应的试验数据验证。本文对比分析了直线纤维与优化后的曲线纤维复合材料加筋壁板的压缩性能,采用了自动铺丝工艺分别制造了直线纤维面板和曲线纤维面板,并与固化好的工形长桁进行二次固化,然后对两种类型的试验件进行压缩性能测试。试验结果表明,直线加筋壁板复合材料的压缩载荷为116.27kN,而优化后曲线纤维加筋壁板的压缩载荷为151.62kN。对两种形式的加筋壁板进行了有限元仿真,并与试验结果进行对比。仿真结果表明,直线纤维加筋壁板因为较早地出现了面板屈曲并随之与工形长桁脱黏,最后长桁被压溃而导致整个结构失效。而曲线纤维加筋壁板因为屈曲强度较高,在临近失效时才发生脱黏,并导致最终的压溃。 展开更多
关键词 曲线纤维复合材料 加筋壁板 压缩 脱胶 工形长桁
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采样信号时频特性的复合材料损伤检测 被引量:1
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作者 吴耀军 庄天戈 K.W.Wong 《仪器仪表学报》 EI CAS CSCD 北大核心 2000年第5期449-454,463,共7页
一种时频数据处理方法被应用于复合材料损伤检测。根据小波变换的框架重构理论和小波变换时频相空间理论 ,提取了信号的时频域特征 ,通过比较原信号的时频空间和小波变换相空间的相同部分 ,得到了能反映原信号同样时频特征的小波级数展... 一种时频数据处理方法被应用于复合材料损伤检测。根据小波变换的框架重构理论和小波变换时频相空间理论 ,提取了信号的时频域特征 ,通过比较原信号的时频空间和小波变换相空间的相同部分 ,得到了能反映原信号同样时频特征的小波级数展开项和 ,应用 Gram- schmidt正交化方法 ,按照一定准则 ,对所得到的小波级数展开项的线性组合进行正交化处理 ,用代数数值方法 ,从已知采样数据分布集合得到了对应于曲线本身时频特征。经过处理得到的曲线 ,能够很好的逼近原来采样曲线 ,故而能保证和原采样曲线有相同的时间频率性质 ,这样的复合材料损伤缺陷判别方法结果较好。 展开更多
关键词 小波变换 损伤检测 复合材料 时频特性 采样信号
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