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CONICAL THERMOPLASTIC COMPOSITE ANISOGRID LATTICE STRUCTURE BY INNOVATIVE OUT-OF-AUTOCLAVE MOLDING PROCESS

机译:锥形热塑性复合ANISoGrid格子结构通过创新的自动灭菌方法

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A new manufacturing process for thermoplastic (TP) composite parts has been used to produce conical anisogrid composite lattice structure (ACLS). An out-of-autoclave (OOA) process has been prototyped by using the compaction exerted by a heat-shrink tube after its exposition to heat in oven. Narrow thermoplastic prepreg tapes have been wounded on a metallic conical patterned mold at room temperature; then, the conical structure has been inserted in the heat-shrink tube and heated. TP unidirectional prepreg tapes have been used with polypropylene matrix and glass fibers. After molding, the TP ACLS has been tested under axial and transverse compression. Conical adapters were used in the transverse loading condition to allow uniform application of the load. Density measurement has been also performed to assess the quality of the OOA process. Results of this study show that TP ACLS with complex shape may be produced with OOA solutions without affecting mechanical performance. In fact, porosity levels of the consolidate ACLS are comparable with the initial prepreg despite of the absence of vacuum during molding. Moreover, high compressive stiffness was measured along both directions without observing damages, buckling or cracks in multiple tests. In the future, this kind of technology could be used for larger ACLSs by substituting the heat-shrink tube with a narrow tape to be wound as well after lamination.
机译:用于热塑性(TP)复合部件的新制造方法已被用于生产锥形AnisoGrid复合晶格结构(ACL)。通过使用在烘箱中的热量施加到热量之后,通过使用热收缩管施加的压实来原型涂抹了一个高压釜(OOA)工艺。窄热塑性预浸料胶带在室温下在金属圆锥形图案模具上受到伤害;然后,锥形结构已插入热缩管中并加热。 TP单向预浸料胶带已与聚丙烯基质和玻璃纤维一起使用。在模制后,TP ACL已经在轴向和横向压缩下进行了测试。锥形适配器用于横向负载条件以允许均匀地施加负荷。还进行了密度测量以评估OOA过程的质量。该研究的结果表明,具有复杂形状的TP ACL可以在不影响机械性能的情况下用OOA溶液产生复杂的形状。实际上,尽管在模塑过程中没有真空,但巩固ACL的孔隙率水平与初始预浸料相当。此外,沿两个方向测量高压缩刚度而不观察多次测试中的损伤,屈曲或裂缝。在未来,这种技术可用于通过将热缩管用窄带代替较窄的胶带来使用较大的ACL。

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