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Fatigue strength of a hybrid joint formed between a PA6-GF60 polymer matrix and a S420MC steel insert

机译:PA6-GF60聚合物基体与S420MC钢插件之间形成的混合接头的疲劳强度

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A vehicle's brake pedal is considered to be one of its most important safety components. In the past, vehicle weight-reduction initiatives resulted in a highly optimized design of steel brake pedal with an increased strength-to-weight ratio. However, any further reduction in the weight of the brake pedal is only possible by using combined, i.e., hybrid, materials. In this case the joint between the two different materials in the hybrid arrangement must be as strong as possible. Many methods for improving the joint between two highly dissimilar materials are known from the literature, but conventional joining techniques lack either the fatigue resistance, because of a poor notch-effect design (shape-based joints), or are unsuitable for low-cost serial production (material-based joints). This article presents an innovative approach to joining the reinforcing insert with a glass-fiber-reinforced polyamide 6 (PA6-GF) base structure, where the reinforcing insert is molded into the PA6-GF. The improved shape of the reinforcing insert contributes the required strength, while the PA6-GF base structure provides the final form of the specimen/product. The innovative shape of the metal insert not only provides the strength of the component; it also ensures the proper joint between the two dissimilar materials. For different types of reinforcing inserts static durability tests as well as fatigue-life tests of the insert-PA6-GF-matrix joints were performed. Our experimental research shows that the most promising shape-based hybrid joints reported in the literature are not the best solution when the hybrid joint's fatigue life is the decisive criterion for a product's durability.
机译:车辆的制动踏板被认为是其最重要的安全组件之一。过去,减少车辆重量的举措导致了钢制制动踏板的高度优化设计,并增加了强度/重量比。但是,只有通过使用组合的,即混合的材料,才能进一步减轻制动踏板的重量。在这种情况下,混合布置中两种不同材料之间的连接必须尽可能牢固。从文献中可以知道许多改进两种高度不同材料之间的连接的方法,但是传统的连接技术由于切口效果设计不佳(基于形状的连接)而缺乏抗疲劳性,或者不适用于低成本的串联连接生产(基于材料的接头)。本文提出了一种创新的方法,将增强插件与玻璃纤维增​​强的聚酰胺6(PA6-GF)基础结构连接在一起,在该基础结构中,增强插件模制成PA6-GF。增强插入物的形状改善了所需的强度,而PA6-GF基础结构提供了样品/产品的最终形式。金属插件的创新形状不仅提供了组件的强度,而且还提供了坚固的外壳。它还可以确保两种不同材料之间的正确连接。对于不同类型的增强嵌件,执行了嵌件-PA6-GF-基体接头的静态耐久性测试以及疲劳寿命测试。我们的实验研究表明,当混合接头的疲劳寿命是决定产品耐用性的决定性标准时,文献中报道的最有前途的基于形状的混合接头并不是最佳解决方案。

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