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Development of a High Pressure Die Casting Tool for Partial Integration of Glass Fiber Structures

机译:玻璃纤维结构部分整合的高压压铸工具的研制

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Due to the growing demand for lightweight solutions in a wide range of industries, the selection and combination of various materials is becoming more and more important. As a result, the need for suitable joining technologies is increasing along with it.Within the DFG research group "Schwarz-Silber" ("black-silver"), Fraunhofer IFAM is investigating so-called transitional structures in cooperation with the University of Bremen. In this process, glass fiber structures are integrated into aluminum by a high pressure die casting process. These structures are used for the electrochemical insulation between aluminum and carbon fiber textiles, which are connected by textile processes in a subsequent production step. A solid hybrid structure is finally achieved through a resin-impregnation process. The key challenges are the positioning, pre-tensioning and infiltration of the glass fiber structures within the high pressure die casting process.In order to meet these challenges, a customized die casting tool was developed within the project. With the aid of mold-filling simulations, the die system of the die casting tool was optimized to achieve better infiltration of the fiber bundles and to additionally support the position of the glass fibers in the casting process.After the design of the molding tool, the implementation was carried out in collaboration with a toolmaker. In subsequent, up-to-date investigations, the positioning and infiltration of different variants of glass fiber structures is evaluated. The results are compared with previous attempts to position and infiltrate the glass fiber structures to assess the effect of the optimized newly designed tool.
机译:由于对广泛行业中的轻质解决方案的需求不断增长,各种材料的选择和组合变得越来越重要。因此,对合适的连接技术的需求随之而来。在DFG研究组“Schwarz-Silber”(“黑银”)中,Fraunhofer IFAM正在与不来梅大学合作调查所谓的过渡结构。在该过程中,玻璃纤维结构通过高压压铸过程整合到铝中。这些结构用于铝和碳纤维纺织品之间的电化学绝缘,其通过纺织过程连接在随后的生产步骤中。最终通过树脂浸渍方法实现固体混合结构。关键挑战是高压压铸过程内的玻璃纤维结构的定位,预张紧和渗透。为了满足这些挑战,在项目中开发了一种定制的压铸工具。借助于模具填充模拟,优化了压铸工具的模具系统以实现更好地渗透纤维束,并且另外支撑玻璃纤维在铸造过程中的位置。在模塑工具的设计时,实施是与工具制造商合作进行的。在随后的最新的研究中,评估了不同玻璃纤维结构的不同变体的定位和渗透。将结果与先前的尝试定位和渗透玻璃纤维结构进行比较,以评估优化的新设计工具的效果。

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