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On the Steel-Aluminum Hybrid Casting by Sand Casting

机译:砂铸造钢 - 铝杂交铸造

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摘要

Hybrid casting is a well-known technology to join steel inserts and aluminum. In order to achieve a high-performance material-based joining between steel and aluminum, a new PVD Al-Si-(Fe) coating, which consists of two sub-layers, has been successfully developed for high-pressure die casting. This coating system has been investigated further in this work for the sand casting process. By extending the sand casting process to the plaster casting process with preheating possibilities for the coated steel inserts, a material-based connection between steel and aluminum with a tensile shear strength of 7.7MPa could be created. The ductility of this connection is decreased comparing with the connection manufactured by die casting. SEM and EDS analysis and diffusion experiments show that the difference of mechanical properties between plaster and die casting is caused by the extensive diffusion and the corresponding layer growth at plaster casting. The edge separation in plaster casting is a result of the edge stresses due to the different thermal expansion of steel and aluminum which can be suppressed at high-pressure die casting. To improve the joining properties at sand casting, it is necessary to control the layer diffusion by adding other alloy elements such as Mn into the Al-Si-(Fe) coating layer.
机译:混合铸造是一种驰名技术,可以加入钢结构和铝。为了在钢和铝之间实现基于高性能的材料的接合,已经成功开发了一种由两个子层组成的新的PVD Al-Si-(Fe)涂层,用于高压压铸。该涂料系统在这项工作中进一步研究了砂铸造过程。通过将砂铸过程延伸到石膏铸造工艺,通过预热钢插入物预热可能性,可以产生钢和铝之间的基于材料的连接,其拉伸剪切强度为7.7MPa。与压铸件制造的连接相比,该连接的延展性降低。 SEM和EDS分析和扩散实验表明,石膏和压铸之间的机械性能差异是由石膏铸造的广泛扩散和相应的层生长引起的。石膏铸造中的边缘分离是由于钢和铝的不同热膨胀导致的边缘应力的结果,其可以在高压压铸件下抑制。为了改善砂铸件的连接性能,需要通过将其他合金元素(例如Mn)添加到Al-Si-(Fe)涂层中来控制层扩散。

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