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Mechanical properties of co-extruded aluminium-steel compounds

机译:共挤铝钢复合物的机械性能

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摘要

Within the scope of the Collaborative Research Centre (CRC) 1153 novel process chains for the production of hybrid solid components by Tailored Forming are developed at the Leibniz Universität Hannover. The combination of e. g. aluminium with steel allows to produce hybrid compounds with wear-resistant functional surfaces and reduced weight. In these process chains, joining takes place as the first step to produce hybrid semi-finished products by friction welding, cladding, ultrasonic assisted laser welding or co-extrusion, which are subsequently subjected to various forming processes such as forging or impact extrusion. The coaxially joined hybrid semifinished components investigated in this work were produced by means of the lateral angular co-extrusion (LACE) process using the aluminium alloy EN AW-6082 and the case-hardening steel 20MnCr5. These semi-finished products shall be suited to produce hybrid bearing bushings by die forging in a subsequent process step. Initial investigations for the determination of the process parameters and the appropriate tool geometry were made using a steel rod. In future investigations, a steel tube will replace the steel rod in order to produce hybrid semi-finished products, which can be fully integrated into the process chain. The mechanical properties of the profile were determined at different positions along its length. For this purpose, the quality of the joining zone between aluminium and steel as a function of the profile position was examined by means of push-out tests. Moreover, the mechanical properties of the aluminium component's longitudinal weld seam were determined by micro-tensile-tests. © 2017 Trans Tech Publications, Switzerland.
机译:在合作研究中心(CRC)的范围内,汉诺威莱布尼茨大学开发了通过量身定制的成型技术生产混合固体组分的新型工艺链,共1153条。 e的组合。 G。铝和钢可以生产具有耐磨功能表面和减轻重量的混合化合物。在这些工艺链中,首先进行连接以通过摩擦焊接,熔覆,超声辅助激光焊接或共挤出生产混合半成品,然后对其进行各种成型工艺,例如锻造或冲击挤出。在这项工作中研究的同轴连接的混合半成品是使用铝合金EN AW-6082和表面硬化钢20MnCr5通过横向角共挤出(LACE)工艺生产的。这些半成品应适合在随后的工艺步骤中通过模锻生产混合轴承衬套。使用钢棒对工艺参数和合适的刀具几何形状进行了初步研究。在未来的研究中,钢管将替代钢管以生产混合半成品,该半成品可以完全集成到工艺链中。在沿其长度的不同位置确定型材的机械性能。为此,通过推出试验检查了铝和钢之间的连接区域的质量,该质量是轮廓位置的函数。此外,铝构件的纵向焊缝的机械性能是通过微拉伸试验确定的。 ©2017 Trans Tech Publications,瑞士。

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