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Evaluation of Interlocking Bond Strength between Structured 1.0338 Steel Sheets and High Pressure Die Cast AlMg5Si2

机译:结构化1.0338钢板和高压模具互锁粘结强度的评价及高压模具铸造ALMG5SI2

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Multi-material components open up new possibilities for functional design. Such components combine beneficial physical properties of different materials in a single component as for instance chemical resistance, high strength or low density. The challenge is a reliable bond between both materials to enable a long term usage. This paper deals with a form closure connection to ensure a solid connection between steel strips and high pressure die cast aluminium. Two different sizes of channel structures with width ratios of 1.0 and 1.35 are produced on a steel sheet. An ensuing flat rolling pass is performed to create undercuts with a width of up to 50 μm, enabling an interlocking of the molten aluminium in the concluding casting process. For both rolling processes the resulting geometry is analysed depending on the thickness reduction. In a subsequent high pressure die casting process, aluminium is applied resulting in a complete form filling for the coarser structure. Comparing structures with and without undercuts, only structures suited with undercuts remain gap-free after solidification contraction. The finer structure could not be filled completely; nevertheless these structures result in shear strength of up to 45 MPa transversal to the channel-direction.
机译:多材料组件开辟了功能设计的新可能性。这些组分将不同材料的有益物理性质结合在单个组分中,例如耐化学性,高强度或低密度。挑战是两种材料之间的可靠键,以实现长期使用。本文涉及封闭连接,确保钢带和高压模铸铝之间的固体连接。在钢板上产生两种不同尺寸的宽度比为1.0和1.35的频道结构。进行随后的扁平轧辊通过以产生宽度高达50μm的底切,使得熔融铝在结束铸造过程中能够互锁。对于轧制工艺,根据厚度还原,分析所得到的几何形状。在随后的高压压铸工艺中,施加铝,得到较粗糙的结构填充的完整形式。将结构与未底切的比较,仅在凝固收缩后才只适用于底切的结构保持间隙。更精细的结构无法完全填充;然而,这些结构导致剪切强度高达45MPa横向于通道方向。

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