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Experimental Investigation on the Joining of Aluminum Alloy Sheets Using Improved Clinching Process

机译:改进的铆接工艺连接铝合金板的实验研究

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摘要

Aluminum alloy sheets have been widely used to build the thin-walled structures by mechanical clinching technology in recent years. However, there is an exterior protrusion located on the lower sheet and a pit on the upper sheet, which may restrict the application of the clinching technology in visible areas. In the present study, an improved clinched joint used to join aluminum alloy sheets was investigated by experimental method. The improved clinching process used for joining aluminum alloy evolves through four phases: (a) localized deformation; (b) drawing; (c) backward extrusion; and (d) mechanical interlock forming. A flat surface can be produced using the improved clinching process. Shearing strength, tensile strength, material flow, main geometrical parameters, and failure mode of the improved clinched joint were investigated. The sheet material was compressed to flow radially and upward using a punch, which generated a mechanical interlock by producing severe localized plastic deformation. The neck thickness and interlock of the improved clinched joint were increased by increasing the forming force, which also contributed to increase the strength of the clinched joint. The improved clinched joint can get high shearing strength and tensile strength. Three main failure modes were observed in the failure process, which were neck fracture mode, button separation mode, and mixed failure mode. The improved clinched joint has better joining quality to join aluminum alloy sheets on the thin-walled structures.
机译:近年来,铝合金薄板已通过机械铆接技术广泛用于建造薄壁结构。但是,在下部板上有一个外部突起,而在上部板上有一个凹坑,这可能会限制压紧技术在可见区域的应用。在本研究中,通过实验方法研究了一种用于连接铝合金板的改进型压接接头。用于连接铝合金的改进的铆接工艺分为四个阶段:(a)局部变形; (b)绘图; (c)向后挤压; (d)机械互锁成型。使用改进的铆接工艺可以生产出平坦的表面。研究了改进的压接接头的剪切强度,抗拉强度,材料流动,主要几何参数和破坏模式。使用冲头将片状材料压缩以使其径向向上流动,通过产生严重的局部塑性变形来产生机械互锁。改进的压紧接头的颈部厚度和互锁通过增加成形力而增加,这也有助于增加压紧接头的强度。改进的压接接头可以获得较高的剪切强度和拉伸强度。在故障过程中观察到三种主要的故障模式,分别是颈部骨折模式,纽扣分离模式和混合故障模式。改进的压接接头具有更好的接合质量,可以将铝合金薄板接合在薄壁结构上。

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