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Simulating the dependence of the filler wire feeding on the wire size in the hybrid metal extrusion bonding (HYB) process

机译:模拟填充丝进给在混合金属挤出和粘合(HYB)工艺中的线尺寸上的依赖性

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HYB is a new solid-state joining method for metals and alloys that utilizes continuous extrusion as a technique to enable aluminium filler metal (FM) additions. In the present work, a finite element (FE) model for the filler wire feeding inside the HYB PinPoint extruder has been developed and implemented within the commercial software package DEFORM 3D. Adaptive remeshing is used to handle the high mesh distortions occurring during simulation. Moreover, modelling of the FM flow stress as a function of strain, strain rate and temperature is done by employing a modified version of the Johnson-Cook constitutive equation and experimental tensile test data for the AA6082 filler wire. In the numerical simulations, the feeding behaviour of filler wires with diameters of 1.2, 1.4 and 1.6 mm, respectively has been explored. The results show that the filler wire feeding is sensitive to variations in the extrusion chamber geometry. For the specific combinations of wire diameters and extrusion chamber geometries examined, the Φ1.4 mm wire appears to be the best choice when it comes to reducing feeding problems related to buckling & breaking of the filler wire during extrusion & joining.
机译:HYB是一种用于金属和合金的新型固态连接方法,其利用连续挤出作为使铝填充金属(FM)添加的技术。在本作工作中,已经在商业软件包Deform 3D中开发并实现了HYB Pinpoint挤出机内部的填充丝进给的有限元(Fe)模型。自适应Remeshing用于处理在仿真期间发生的高网状失真。此外,通过采用AA6082填充丝的Johnson-Cook组成方程和实验拉伸试验数据来实现FM流量应变,应变速率和温度的函数。在数值模拟中,分别探索了直径为1.2,1.4和1.6mm的填充线的进料行为。结果表明,填充丝进给对挤出室几何形状的变化敏感。对于电线直径和挤出室几何形状的特定组合,φ1.4mm导线似乎是在挤出和连接期间减少与填充丝的屈曲和破碎相关的饲养问题时是最佳选择。

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