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Numerical Studies of Explosive Welding of Three-Layer Cylinder Composites-Part 2

机译:三层气缸复合材料爆炸焊接的数值研究 - 第2部分

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Finite element simulations of the experimental tests to explosively weld three layers of A15056, A16061 and SS304L tube composites, using various stand-off distances and explosive ratios, are presented in this study. The Williamsburg equations of state and Johnson-Cook constitutive equations were used to describe the behaviors of the explosive and the tubes, respectively. In this paper, the external parameters (dynamic angle and collision velocity) are related to the physical parameters (shear stress and plastic strain). The numerical results showed that very high localized plastic deformation was produced at the bond interface. Moreover, it was found that the shear stress magnitude and signs can provide the necessary criteria for bonding. In addition, the sufficient criterion for bonding was found to be the magnitude of the plastic strain produced at the collision point. The new welding window based on the internal parameters is proposed.
机译:在本研究中介绍了使用各种脱扣距离和爆炸比的爆炸性焊接三层A15056,A16061和SS304L管复合材料的实验试验的有限元模拟。国家和约翰逊烹饪组成方程的威廉斯堡方程分别用于描述炸药和管的行为。在本文中,外部参数(动态角度和碰撞速度)与物理参数(剪切应力和塑料应变)有关。数值结果表明,在粘合界面处产生非常高的局部塑性变形。此外,发现剪切应力幅度和标志可以提供必要的键合标准。此外,发现粘合的足够标准是在碰撞点处产生的塑性应变的大小。提出了基于内部参数的新型焊接窗口。

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