On the basis of steel liquid forging and aluminium alloy liquid forging, liquid metal forging was investigated, such as the assembly model, metal plastic flowing, the force displacement curves, the harmonious equation...On the basis of steel liquid forging and aluminium alloy liquid forging, liquid metal forging was investigated, such as the assembly model, metal plastic flowing, the force displacement curves, the harmonious equation, calculation of value of altitude deformation and determination of specific pressure of liquid metal forging. On the basis of the theory of metal plastic forming and the characteristics of liquid metal forging, the achievements on the mechanics and forming theory of liquid metal forging were given out by combining the theory and experiments systematically, and an important preparation for establishing liquid metal forging theory was suggested.展开更多
An approximate macroscopic yield criterion for anisotropic porous sheet metals is adopted in a failure prediction methodology that can be used to investigate the failure of sheet metals under forming operations. This...An approximate macroscopic yield criterion for anisotropic porous sheet metals is adopted in a failure prediction methodology that can be used to investigate the failure of sheet metals under forming operations. This failure prediction methodology is developed based on the Marciniak-Kuczynski approach by assuming a slightly higher void volume fraction inside randomly oriented imperfecte analysis. Here, a nonproportional deformation history including relative rotation of principal stretch directions is identified in a selected critical element of an aluminum sheet from a FEM fender forming simulation. Based on the failure prediction methodology, the failure of the critical sheet element is investigated under the non-proportional deformation history. The results show that thiven non-proportional deformation history.展开更多
在最优焊接参数下,对1 mm DP600镀锌钢板和3 mm AZ31镁板进行无匙孔搅拌摩擦点焊试验,焊后对接头分别进行横切、纵切及层切,采用扫描电镜(SEM)分析焊接接头显微组织和断口形貌.结果表明,镁钢间的混合主要发生在搅拌针作用区域,形成"...在最优焊接参数下,对1 mm DP600镀锌钢板和3 mm AZ31镁板进行无匙孔搅拌摩擦点焊试验,焊后对接头分别进行横切、纵切及层切,采用扫描电镜(SEM)分析焊接接头显微组织和断口形貌.结果表明,镁钢间的混合主要发生在搅拌针作用区域,形成"机械互锁"的组织形貌,有利于增加两种材料的有效接触,形成复相强化;轴肩作用区镁钢间搅拌不明显,界面较平滑,镁钢界面形成了金属化合物以及氧化镁,降低了接头的塑性和韧性.对DP600/AZ31无匙孔搅拌摩擦点焊焊接接头进行拉伸试验,发现焊接接头从搭接界面上断裂,断口呈"脉状花样",为延性断裂.展开更多
文摘On the basis of steel liquid forging and aluminium alloy liquid forging, liquid metal forging was investigated, such as the assembly model, metal plastic flowing, the force displacement curves, the harmonious equation, calculation of value of altitude deformation and determination of specific pressure of liquid metal forging. On the basis of the theory of metal plastic forming and the characteristics of liquid metal forging, the achievements on the mechanics and forming theory of liquid metal forging were given out by combining the theory and experiments systematically, and an important preparation for establishing liquid metal forging theory was suggested.
文摘An approximate macroscopic yield criterion for anisotropic porous sheet metals is adopted in a failure prediction methodology that can be used to investigate the failure of sheet metals under forming operations. This failure prediction methodology is developed based on the Marciniak-Kuczynski approach by assuming a slightly higher void volume fraction inside randomly oriented imperfecte analysis. Here, a nonproportional deformation history including relative rotation of principal stretch directions is identified in a selected critical element of an aluminum sheet from a FEM fender forming simulation. Based on the failure prediction methodology, the failure of the critical sheet element is investigated under the non-proportional deformation history. The results show that thiven non-proportional deformation history.
文摘在最优焊接参数下,对1 mm DP600镀锌钢板和3 mm AZ31镁板进行无匙孔搅拌摩擦点焊试验,焊后对接头分别进行横切、纵切及层切,采用扫描电镜(SEM)分析焊接接头显微组织和断口形貌.结果表明,镁钢间的混合主要发生在搅拌针作用区域,形成"机械互锁"的组织形貌,有利于增加两种材料的有效接触,形成复相强化;轴肩作用区镁钢间搅拌不明显,界面较平滑,镁钢界面形成了金属化合物以及氧化镁,降低了接头的塑性和韧性.对DP600/AZ31无匙孔搅拌摩擦点焊焊接接头进行拉伸试验,发现焊接接头从搭接界面上断裂,断口呈"脉状花样",为延性断裂.