Gas tungsten arc welding of fine-grained AZ31B magnesium alloys made by powder metallurgy
暂无分享,去创建一个
[1] T. Shinohara,et al. Atmospheric corrosion of two field-exposed AZ31B magnesium alloys with different grain size , 2013 .
[2] J. Liao,et al. Improved corrosion resistance of a high-strength Mg–Al–Mn–Ca magnesium alloy made by rapid solidification powder metallurgy , 2012 .
[3] M. Wahba,et al. A fundamental study of laser welding of hot extruded powder metallurgy (P/M) AZ31B magnesium alloy , 2011 .
[4] J. Liao,et al. Effect of oxygen content on impact toughness of a fine-grained magnesium alloy , 2011 .
[5] Kondoh Katsuyoshi,et al. Application of rapid solidification powder metallurgy to the fabrication of high-strength, high-ductility Mg–Al–Zn–Ca–La alloy through hot extrusion , 2011 .
[6] C. Selcuk,et al. Joining processes for powder metallurgy parts: a review , 2010 .
[7] M. Yong-liang. Effect of Rare Earth Elements in Aluminum Alloy , 2010 .
[8] K. Nakata,et al. Weld porosity in fibre laser weld of thixomolded heat resistant Mg alloys , 2009 .
[9] K. Nakata,et al. Effect of Dispersed Intermetallic Particles on Microstructural Evolution in the Friction Stir Weld of a Fine-Grained Magnesium Alloy , 2009 .
[10] Y. Nishida,et al. Improving both strength and ductility of a Mg alloy through a large number of ECAP passes , 2009 .
[11] K. Kondoh,et al. Enhanced impact toughness of magnesium alloy by grain refinement , 2009 .
[12] A. Kokabi,et al. Effect of iron particle size on the diffusion bonding of Fe–5%Cu powder compact to wrought carbon steels , 2008 .
[13] S. Suwas,et al. Evolution of crystallographic texture during equal channel angular extrusion (ECAE) and its effects on secondary processing of magnesium , 2007 .
[14] P. Venugopal,et al. Investigations on the continuous drive friction welding of sintered powder metallurgical (P/M) steel and wrought copper parts , 2007 .
[15] D. Thierry,et al. Corrosion product formation during NaCl induced atmospheric corrosion of magnesium alloy AZ91D , 2007 .
[16] A. Norman. Inorganic Reactions and Methods: The Formation of the Bond to Hydrogen (Part 2), Volume 2 , 2007 .
[17] M. Pérez-Prado,et al. Accumulative roll bonding of a Mg-based AZ61 alloy , 2005 .
[18] A. Nishikata,et al. Hydrogen entry into steel during atmospheric corrosion process , 2005 .
[19] G. Liang,et al. Pore formation during hybrid laser-tungsten inert gas arc welding of magnesium alloy AZ31B—mechanism and remedy , 2005 .
[20] B. Vamsi Krishna,et al. Effect of pulse frequency in gas tungsten arc welding of powder metallurgical preforms , 2004 .
[21] T. Nieh,et al. Low-temperature superplasticity and internal friction in microcrystalline Mg alloys processed by ECAP , 2004 .
[22] H. Nakajima,et al. Weld fusion property of lotus-type porous copper by laser beam irradiation , 2003 .
[23] C. Tomé,et al. Application of texture simulation to understanding mechanical behavior of Mg and solid solution alloys containing Li or Y , 2001 .
[24] Tarasankar DebRoy,et al. Pore formation during laser beam welding of die-cast magnesium alloy AM60B: Mechanism and remedy controlled remelting of the fusion zone led to removal of gas bubbles, reducing porosity , 2001 .
[25] Qudong Wang,et al. Effects of rare earths on the microstructure, properties and fracture behavior of Mg–Al alloys , 2000 .
[26] A. Ono,et al. Calibration Method for Determination of Nitrogen Content in Steel by Thermo-Conductimetry after Fusion in the Current of an Inert Gas. , 1994 .
[27] Lawrence H. Bennett,et al. Binary alloy phase diagrams , 1986 .