Studying the effect of lubricant on laser joining of AA 6111 panels with the addition of AA 4047 filler wire
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[1] Lin Li,et al. Effect of filler wire properties on porosity formation in laser welding of AC-170PX aluminium alloy for lightweight automotive component manufacture , 2017 .
[2] Radovan Kovacevic,et al. Laser cladding of 420 stainless steel with molybdenum on mild steel A36 by a high power direct diode laser , 2016 .
[3] C. Kang,et al. Effect of plasma current on surface defects of plasma-MIG welding in cryogenic aluminum alloys , 2015 .
[4] Roger Lewandowski,et al. Mathematical and Numerical Foundations of Turbulence Models and Applications , 2014 .
[5] B. Carlson,et al. Analysis of solidification cracking susceptibility in side-by-side dual-beam laser welding of aluminum alloys , 2014 .
[6] Radovan Kovacevic,et al. Real-time monitoring of laser welding of galvanized high strength steel in lap joint configuration , 2012 .
[7] Radovan Kovacevic,et al. Finite-element thermal analysis of laser welding of galvanized high-strength steel in a zero-gap lap joint configuration and its experimental verification , 2012 .
[8] Feng Zhou,et al. Ionic liquid lubricants: designed chemistry for engineering applications. , 2009, Chemical Society reviews.
[9] A. Takeuchi,et al. Growth behavior of hydrogen micropores in aluminum alloys during high-temperature exposure , 2009 .
[10] I. M. Richardson,et al. Unsteady interfacial phenomena during inward weld pool flow with an active surface oxide , 2009 .
[11] J. Sobczak,et al. A comprehensive model of ordered porosity formation , 2007 .
[12] H. Nakajima,et al. Fabrication, properties, and applications of porous metals with directional pores. , 2007, Proceedings of the Japan Academy. Series B, Physical and biological sciences.
[13] S. Felicelli,et al. Quantitative prediction of microporosity in aluminum alloys , 2007 .
[14] P. Costa,et al. Dynamic surface tension measurements of an aluminium–oxygen system , 2006 .
[15] G. Deyev,et al. Surface Phenomena in Fusion Welding Processes , 2005 .
[16] W. Kurz,et al. SINGLE-CRYSTAL LASER DEPOSITION OF SUPERALLOYS: PROCESSING-MICROSTRUCTURE MAPS , 2001 .
[17] D. See,et al. Modeling microporosity in aluminum–silicon alloys: a review , 2001 .
[18] J. Conley,et al. Modeling the effects of cooling rate, hydrogen content, grain refiner and modifier on microporosity formation in Al A356 alloys , 2000 .
[19] R. Atwood,et al. Diffusion-controlled growth of hydrogen pores in aluminium-silicon castings : In situ observation and modelling , 2000 .
[20] J. Hunt,et al. Hydrogen porosity in directional solidified aluminium-copper alloys:in situ observation , 1997 .
[21] J. Hunt,et al. Measuring the nucleation of hydrogen porosity during the solidification of aluminium-copper alloys , 1997 .
[22] C. H. Cáceres,et al. Casting defects and the tensile properties of an AlSiMg alloy , 1996 .
[23] M. Rappaz,et al. Modeling of inverse segregation and porosity formation in directionally solidified aluminum alloys , 1995 .
[24] C. H. Cáceres. On the effect of macroporosity on the tensile properties of the Al-7%Si-0.4%Mg casting alloy , 1995 .
[25] A. Miotello,et al. Laser-pulse sputtering of aluminum: Vaporization, boiling, superheating, and gas-dynamic effects. , 1994, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[26] N. Ramakrishnan,et al. Effective Elastic Moduli of Porous Ceramic Materials , 1993 .
[27] Igor V. Khudyakov,et al. Mechanisms of action and reactivities of the free radicals of inhibitors , 1987 .
[28] D. White. In Process Measurement of Hydrogen in Welding , 1986 .
[29] J. L. Duda,et al. Evaluation of liquid phase oxidation products of ester and mineral oil lubricants , 1984 .
[30] C. R. Heiple,et al. Surface-active element effects on the shape of GTA, laser, and electron-beam welds , 1983 .
[31] W. A. BaeslackIII. Effect of solute banding on transformations in dissimilar titanium alloy weldments , 1982 .
[32] D. Kotecki,et al. MECHANISM OF RIPPLE FORMATION DURING WELD SOLIDIFICATION , 1972 .
[33] K. Hattenbach,et al. THE SOLUBILITY OF HYDROGEN IN SOLID AND LIQUID ALUMINUM , 1961 .
[34] N. Grant,et al. Hydrogen solubility in aluminum and some aluminum alloys , 1950 .
[35] F. S. Bayraktar. Analysis of residual stress and fatigue crack propagation behaviour in laser welded aerospace Aluminium T-joints , 2011 .
[36] M. Rasberger. Oxidative Degradation and Stabilisation of Mineral Oil-Based Lubricants , 2010 .
[37] Alejandro Mota,et al. A variational constitutive model for porous metal plasticity , 2006 .
[38] X. Long. Finite element analysis of residual stress generation during spot welding and its affect on fatigue behavior of spot welded joints , 2005 .
[39] J. Xie,et al. Dual beam laser welding , 2002 .
[40] Karen J. Olsen,et al. NIST Atomic Spectra Database (version 2.0) , 1999 .
[41] R. Atwood,et al. Porosity formation during solidification - A comparison of micro modelling approaches , 1999 .
[42] Julie Huang,et al. Simulation of microporosity formation in modified and unmodified A356 alloy castings , 1998 .
[43] Pradyot Patnaik,et al. Handbook of Inorganic Chemicals , 1997 .
[44] F. Samuel,et al. Statistical analysis of porosity in Al-9 wt% Si-3 wt% Cu-X alloy systems , 1996, Journal of Materials Science.
[45] D. Talbot. Effects of Hydrogen in Aluminium, Magnesium, Copper, and Their Alloys , 1975 .