Static and Dynamic Delta E Effect in Magnetostrictive Materials with Application to Electrically-Tunable Vibration Control Devices
暂无分享,去创建一个
[1] L. Vandevelde,et al. Neural-Network-Based Model for Dynamic Hysteresis in the Magnetostriction of Electrical Steel Under Sinusoidal Induction , 2007, IEEE Transactions on Magnetics.
[2] Michael D. Bryant,et al. Active Vibration Control in Structures Using Magnetostrictive Terfenol with Feedback and/or Neural Network Controllers , 1993 .
[3] Frederick T. Calkins,et al. Transducer-based measurements of Terfenol-D material properties , 1996, Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[4] Alison B. Flatau,et al. Modeling of a Terfenol-D ultrasonic transducer , 2000, Smart Structures.
[5] Supratik Datta,et al. Stress and magnetic field dependent Young's modulus in single crystal iron-gallium alloys , 2010 .
[6] P. Rasilo,et al. Iron Losses, Magnetoelasticity and Magnetostriction in Ferromagnetic Steel Laminations , 2013, IEEE Transactions on Magnetics.
[7] Travis W. Walker. Experimental Characterization and Modeling of Galfenol (FeGa) Alloys for Sensing , 2012 .
[8] Justin J. Scheidler,et al. Robust solution procedure for the discrete energy-averaged model on the calculation of 3D hysteretic magnetization and magnetostriction of iron–gallium alloys , 2015 .
[9] W. P. Mason. Physical Acoustics and the Properties of Solids , 1956 .
[10] Alison B. Flatau,et al. Dynamic property determination of magnetostrictive iron-gallium alloys , 2005, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[11] A. H. Nayfeh,et al. Adaptive Control of Flexible Structures Using a Nonlinear Vibration Absorber , 2002 .
[12] C. Kittel,et al. Physical Theory of Ferromagnetic Domains , 1949 .
[13] Frederick T. Calkins,et al. High bandwidth tunability in a smart vibration absorber , 1998, Smart Structures.
[14] Marcelo J. Dapino,et al. Efficient model for field-induced magnetization and magnetostriction of Galfenol , 2009 .
[15] A. Clark,et al. Giant Magnetically Induced Changes in the Elastic Moduli in Tb.3Dy.7Fe2 , 1975, IEEE Transactions on Sonics and Ultrasonics.
[16] S. Yamada,et al. Performance of Energy Harvester Using Iron–Gallium Alloy in Free Vibration , 2011, IEEE Transactions on Magnetics.
[17] D. G. Lord,et al. Application of the Villari effect to electric power harvesting , 2006 .
[18] F. Preisach. Über die magnetische Nachwirkung , 1935 .
[19] Vladimir I. Babitsky,et al. Autoresonant mechatronic systems , 1995 .
[20] M. Dapino,et al. Constitutive Modeling for Design and Control of Magnetostrictive Galfenol Devices , 2008 .
[21] K. Hoffmann,et al. Computational Fluid Dynamics for Engineers , 1989 .
[22] Wolfgang Exner. NVH Phenomena in Light Truck Drivelines , 1995 .
[23] Arthur E. Clark,et al. Elastic properties of rare‐earth‐iron compounds , 1973 .
[24] A Review of Magnetostrictive Iron—Gallium Alloys , 2012 .
[25] Tord Cedell. Magnetostrictive Materials and Selected Applications - Magnetoelastically Induced Vibrations in Manufacturing Processes , 1996 .
[26] D. Davino,et al. Stress-Induced Eddy Currents in Magnetostrictive Energy Harvesting Devices , 2012, IEEE Transactions on Magnetics.
[27] Marilyn Wun-Fogle,et al. Magnetoelastic coupling and ΔE effect in TbxDy1−x single crystals , 1993 .
[28] Alison B. Flatau,et al. Structural magnetic strain model for magnetostrictive transducers , 2000 .
[29] Justin J. Scheidler,et al. Stiffness tuning of FeGa structures manufactured by ultrasonic additive manufacturing , 2014, Smart Structures.
[30] E. Lee,et al. Magnetostriction and Magnetomechanical Effects , 1955 .
[31] R. D. Ford,et al. Electroacoustics;: The analysis of transduction, and its historical background , 1954 .
[32] Justin J. Scheidler,et al. Dynamic characterization of Galfenol , 2015, Smart Structures.
[33] Youhe Zhou,et al. Vibration suppression of laminated composite beams using actuators of giant magnetostrictive materials , 2007 .
[34] M. Dapino,et al. A homogenized energy framework for ferromagnetic hysteresis , 2006, IEEE Transactions on Magnetics.
[35] Marcelo J. Dapino,et al. Modeling of 3D Magnetostrictive Systems with Application to Galfenol and Terfenol-D Actuators , 2012 .
[36] M. Dapino,et al. Dynamic sensing behavior of ferromagnetic shape memory Ni–Mn–Ga , 2009 .
[37] A. P,et al. Mechanical Vibrations , 1948, Nature.
[38] Jens Twiefel. Vibration shape effects on the power output in piezoelectric vibro-impact energy harvesters , 2013, Smart Structures.
[39] Alison B. Flatau,et al. Evaluation of magnetostrictive shunt damper performance using Iron (Fe)-Gallium (Ga) alloy , 2014, Smart Structures.
[40] Vladimir I. Babitsky,et al. PHASE CONTROL OF SELF-SUSTAINED VIBRATION , 2001 .
[41] Alison B. Flatau,et al. Characterization and energy-based model of the magnetomechanical behavior of polycrystalline iron–gallium alloys , 2007 .
[42] A. Blanc,et al. Active Vibration Control for Helicopter Interior Noise Reduction Using Power Minimization , 2014 .
[43] Marcelo J. Dapino,et al. Efficient magnetic hysteresis model for field and stress application in magnetostrictive Galfenol , 2010 .
[44] Ferruccio Resta,et al. A model of magnetostrictive actuators for active vibration control , 2011, 2011 IEEE International Symposium on Industrial Electronics.
[45] Nader Jalili,et al. A switched stiffness approach for structural vibration control: theory and real-time implementation , 2006 .
[46] Zhangxian Deng,et al. Characterization and finite element modeling of Galfenol minor flux density loops , 2013, Smart Structures.
[47] Zhangxian Deng,et al. Modeling and design of Galfenol unimorph energy harvester , 2014, Smart Structures.
[48] Göran Engdahl,et al. Examination of the interaction between eddy currents and magnetoelasticity in Terfenol‐D , 1991 .
[49] Eric Summers,et al. Magnetic and mechanical properties of polycrystalline Galfenol , 2004, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[50] E. E. Ungar,et al. Loss Factors of Viscoelastic Systems in Terms of Energy Concepts , 1962 .
[51] Xinglong Gong,et al. Development of a real-time tunable stiffness and damping vibration isolator based on magnetorheological elastomer , 2012 .
[52] Phillip G. Evans,et al. Nonlinear Magnetomechanical Modeling and Characterization of Galfenol and System-Level Modeling of Galfenol-Based Transducers , 2009 .
[54] Jan Szczygłowski,et al. Influence of eddy currents on magnetic hysteresis loops in soft magnetic materials , 2001 .
[55] A. E. Clark,et al. Magnetomechanical damping in giant magnetostriction alloys , 1995 .
[56] Justin J. Scheidler,et al. Nonlinear dynamic modeling and resonance tuning of Galfenol vibration absorbers , 2013 .
[57] T. Lograsso,et al. Effect of thermal history and gallium content on magneto-mechanical properties of iron gallium alloys , 2006 .
[58] Marcelo J. Dapino,et al. Relationships between magnetization and dynamic stress for Galfenol rod alloy and its application in force sensor , 2013 .
[59] Marcelo J. Dapino,et al. Nonlinear model for Galfenol cantilevered unimorphs considering full magnetoelastic coupling , 2014 .
[60] Arthur E. Clark,et al. Magnetomechanical coupling and ΔE effect in highly magnetostrictive rare earth - Fe 2 compounds , 1975 .
[61] S. Chakrabartia,et al. Fully coupled discrete energy-averaged model for Terfenol-D , 2017 .
[62] Marcelo J. Dapino,et al. Stiffness Tuning with Bias Magnetic Fields in Ferromagnetic Shape Memory Ni-Mn-Ga , 2009 .
[63] J. Atulasimha,et al. Experimental Actuation and Sensing Behavior of Single-crystal Iron-Gallium Alloys , 2008 .
[64] Göran Engdahl,et al. Loss simulations in magnetostrictive actuators , 1996 .
[65] K. Krishnan. Introduction to Magnetism and Magnetic Materials , 2016 .
[66] Alison B. Flatau,et al. Model for the ΔE effect in magnetostrictive transducers , 2000, Smart Structures.
[67] P. Pagliarulo,et al. TUNABLE MAGNETOSTRICTIVE DYNAMIC VIBRATION ABSORBER , 2004 .
[68] A. Flatau,et al. An examination of Galfenol mechanical–magnetic coupling coefficients , 2011 .
[69] M. Wuttig,et al. Magnetoelastic damping in Fe–Ga solid-solution alloys , 2006 .
[70] Marcelo J. Dapino,et al. Nonlinear finite element model for 3D Galfenol systems , 2011 .
[71] R. Kellogg,et al. Development and modeling of iron-gallium alloys , 2003 .
[72] Vladimir I. Babitsky,et al. Autoresonant control strategies of loaded ultrasonic transducer for machining applications , 2008 .
[73] Michael D. Bryant,et al. Attenuation and transformation of vibration through active control of magnetostrictive terfenol , 1989 .
[74] William D. Armstrong,et al. An incremental theory of magneto-elastic hysteresis in pseudo-cubic ferro-magnetostrictive alloys , 2003 .
[75] Alison B. Flatau,et al. Wide Band Tunable Mechanical Resonator Employing the ΔE Effect of Terfenol-D , 2004 .
[76] B. Phelps,et al. Macroscopic models of magnetization , 2000 .
[77] Karl Popp,et al. Optimization of damping and absorbing performance of shunted piezo elements utilizing negative capacitance , 2006 .
[78] Marcelo J. Dapino,et al. Optimization and Dynamic Modeling of Galfenol Unimorphs , 2011 .
[79] Munehiro Date,et al. Vibration Control by Magnetostrictive Actuator Coupled with Negative Inductance Circuits , 2003 .
[80] Marcelo J. Dapino,et al. A dynamic model for a displacement amplified magnetostrictive driver for active mounts , 2010 .
[81] C. Graham. Physical origin of losses in conducting ferromagnetic materials (invited) , 1982 .
[82] Dimitris C. Lagoudas,et al. Numerical Investigation of an Adaptive Vibration Absorber Using Shape Memory Alloys , 2011 .
[83] R. Batist. Internal Friction of Structural Defects in Crystalline Solids , 1972 .
[84] Alison B. Flatau,et al. Quasi-Static Transduction Characterization of Galfenol , 2003 .
[85] D. Fleisch. A student's guide to Maxwell's equations , 2008 .
[86] Alison B. Flatau,et al. Measured Terfenol-D material properties under varied applied magnetic field levels , 1996, Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[87] Justin J. Scheidler,et al. Nonlinear dynamic model for magnetically-tunable Galfenol vibration absorbers , 2013, Smart Structures.
[88] M. Wuttig,et al. Magnetic domain observations in Fe–Ga alloys , 2010 .
[89] W. Clark. Vibration Control with State-Switched Piezoelectric Materials , 2000 .
[90] Justin J. Scheidler,et al. Dynamically tuned magnetostrictive spring with electrically controlled stiffness , 2015, Smart Structures.
[91] Alison B. Flatau,et al. Comprehensive three dimensional hysteretic magnetomechanical model and its validation with experimental ⟨110⟩ single-crystal iron-gallium behavior , 2008 .
[92] Clarence W. de Silva,et al. Vibration: Fundamentals and Practice , 1999 .
[93] Marcelo J. Dapino,et al. Measurement and modeling of magnetic hysteresis under field and stress application in iron–gallium alloys , 2013 .
[94] B. D. Agarwal,et al. Analysis and Performance of Fiber Composites , 1980 .
[95] Marilyn Wun-Fogle,et al. Characterization of Terfenol-D for magnetostrictive transducers , 1990 .
[96] R. D. Greenough,et al. Magnetic and magnetoelastic response of stress cycled Terfenol-D , 1997 .
[97] G. Engdahl. Handbook of Giant Magnetostrictive Materials , 1999 .
[98] Siu Wing Or,et al. Self-sensing tunable vibration absorber incorporating piezoelectric ceramic–magnetostrictive composite sensoriactuator , 2011 .
[99] D. Jiles,et al. Theory of ferromagnetic hysteresis , 1986 .
[100] Supratik Datta,et al. Equivalence of magnetoelastic, elastic, and mechanical work energies with stress-induced anisotropy , 2008, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[101] Alison B. Flatau,et al. Statistical Analysis of Terfenol-D Material Properties , 2006 .
[102] Alison B. Flatau,et al. Magnetoelastic bending of Galfenol for sensor applications , 2005 .
[103] J. Atulasimha,et al. Sensing Behavior of Varied Stoichiometry Single Crystal Fe-Ga , 2006 .
[104] Daniele Davino,et al. Effects of hysteresis and eddy currents in magnetostrictive harvesting devices , 2012 .
[105] Alison B. Flatau,et al. Experimental Investigation of Terfenol-D's Elastic Modulus , 2008 .
[106] C. Johnk,et al. Engineering Electromagnetic Fields and Waves , 1975 .
[107] A. Clark,et al. Soft and hard elastic moduli of Galfenol transduction elements (invited) , 2009 .
[108] Sylvain Pelletier,et al. Effect of electrical resistivity on core losses in soft magnetic iron powder materials , 1997 .
[109] A. Clark,et al. Magnetostriction and magnetization of tension annealed rods of Fe82Ga18 , 2010 .
[110] Aaas News,et al. Book Reviews , 1893, Buffalo Medical and Surgical Journal.
[111] M. Dapino,et al. Dynamic Model for 3-D Magnetostrictive Transducers , 2011, IEEE Transactions on Magnetics.
[112] A. R. Piercy,et al. Comparison of the dynamic magnetomechanical properties of Tb0.27Dy0.73Fe2 and Tb0.30Dy0.70Fe2 , 1994 .
[113] M. Dapino,et al. Transient thermal response in ultrasonic additive manufacturing of aluminum 3003 , 2011 .
[114] Frederick T. Calkins,et al. Effect of prestress on the dynamic performace of a Terfenol-D transducer , 1997, Smart Structures.
[115] R. D. Greenough,et al. Effect of cyclic stress on Terfenol-D , 1996 .
[116] A. Flatau,et al. Measurement of field-dependence elastic modulus of iron-gallium alloy using tensile test , 2005 .
[117] E. Wohlfarth,et al. A mechanism of magnetic hysteresis in heterogeneous alloys , 1991 .
[118] N. Asmar,et al. Partial Differential Equations with Fourier Series and Boundary Value Problems , 2004 .
[119] Alison B. Flatau,et al. A Coupled Magnetomechanical Model for Magnetostrictive Transducers and its Application to Villari-Effect Sensors , 2002 .
[120] Andrea Klug,et al. Theory And Design For Mechanical Measurements , 2016 .
[121] L. Meirovitch,et al. Fundamentals of Vibrations , 2000 .
[122] Marcelo J. Dapino,et al. Fully-coupled magnetoelastic model for Galfenol alloys incorporating eddy current losses and thermal relaxation , 2008, SPIE Smart Structures and Materials + Nondestructive Evaluation and Health Monitoring.
[123] Xiaojing Zheng,et al. The resonance frequency shift characteristic of Terfenol-D rods for magnetostrictive actuators , 2012 .
[124] Isaak D. Mayergoyz,et al. The science of hysteresis , 2005 .