Fatigue properties of Galfenol steels
Tài liệu tham khảo
Joule, 1847, XVII. On the effects of magnetism upon the dimensions of iron and steel bars, London, Edinburgh, Dublin Philosoph Mag J Sci, 30, 76, 10.1080/14786444708645656
Scott, 2008
Etrema inc. doi:24 Oct 17. https://web.archive.org/web/20160304003546/http://www.etrema.com/terfenol-d/.
Atulasimha, 2006
Clark, 2000, Magnetostrictive properties of body-centered cubic Fe-Ga and Fe-Ga-Al alloys, IEEE Trans Magn, 36, 3238, 10.1109/20.908752
Atulasimha, 2007, Characterization and modeling of the magnetomechanical behavior of polycrystalline iron-gallium alloys, Smart Mater Struct, 16, 1265, 10.1088/0964-1726/16/4/039
Callister, 2007, vol. 7
Boesenberg, 2013, Texture development in Galfenol wire, J Appl Phys, 113, 10.1063/1.4794186
Kellogg, 2003
Glicksman, 2010
Summers, 2004, Magnetic and mechanical properties of polycrystalline Galfenol, 448
Kellogg, 2004, Tensile properties of magnetostrictive iron–gallium alloys, Acta Mater, 52, 5043, 10.1016/j.actamat.2004.07.007
Brooks, 2009, Gallium content effects in low carbon steels, 681
Restorff, 2019, Development of a Galfenol actuator for operation under tension, Smart Mater Struct, 28, 035013, 10.1088/1361-665X/aafa2a
Ueno, 2011, Performance of energy harvester using Fe-Ga alloy in free vibration, IEEE Trans Magn, 47, 2407, 10.1109/TMAG.2011.2158303
Berbyuk V. Vibration energy harvesting using Galfenol based transducer. In: Sodano Henry, editor. Active and passive smart structures and integrated systems 2013, Proc. of SPIE Vol. 8688; 2013. p. 86881.
Dezza, 2011, A model of magnetostrictive actuators for active vibration control, 847
Clark, 2007, Magnetostriction of ternary Fe-Ga-x alloys (x = C, Y, Cr, Mn Co, Rh), J Appl Phys, 101, 09C507, 10.1063/1.2670376
Nolting A, Cheng L. Mechanical characterisation of Galfenol-based magnetostrictive alloys. In: Proceedings of the 12th international conference on fracture, Ottawa; 2009. p. 12–17.
Nolting, 2015, Tensile properties of binary and alloyed Galfenol, J Mater Sci, 50, 5136, 10.1007/s10853-015-9045-6
Clark, 2002, Magnetostrictive properties of Galfenol alloys under compressive stress, Mater Trans, 43, 881, 10.2320/matertrans.43.881
Swanson, 1974, Handbook of fatigue testing
Designation A. E466-07: Standard practice for conducting force controlled constant amplitude axial fatigue tests of metallic materials; 2007.
Menezes, 2006, Studies on friction and transfer layer using inclined scratch, vol. 51, 262
Fleck, 1981, Effect of density on tensile strength, fracture toughness, and fatigue crack propagation behaviour of sintered steel, Powder Metall, 3, 121, 10.1179/pom.1981.24.3.121
Chawla, 2005, Microstructure and mechanical behavior of porous sintered steels, Mater Sci Eng, 390, 98, 10.1016/j.msea.2004.08.046
DasGupta, 1980, Fatigue crack growth rates in a porous metal, Int J Fatigue, 0142, 113, 10.1016/0142-1123(80)90012-2
Sigl, 2004, Fatigue of 8630 cast steel in the presence of porosity, Int J Cast Met Res, 17, 130, 10.1179/136404604225020588
Murakami, 2002
Klesnil, 1965, Some aspects of fatigue process in low-carbon steel, J Iron Steel Inst, 203, 47
Designation A. E446: Nondestructive testing.