ASE324- Aerospace Materials Laboratory.ppt
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1、ASE324: Aerospace Materials Laboratory,Instructor: Rui HuangDept of Aerospace Engineering and Engineering Mechanics The University of Texas at AustinFall 2003,Lecture 4,September 9, 2003,Plastic deformation,Material remains intact Original crystal structure is not destroyed Crystal distortion is ext
2、remely localized Possible mechanisms: Translational glide (slipping) Twin glide (twinning),Translational glide,The principle mode of plastic deformation Slip planes: preferred planes with greatest interplanar distance, e.g., (111) in fcc crystals Slip directions: with lowest resistance, e.g., closed
3、 packed direction Slip lines: intersection of a slip plane with a free surface Slip band: many parallel slip lines very closely spaced together,Slip plane,Slip line,Existence of defects,Theoretical yield strength predicted for perfect crystals is much greater than the measured strength.The large dis
4、crepancy puzzled many scientists until Orowan, Polanyi, and Taylor (1934).The existence of defects (specifically, dislocations) explains the discrepancy.,Defects,Point defects: vacancies, interstitial atoms, substitional atoms, etc.Line defects: dislocations (edge, screw, mixed) Most important for p
5、lastic deformationSurface defects: grain boundaries, phase boundaries, free surfaces, etc.,Edge dislocations,Burgers vector: characterizes the “strength” of dislocations Edge dislocations: b dislocation line,D.R. Askeland and P.P. Phule, The Science and Engineering of Materials, Brooks/Cole (2003).,
6、Screw dislocations,Burgers vector b / dislocation line,D.R. Askeland and P.P. Phule, The Science and Engineering of Materials, Brooks/Cole (2003).,Mixed dislocation,Have both edge and screw components.,Observation of dislocations,Transmission Electron microscopy (TEM): diffraction images of dislocat
7、ions appear as dark lines.,M.F. Ashby and D.R.H. Jones, Engineering Materials 1, 2nd ed. (2002),Glide of an edge dislocation,Break one bond at a time, much easier than breaking all the bonds along the slip plane simultaneously, and thus lower yield stress.,D.R. Askeland and P.P. Phule, The Science a
8、nd Engineering of Materials, Brooks/Cole (2003).,Motion of dislocations,William D. Callister, Jr., Materials Science and Engineering, An Introduction, John Wiley & Sons, Inc. (2003),Force acting on dislocations,Applied shear stress () exerts a force on a dislocation Motion of dislocation is resisted
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