Elements of X-ray Diffraction |
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Page 222
... pole , as before , but that PA and P are { 110 } poles . PE must then be a { 100 } pole and 6 ′ a { 110 } pole . We can check this assumption by measuring the angles in the triangle ab 5 ' . Both a and b are found to be 55 ° from 5 ...
... pole , as before , but that PA and P are { 110 } poles . PE must then be a { 100 } pole and 6 ′ a { 110 } pole . We can check this assumption by measuring the angles in the triangle ab 5 ' . Both a and b are found to be 55 ° from 5 ...
Page 275
... pole figure , by plotting only { 111 } poles , the resulting pole figure would look entirely different from Fig . 9-7 ( b ) for the same pre- ferred orientation ; in fact , it would consist of four " high - intensity " areas , one near ...
... pole figure , by plotting only { 111 } poles , the resulting pole figure would look entirely different from Fig . 9-7 ( b ) for the same pre- ferred orientation ; in fact , it would consist of four " high - intensity " areas , one near ...
Page 284
... pole figure in which various areas , distinguished by different kinds of cross - hatching , represent various de- grees of pole density from zero to a maximum . Figure 9-17 is a photo- graphically determined pole figure in which this ...
... pole figure in which various areas , distinguished by different kinds of cross - hatching , represent various de- grees of pole density from zero to a maximum . Figure 9-17 is a photo- graphically determined pole figure in which this ...
Contents
THE GEOMETRY OF CRYSTALS | 29 |
CHAPTER 3 | 78 |
CHAPTER 4 | 104 |
Copyright | |
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absorption coefficient absorption edge alloy atomic number austenite axes axis back-reflection Bragg angle Bragg law Bravais lattice calculated camera chart circle composition constant copper cos² counter counting rate cubic curve Debye ring Debye-Scherrer decreases determined diffracted beam diffraction lines diffraction pattern diffractometer direction distance effect electrons elements energy equation error example face-centered face-centered cubic factor film filter given grain hexagonal incident beam indices integrated intensity lattice parameter Laue method martensite measured metal normal obtained orthorhombic parallel percent phase photograph pinhole plotted point lattice pole figure position powder pattern produced pulses rays reciprocal lattice reflecting planes relative rhombohedral rotation sample scaler scattering shown in Fig slit solid solution spacing specimen sphere stereographic projection stress structure substance surface symmetry temperature tetragonal thickness tion transmission twin unit cell vector voltage wave wavelength x-ray beam x-ray diffraction x-ray tube zero zone