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1
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7.2.1.1.2 List of frequently used abbreviations
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3
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7.2.1.2.1.1 Survey of the properties of Fe-C base magnet alloys
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7
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7.2.1.2.1.2 Permanent magnet properties of Fe-C, Fe-Cr-C and Fe-W-C alloys as dependent on the preparation technique
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10
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7.2.1.2.1.3 Permanent magnet properties of Fe-Al-C alloys as dependent on the preparation technique
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12
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7.2.1.2.1.4 Permanent magnet properties of Fe-Co-C alloys as dependent on the preparation technique
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13
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7.2.1.2.2.1 Survey of the properties of Fe-Ni and Fe-Mn base magnet alloys
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16
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7.2.1.2.2.2 Permanent magnet properties of Fe-Ni base alloys as dependent on the preparation technique
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19
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7.2.1.2.2.3 Permanent magnet properties of Fe-Mn base alloys as dependent on the preparation technique
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22
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7.2.1.2.3.1 Survey of the properties of Fe-Co-V magnet alloys
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26
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7.2.1.2.3.2 Permanent magnet properties of Fe-Co-V alloys as dependent on the preparation technique
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30
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7.2.1.3.1 Introduction
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31
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7.2.1.3.2.1 Survey of the properties of the magnet system
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34
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7.2.1.3.2.2 Permanent magnet properties of the alloy system as dependent on the preparation technique
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45
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7.2.1.4 bcc-type magnet alloys with a simple precipitation (Fe-Co-Mo and Fe-Co-W alloys)
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49
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7.2.1.5.1 General introduction
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50
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7.2.1.5.2.1 Introduction
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55
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7.2.1.5.2.2 Fe-Ni-Al alloy system
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60
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7.2.1.5.2.3 Fe-(5-18) wt % Co-Ni-Al-Cu alloy system
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62
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7.2.1.5.2.4 Fe-24 wt % Co-Ni-Al-Cu alloy system
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77
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7.2.1.5.2.5 Fe-(30-40) wt % Co-Ni-Al-Ti-Cu alloy system
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89
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7.2.1.5.3.1 Introduction
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90
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7.2.1.5.3.2 Fe-Cr-(0-5) wt % Co alloy system
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95
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7.2.1.5.3.3 Fe-Cr-(10-15) wt % Co alloy system
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106
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7.2.1.5.3.4 Fe-Cr-(23-25) wt % Co alloy system
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108
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7.2.1.5.4 Fe-Mo-Ni base magnet alloys
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113
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7.2.1.6.1 Introduction
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119
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7.2.1.6.2 Permanent magnet properties of Cu-Ni-Co alloys as dependent on the preparation technique
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124
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7.2.1.6.3 Permanent magnet properties of Cu-Ni-Fe alloys as dependent on the preparation technique
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130
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7.2.1.7.1 Introduction
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134
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7.2.1.7.2 Permanent magnet properties of Co-Pt alloys as dependent on the preparation technique
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136
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7.2.1.7.3 Permanent magnet properties of Fe-Pt alloys as dependent on the preparation technique
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139
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7.2.1.8.1 Introduction
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143
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7.2.1.8.2 Permanent magnet properties of MnAl and MnAl (C) alloys as dependent on the preparation technique
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148
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7.2.1.9 Magnet alloys of the intermetallic compound MnBi
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156
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7.2.1.10 Fe-Cu magnet alloys
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161
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7.2.1.11 References for 7.2.1
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166
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7.2.2.2 Sm-Co magnet alloys
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174
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7.2.2.3 Sm-Co-Fe- (M) magnet alloys, M = Cr, Mn
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176
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7.2.2.4 Sm-Co-Cu magnet alloys
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181
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7.2.2.5 Sm-Co-Cu-Fe- (M) magnet alloys, M = Ti, Zr, Mn, Ni, Hf
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189
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7.2.2.6 (Sm)-R-Co-Cu- (Fe) magnet alloys (R = rare earth element)
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195
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7.2.2.7 References for 7.2.2
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197
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7.2.3.2 Intrinsic properties
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211
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7.2.3.3 Sintered magnets
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223
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7.2.3.4 Melt-quenched magnets
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229
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7.2.3.5 References for 7.2.3
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232
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7.2.4.2 Preparation, crystal structure and lattice parameters
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237
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7.2.4.3 Magnetization and Curie temperature
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244
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7.2.4.4 Magnetic structure
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245
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7.2.4.5 Hyperfine parameters determined by nuclear gamma resonance
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251
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7.2.4.6 Hyperfine parameters determined by nuclear magnetic resonance
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252
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7.2.4.8 Specific heat
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253
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7.2.4.10 Magnetic anisotropy
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257
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7.2.4.11 Permanent magnet properties
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262
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7.2.4.12 References for 7.2.4
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265
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7.2.5.1.1 Introduction
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266
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7.2.5.1.2 Relationship between ThMn{12}- and Th{2}Mn{17}-structure types
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267
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7.2.5.1.3 Preparation of the alloys
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269
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7.2.5.2.1 Crystal structure and lattice parameters
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281
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7.2.5.2.2 Magnetization and Curie temperature
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291
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7.2.5.2.3 Magnetic structure
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293
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7.2.5.2.4 Hyperfine parameters determined by nuclear gamma resonance
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301
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7.2.5.2.5 Hyperfine parameters determined by nuclear magnetic resonance
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305
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7.2.5.2.6 Magnetic anisotropy
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309
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7.5.2.5.7 Magnetostriction
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311
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7.2.5.2.8 Permanent magnet properties
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314
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7.2.5.3.1 Crystal structure and lattice parameters
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316
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7.2.5.3.2 Magnetization and Curie temperature
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318
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7.2.5.3.3 Magnetic structure
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319
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7.2.5.3.4 Hyperfine parameter determined by nuclear gamma resonance
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320
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7.2.5.3.5 Magnetic anisotropy
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322
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7.2.5.3.6 Permanent magnet properties
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323
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7.2.5.4 References for 7.2.5