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McEvily A.J. — Metal Failures: Mechanisms, Analysis, Prevention
McEvily A.J. — Metal Failures: Mechanisms, Analysis, Prevention



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Название: Metal Failures: Mechanisms, Analysis, Prevention

Автор: McEvily A.J.

Аннотация:

comprehensive coverage of both the "how" and "why" of metal failures

Metal Failures gives engineers the intellectual tools and practical understanding needed to analyze failures from a structural point of view. Its proven methods of examination and analysis enable investigators to:
* Reach correct, fact-based conclusions on the causes of metal failures
* Present and defend these conclusions before highly critical bodies
* Suggest design improvements that may prevent future failures

Analytical methods presented include stress analysis, fracture mechanics, fatigue analysis, corrosion science, and nondestructive testing. Numerous case studies illustrate the application of basic principles of metallurgy and failure analysis to a wide variety of real-world situations. Readers learn how to investigate and analyze failures that involve:
* Alloys and coatings
* Brittle and ductile fractures
* Thermal and residual stresses
* Creep and fatigue
* Corrosion, hydrogen embrittlement, and stress-corrosion cracking

This useful professional reference is also an excellent learning tool for senior-level students in mechanical, materials, and civil engineering.


Язык: en

Рубрика: Технология/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 2002

Количество страниц: 340

Добавлена в каталог: 29.09.2009

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Surface energy      42
Surface finish in fatigue      196
Suzuki, N.      152
Tada, H.      59 218
Takai, K.      218
Takeda, M.      218
Tanaka, N.      218
Taplin, D.M.R.      180
Technical report      96
Temper embrittlement      66
Temperature      51
Tempering      64
Tension      25
Tetelman A.S.      169
Theoretical strength      41
Thermal shock      138 141
Thermal strain      138
Thermal stress      138
Thermal-barrier coatings      75
Thermal-mechanical cyclic strain      139
Thermal-mechanical fatigue      190 212
Thickness and fracturetoughness      50
Thielsch, H.      180 236
Three-point bend specimen      47
Threshold for SCC, $K_{Iscc}$      238
Threshold range      194
Timoshenko, S.      309
Titanium alloys      69
Titanium-aluminum system      60
Toriyama, T.      162 217
Torsion      26
Torsional failure      131
Transformation range      63
Transgranular creep fracture      171
Transgranular fracture      102
Transmission electron microscope (TEM)      82
Tresca criterion      34
Trial testimony      100
Troiano, A.      260
True strain      21
True stress      21
Ultimate tensile strength      31
Ultra-long life fatigue      199
Ultrasonic testing      279
Upper shelf      113
Vacuum remelting      271
Vanstaen, G.      260
Viscoelastity      3
Viscous creep      165
Visual examination      79 261
Von Mises criterion      34
Wahl, A.M.      295 309
Walsh, J.D.      260
Wanhill, R.J.H.      218
Wear      305
Wei, R.P.      218
Weibull distribution      157 299
Weibull, W.      157 162
Weld cooling rate      222
Weld defects      105 219 221
Weld defects, weld mismatch      222
Weld defects, weld porosity      221
Weld defects, weld reinforcement      221
Weld defects, weld shrinkage      222
Weld defects, weld slag inclusions      222
Weld defects, weld spatter      222
Weld toe      220
Williams, D.B.      86 101
Woehler curves      182
Wold, G.      137
Wright, W.      193 217
Wrong alloys      236
Wulpi, D.J.      310
X-ray analysis      78
Yield criteria      21 33
Yield strength      31
Yield stress      69
Yokohama, N.N.      218
Young's modulus      24 42
Zahavi, E.      218
Zhuang, Z.      260
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