Reliability Verification, Testing, and Analysis in Engineering DesignCRC Press, 2002. gada 27. nov. - 416 lappuses Striking a balance between the use of computer-aided engineering practices and classical life testing, this reference expounds on current theory and methods for designing reliability tests and analyzing resultant data through various examples using Microsoft® Excel, MINITAB, WinSMITH, and ReliaSoft software across multiple industries. The book disc |
No grāmatas satura
1.–5. rezultāts no 35.
. lappuse
... Planning and Implementation , Charles S. Knox 23. Probabilistic Engineering Design : Principles and Applications , James N. Siddall 24. Traction Drives : Selection and Application , Frederick W. Heilich III and Eugene E. Shube 25 ...
... Planning and Implementation , Charles S. Knox 23. Probabilistic Engineering Design : Principles and Applications , James N. Siddall 24. Traction Drives : Selection and Application , Frederick W. Heilich III and Eugene E. Shube 25 ...
iii. lappuse
... plans , I have seen engineers panic when they realize they do not have the necessary training and background to decide how many items should be placed on test . My motivation for writing this book is based on the need to provide ...
... plans , I have seen engineers panic when they realize they do not have the necessary training and background to decide how many items should be placed on test . My motivation for writing this book is based on the need to provide ...
iv. lappuse
... planning , FMEA / FMECA , and the use of DVP & R and its relationship with FMEA . ⚫ The book makes use of Microsoft® Excel spreadsheet and Tool > Solver and Goal Seek nonlinear search procedures wherever possible . Actual spreadsheets ...
... planning , FMEA / FMECA , and the use of DVP & R and its relationship with FMEA . ⚫ The book makes use of Microsoft® Excel spreadsheet and Tool > Solver and Goal Seek nonlinear search procedures wherever possible . Actual spreadsheets ...
vii. lappuse
... Planning 23 1.3.1 Elements of Design for Reliability 1.3.2 Deploying Reliability Requirements 1.3.3 Reliability Prediction 1.3.4 Cost of Reliability and Product Testing 1.3.5 Reliability Bathtub Curve 23 24 25 29 30 1.3.6 Life - Cycle ...
... Planning 23 1.3.1 Elements of Design for Reliability 1.3.2 Deploying Reliability Requirements 1.3.3 Reliability Prediction 1.3.4 Cost of Reliability and Product Testing 1.3.5 Reliability Bathtub Curve 23 24 25 29 30 1.3.6 Life - Cycle ...
viii. lappuse
... Planning Effort 1.5 Reliability Growth Management 1.6 Exercises Appendix 1A . FMEA / FMECA / DVP & R 2. Preliminaries , Definitions , and Use of Order Statistics in Reliability Estimation 32 32 35 36 40 63 2.1 Reliability Metrics 2.1.1 ...
... Planning Effort 1.5 Reliability Growth Management 1.6 Exercises Appendix 1A . FMEA / FMECA / DVP & R 2. Preliminaries , Definitions , and Use of Order Statistics in Reliability Estimation 32 32 35 36 40 63 2.1 Reliability Metrics 2.1.1 ...
Saturs
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XC | 207 |
XCII | 208 |
XCIV | 210 |
XCVI | 211 |
XCVII | 213 |
XCVIII | 214 |
XI | 23 |
XII | 24 |
XIII | 25 |
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XIX | 36 |
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XXI | 63 |
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XXIX | 79 |
XXX | 81 |
XXXI | 83 |
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XXXIV | 88 |
XXXVI | 90 |
XXXVII | 92 |
XXXVIII | 95 |
XXXIX | 101 |
XLI | 104 |
XLIII | 105 |
XLIV | 110 |
XLV | 114 |
XLVI | 117 |
XLVIII | 118 |
L | 119 |
LI | 121 |
LII | 125 |
LIII | 126 |
LVI | 127 |
LVII | 129 |
LVIII | 131 |
LIX | 133 |
LX | 135 |
LXI | 137 |
LXIII | 142 |
LXIV | 147 |
LXV | 148 |
LXVI | 151 |
LXVII | 155 |
LXVIII | 157 |
LXIX | 159 |
LXX | 161 |
LXXI | 162 |
LXXII | 163 |
LXXIII | 164 |
LXXIV | 166 |
LXXV | 168 |
LXXVI | 173 |
LXXVII | 177 |
LXXVIII | 180 |
LXXIX | 186 |
LXXX | 189 |
LXXXI | 190 |
LXXXII | 195 |
LXXXIII | 196 |
LXXXIV | 199 |
LXXXV | 201 |
LXXXVI | 203 |
XCIX | 216 |
CI | 217 |
CII | 221 |
CIII | 222 |
CIV | 224 |
CVI | 225 |
CVIII | 226 |
CIX | 229 |
CX | 231 |
CXI | 233 |
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CXV | 240 |
CXVI | 241 |
CXVII | 246 |
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CXIX | 253 |
CXX | 254 |
CXXI | 255 |
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CXXIII | 259 |
CXXIV | 260 |
CXXV | 265 |
CXXVII | 271 |
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CXXX | 277 |
CXXXI | 280 |
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CXXXIV | 284 |
CXXXV | 287 |
CXXXVI | 289 |
CXXXVII | 290 |
CXXXVIII | 291 |
CXXXIX | 292 |
CXLI | 300 |
CXLIII | 305 |
CXLV | 307 |
CXLVI | 309 |
CXLVIII | 311 |
CXLIX | 312 |
CL | 314 |
CLI | 316 |
CLII | 319 |
CLIII | 320 |
CLIV | 322 |
CLVI | 325 |
CLVII | 329 |
CLVIII | 351 |
CLIX | 352 |
CLXI | 356 |
CLXIII | 359 |
CLXV | 360 |
CLXVI | 362 |
CLXVII | 367 |
CLXVIII | 368 |
CLXIX | 369 |
CLXX | 371 |
CLXXII | 372 |
CLXXIII | 373 |
CLXXIV | 376 |
CLXXVI | 377 |
CLXXVII | 379 |
CLXXVIII | 387 |
Citi izdevumi - Skatīt visu
Reliability Verification, Testing, and Analysis in Engineering Design Gary Wasserman Ierobežota priekšskatīšana - 2002 |
Reliability Verification, Testing, and Analysis in Engineering Design Gary Wasserman Priekšskatījums nav pieejams - 2002 |
Bieži izmantoti vārdi un frāzes
accelerated analysis Appendix approximation asymptotic beta distribution binomial distribution bogey testing Chapter component computer-aided engineering confidence intervals confidence limit cumulative cycles density function design verification electronics Equation evaluated exponential distribution expression F-distribution failure distribution failure mode Figure FMEA Goal Seek hazard identify illustrated inverse likelihood contours likelihood estimation linear location-scale distribution lognormal distribution lower confidence limit LR limits maximum likelihood median rank Microsoft Excel Minitab ML estimates Monte Carlo MTTF normal distribution occur parameter estimates percentile phenomena potential failure modes probability plots procedure properties Q-Q plots random variable rank estimator rank regression recorded failures relationship reliability metrics right-censored sample sizes shape parameter simulation standard normal stress subsystem success-failure test t₁ Table temperature usage values variance wearout Weibayes Weibull data Weibull distribution Weibull parameters Weibull plot Worked-out Example