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Mechanical Tolerance Stackup and Analysis.

Use Tolerance Analysis Techniques to Avoid Design, Quality, and Manufacturing Problems Before They Happen Often overlooked and misunderstood, tolerance analysis is a critical part of improving products and their design processes. Because all manufactured products are subject to variation, it is cruc...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Fischer, Bryan R.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Hoboken : CRC Press, 2011.
Edición:2nd ed.
Colección:Dekker Mechanical Engineering.
Temas:
Acceso en línea:Texto completo

MARC

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505 0 |a Front Cover; Contents; Preface; Acknowledgments; The Author; Chapter 1: Background; Chapter 2: Dimensioning and Tolerancing; Chapter 3: Tolerance Format and Decimal Places; Chapter 4: Converting Plus/Minus Dimensions and Tolerances into Equal-Bilaterally Toleranced Dimensions; Chapter 5: Variation and Sources of Variation; Chapter 6: Tolerance Analysis; Chapter 7: Worst-Case Tolerance Analysis; Chapter 8: Statistical Tolerance Analysis; Chapter 9: Geometric Dimensioning and Tolerancing in Tolerance Analysis. 
505 8 |a Chapter 10: Converting Plus/Minus Tolerancing to Positional Tolerancing and Projected Tolerance ZonesChapter 11: Diametral and Radial Tolerance Stackups; Chapter 12: Specifying Material Condition Modifiers and Their Effect on Tolerance Stackups; Chapter 13: The Tolerance Stackup Sketch; Chapter 14: The Tolerance Stackup Report Form; Chapter 15: Tolerance Stackup Direction and Tolerance Stackups with Trigonometry; Chapter 16: Putting It All Together : Tolerance Stackups with GD & T Solved Using the Advanced Dimensional Management Method. 
505 8 |a Chapter 17: Calculating Component Tolerances Given a Final Assembly Tolerance RequirementChapter 18: Floating Fastener and Fixed Fastener Formulas and Considerations; Chapter 19: Limits and Fit Classifications; Chapter 20: Form Tolerances in Tolerance Stackups; Chapter 21: 3D Tolerance Analysis, 3D Tolerance Analysis Software, and Introduction to Six Sigma Concepts; Back Cover. 
520 |a Use Tolerance Analysis Techniques to Avoid Design, Quality, and Manufacturing Problems Before They Happen Often overlooked and misunderstood, tolerance analysis is a critical part of improving products and their design processes. Because all manufactured products are subject to variation, it is crucial that designers predict and understand how these changes can affect form, fit, and function of parts and assemblies--and then communicate their findings effectively. Written by one of the developers of ASME Y14.5 and other geometric dimension and tolerancing (GD & T) standards, Mechanical Tolerance. 
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