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Models for Computer Aided Tolerancing in Design and Manufacturing

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Cover of 'Models for Computer Aided Tolerancing in Design and Manufacturing'

Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 A Unified Approach to Design of Assemblies Integrating Nominal and Variation Design
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    Chapter 2 Virtual Gauge Representation for Geometric Tolerances in CAD-CAM Systems
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    Chapter 3 Modal Expression of Form Defects
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    Chapter 4 Dependence and Independence of Variations of a Geometric Object
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    Chapter 5 A Model for a Coherent and Complete Tolerancing Process
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    Chapter 6 Tolerance-Maps Applied to the Straightness and Orientation of an Axis
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    Chapter 7 Information Modeling to Manage Tolerances during Product and Process Design
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    Chapter 8 Relative Positioning of Planar Parts in Toleranced Assemblies
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    Chapter 9 Geometrical Variations Management in a Multi-Disciplinary Environment with the Jacobian-Torsor Model
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    Chapter 10 Tolerance Analysis and Synthesis by Means of Deviation Domains, Axi-Symmetric Cases
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    Chapter 11 Re-Design of Mechanical Assemblies using the Unified Jacobian-Torsor Model for Tolerance Analysis
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    Chapter 12 Complex Mechanical Structure Tolerancing by Means of Hyper-graphs
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    Chapter 13 An Efficient Solution to the Discrete Least-Cost Tolerance Allocation Problem with General Loss Functions
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    Chapter 14 Monitoring Coordinate Measuring Machines by User-Defined Calibrated Parts
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    Chapter 15 Evaluation of Geometric Deviations in Sculptured Surfaces Using Probability Density Estimation
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    Chapter 16 How to Automate the Geometrical Tolerances Inspection: A Reverse Engineering Approach
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    Chapter 17 A New Algorithm to Assess Revolute Surfaces through Theory of Surface Continuous Symmetry
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    Chapter 18 Statistical Modelling of Geometrical Invariant Sampled Sets
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    Chapter 19 Simulation of the Manufacturing Process in a Tolerancing Point of View: Generic Resolution of the Positioning Problem
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    Chapter 20 Surface Best Fit: Generated Distribution of the Real Manufacturing Process
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    Chapter 21 Position Deviation of a Holes Pattern Due to Six-Point Locating Principle
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    Chapter 22 Tolerance Assignment Using Genetic Algorithm for Production Planning
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    Chapter 23 Impact of Geometric Uncertainties Onto the Operating Performance of a Mechanical System
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    Chapter 24 Influence of the Standard Components Integration on the Tolerancing Activity
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    Chapter 25 Surfaces Seam Analysis
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    Chapter 26 Statistical Tolerance Analysis of Gears by Tooth Contact Analysis
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    Chapter 27 Tolerance Analysis and Allocation using Tolerance-Maps for a Power Saw Assembly
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    Chapter 28 Error Analysis of a NanoMechanical Drill
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    Chapter 29 Tolerance Synthesis of Higher Kinematic Pairs
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    Chapter 30 Geometrical Study of Assembly Behaviour, Taking into Accounts Rigid Components’ Deviations, Actual Geometric Variations and Deformations
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    Chapter 31 Practical Implications in Tolerance Analysis of Sheet Metal Assemblies: Experiences from an Automotive Application
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    Chapter 32 Predicting Deformation of Compliant Assemblies Using Covariant Statistical Tolerance Analysis
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    Chapter 33 Elastic Clearance Domain and Use Rate Concept Applications to Ball Bearings and Gears
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    Chapter 34 Tolerance Verification for Sheet Metal Bending Factors Influencing Dimensional Accuracy of Bent Parts
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Title
Models for Computer Aided Tolerancing in Design and Manufacturing
Published by
Springer Netherlands, November 2006
DOI 10.1007/1-4020-5438-6
ISBNs
978-1-4020-5437-2, 978-9-04-817367-9, 978-1-4020-5438-9
Editors

Davidson, Joseph K.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 20 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 5%
Unknown 19 95%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 5 25%
Professor 3 15%
Student > Doctoral Student 2 10%
Student > Bachelor 2 10%
Student > Master 2 10%
Other 2 10%
Unknown 4 20%
Readers by discipline Count As %
Engineering 14 70%
Social Sciences 1 5%
Computer Science 1 5%
Unknown 4 20%