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The Resource Performance-based gear metrology : kinematic-transmission-error computation and diagnosis, William D. Mark, (electronic resource)
Performance-based gear metrology : kinematic-transmission-error computation and diagnosis, William D. Mark, (electronic resource)
Resource Information
The item Performance-based gear metrology : kinematic-transmission-error computation and diagnosis, William D. Mark, (electronic resource) represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University of Oklahoma Libraries.This item is available to borrow from all library branches.
Resource Information
The item Performance-based gear metrology : kinematic-transmission-error computation and diagnosis, William D. Mark, (electronic resource) represents a specific, individual, material embodiment of a distinct intellectual or artistic creation found in University of Oklahoma Libraries.
This item is available to borrow from all library branches.
- Summary
- A mathematically rigorous explanation of how manufacturing deviations and damage on the working surfaces of gear teeth cause transmission-error contributions to vibration excitations Some gear-tooth working-surface manufacturing deviations of significant amplitude cause negligible vibration excitation and noise, yet others of minuscule amplitude are a source of significant vibration excitation and noise. Presently available computer-numerically-controlled dedicated gear metrology equipment can measure such error patterns on a gear in a few hours in sufficient detail to enable
- Language
- eng
- Extent
- 1 online resource (290 p.)
- Note
- Description based upon print version of record
- Contents
-
- Kinematic-Transmission-Error Contributions1.6 Application to Gear-Health Monitoring; 1.7 Verification of Kinematic Transmission Error as a Source of Vibration Excitation and Noise; 1.8 Gear Measurement Capabilities; Contributions of Linear-Axis Errors; Contributions of Rotary-Axis Errors; Contributions of Probe Errors; Effects of Statistical Averaging; Summary of Required Measurement Capabilities; Role of Working-Surface-Deviation Representation Method; How Small is 0.1 μm (4 μin.)?; References; Chapter 2 Parallel-Axis Involute Gears; 2.1 The Involute Tooth Profile
- 2.2 Parametric Description of Involute Helical Gear Teeth2.3 Multiple Tooth Contact of Involute Helical Gears; 2.4 Contact Ratios; References; Chapter 3 Mathematical Representation and Measurement of Working-Surface-Deviations; 3.1 Transmission Error of Meshing-Gear-Pairs; Definition of Transmission Error; Additive Property of Transmission-Error Contributions; 3.2 Tooth-Working-Surface Coordinate System; Definition of Radial Coordinate; 3.3 Gear-Measurement Capabilities; 3.4 Common Types of Working-Surface Errors; 3.5 Mathematical Representation of Working-Surface-Deviations
- Legendre PolynomialsNormalized Legendre Polynomials; Representation Using Two-Dimensional Normalized Legendre Polynomials; Interpretation of Expansion Coefficients; Interpretation of Expansion Terms as Elementary Deviations or Errors; Accumulated Tooth-Spacing (Index) Errors; Rectangular Array of Expansion Coefficients; 3.6 Working-Surface Representation Obtained from Line-Scanning Tooth Measurements; Choice of Lead Measurements as Primary; Choice of Profile Measurements as Primary; Contributions from Secondary Measurement Sets
- 3.7 Example of Working-Surface Generations Obtained from Line-Scanning MeasurementsIndividual Tooth Deviations; Average Deviation Surfaces; Appendix 3.A. Method for Estimating Required Number of Primary Line-Scanning Measurements Based on Surface-Roughness Criteria; RMS Criterion Method; Appendix 3.B. Method for Estimating Required Number of Primary Line-Scanning Measurements for Case of Known Ghost-Tone Rotational-Harmonic Number; Minimum Number of Line-Scanning Measurements Required for Accurate Representation of Undulation Errors; Example Calculation; References
- Chapter 4 Rotational-Harmonic Analysis of Working-Surface Deviations
- Isbn
- 9781118357880
- Label
- Performance-based gear metrology : kinematic-transmission-error computation and diagnosis
- Title
- Performance-based gear metrology
- Title remainder
- kinematic-transmission-error computation and diagnosis
- Statement of responsibility
- William D. Mark
- Language
- eng
- Summary
- A mathematically rigorous explanation of how manufacturing deviations and damage on the working surfaces of gear teeth cause transmission-error contributions to vibration excitations Some gear-tooth working-surface manufacturing deviations of significant amplitude cause negligible vibration excitation and noise, yet others of minuscule amplitude are a source of significant vibration excitation and noise. Presently available computer-numerically-controlled dedicated gear metrology equipment can measure such error patterns on a gear in a few hours in sufficient detail to enable
- Cataloging source
- MiAaPQ
- http://library.link/vocab/creatorName
- Mark, William D
- Dewey number
-
- 621.8/330287
- 621.833
- 621.8330287
- Illustrations
- illustrations
- Index
- index present
- LC call number
- TL262
- LC item number
- .M37 2013
- Literary form
- non fiction
- Nature of contents
-
- dictionaries
- bibliography
- indexes
- http://library.link/vocab/subjectName
-
- Motor vehicles
- Motor vehicles
- Gearing
- Gearing
- Label
- Performance-based gear metrology : kinematic-transmission-error computation and diagnosis, William D. Mark, (electronic resource)
- Note
- Description based upon print version of record
- Bibliography note
- Includes bibliographical references and indexes
- Contents
-
- Kinematic-Transmission-Error Contributions1.6 Application to Gear-Health Monitoring; 1.7 Verification of Kinematic Transmission Error as a Source of Vibration Excitation and Noise; 1.8 Gear Measurement Capabilities; Contributions of Linear-Axis Errors; Contributions of Rotary-Axis Errors; Contributions of Probe Errors; Effects of Statistical Averaging; Summary of Required Measurement Capabilities; Role of Working-Surface-Deviation Representation Method; How Small is 0.1 μm (4 μin.)?; References; Chapter 2 Parallel-Axis Involute Gears; 2.1 The Involute Tooth Profile
- 2.2 Parametric Description of Involute Helical Gear Teeth2.3 Multiple Tooth Contact of Involute Helical Gears; 2.4 Contact Ratios; References; Chapter 3 Mathematical Representation and Measurement of Working-Surface-Deviations; 3.1 Transmission Error of Meshing-Gear-Pairs; Definition of Transmission Error; Additive Property of Transmission-Error Contributions; 3.2 Tooth-Working-Surface Coordinate System; Definition of Radial Coordinate; 3.3 Gear-Measurement Capabilities; 3.4 Common Types of Working-Surface Errors; 3.5 Mathematical Representation of Working-Surface-Deviations
- Legendre PolynomialsNormalized Legendre Polynomials; Representation Using Two-Dimensional Normalized Legendre Polynomials; Interpretation of Expansion Coefficients; Interpretation of Expansion Terms as Elementary Deviations or Errors; Accumulated Tooth-Spacing (Index) Errors; Rectangular Array of Expansion Coefficients; 3.6 Working-Surface Representation Obtained from Line-Scanning Tooth Measurements; Choice of Lead Measurements as Primary; Choice of Profile Measurements as Primary; Contributions from Secondary Measurement Sets
- 3.7 Example of Working-Surface Generations Obtained from Line-Scanning MeasurementsIndividual Tooth Deviations; Average Deviation Surfaces; Appendix 3.A. Method for Estimating Required Number of Primary Line-Scanning Measurements Based on Surface-Roughness Criteria; RMS Criterion Method; Appendix 3.B. Method for Estimating Required Number of Primary Line-Scanning Measurements for Case of Known Ghost-Tone Rotational-Harmonic Number; Minimum Number of Line-Scanning Measurements Required for Accurate Representation of Undulation Errors; Example Calculation; References
- Chapter 4 Rotational-Harmonic Analysis of Working-Surface Deviations
- Dimensions
- unknown
- Extent
- 1 online resource (290 p.)
- Form of item
- online
- Isbn
- 9781118357880
- Specific material designation
- remote
- System control number
-
- (CKB)2670000000327530
- (EBL)1120273
- (OCoLC)827207933
- (MiAaPQ)EBC1120273
- (EXLCZ)992670000000327530
- Label
- Performance-based gear metrology : kinematic-transmission-error computation and diagnosis, William D. Mark, (electronic resource)
- Note
- Description based upon print version of record
- Bibliography note
- Includes bibliographical references and indexes
- Contents
-
- Kinematic-Transmission-Error Contributions1.6 Application to Gear-Health Monitoring; 1.7 Verification of Kinematic Transmission Error as a Source of Vibration Excitation and Noise; 1.8 Gear Measurement Capabilities; Contributions of Linear-Axis Errors; Contributions of Rotary-Axis Errors; Contributions of Probe Errors; Effects of Statistical Averaging; Summary of Required Measurement Capabilities; Role of Working-Surface-Deviation Representation Method; How Small is 0.1 μm (4 μin.)?; References; Chapter 2 Parallel-Axis Involute Gears; 2.1 The Involute Tooth Profile
- 2.2 Parametric Description of Involute Helical Gear Teeth2.3 Multiple Tooth Contact of Involute Helical Gears; 2.4 Contact Ratios; References; Chapter 3 Mathematical Representation and Measurement of Working-Surface-Deviations; 3.1 Transmission Error of Meshing-Gear-Pairs; Definition of Transmission Error; Additive Property of Transmission-Error Contributions; 3.2 Tooth-Working-Surface Coordinate System; Definition of Radial Coordinate; 3.3 Gear-Measurement Capabilities; 3.4 Common Types of Working-Surface Errors; 3.5 Mathematical Representation of Working-Surface-Deviations
- Legendre PolynomialsNormalized Legendre Polynomials; Representation Using Two-Dimensional Normalized Legendre Polynomials; Interpretation of Expansion Coefficients; Interpretation of Expansion Terms as Elementary Deviations or Errors; Accumulated Tooth-Spacing (Index) Errors; Rectangular Array of Expansion Coefficients; 3.6 Working-Surface Representation Obtained from Line-Scanning Tooth Measurements; Choice of Lead Measurements as Primary; Choice of Profile Measurements as Primary; Contributions from Secondary Measurement Sets
- 3.7 Example of Working-Surface Generations Obtained from Line-Scanning MeasurementsIndividual Tooth Deviations; Average Deviation Surfaces; Appendix 3.A. Method for Estimating Required Number of Primary Line-Scanning Measurements Based on Surface-Roughness Criteria; RMS Criterion Method; Appendix 3.B. Method for Estimating Required Number of Primary Line-Scanning Measurements for Case of Known Ghost-Tone Rotational-Harmonic Number; Minimum Number of Line-Scanning Measurements Required for Accurate Representation of Undulation Errors; Example Calculation; References
- Chapter 4 Rotational-Harmonic Analysis of Working-Surface Deviations
- Dimensions
- unknown
- Extent
- 1 online resource (290 p.)
- Form of item
- online
- Isbn
- 9781118357880
- Specific material designation
- remote
- System control number
-
- (CKB)2670000000327530
- (EBL)1120273
- (OCoLC)827207933
- (MiAaPQ)EBC1120273
- (EXLCZ)992670000000327530
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Architecture LibraryBorrow itGould Hall 830 Van Vleet Oval Rm. 105, Norman, OK, 73019, US35.205706 -97.445050
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Chinese Literature Translation ArchiveBorrow it401 W. Brooks St., RM 414, Norman, OK, 73019, US35.207487 -97.447906
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Engineering LibraryBorrow itFelgar Hall 865 Asp Avenue, Rm. 222, Norman, OK, 73019, US35.205706 -97.445050
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Fine Arts LibraryBorrow itCatlett Music Center 500 West Boyd Street, Rm. 20, Norman, OK, 73019, US35.210371 -97.448244
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Harry W. Bass Business History CollectionBorrow it401 W. Brooks St., Rm. 521NW, Norman, OK, 73019, US35.207487 -97.447906
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History of Science CollectionsBorrow it401 W. Brooks St., Rm. 521NW, Norman, OK, 73019, US35.207487 -97.447906
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John and Mary Nichols Rare Books and Special CollectionsBorrow it401 W. Brooks St., Rm. 509NW, Norman, OK, 73019, US35.207487 -97.447906
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Price College Digital LibraryBorrow itAdams Hall 102 307 West Brooks St., Norman, OK, 73019, US35.210371 -97.448244
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