Milling simulation: metal milling mechanics, dynamics and clamping principles
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Hoboken
Wiley
2016
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Schlagworte: | |
Online-Zugang: | FRO01 UBG01 Volltext |
Beschreibung: | Description based upon print version of record Cover; Title Page; Copyright; Contents; Preface; Introduction; 1: Cutting Forces in Milling Processes; 2: Surface Accuracy in Milling Processes; 3: Dynamics of Milling Processes; 4: Mathematical Modeling of the Workpiece-Fixture System; Bibliography; Index; Other titles from ISTE in Numerical Methods in Engineering; EULA; I.1. Cutting force modeling; I.2. Surface quality simulation; I.3. Chatter stability analysis; I.4. Clamping system design; I.5. Purpose of this book; 1.1. Formulations of cutting forces; 1.2. Milling process geometry ; 1.3. Identification of the cutting force coefficients 1.4. Ternary cutting force model including bottom edge cutting effect1.5. Cutting force prediction in peripheral milling of a curved surface; 2.1. Predictions of surface form errors; 2.2. Control strategy of surface form error; 2.3. Surface topography in milling processes; 3.1. Governing equation of the milling process; 3.2. Method for obtaining the frequency response function; 3.3. Prediction of stability lobe; 4.1. Criteria of locating scheme correctness; 4.2. Analysis of locating scheme correctness; 4.3. Analysis of workpiece stability 4.4. Modeling of the workpiece-fixture geometric default and compliance4.5. Optimal design of the fixture clamping sequence; 1.1.1. Mechanics of orthogonal cutting; 1.1.2. Cutting force model for a general milling cutter; 1.2.1. Calculations of uncut chip thickness; 1.2.2. Determination of entry and exit angles; 1.3.1. Calibration method for general end mills; 1.3.2. Calibration method in the frequency domain; 1.3.3. Calibration method involving four cutter runout parameters; 1.3.4. Identification of shear stress, shear angle and friction angle using milling tests 3.2.1. Derivation of calculation formulations3.2.2. Identification of model parameters; 3.3.1. Improved semi-discretization method; 3.3.2. Lowest envelope method; 3.3.3. Time-domain simulation method; 4.1.1. The DOFs constraining principle; 4.1.2. The locating scheme; 4.1.3. Judgment criteria of locating scheme correctness; 4.1.4. Analysis of locating scheme incorrectness; 4.2.1. Localization source errors; 4.2.2. Fixture modeling; 4.2.3. Locating scheme correctness; 4.3.1. Modeling of workpiece stability; 4.3.2. Solution techniques to the model of workpiece stability. - 4.4.1. Source error analysis. - Includes bibliographical references and index |
Beschreibung: | 1 online resource (276 p.) |
ISBN: | 1119262895 178630015X 9781119262893 9781786300157 |
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500 | |a Description based upon print version of record | ||
500 | |a Cover; Title Page; Copyright; Contents; Preface; Introduction; 1: Cutting Forces in Milling Processes; 2: Surface Accuracy in Milling Processes; 3: Dynamics of Milling Processes; 4: Mathematical Modeling of the Workpiece-Fixture System; Bibliography; Index; Other titles from ISTE in Numerical Methods in Engineering; EULA; I.1. Cutting force modeling; I.2. Surface quality simulation; I.3. Chatter stability analysis; I.4. Clamping system design; I.5. Purpose of this book; 1.1. Formulations of cutting forces; 1.2. Milling process geometry ; 1.3. Identification of the cutting force coefficients | ||
500 | |a 1.4. Ternary cutting force model including bottom edge cutting effect1.5. Cutting force prediction in peripheral milling of a curved surface; 2.1. Predictions of surface form errors; 2.2. Control strategy of surface form error; 2.3. Surface topography in milling processes; 3.1. Governing equation of the milling process; 3.2. Method for obtaining the frequency response function; 3.3. Prediction of stability lobe; 4.1. Criteria of locating scheme correctness; 4.2. Analysis of locating scheme correctness; 4.3. Analysis of workpiece stability | ||
500 | |a 4.4. Modeling of the workpiece-fixture geometric default and compliance4.5. Optimal design of the fixture clamping sequence; 1.1.1. Mechanics of orthogonal cutting; 1.1.2. Cutting force model for a general milling cutter; 1.2.1. Calculations of uncut chip thickness; 1.2.2. Determination of entry and exit angles; 1.3.1. Calibration method for general end mills; 1.3.2. Calibration method in the frequency domain; 1.3.3. Calibration method involving four cutter runout parameters; 1.3.4. Identification of shear stress, shear angle and friction angle using milling tests | ||
500 | |a 3.2.1. Derivation of calculation formulations3.2.2. Identification of model parameters; 3.3.1. Improved semi-discretization method; 3.3.2. Lowest envelope method; 3.3.3. Time-domain simulation method; 4.1.1. The DOFs constraining principle; 4.1.2. The locating scheme; 4.1.3. Judgment criteria of locating scheme correctness; 4.1.4. Analysis of locating scheme incorrectness; 4.2.1. Localization source errors; 4.2.2. Fixture modeling; 4.2.3. Locating scheme correctness; 4.3.1. Modeling of workpiece stability; 4.3.2. Solution techniques to the model of workpiece stability. - 4.4.1. Source error analysis. - Includes bibliographical references and index | ||
650 | 7 | |a Milling (Metal-work) |2 fast | |
650 | 4 | |a Milling (Metal-work) | |
700 | 1 | |a Wan, Min |e Sonstige |4 oth | |
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Datensatz im Suchindex
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---|---|
any_adam_object | |
author | Zhang, Weihong |
author_facet | Zhang, Weihong |
author_role | aut |
author_sort | Zhang, Weihong |
author_variant | w z wz |
building | Verbundindex |
bvnumber | BV043769345 |
collection | ZDB-35-WIC |
ctrlnum | (ZDB-35-WIC)ocn952247557 (OCoLC)952247557 (DE-599)BVBBV043769345 |
dewey-full | 671.3/5 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 671 - Metalworking & primary metal products |
dewey-raw | 671.3/5 |
dewey-search | 671.3/5 |
dewey-sort | 3671.3 15 |
dewey-tens | 670 - Manufacturing |
discipline | Werkstoffwissenschaften / Fertigungstechnik |
format | Electronic eBook |
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institution | BVB |
isbn | 1119262895 178630015X 9781119262893 9781786300157 |
language | English |
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publisher | Wiley |
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spelling | Zhang, Weihong Verfasser aut Milling simulation metal milling mechanics, dynamics and clamping principles Weihong Zhang, Min Wan Hoboken Wiley 2016 1 online resource (276 p.) txt rdacontent c rdamedia cr rdacarrier Description based upon print version of record Cover; Title Page; Copyright; Contents; Preface; Introduction; 1: Cutting Forces in Milling Processes; 2: Surface Accuracy in Milling Processes; 3: Dynamics of Milling Processes; 4: Mathematical Modeling of the Workpiece-Fixture System; Bibliography; Index; Other titles from ISTE in Numerical Methods in Engineering; EULA; I.1. Cutting force modeling; I.2. Surface quality simulation; I.3. Chatter stability analysis; I.4. Clamping system design; I.5. Purpose of this book; 1.1. Formulations of cutting forces; 1.2. Milling process geometry ; 1.3. Identification of the cutting force coefficients 1.4. Ternary cutting force model including bottom edge cutting effect1.5. Cutting force prediction in peripheral milling of a curved surface; 2.1. Predictions of surface form errors; 2.2. Control strategy of surface form error; 2.3. Surface topography in milling processes; 3.1. Governing equation of the milling process; 3.2. Method for obtaining the frequency response function; 3.3. Prediction of stability lobe; 4.1. Criteria of locating scheme correctness; 4.2. Analysis of locating scheme correctness; 4.3. Analysis of workpiece stability 4.4. Modeling of the workpiece-fixture geometric default and compliance4.5. Optimal design of the fixture clamping sequence; 1.1.1. Mechanics of orthogonal cutting; 1.1.2. Cutting force model for a general milling cutter; 1.2.1. Calculations of uncut chip thickness; 1.2.2. Determination of entry and exit angles; 1.3.1. Calibration method for general end mills; 1.3.2. Calibration method in the frequency domain; 1.3.3. Calibration method involving four cutter runout parameters; 1.3.4. Identification of shear stress, shear angle and friction angle using milling tests 3.2.1. Derivation of calculation formulations3.2.2. Identification of model parameters; 3.3.1. Improved semi-discretization method; 3.3.2. Lowest envelope method; 3.3.3. Time-domain simulation method; 4.1.1. The DOFs constraining principle; 4.1.2. The locating scheme; 4.1.3. Judgment criteria of locating scheme correctness; 4.1.4. Analysis of locating scheme incorrectness; 4.2.1. Localization source errors; 4.2.2. Fixture modeling; 4.2.3. Locating scheme correctness; 4.3.1. Modeling of workpiece stability; 4.3.2. Solution techniques to the model of workpiece stability. - 4.4.1. Source error analysis. - Includes bibliographical references and index Milling (Metal-work) fast Milling (Metal-work) Wan, Min Sonstige oth Erscheint auch als Druckausgabe 978-1-119-26289-3 https://onlinelibrary.wiley.com/doi/book/10.1002/9781119262893 Verlag URL des Erstveröffentlichers Volltext |
spellingShingle | Zhang, Weihong Milling simulation metal milling mechanics, dynamics and clamping principles Milling (Metal-work) fast Milling (Metal-work) |
title | Milling simulation metal milling mechanics, dynamics and clamping principles |
title_auth | Milling simulation metal milling mechanics, dynamics and clamping principles |
title_exact_search | Milling simulation metal milling mechanics, dynamics and clamping principles |
title_full | Milling simulation metal milling mechanics, dynamics and clamping principles Weihong Zhang, Min Wan |
title_fullStr | Milling simulation metal milling mechanics, dynamics and clamping principles Weihong Zhang, Min Wan |
title_full_unstemmed | Milling simulation metal milling mechanics, dynamics and clamping principles Weihong Zhang, Min Wan |
title_short | Milling simulation |
title_sort | milling simulation metal milling mechanics dynamics and clamping principles |
title_sub | metal milling mechanics, dynamics and clamping principles |
topic | Milling (Metal-work) fast Milling (Metal-work) |
topic_facet | Milling (Metal-work) |
url | https://onlinelibrary.wiley.com/doi/book/10.1002/9781119262893 |
work_keys_str_mv | AT zhangweihong millingsimulationmetalmillingmechanicsdynamicsandclampingprinciples AT wanmin millingsimulationmetalmillingmechanicsdynamicsandclampingprinciples |