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Optimal Cutting Condition for Face Milling Operation
Details
In the present work a simple solution technique based on one dimensional golden section method has been used for finding out optimal cutting conditions for single pass face milling operation. The production cost per piece function is minimized under practical constraints of surface finish, cutting power, cutting force and limits of speed and feed per tooth. The common practice is to use some nonlinear programming method to find out solution to single pass problems. Geometric programming (GP) based methods have been preferred because the objective function is posynomial and constraints are monomials. Instead a very simple straight forward strategy has been adopted for minimization of production cost per piece for single pass. The production cost function is generally written in terms of speed, feed (V-S) variables. This function can be converted to tool life, feed (T-S) function. It may be observed that a given tool life minimum production cost is obtained using largest allowable feed under the constraints. A reasonable lower and upper limits of tool life and golden section method once taken initially is applied for search over the tool life.
Autorentext
Rajesh Kumar Srivastava M. Tech (ME) First Class from HBTU, Kanpur. He is working Mechanical Engineering Department IIT Kanpur.Prof. Rajive Gupta had passed M.Tech From IIT Kanpur than he joined Maruti Udyog Limited. He worked their about 2 year then he joined HBTU, Kanpur as lecturer in 1986. He also completed his Ph.D From IIT Kanpur.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786204726977
- Sprache Englisch
- Genre Economy
- Größe H220mm x B150mm
- Jahr 2021
- EAN 9786204726977
- Format Kartonierter Einband
- ISBN 978-620-4-72697-7
- Titel Optimal Cutting Condition for Face Milling Operation
- Autor Er.Rajesh Kumar Srivastava , Rajive Gupta
- Untertitel A simple approach for determination of optimal cutting condition for face milling operation under practical constraints
- Herausgeber LAP LAMBERT Academic Publishing
- Anzahl Seiten 52