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EFFECTS OF CUTTING PARAMETERS ON CHIP SIDE-CURL MECHANISMS AND VARIABLE TOOL-CHIP CONTACT IN TURNING

Producción científica: Conference contributionrevisión exhaustiva

Resumen

This paper presents the results of an investigative study on the chip side-curling mechanism and the associated variable tool-chip contact in turning operations. The effect of various cutting and tool geometry parameters such as depth of cut - nose radius ratio, feed, inclination angle, etc. on chip side-curling are established in a hierarchical manner. The importance of variable friction at the toolchip interface along the developed length of the cutting edge is shown from the experimental observations of the tool-chip contact area using a SEM analysis. The significant influence of the radial cutting force component on the resultant chip side-curl is established using a high speed-filming analysis of comparative experiments in tube and bar turning operations.

Idioma originalEnglish
Título de la publicación alojadaManufacturing Science and Engineering
Páginas311-318
Número de páginas8
ISBN (versión digital)9780791816462
DOI
EstadoPublished - 1999
EventoASME 1999 International Mechanical Engineering Congress and Exposition, IMECE 1999 - Nashville, United States
Duración: nov 14 1999nov 19 1999

Serie de la publicación

NombreASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE)
Volumen1999-U

Conference

ConferenceASME 1999 International Mechanical Engineering Congress and Exposition, IMECE 1999
País/TerritorioUnited States
CiudadNashville
Período11/14/9911/19/99

Nota bibliográfica

Publisher Copyright:
© 1999 American Society of Mechanical Engineers (ASME). All rights reserved.

Financiación

The authors gratefully acknowledge the research support provided by the National Science Foundation and the Center for Robotics and Manufacturing Systems at the University of Kentucky for this project work. The authors also acknowledge the insightful comments and ideas of late Prof. K. Nakayama and Prof. C.A. van Luttervelt during this research work.

Financiadores
Center for Robotics and Manufacturing Systems
U.S. Department of Energy Chinese Academy of Sciences Guangzhou Municipal Science and Technology Project Oak Ridge National Laboratory Extreme Science and Engineering Discovery Environment National Science Foundation National Energy Research Scientific Computing Center National Natural Science Foundation of China
University of Kentucky

    ASJC Scopus subject areas

    • Mechanical Engineering

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