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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
21

Slip-line field solution with dead zone for large negative rake cutting

Abebe, Minasse, 1949- January 2011 (has links)
Vita. / Digitized by Kansas Correctional Industries
22

Elastic behaviour in mechanical draw presses.

Dingle, Matthew, mikewood@deakin.edu.au January 2001 (has links)
This thesis explores the elastic behaviour of the mechanical double action press and draw die system commonly used to draw sheet metal components in the automotive industry. High process variability in production and excessive time spent in die try-out are significant problems in automotive stamping. It has previously been suggested that the elastic behaviour of the system may contribute to these problems. However, the mechanical principles that cause the press system to affect the forming process have not been documented in detail. Due to a poor understanding of these problems in industry, the elasticity of the press and tools is currently not considered during the die design. The aim of this work was to explore the physical principles of press system elasticity and determine the extent to which it contributes to problems in try-out and production. On the basis of this analysis methods were developed for controlling or accounting for problems during the design process. The application of frictional restraining force to the edges of the blank during forming depends on the distribution and magnitude of the clamping force between the binders surfaces of the draw die. This is an important control parameter for the deep drawing process. It has been demonstrated in this work that the elasticity of the press and draw die can affect clamping force in two ways. The response of the press system, to the forces produced in the press during forming, causes the magnitude of clamping force to change during the stroke. This was demonstrated using measured data from a production press. A simple linear elastic model of the press system was developed to illustrate a definite link between the measured force variation and the elasticity of the press and tools. The simple model was extended into a finite element model of the complete press system, which was used to control a forming simulation. It was demonstrated that stiffness variation within the system could influence the final strains in a drawn part. At the conclusion of this investigation a method is proposed for assessing the sensitivity of a part to clamping force variation in the press during die design. A means of reducing variation in the press through the addition of a simple linear spring element is also discussed. The second part of the work assessed the influence of tool structure on the distribution of frictional restraining forces to the blank. A forming simulation showed that tool stiffness affects the distribution of clamping pressure between the binders. This was also shown to affect the final strains in a drawn part. However, the most significant influence on restraining force was the tendency of the blank to increase in thickness between the binders during forming. Using a finite element approximation of the try-out process it was shown that the structure of the tool would also contribute to the problems currently experienced in try-out where uneven contact pressure distributions are addressed by manually adjusting the tool surfaces. Finally a generalised approach to designing draw die structures was developed. Simple analysis methods were combined with finite element based topology optimisation techniques to develop a set of basic design guidelines. The aim of the guidelines was to produce a structure with uniform stiffness response to a pressure applied at the binder surface. The work concludes with a recommendation for introducing the methods developed in this thesis into the standard production process.
23

Control and monitoring of sheet and film forming processes

Ramarathnam, Jaganath. January 2009 (has links)
Thesis (M. Sc.)--University of Alberta, 2009. / Title from pdf file main screen (viewed on Dec. 30, 2009). "A thesis submitted to the Faculty of Graduate Studies and Research in partial fulfillment of the requirements for the degree of Master of Science in Process Control, Department of Chemical and Materials Engineering, University of Alberta." Includes bibliographical references.
24

Investigation into the effects of tool geometry and metal working fluids on tool forces and tool surfaces during orthogonal tube turning of aluminum 6061 alloy

Sripathi, Prajwal Swamy. Payton, Lewis Nathaniel, January 2009 (has links)
Thesis--Auburn University, 2009. / Abstract. Includes bibliographic references (p.83-85).
25

The measurement of temperatures and forces in a turning operation with cutting fluid

Medaska, Michael Kenneth 12 1900 (has links)
No description available.
26

Cutting fluid aerosol generation and dissipation in machining process : analysis for environmental consciousness

Chen, Zhong 05 1900 (has links)
No description available.
27

Model based die cavity machining simulation methodology /

Moetakef-Imani, Behnam. January 1997 (has links)
Thesis (Ph.D.) -- McMaster University, 1998. / Includes bibliographical references (leaves 117-126). Also available via World Wide Web.
28

Optimization of a new preform die design for forging a rotating part using computer modeling and analysis

Al-Mufadi, Fahad. January 2004 (has links)
Thesis (Ph.D.)--Ohio University, June, 2004. / Title from PDF t.p. Includes bibliographical references (leaves 150-158)
29

Flow analysis inside shear and streamlined extrusion dies for feeder plate design

Al-Zkeri, Ibrahim A. January 1999 (has links)
Thesis (M.S.)--Ohio University, November, 1999. / Title from PDF t.p.
30

"Micro stream" a CAD package for streamlined extrusion dies utilizing a microcomputer

Jayasuriya, M. Janaka K. January 1985 (has links)
Thesis (M.S.)--Ohio University, November, 1985. / Title from PDF t.p.

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