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Image
Forming tools (left to right): satellite tools with radii of 3, 5, and 15 m...
Available to PurchasePublished: 01 August 2012
Fig. 13.6 Forming tools (left to right): satellite tools with radii of 3, 5, and 15 mm, respectively, and a 15 mm plastic tool. Source: Ref 13.3
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Image
(a) Flow forming by three forming tools (illustrated in one cross section)....
Available to Purchase
in Spinning, Shear Forming, and Flow Forming
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Fig. 12.24 (a) Flow forming by three forming tools (illustrated in one cross section). Source: Ref 12.2 . (b) Closed support design
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Image
Published: 01 August 2012
Image
in Spinning, Shear Forming, and Flow Forming
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Image
Tool setup for pneumatic forming tooling developed at the Institute for Met...
Available to Purchase
in Warm Forming of Magnesium and Aluminum Alloys
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Fig. 5.37 Tool setup for pneumatic forming tooling developed at the Institute for Metal Forming Technology at the University of Stuttgart. Source: Ref 5.34
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Image
in Spinning, Shear Forming, and Flow Forming
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Image
in Tool Materials, Treatments, and Coatings
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Image
Open warm forming tooling (top die set on the left, bottom die set on the r...
Available to Purchase
in Warm Forming of Magnesium and Aluminum Alloys
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Fig. 5.26 Open warm forming tooling (top die set on the left, bottom die set on the right). Courtesy of Aida-America Corporation
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Series: ASM Technical Books
Publisher: ASM International
Published: 01 August 2012
DOI: 10.31399/asm.tb.smfpa.t53500317
EISBN: 978-1-62708-317-1
... Abstract This chapter discusses the types of failures that can occur in sheet metal forming tools and explains how to mitigate their effects. It describes the factors that influence galling and wear and the benefits of special treatments and coatings. It provides information on through...
Abstract
This chapter discusses the types of failures that can occur in sheet metal forming tools and explains how to mitigate their effects. It describes the factors that influence galling and wear and the benefits of special treatments and coatings. It provides information on through hardening, case (surface) hardening, and nitriding as well as hard chrome plating, vapor deposition, and thermal diffusion coating. It explains how to measure wear resistance using various tests and provides guidelines for selecting tool materials, treatments, and coatings.
Series: ASM Technical Books
Publisher: ASM International
Published: 01 August 2012
DOI: 10.31399/asm.tb.smfpa.t53500273
EISBN: 978-1-62708-317-1
... Abstract This chapter describes incremental sheet forming processes, including single-point, two-point, and kinematic (two tool) techniques. It provides information on the tooling and equipment used, work flow and forming parameters, process mechanics and forming limits. It also discusses...
Abstract
This chapter describes incremental sheet forming processes, including single-point, two-point, and kinematic (two tool) techniques. It provides information on the tooling and equipment used, work flow and forming parameters, process mechanics and forming limits. It also discusses multistage forming strategies, process modeling and simulation, and advanced hybrid forming processes.
Image
Tooling used for the forming limit diagram and limiting dome height tests. ...
Available to Purchase
in Attributes of Advanced High-Strength Steels
> Advanced-High Strength Steels: Science, Technology, and Applications
Published: 01 August 2013
Fig. 4.11 Tooling used for the forming limit diagram and limiting dome height tests. Source: Ref 4.1
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Published: 01 November 2010
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Published: 01 November 2010
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Tooling design for warm forming in a hydraulic press using gas ring burners...
Available to Purchase
in Warm Forming of Magnesium and Aluminum Alloys
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Fig. 5.27 Tooling design for warm forming in a hydraulic press using gas ring burners. Source: Ref 5.13
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Image
Tooling design for warm forming in a mechanical press using electric heatin...
Available to Purchase
in Warm Forming of Magnesium and Aluminum Alloys
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Fig. 5.28 Tooling design for warm forming in a mechanical press using electric heating elements. Source: Ref 5.13
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Image
in Warm Forming of Magnesium and Aluminum Alloys
> Sheet Metal Forming<subtitle>Processes and Applications</subtitle>
Published: 01 August 2012
Image
Tooling and setup for rubber-pad forming by the Guerin process. Dimensions ...
Available to PurchasePublished: 01 November 2013
Fig. 30 Tooling and setup for rubber-pad forming by the Guerin process. Dimensions given in inches. Source: Ref 19
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Published: 30 April 2020
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Microstructure of TiC in a tool steel matrix. The composite is formed by li...
Available to PurchasePublished: 30 April 2020
Fig. 8.6 Microstructure of TiC in a tool steel matrix. The composite is formed by liquid-phase sintering mixed powders. The liquid phase is light, the dark phase is a carbide precipitate, and the connected structure is titanium carbide.
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Lath martensite formed in H-13 tool steel. (a) Bright-field image. (b) Dark...
Available to PurchasePublished: 01 January 2015
Fig. 24.11 Lath martensite formed in H-13 tool steel. (a) Bright-field image. (b) Dark-field image of same area illuminating interlath retained austenite. Transmission electron micrographs. Courtesy of J.R.T. Branco, Colorado School of Mines
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