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cold-forming
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Published: 01 January 1989
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Published: 01 January 2005
Fig. 21 Cold forming sequence used to produce connecting sleeve. Courtesy of T. Christoffel, Hatebur Metalforming Equipment, Ltd.
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Published: 01 January 2005
Fig. 25 Example of a precision-formed aerospace fastener using modern cold forming techniques. Source: Ref 145
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Published: 01 January 2005
Fig. 31 Tooling layout for cold forming precision gear blanks. Courtesy of M. van Thiel, Nedschroef Herentals N.V.
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Published: 01 January 2005
Fig. 34 Tooling layout for cold forming precision roller. Courtesy of M. van Thiel, Nedschroef Herentals N.V.
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Image
Published: 01 January 2005
Fig. 36 Part progression for cold forming engine intake valve. Courtesy of M. van Thiel, Nedschroef Herentals N.V.
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Published: 01 January 2005
Fig. 37 Tooling layout for cold forming engine intake valve. Courtesy of M. van Thiel, Nedschroef Herentals N.V.
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Image
Published: 01 January 1989
Fig. 21 Cold forming tap showing the irregular contour by which the tap displaces the work metal when rotated
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Published: 01 January 1989
Fig. 22 Cold forming taps. (a) Ground with leading crest accuracy (balanced axially). Crests are on pitch. (b) Other cold forming taps produce crests off pitch.
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Image
Published: 01 January 1989
Fig. 17 Cold form tapping of a blind hole in an alloy C51000 mounting stud. Dimensions in figure given in inches Machine Single-spindle automatic lathe Tool Fluteless tap, 3.18 mm (0.125 in.) in diameter Speed, at 3770 rev/min, m/min (sfm) 38 (123) Cutting fluid Light
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Published: 01 January 2005
Fig. 24 Typical tolerances for cold formed parts. (a) Head produced by open heading. (b) Head produced by partial containment in the die. Source: Ref 144
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Published: 01 January 2005
Fig. 30 Cold formed gear blank with close-tolerance concentricity requirement. Courtesy of M. van Thiel, Nedschroef Herentals N.V.
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Published: 01 January 2005
Fig. 32 Cold formed roller with close-tolerance requirements. Courtesy of M. van Thiel, Nedschroef Herentals N.V.
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Published: 01 January 2005
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Published: 01 January 1990
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Published: 01 June 2024
Fig. 14 Secondary electron image of intergranular fracture of cold-formed and hot dip galvanized carbon steel bracket. The fracture occurred in a cold-storage facility due to strain-age embrittlement. Original magnification: 500×
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Published: 01 June 2016
Fig. 9 Effect of cold stretch forming on the compressive yield strengths of various titanium alloys. Adapted from Ref 6
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Published: 01 October 2014
Fig. 5 Influence of the forming direction of ledeburitic cold work tool steels on inhomogeneous changes in length during hardening. Source: Ref 5
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Published: 01 February 2024
Fig. 36 Schematic illustration of the hot forming cold-die quenching process used for auto body component manufacture
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Book Chapter
Series: ASM Desk Editions
Publisher: ASM International
Published: 01 December 1998
DOI: 10.31399/asm.hb.mhde2.a0003181
EISBN: 978-1-62708-199-3
... Abstract This article provides a detailed account on forming operations (blanking, piercing, press-brake forming, contour rolling, deep drawing, cold forming, and hot forming) of various nonferrous metals, including aluminum alloys, beryllium, copper and its alloys, magnesium alloys, nickel...
Abstract
This article provides a detailed account on forming operations (blanking, piercing, press-brake forming, contour rolling, deep drawing, cold forming, and hot forming) of various nonferrous metals, including aluminum alloys, beryllium, copper and its alloys, magnesium alloys, nickel alloys, titanium alloys, and platinum metals. It discusses the formability, equipment and tooling, and lubricants used in the forming operations of these nonferrous metals.
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