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Book Chapter
Aluminum Extrusion and Wire Drawing
Available to PurchaseSeries: ASM Technical Books
Publisher: ASM International
Published: 30 June 2023
DOI: 10.31399/asm.tb.atia.t59340143
EISBN: 978-1-62708-427-7
... the general types of aluminum extrusion alloys. An overview of free-machining alloys and products, and weldable 6xxx and 7xxx high-strength structural alloys is also provided. aluminum alloys aluminum extrusion cold extrusion free-machining alloys hot extrusion wire drawing wire production...
Abstract
Aluminum shapes, rod, bar, tubes, and wire may be produced directly as extrusions or by subsequent processing of continuous cast stock. This chapter describes the key aspects of aluminum extrusion and wire production focusing on the more common hot extrusion process and presenting the general types of aluminum extrusion alloys. An overview of free-machining alloys and products, and weldable 6xxx and 7xxx high-strength structural alloys is also provided.
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Schematic examples of some drawing methods: (a) wire drawing, (b) bar drawi...
Available to PurchasePublished: 01 July 2009
Fig. 20.25 Schematic examples of some drawing methods: (a) wire drawing, (b) bar drawing with undriven rolls, (c), (d), (e), and (f) tube drawing. View (d) shows drawing without any mandrel, (e) with fixed plug, and (f) with floating plug if a fixed plug will stretch or break. Source: ASM
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Electrical conductor (EC) alloys. (a) Wire drawing process for EC wire. (b)...
Available to PurchasePublished: 30 June 2023
Fig. 7.15 Electrical conductor (EC) alloys. (a) Wire drawing process for EC wire. (b) Spooling of wire after drawing operation
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Image
Pearlite highly deformed during wire drawing. (a) Atomic force microscopy i...
Available to Purchase
in Mechanical Work of Steels—Cold Working
> Metallography of Steels: Interpretation of Structure and the Effects of Processing
Published: 01 August 2018
Fig. 12.12 Pearlite highly deformed during wire drawing. (a) Atomic force microscopy image. (b) Relief along the line indicated in (a) and some measurements of the lamellae spacing after wire drawing. Etchant: nital 2%. See also Ref 7 . Courtesy of M. S. Andrade, CETEC, Belo Horizonte, MG
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Relationship between cold work in wire drawing and tensile strength for dif...
Available to Purchase
in Mechanical Work of Steels—Cold Working
> Metallography of Steels: Interpretation of Structure and the Effects of Processing
Published: 01 August 2018
Fig. 12.13 Relationship between cold work in wire drawing and tensile strength for different steel microstructures. The potential for strength increase with cold working of pearlitic steels is evident. Source: Ref 8
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Book Chapter
High-Carbon Steels—Fully Pearlitic Microstructures and Wire and Rail Applications
Available to PurchaseSeries: ASM Technical Books
Publisher: ASM International
Published: 01 January 2015
DOI: 10.31399/asm.tb.spsp2.t54410315
EISBN: 978-1-62708-265-5
.... It then explains how wire drawing, patenting, and the Stelmor process affect microstructure, and describes various fracture mechanisms and how they appear on steel wire fracture surfaces. The chapter concludes by discussing the effects of torsional deformation, delamination, galvanizing, and aging on patented...
Abstract
This chapter describes the mechanical properties of fully pearlitic microstructures and their suitability for wire and rail applications. It begins by describing the ever-increasing demands placed on rail steels and the manufacturing methods that have been developed in response. It then explains how wire drawing, patenting, and the Stelmor process affect microstructure, and describes various fracture mechanisms and how they appear on steel wire fracture surfaces. The chapter concludes by discussing the effects of torsional deformation, delamination, galvanizing, and aging on patented and drawn wires.
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Published: 01 November 2013
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Published: 30 September 2023
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Published: 30 September 2023
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Film thicknesses measured in drawing 0.3% C steel wire (nozzle length, 37 m...
Available to PurchasePublished: 30 September 2023
Figure 9.20: Film thicknesses measured in drawing 0.3% C steel wire (nozzle length, 37 mm; reduction from 3.4 to 3.2 mm diameter with a Na-Ca-stearate soap) and calculated from a Bingham model ( η = 1.5 Pa-s).
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Image
Published: 30 September 2023
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Published: 30 September 2023
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Effect of die cooling on wear rate in drawing of 0.6% C steel wire (patente...
Available to PurchasePublished: 30 September 2023
Figure 9.33: Effect of die cooling on wear rate in drawing of 0.6% C steel wire (patented, phosphate/soap lubrication, reduced from 4.5 to 4.0 mm diameter at 6 m/s).
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Book Chapter
Drawing
Available to PurchaseSeries: ASM Technical Books
Publisher: ASM International
Published: 30 September 2023
DOI: 10.31399/asm.tb.stmflw.t59390241
EISBN: 978-1-62708-459-8
... Abstract Drawing is a bulk deformation process that involves significant surface generation and high pressures. This chapter provides an overview of the mechanics and tribology of wire, bar, tube, and shape drawing. It presents important equations for calculating stresses, forces, friction...
Abstract
Drawing is a bulk deformation process that involves significant surface generation and high pressures. This chapter provides an overview of the mechanics and tribology of wire, bar, tube, and shape drawing. It presents important equations for calculating stresses, forces, friction, heat, strain, and distortion for different tooling configurations and geometries. It explains how to select and apply lubricants based on drawing speed, die design, and other factors and how to maintain sufficient film thickness for hydrodynamic, mixed, and solid-film lubrication conditions. It also discusses the use of vibrating dies, the influence of surface finish and defects, and lubrication practices for specific materials.
Book Chapter
Background and Method of Treatment
Available to PurchaseSeries: ASM Technical Books
Publisher: ASM International
Published: 30 September 2023
DOI: 10.31399/asm.tb.stmflw.t59390001
EISBN: 978-1-62708-459-8
... were probably not too different from those found some fifty years ago, with sawdust, a thin smear of a heavy oil, or oil mixed with graphite serving as a lubricant. 1.1.2 Wire Drawing The argument on the earliest date of wire drawing is still not settled. Theophilus, the German monk writing...
Abstract
This chapter provides a brief review of the history of metal working processes, the use of lubricants, and the study of friction and wear. It also explains how the book is organized and describes the method of treatment used by the authors.
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Examples of low interface pressure resulting from yielding in a combined st...
Available to PurchasePublished: 30 September 2023
Figure 3.12: Examples of low interface pressure resulting from yielding in a combined stress state. (a) Blank holder region in deep drawing of a cylindrical cup; (b) wire drawing.
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Longitudinal cross section of a reinforcing bar (rebar) for concrete made t...
Available to Purchase
in Mechanical Work of Steels—Cold Working
> Metallography of Steels: Interpretation of Structure and the Effects of Processing
Published: 01 August 2018
Fig. 12.35 Longitudinal cross section of a reinforcing bar (rebar) for concrete made to 600 MPa (87 ksi) minimum yield strength specification, with 6 mm (0.25 in.) diameter, lightly work hardened during wire drawing (reduction of 30%). Pearlite and ferrite. Along the longitudinal section
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Atom probe tomography results of pearlitic steel wires cold drawn to differ...
Available to Purchase
in Metallographic Technique—Electron Microscopy and Other Advanced Techniques
> Metallography of Steels: Interpretation of Structure and the Effects of Processing
Published: 01 August 2018
Fig. 6.10 Atom probe tomography results of pearlitic steel wires cold drawn to different strains (indicated in the pictures). 3D carbon atom maps parallel and transverse to the wire drawing direction are shown. Dots are carbon atoms. Carbon iso-concentration surfaces 7 at.% are shown. Figure
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Experimental arrangement in which die and workpiece are used as the two ele...
Available to PurchasePublished: 30 September 2023
Figure 7.14: Experimental arrangement in which die and workpiece are used as the two elements of a dynamic thermocouple in wire drawing.
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Comparison of lubricant performance in ring compression, plane-strain inden...
Available to PurchasePublished: 30 September 2023
Figure 7.4: Comparison of lubricant performance in ring compression, plane-strain indentation, and wire-drawing of aluminum alloy 7075.
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