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Image
Typical steps in drawing out forging stock and in producing common shapes i...
Available to PurchasePublished: 01 January 2005
Series: ASM Handbook
Volume: 14A
Publisher: ASM International
Published: 01 January 2005
DOI: 10.31399/asm.hb.v14a.a0004000
EISBN: 978-1-62708-185-6
... affecting forgeability. It describes the forging techniques, equipment, and common processing elements associated with titanium alloy forging. The processing elements include the preparation of forging stock, preheating of the stock, die heating, lubrication, forging process, trimming and repair, cleaning...
Abstract
Titanium alloys are forged into a variety of shapes and types of forgings, with a broad range of final part forging design criteria based on the intended end-product application. This article begins with a discussion on the classes of titanium alloys, their forgeability, and factors affecting forgeability. It describes the forging techniques, equipment, and common processing elements associated with titanium alloy forging. The processing elements include the preparation of forging stock, preheating of the stock, die heating, lubrication, forging process, trimming and repair, cleaning, heat treatment, and inspection. The article presents a discussion on titanium alloy precision forgings and concludes with information on the forging of advanced titanium materials and titanium aluminides.
Series: ASM Handbook
Volume: 14A
Publisher: ASM International
Published: 01 January 2005
DOI: 10.31399/asm.hb.v14a.a0003996
EISBN: 978-1-62708-185-6
..., and die manufacture. The article discusses the critical aspects of various manufacturing elements of aluminum alloy forging, including the preparation of the forging stock, preheating stock, die heating, lubrication, trimming, forming and repair, cleaning, heat treatment, and inspection. It concludes...
Abstract
This article begins with discussion on forgeability and the factors affecting the forgeability of aluminum and aluminum alloys. It describes the types of forging methods and equipment and reviews critical elements in the overall aluminum forging process: die materials, die design, and die manufacture. The article discusses the critical aspects of various manufacturing elements of aluminum alloy forging, including the preparation of the forging stock, preheating stock, die heating, lubrication, trimming, forming and repair, cleaning, heat treatment, and inspection. It concludes with a discussion on the forging of advanced aluminum materials and aluminum alloy precision forgings.
Image
Machining stock allowances for hot upset forgings. (a) Hot upset forging te...
Available to PurchasePublished: 01 January 1990
Fig. 29 Machining stock allowances for hot upset forgings. (a) Hot upset forging terminology and standards. (b) Probable shape of shear-cut ends. (c) Variation of corner radius with thickness of upset. These parts are the simplest forms of upset forgings. Dimensions given in inches
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Image
Machining stock allowances for hot upset forgings. (a) Hot upset forging te...
Available to PurchasePublished: 01 January 2005
Fig. 33 Machining stock allowances for hot upset forgings. (a) Hot upset forging terminology and standards. (b) Probable shape of shear-cut ends. (c) Variation of corner radius with thickness of upset. These parts are the simplest forms of upset forgings. Dimensions given in inches
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Image
Sections of a forging, showing stock-removal requirements for hogout, conve...
Available to PurchasePublished: 01 January 2005
Fig. 14 Sections of a forging, showing stock-removal requirements for hogout, conventional forging, and no-draft forging. Dimensions given in inches.
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Image
Machining stock allowances for hot upset forgings. (a) Hot upset forging te...
Available to PurchasePublished: 01 December 1998
Fig. 12 Machining stock allowances for hot upset forgings. (a) Hot upset forging terminology and standards. (b) Probable shape of shear-cut ends. (c) Variation of corner radius with thickness of upset. These parts are the simplest forms of upset forgings. Dimensions given in inches
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Book Chapter
Aluminum Alloy Temper Designations and Definitions
Available to PurchaseSeries: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006622
EISBN: 978-1-62708-210-5
... in underaging conditions to improve formability 2018 Forgings and forging stock T62 Solution heat treated in a furnace from annealed or F temper and artificially aged to demonstrate response to heat treatment All All T63, T64, T65 Solution heat treated and artificially aged to specified mechanical...
Abstract
This article lists temper designations and their definitions for aluminum alloys along with their product forms used in the United States (ANSI H35.1), Europe (EN 515), and internationally (ISO 2107).
Series: ASM Handbook
Volume: 14A
Publisher: ASM International
Published: 01 January 2005
DOI: 10.31399/asm.hb.v14a.a0003980
EISBN: 978-1-62708-185-6
.... In its simplest form, hot upset forging is accomplished by confining one end of a bar and applying pressure to the end of the stock that is unconfined. This axial pressure, applied by the heading tool, causes the material to spread (upset) in a manner to achieve the desired shape. This simple upsetting...
Abstract
This article discusses the operation of upset forging machines and selection of the machine size. It describes several types of upsetter heading tools and their materials. The article reviews the cold shearing and hot shearing methods for preparing blanks for hot upset forging. It deals with various upsetting processes: offset upsetting, double-end upsetting, upsetting with sliding dies, upsetting pipe and tubing, and electric upsetting. The article also provides information on hot forging and cold forging.
Image
Processing sequences for (a) ring rolling and (b) power spinning rocket eng...
Available to PurchasePublished: 01 January 2005
properties (b) (d) Weight of forging stock 1542 kg (3400 lb) (b) Weight of finished part 386 kg (850 lb) (e) (a) Consumable-electrode, vacuum-arc remelted, high-strength steel with a nominal composition of 1.05% Cr, 0.55% Ni, 1% Mo, 0.11% V, and 0.45 to 0.50% C. (b) Also applicable
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Book Chapter
Forging of Specific Metals and Alloys
Available to PurchaseSeries: ASM Desk Editions
Publisher: ASM International
Published: 01 December 1998
DOI: 10.31399/asm.hb.mhde2.a0003184
EISBN: 978-1-62708-199-3
... and copper alloys, magnesium alloys, and titanium alloys. It provides forging process variables such as stock preparation, heating and cooling of forgings, die lubrication, trimming, and cleaning of these metals and alloys. The article explains the effect of temperature, deformation rate, and die temperature...
Abstract
This article reviews specific processing characteristics and forging-related properties of commonly forged families of metals and alloys, including carbon and alloy steels, stainless steels, heat-resistant alloys (iron, cobalt, and nickel base alloys), aluminum alloys, copper and copper alloys, magnesium alloys, and titanium alloys. It provides forging process variables such as stock preparation, heating and cooling of forgings, die lubrication, trimming, and cleaning of these metals and alloys. The article explains the effect of temperature, deformation rate, and die temperature on forgeability and describes the forging methods of these metals and alloys.
Series: ASM Handbook
Volume: 1
Publisher: ASM International
Published: 01 January 1990
DOI: 10.31399/asm.hb.v01.a0001021
EISBN: 978-1-62708-161-0
...-to-finish factor or amount of stock that must be removed to satisfy the dimensional and detail requirements of the finished part. In addition to types and classifications, the article discusses critical design factors and ways to ensure that the resulting forgings measure up to metallurgical, mechanical...
Abstract
Forgings are classified in various ways, beginning with the general classifications open die and closed die. They are also classified according to how they are made; such as hammer upset forgings, ring-rolled forgings, and multiple-ram press forgings; and in terms of the close-to-finish factor or amount of stock that must be removed to satisfy the dimensional and detail requirements of the finished part. In addition to types and classifications, the article discusses critical design factors and ways to ensure that the resulting forgings measure up to metallurgical, mechanical property, and dimensional accuracy requirements. The responsibility for design verification is vested in material control, which depends on the proper application of drawings, specifications, manufacturing process controls, and quality assurance programs. The article addresses each of these areas as well as related topics; including stress-induced fatigue failure, tolerances, machining allowances; and the fundamentals of hammer and press forgings, hot upset forgings, and hot extrusion forgings.
Series: ASM Handbook
Volume: 14A
Publisher: ASM International
Published: 01 January 2005
DOI: 10.31399/asm.hb.v14a.a0003981
EISBN: 978-1-62708-185-6
... in subsequent forging in closed dies in either a press or hammer, thus eliminating a fullering or blocking operation. Crankshafts, control arms (see Fig. 1 ), connecting rods, and other automotive parts are typical products that are first roll forged from billets to preform stock, and then finish forged...
Abstract
Roll forging is a process for simultaneously reducing the cross-sectional area and changing the shape of heated bars, billets, or plates. This article provides an overview of the process capabilities, production techniques, machines and machine size selection considerations, and types of roll dies and auxiliary tools for the roll forging. It concludes with information on the production examples of roll forging.
Book Chapter
Aluminum Wrought Products
Available to PurchaseSeries: ASM Desk Editions
Publisher: ASM International
Published: 01 December 1998
DOI: 10.31399/asm.hb.mhde2.a0003125
EISBN: 978-1-62708-199-3
... (shapes) Rolled or cold-finished Rivets Forgings and forging stock Foil Fin stock Drawn Extruded Rod Bar Wire 1050 … … … H112 … … … … … … … … … … 1060 O, H12, H14, H16, H18 O, H12, H14, H112 O, H12, H14, H18, H113 O, H112 … … … H14 … … … … … … 1100 O...
Abstract
This article discusses the classification, characteristics and temper designations of wrought aluminum alloys. Wrought aluminum products are available as flat-rolled products such as sheets, plates, and foils; rods, bars, and wires; tubular products such as tubes and pipes; extruded shapes; forgings; and impacts. The article provides information on product economics, design and selection, including product dimension and dimension tolerances, and design and use of wrought product capabilities. Finally, it tabulates the specifications and standards for aluminum mill products.
Image
Computation of surface stock allowances for forgings that are to be machine...
Available to PurchasePublished: 01 January 1990
Image
Computation of surface stock allowances for forgings that are to be machine...
Available to PurchasePublished: 01 January 2005
Image
Conventional aluminum alloy cap forgings of original (a) and revised (b) de...
Available to PurchasePublished: 01 January 2005
operations Block; finish forge Heat treatment (temper) T73 (a) Mechanical properties (b) Inspection Ultrasonic (a) (c) ; penetrant (d) Forging stock size 90 mm (3.5 in.) OD bar Weight of forging 2.18 kg (4.80 lb) (e) Weight of finished part 1.2 kg (2.64 lb) (a) Plan area
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Book Chapter
Forging Machinery, Dies, and Processes
Available to PurchaseSeries: ASM Desk Editions
Publisher: ASM International
Published: 01 December 1998
DOI: 10.31399/asm.hb.mhde2.a0003183
EISBN: 978-1-62708-199-3
... impression by a present pattern of accurately timed movements of a stock-handling device. A 90° rotation of stock can be programmed between blows. High-Energy-Rate Forging Machines High-energy-rate forging (HERF) machines are high speed hammers. They can be grouped into three basic designs: ram...
Abstract
Forging machines use a wide variety of hammers, presses, and dies to produce products with the desired shape, size, and geometry. This article discusses the major types of hammers (gravity-drop, power-drop, high speed, and open-die forging), and presses (mechanical, hydraulic, screw-type, and multiple-ram). It further discusses the technologies used in the design of dies, terminology, and materials selection for dies for the most common hot-forging processes, particularly those using vertical presses, hammers, and horizontal forging machines. A brief section is included on computer-aided design in the forging industry. Additionally, the article reviews specific characteristics, process limitations, advantages, and disadvantages of the most common forging processes, namely hot upset forging, roll forging, radial forging, rotary forging, isothermal and hot-die forging, precision forging, and cold forging.
Book Chapter
1100 and 1100A 99.00 Aluminum Minimum -0.12Cu
Available to PurchaseSeries: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006592
EISBN: 978-1-62708-210-5
... ( Table 7 ) and is available as bar, rod, plate, sheet, wire, tube and pipe (extruded), shapes (extruded), forgings and forging stock, foil, and drawn tube and pipe. Aluminum 1100A is specified in standards ISO 6361 and JIS H 4000 for flat product. Product tempers of aluminum 1100 include: Sheet...
Abstract
This datasheet provides information on key alloy metallurgy, fabrication characteristics, processing effects on physical and mechanical properties, and applications of commercially pure aluminum grades 1100 and 1100A. It contains table that lists the standard specifications for 1100 aluminum. The reflectivity of 1100 aluminum as a function of aluminum oxide coating thickness and emissivity of 1100 aluminum foil as a function of coating thickness are illustrated.
Book Chapter
Summary of Aluminum Temper Designations
Available to PurchaseSeries: ASM Handbook
Volume: 2A
Publisher: ASM International
Published: 30 November 2018
DOI: 10.31399/asm.hb.v02a.a0006531
EISBN: 978-1-62708-207-5
... (with exceptions) All (with exceptions) T61 Solution heat treated and then artificially aged in underaging conditions to improve formability 2018 Forgings and forging stock T62 Solution heat treated in a furnace from annealed or F temper and artificially aged to demonstrate response to heat treatment...
Abstract
This article presents a summary of aluminum temper designations, and applicable aluminum alloys and product forms for temper designations used in the United States (ANSI H35.1), Europe (EN 515), and internationally (ISO 2107).
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