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Lawrence J. Rhoades, Hilary A. Clouser
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Jeffrey A. Hawk, Rick D. Wilson, Daniel R. Danks, Matthew T. Kiser
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Image
Applications of high-precision processes using bonded abrasives. (a) Honing...
Available to PurchasePublished: 01 January 1994
Fig. 11 Applications of high-precision processes using bonded abrasives. (a) Honing is most commonly used to correct the internal geometry of a bore hole. (b) Superfinishing is most commonly used to improve external surface finish. (c) Flat honing is most commonly used to improve flatness
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Striations formed by the exit of garnet abrasives at the bottom of a workpi...
Available to PurchasePublished: 01 January 2006
Fig. 6 Striations formed by the exit of garnet abrasives at the bottom of a workpiece. Material is 22 mm ( 7 8 in.) thick 4340 steel cut at 38 mm/min (1 1 2 in./min). Top surface has a 3.6 μm (140 μin.) surface finish; bottom surface has a 4.7 μm (185 μin.) surface finish
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Comparison of abrasives for preservation of corroded surface of aluminum al...
Available to PurchasePublished: 01 December 2004
Fig. 10 Comparison of abrasives for preservation of corroded surface of aluminum alloy. (a) Results of abrading on 600-grit silicon carbide paper. (b) Improvement in finish and edge preservation obtained by abrading on a fine fixed-abrasive lap. As-polished. 100×
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Comparison of abrasives for preservation of a nonmetallic inclusion in wrou...
Available to PurchasePublished: 01 December 2004
Fig. 11 Comparison of abrasives for preservation of a nonmetallic inclusion in wrought iron. (a) Results of abrading on 600-grit silicon carbide paper. (b) Improved results obtained by abrading on a fine fixed-abrasive lap. As-polished. 500×
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Comparison of abrasives for reduction of the differences in level of differ...
Available to PurchasePublished: 01 December 2004
Fig. 12 Comparison of abrasives for reduction of the differences in level of different phases in Al-13Si alloy. (a) Results of abrading on 600-grit silicon carbide paper. (b) Improved results obtained by abrading on a fine fixed-abrasive lap. As-polished. 250×
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Image
Tungsten carbide components having surfaces machined with diamond abrasives...
Available to PurchasePublished: 01 January 1989
Fig. 7 Tungsten carbide components having surfaces machined with diamond abrasives. (a) Variety of parts having machined surfaces. (b) Variety of solid carbide twist drills. (c) Carbide reamer having ground helical grooves. (d) Indexable carbide inserts having ground surfaces
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Comparison of hardness of work materials and the abrasives used to machine ...
Available to PurchasePublished: 01 November 1995
Fig. 5 Comparison of hardness of work materials and the abrasives used to machine them
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Series: ASM Handbook
Volume: 18
Publisher: ASM International
Published: 31 December 2017
DOI: 10.31399/asm.hb.v18.a0006382
EISBN: 978-1-62708-192-4
... Abstract Abrasive wear is a surface-damage process with material loss caused by hard asperities or abrasive particles occurring when two surfaces are sliding against each other. There are two types of abrasive wear: two-body abrasion and three-body abrasion. This article discusses the abrasive...
Abstract
Abrasive wear is a surface-damage process with material loss caused by hard asperities or abrasive particles occurring when two surfaces are sliding against each other. There are two types of abrasive wear: two-body abrasion and three-body abrasion. This article discusses the abrasive wear mechanism in ductile materials and commonly used testers for evaluating the resistance of materials to abrasive wear. The testers include pin-on-disk, block-on-ring, block-on-drum, and dry sand/rubber wheel abrasion tester. The article reviews the abrasion resistance of metallic materials, ceramic materials, and polymeric materials. It discusses factors that influence abrasive wear, including the environment, hardness, toughness, microstructure, and lubrication.
Book Chapter
Abrasive Waterjet Cutting
Available to PurchaseSeries: ASM Handbook
Volume: 14B
Publisher: ASM International
Published: 01 January 2006
DOI: 10.31399/asm.hb.v14b.a0005107
EISBN: 978-1-62708-186-3
... Abstract This article provides a detailed account of the process development, cutting principle, and components of the abrasive waterjet cutting process. The advantages of abrasive waterjet machining are summarized. The article also discusses the factors affecting the cut quality...
Abstract
This article provides a detailed account of the process development, cutting principle, and components of the abrasive waterjet cutting process. The advantages of abrasive waterjet machining are summarized. The article also discusses the factors affecting the cut quality, and the applications and limitations of abrasive waterjet cutting.
Book: Machining
Series: ASM Handbook
Volume: 16
Publisher: ASM International
Published: 01 January 1989
DOI: 10.31399/asm.hb.v16.a0002156
EISBN: 978-1-62708-188-7
... Abstract Abrasive jet machining (AJM) is a process that removes material from a workpiece through the use of abrasive particles entrained in a high-velocity gas stream. This article discusses the operation of principal components, advantages, and disadvantages of the AJM system. It describes...
Abstract
Abrasive jet machining (AJM) is a process that removes material from a workpiece through the use of abrasive particles entrained in a high-velocity gas stream. This article discusses the operation of principal components, advantages, and disadvantages of the AJM system. It describes several factors that determine the characteristics of the AJM process. These include flow rates of the jet stream, type and size of abrasive powders, and distance between the workpiece and nozzle.
Book Chapter
Abrasive Flow Machining
Available to PurchaseBook: Machining
Series: ASM Handbook
Volume: 16
Publisher: ASM International
Published: 01 January 1989
DOI: 10.31399/asm.hb.v16.a0002157
EISBN: 978-1-62708-188-7
... Abstract Abrasive flow machining (AFM) finishes surfaces and edges by extruding viscous abrasive media through or across the workpiece. This article commences with a schematic illustration of the AFM process that uses two opposed cylinders to extrude semisolid abrasive media back and forth...
Abstract
Abrasive flow machining (AFM) finishes surfaces and edges by extruding viscous abrasive media through or across the workpiece. This article commences with a schematic illustration of the AFM process that uses two opposed cylinders to extrude semisolid abrasive media back and forth through the passages formed by the workpiece and tooling. It discusses the major elements of an AFM system, such as machine, tooling, and abrasive media. The article provides information on polishing, radiusing, edge finishing, and surface finishing capabilities of the AFM. It concludes with information on the various applications of the AFM process.
Book Chapter
Abrasive Wear Failures
Available to PurchaseSeries: ASM Handbook Archive
Volume: 11
Publisher: ASM International
Published: 01 January 2002
DOI: 10.31399/asm.hb.v11.a0003560
EISBN: 978-1-62708-180-1
... Abstract Wear, a form of surface deterioration, is a factor in a majority of component failures. This article is primarily concerned with abrasive wear mechanisms such as plastic deformation, cutting, and fragmentation which, at their core, stem from a difference in hardness between contacting...
Abstract
Wear, a form of surface deterioration, is a factor in a majority of component failures. This article is primarily concerned with abrasive wear mechanisms such as plastic deformation, cutting, and fragmentation which, at their core, stem from a difference in hardness between contacting surfaces. Adhesive wear, the type of wear that occurs between two mutually soluble materials, is also discussed, as is erosive wear, liquid impingement, and cavitation wear. The article also presents a procedure for failure analysis and provides a number of detailed examples, including jaw-type rock crusher wear, electronic circuit board drill wear, grinding plate wear failure analysis, impact wear of disk cutters, and identification of abrasive wear modes in martensitic steels.
Series: ASM Handbook
Volume: 8
Publisher: ASM International
Published: 01 January 2000
DOI: 10.31399/asm.hb.v08.a0003283
EISBN: 978-1-62708-176-4
... Abstract The article provides a discussion on the parameters influencing abrasive wear and the elements and standards of abrasion wear tests. It emphasizes the general test procedures, advantages, and limitations of various types of abrasive wear testing. Wear testing for scratch wear, dry...
Abstract
The article provides a discussion on the parameters influencing abrasive wear and the elements and standards of abrasion wear tests. It emphasizes the general test procedures, advantages, and limitations of various types of abrasive wear testing. Wear testing for scratch wear, dry abrasion against fixed particles, dry abrasion against loose particles, wet abrasion against fixed or loose particles, gouging-abrasion, small particle erosion, impact abrasion, slurry abrasion, and microabrasion, are also discussed.
Book Chapter
Abrasive Wear Failures
Available to PurchaseSeries: ASM Handbook
Volume: 11
Publisher: ASM International
Published: 15 January 2021
DOI: 10.31399/asm.hb.v11.a0006790
EISBN: 978-1-62708-295-2
... by fatigue, creep, or environmentally-assisted cracking. Corrosion and wear are another form of progressive material alteration or removal that can lead to failure or obsolescence. This article primarily covers the topic of abrasive wear failures, covering the general classification of wear. It also...
Abstract
Engineered components fail predominantly in four major ways: fracture, corrosion, wear, and undesirable deformation (i.e., distortion). Typical fracture mechanisms feature rapid crack growth by ductile or brittle cracking; more progressive (subcritical) forms involve crack growth by fatigue, creep, or environmentally-assisted cracking. Corrosion and wear are another form of progressive material alteration or removal that can lead to failure or obsolescence. This article primarily covers the topic of abrasive wear failures, covering the general classification of wear. It also discusses methods that may apply to any form of wear mechanism, because it is important to identify all mechanisms or combinations of wear mechanisms during failure analysis. The article concludes by presenting several examples of abrasive wear.
Book: Machining
Series: ASM Handbook
Volume: 16
Publisher: ASM International
Published: 01 January 1989
DOI: 10.31399/asm.hb.v16.a0002158
EISBN: 978-1-62708-188-7
... Abstract This article discusses the functions of the major components of a waterjet machining system. These include hydraulic unit, intensifier, accumulator, filters, water transmission lines, on/off valve, waterjet nozzles, abrasive waterjet nozzle, waterjet catchers, and fluid additives...
Abstract
This article discusses the functions of the major components of a waterjet machining system. These include hydraulic unit, intensifier, accumulator, filters, water transmission lines, on/off valve, waterjet nozzles, abrasive waterjet nozzle, waterjet catchers, and fluid additives. The article reviews several variables that influence the WJM process, such as pressure, flow and nozzle diameter, stand-off distance, traverse rate, and type and size of abrasive. Advantages and disadvantages of waterjet and abrasive waterjet cutting are also discussed. The article describes the applications of waterjet and abrasive waterjet machining.
Book Chapter
4032 Wear- and Abrasion-Resistant Alloy
Available to PurchaseSeries: ASM Handbook
Volume: 2B
Publisher: ASM International
Published: 15 June 2019
DOI: 10.31399/asm.hb.v02b.a0006690
EISBN: 978-1-62708-210-5
... Abstract The wear- and abrasion-resistant alloy 4032 is a medium-high-strength, heat-treatable alloy. This datasheet provides information on key alloy metallurgy, processing effects on physical and mechanical properties, and fabrication characteristics of this 4xxx series alloy. abrasion...
Abstract
The wear- and abrasion-resistant alloy 4032 is a medium-high-strength, heat-treatable alloy. This datasheet provides information on key alloy metallurgy, processing effects on physical and mechanical properties, and fabrication characteristics of this 4xxx series alloy.
Image
Variation of abrasion rate with grade of abrasive paper for annealed 30% Zn...
Available to PurchasePublished: 01 December 2004
Fig. 31 Variation of abrasion rate with grade of abrasive paper for annealed 30% Zn brass. Source: Ref 1 , p 73
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Image
(a) Pliant (sponge) abrasive. (b) Abrasive hopper that accommodates pliant ...
Available to PurchasePublished: 30 September 2015
Fig. 27 (a) Pliant (sponge) abrasive. (b) Abrasive hopper that accommodates pliant (sponge) media. Photos used with permission from Sponge-Jet, Inc.
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Image
Abrasive wear volume at various loads and SiC abrasive papers as a function...
Available to PurchasePublished: 01 January 2002
Fig. 5 Abrasive wear volume at various loads and SiC abrasive papers as a function of volume fraction of short glass fibers (GF) in PEI. Speed 5 cm/s in single pass condition; distance slid 3.26 m. (a) 120 grade, grit size ≃ 118 μm. (b) 80 grade, grit size ≃ 175 μm. Source: Ref 29
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