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Series: ASM Technical Books
Publisher: ASM International
Published: 01 January 2000
DOI: 10.31399/asm.tb.cub.t66910001
EISBN: 978-1-62708-250-1
... Abstract Corrosion can be defined as a chemical or electrochemical reaction between a material, usually a metal, and its environment that produces a deterioration of the material and its properties. This chapter describes the effects and economic impact of corrosion in major industrial plants...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 December 2003
DOI: 10.31399/asm.tb.cfap.t69780216
EISBN: 978-1-62708-281-5
... Abstract This article discusses the material and engineering issues associated with plastic components subjected to impact. The first part covers the effects of loading rate, temperature, and state of stress on both deformation and mode of failure. It discusses standard impact tests, along...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 November 2019
DOI: 10.31399/asm.tb.mfadr7.t91110244
EISBN: 978-1-62708-247-1
... is used to form the LSM pattern image. The oscilloscope is critical in that it dictates the measurement capabilities of the tool, such as measurement bandwidth and sample rate. Even more importantly, the oscilloscope has a significant impact on acquisition time due to trigger efficiency/dead time...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 November 2010
DOI: 10.31399/asm.tb.omfrc.t53030193
EISBN: 978-1-62708-349-2
... Abstract As fiber-reinforced polymeric composites continue to be used in more damage-prone environments, it is necessary to understand the response of these materials when subjected to impact from foreign objects. This chapter provides an overview of the analysis methods for impact-damaged...
Series: ASM Technical Books
Publisher: ASM International
Published: 01 January 2022
DOI: 10.31399/asm.tb.isceg.t59320305
EISBN: 978-1-62708-332-4
..., malleable iron, compacted graphite iron (CGI), ductile iron, austempered ductile iron (ADI), and carbon steel and low-alloy steel; its versatile attributes; and its individual applications. A large section of the chapter covers the impact of electric vehicles on the future of the iron and steel castings...
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Published: 30 June 2023
Fig. 19.3 Two-step impact extrusion of aluminum bat. (a) First step is impact extrusion of the rod. (b) Final shaping of bat in a second impact extrusion step More
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Published: 01 November 2019
Figure 56 Physical impact on the passivation layer of an ASIC. The impact caused a crater and several cracks in the proximity. A: Acoustic GHz-image with surface in focus. B: Defocused acoustic GHz-image. C: Scanning electron micrograph of a FIB-prepared cross section along the red marker More
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Published: 01 June 2016
Fig. 4.5 Impact Innovations ISS 5/11. Courtesy of Impact Innovations GmbH More
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Published: 01 November 2012
Fig. 30 Correlation of plane-strain impact fracture toughness and impact Charpy V-notch energy absorption for various grades of steel. Source: Ref 3 More
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Published: 01 November 2012
Fig. 31 Correlation of plane-strain impact fracture toughness and impact Charpy V-notch energy absorption for SA 533B, class 1, steel. NDT, nil-ductility transition. Source: Ref 3 More
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Published: 31 December 2020
Fig. 20 AISI Type 410: Effect of tempering temperature on impact properties. Impact energy tests used are Izod, Charpy V-notch, or Charpy keyhole, as indicated. Heat treatment of test specimens: heated to and held at 955 °C (1750 °F) for 1 hour; oil quenched, tempered for 4 hours More
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Published: 30 June 2023
Fig. 5.6 Impact of dendrite arm spacing on tensile strength and elongation of A356.0-T62 castings. Source: Ref. 5.5 , p 41 More
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Published: 30 June 2023
Fig. 15.22 Reverse impact extrusion. (a) A slug is pressed into a die. (b) After forming, (c) the stripper plate removes the parts from the punch More
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Published: 30 June 2023
Fig. 15.23 Impact extruded containers made from 1 xxx alloy slugs. Source: Ref 15.8 More
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Published: 01 June 1985
Fig. 4-6. Helical gear, 1.12×. Tooth bending fatigue followed by tooth bending impact. Origin is off-center of the tooth midpoint but is directly above the center of the web. More
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Published: 01 June 1985
Fig. 4-35. Tooth bending impact with stress-coat overlay, showing fracture path short-circuiting the usual stress flow-lines. More
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Published: 01 June 1985
Fig. 4-36. Spiral gear teeth, 1×. Tooth bending impact with peak loads being applied high on the profile over the top corner of the heel end of the convex (loaded) side. More
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Published: 01 June 1985
Fig. 4-38. Spur gear tooth. Combination modes: Tooth bending impact (top); tooth shear (bottom). Arrows indicate direction of applied force. More
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Published: 01 June 1985
Fig. 5-35. Spur gear damaged by the impact of a dropped gear. More
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Published: 01 September 2008
Fig. 8 Comparison of longitudinal Charpy V-notched impact toughness for various tool steel specimens taken from 89 mm square stock and tested at working hardness. Source: Ref 6 More