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mechanically assisted degradation

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Series: ASM Handbook
Volume: 13A
Publisher: ASM International
Published: 01 January 2003
DOI: 10.31399/asm.hb.v13a.a0003631
EISBN: 978-1-62708-182-5
... Abstract Mechanically assisted degradation of metals is defined as any type of degradation that involves a corrosion mechanism and a wear or fatigue mechanism. This article provides a discussion on the mechanisms of five forms of degradation: erosion, fretting corrosion, fretting fatigue...
Series: ASM Handbook
Volume: 13A
Publisher: ASM International
Published: 01 January 2003
DOI: 10.31399/asm.hb.v13a.a0003603
EISBN: 978-1-62708-182-5
... corrosion, and microbiologically influenced corrosion, which fit under the classification of corrosion that is not influenced by any outside process. It also explains mechanically assisted degradation and environmentally induced cracking, which fit under the classification of corrosion that is influenced...
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Published: 01 January 2005
, where the oxide coating is constantly removed by the mechanical action. Control: Proper installation and maintenance, as recommended by the manufacturer, would avoid this failure. Corrosion form and mechanism Mechanically assisted degradation, fretting corrosion Material Copper steel More
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Published: 01 January 2005
of water. Control: Redesign of the unit ensured proper collection and flow of water away from the copper tubes above the collector trays. Corrosion form and mechanism Mechanically assisted degradation, impingement Material Copper Product form Pipes from chiller unit More
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Published: 01 January 2005
, such as titanium alloys (Ti-6Al-4V), cobalt-chromium alloys, or tantalum. Corrosion form and mechanism Mechanically assisted degradation, fatigue, galvanic, crevice corrosion Material Type 316L stainless steel Product form Nail and plate prosthetic device More
Series: ASM Handbook
Volume: 13B
Publisher: ASM International
Published: 01 January 2005
DOI: 10.31399/asm.hb.v13b.a0003969
EISBN: 978-1-62708-183-2
... degradation Erosion Forms of Mechanically Assisted Degradation (section on Erosion) 322 Fretting Forms of Mechanically Assisted Degradation (section on Fretting Corrosion) 324 Cavitation; water drop impingement Forms of Mechanically Assisted Degradation (section on Cavitation Erosion...
Series: ASM Handbook
Volume: 13C
Publisher: ASM International
Published: 01 January 2006
DOI: 10.31399/asm.hb.v13c.a0004145
EISBN: 978-1-62708-184-9
... Abstract This article focuses on the environmentally assisted cracking (EAC) of structural materials in boiling water reactors (BWRs), reactor pressure vessels, core internals, and ancillary piping. It discusses the effects of water chemistry on materials degradation, mitigation approaches...
Series: ASM Handbook
Volume: 13A
Publisher: ASM International
Published: 01 January 2003
DOI: 10.31399/asm.hb.v13a.a0003669
EISBN: 978-1-62708-182-5
... Abstract Erosion, cavitation, and impingement are mechanically assisted forms of material degradation that often contribute to corrosive wear. This article identifies and describes several tests that are useful for ranking the service potential of candidate materials under such conditions...
Series: ASM Handbook
Volume: 23
Publisher: ASM International
Published: 01 June 2012
DOI: 10.31399/asm.hb.v23.a0005683
EISBN: 978-1-62708-198-6
... current density determination by Tafel extrapolation, potentiodynamic measurement of the polarization resistance, electrochemical impedance measurement, and potentiostatic deaeration. Tests combining corrosion and mechanical forces, such as fretting corrosion tests, environment-assisted cracking tests...
Series: ASM Handbook
Volume: 19
Publisher: ASM International
Published: 01 January 1996
DOI: 10.31399/asm.hb.v19.a0002361
EISBN: 978-1-62708-193-1
... Abstract Corrosion fatigue refers to the phenomenon of cracking in materials under the combined actions of fatigue loading and a corrosive environment. This article focuses on the various mechanisms of corrosion fatigue, namely, hydrogen-assisted cracking, anodic dissolution, and surface energy...
Series: ASM Handbook
Volume: 11B
Publisher: ASM International
Published: 15 May 2022
DOI: 10.31399/asm.hb.v11B.a0006942
EISBN: 978-1-62708-395-9
... in weight of a material as a function of temperature. As temperature is increased, different components within the material begin to volatilize or burn off. These temperatures, known as degradation temperatures, can assist the analyst in determining such details as moisture content, decomposition points...
Series: ASM Handbook
Volume: 13C
Publisher: ASM International
Published: 01 January 2006
DOI: 10.31399/asm.hb.v13c.a0004147
EISBN: 978-1-62708-184-9
... deformation light water reactor radiation hardening zirconium alloys radiation damage irradiation-assisted stress-corrosion cracking radiation induced segregation radiation creep relaxation radiolysis A GROWING CONCERN FOR ELECTRIC POWER UTILITIES worldwide has been degradation in core components...
Series: ASM Handbook
Volume: 21
Publisher: ASM International
Published: 01 January 2001
DOI: 10.31399/asm.hb.v21.a0003376
EISBN: 978-1-62708-195-5
... for this need (see the article “Fracture Mechanics of Composite Delamination”) . Composites provide excellent damping properties and are much less sensitive to fatigue degradation than metals. Two articles, “Damping Properties” and “Fatigue and Life Prediction,” address these topics. Structural...
Series: ASM Handbook
Volume: 13A
Publisher: ASM International
Published: 01 January 2003
DOI: 10.31399/asm.hb.v13a.a0003706
EISBN: 978-1-62708-182-5
... stress and calendar time. The modeling procedure allows the analyst to control the amount and levels of influence of each effect, either independent of cyclic mechanisms or interactively affecting the cyclic contributions to damage. This allows the analyst to quantify the impact of each degradation...
Book Chapter

By Bruce Craig
Series: ASM Handbook
Volume: 13A
Publisher: ASM International
Published: 01 January 2003
DOI: 10.31399/asm.hb.v13a.a0003634
EISBN: 978-1-62708-182-5
... is also provided. aluminum alloys copper alloys environmentally assisted failure ferrous alloys hydrogen hydrogen damage hydrogen degradation intermetallic compounds iron-base alloys nickel alloys niobium nonferrous alloys residual stress tantalum tensile stress titanium alloys...
Series: ASM Handbook
Volume: 13C
Publisher: ASM International
Published: 01 January 2006
DOI: 10.31399/asm.hb.v13c.a0004206
EISBN: 978-1-62708-184-9
.... The article discusses the surface characteristics and electrochemical behavior of metallic biomaterials. It summaries the clinical context for mechanically assisted corrosion and describes mechanically assisted crevice corrosion. There have been several tests developed to investigate aspects of mechanically...
Series: ASM Handbook
Volume: 23
Publisher: ASM International
Published: 01 June 2012
DOI: 10.31399/asm.hb.v23.a0005653
EISBN: 978-1-62708-198-6
... the nature of these metal surfaces and their propensity for corrosion reactions when combined with similar or different alloys in complex restrictive environments within the human body and under loading conditions. The article describes the factors that influence mechanically assisted crevice corrosion...