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Stress crack corrosion

Nickel is added to improve resistance to environmental and stress cracking corrosion. Molybdenum provides even greater resistance to corrosion and improves mechanical strength. Copper increases resistance to sulfuric acid attack. [Pg.222]

Nickel confers excellent resistance to alkaline attack and to stress-cracking corrosion and is also quite resistant to nonoxidizing acids. It is widely used to the extent of a few percent in stainless steels (300 series, see Section 16.8), and in several high nickel alloys, including the following proprietary metals ... [Pg.352]

Chloride stress cracking corrosion was also a problem when austenitic stainless steels were covered with thermal insulation. The NACE Paper also discusses the protective coatings for stainless steels and provides sandblasting and coating application guides for stainless and carbon steels. [Pg.215]

The accident happened when the plant had to replace one of six reactors and rushed to refit the plant to bypass the disabled reactor. Scaffolding was jerry-rigged to support a 20-in. pipe connecting reactor four with reactor six, which violated industry and the manufacturer s recommendations. The reactor that failed showed stress crack corrosion. The only drawings for the repair were in chalk on the machine shop floor. Both ends of the 20-in. [Pg.136]

Faults, cracking (e.g., stress cracking, stress cracking corrosion)... [Pg.103]

The exact mechanism of stress cracking corrosion is unknown but it is thought to be related to hydrogen embrittlement and to be another phenomenon whose intensity is due to the effect being localized. It was seen in the earlier discussion that in many corrosion situations the cathodic part of the process is hydrogen... [Pg.229]

The effect of liquid surfactants can powerfully accelerate stress crack formation. Nevertheless, stress crack formation in plastics must be distinguished from stress crack corrosion as known in particular in metallic materials. Corrosion is understood as the erosion of atoms from the material by chemical processes and in metals particularly by electro-chemical reactions. Additional influence by stresses leads to crack formation and brittle fracture which often resembles of the failure of stress cracks in plastics. Stress crack formation in thermoplastics is, however, a purely physical process. No chemical changes take place in the material even under the influence of surfactants. The terminology is nevertheless not completely uniform. The accelerating effect of liquids on stress crack formation in plastics is occasionally described as stress crack corrosion although no real corrosion process is connected with it. [Pg.171]

Sleam-to-heater passes (vacuum towers), 295—297 Steam-turbine hand valves (energy savings), 212-213 Stem hoist, 56 Stratco contactor, 138, 146 Stress cracking (corrosion), 98, 423-424, 428 Stress relief, 90... [Pg.267]

Stress cracking Corrosion in the form of crack formation around a point of high stress concentration exposed to a corrosive environment. [Pg.94]

Asphalt/coal tar Easy to apply Minimal surface preparation required Long track record in certain environments without failure Permeable to cathodic protection in event of failure Subject to oxidation and cracking Soil stress has been an issue Limitations at low application temperatures Environmental and exposure concerns Associated with corrosion and stress crack corrosion failures... [Pg.400]

Tape wrap (two layer) Simple application Poor shear stress resistance Many documented failures related to corrosion and stress crack corrosion Shielding of cathodic protection Adhesives subject to biodegradation... [Pg.400]

It turns out that the use of ECR-glass significantly reduces the rate of stress-crack corrosion. [Pg.713]


See other pages where Stress crack corrosion is mentioned: [Pg.212]    [Pg.71]    [Pg.337]    [Pg.340]    [Pg.353]    [Pg.337]    [Pg.340]    [Pg.353]    [Pg.96]    [Pg.98]    [Pg.230]    [Pg.88]    [Pg.676]    [Pg.677]    [Pg.245]    [Pg.165]    [Pg.517]    [Pg.113]    [Pg.517]    [Pg.429]    [Pg.713]    [Pg.713]    [Pg.10]    [Pg.12]   
See also in sourсe #XX -- [ Pg.171 ]




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Aircraft stress-corrosion cracking

Alloys stress corrosion cracking

Aluminium stress corrosion cracking

Aluminium-copper alloys stress-corrosion cracking

Aluminium-magnesium alloys stress-corrosion cracking

Aluminum alloys stress-corrosion cracking

Amines stress corrosion cracking

Ammonia stress corrosion cracking

Anodic stress-corrosion cracking

Aqueous environment stress cracking corrosion

Austenitic stainless steel stress-corrosion cracking

Austenitic stress corrosion cracking

Boilers stress corrosion cracking

Brass stress-corrosion cracking

Carbon stress corrosion cracking

Carbonate stress corrosion cracking

Chloride-induced stress corrosion cracking

Chlorides, stress-corrosion cracking

Chlorides, stress-corrosion cracking aqueous, environment-alloy

Chlorides, stress-corrosion cracking boiling, environment-alloy

Chlorides, stress-corrosion cracking combinations resulting

Chlorides, stress-corrosion cracking concentrated, environment-alloy

Cobalt-base alloys stress corrosion cracking

Contents Stress Corrosion Cracking

Copper alloys stress-corrosion cracking

Copper nickel alloys stress-corrosion cracking

Copper stress-corrosion cracking

Copper-zinc alloys stress-corrosion cracking

Copper-zinc alloys stress-corrosion cracking evaluated using

Corrosion fatigue crack stress concentration

Corrosion fatigue cracking stress ratio

Corrosion. Also stress cracking

Corrosive stress

Duplex stainless steels stress-corrosion cracking

Duplex stress corrosion cracking

Environmental Stress Corrosion Cracking

Environmental factors, stress corrosion cracking

Fatigue stress corrosion cracking

Ferritic stainless steels stress-corrosion cracking

Heat treatment effect on stress-corrosion cracking

Hydrogen concentration, stress corrosion cracking

Hydrogen induced stress-corrosion cracking

Hydrogen related stress corrosion cracking

Hydrogen stress corrosion cracking

Hydrogen sulfide stress corrosion cracking

Hydrogen-assisted stress corrosion cracking

Hydroxides affecting stress-corrosion cracking

Hydroxides stress-corrosion cracking

INDEX stress-corrosion cracking

Industrial applications stress corrosion cracking

Industrial problems stress-corrosion cracking

Insulation, stress-corrosion cracking

Intergranular stress corrosion cracking

Intergranular stress corrosion cracking alloy

Intergranular stress corrosion cracking sensitized

Intergranular stress-corrosion cracking IGSCC)

Intergranular stress-corrosion cracking mechanisms

Iron-chromium-nickel alloys stress-corrosion cracking

Irradiation effects stress corrosion cracking

Irradiation-assisted stress corrosion cracking

Liquid ammonia, stress corrosion cracking

Magnesium alloys stress-corrosion cracking

Magnesium stress-corrosion cracking

Mercury causing stress-corrosion cracking

Metallurgy stress corrosion cracking

Metals processing stress-corrosion cracking

Metals stress-crack corrosion

Methanolic environments, stress corrosion cracking

Monel, stress corrosion cracking

Nickel alloys stress-corrosion cracking

Nickel alloys, environment-alloy stress-corrosion cracking

Nickel content, stress corrosion cracking

Nickel stress corrosion cracking

Nickel-base alloys stress-corrosion cracking

Nickel-iron alloys stress-corrosion cracking

Nitrate solutions, stress corrosion cracking

Nuclear power plants stress-corrosion cracking

Nucleation, stress corrosion cracking

Pipelines stress-corrosion cracking

Potential for stress-corrosion cracking

Promoter solutions, stress corrosion cracking

Sodium chloride stress-corrosion cracking resistance

Soils stress-corrosion cracking

Stainless steels stress corrosion cracking

Stainless steels stress-corrosion cracking, hydrogen

Steels continued stress-corrosion cracking

Steels stress-corrosion cracking

Strength Stress corrosion cracking

Stress Corrosion Cracking (SCC) and SRB

Stress Corrosion Cracking and Embrittlement

Stress Corrosion Cracking of Polymers

Stress corrosion crack velocity

Stress corrosion cracking (SCC) mechanisms

Stress corrosion cracking (SCC) of magnesium (Mg) alloys

Stress corrosion cracking accelerating ions

Stress corrosion cracking active path mechanisms

Stress corrosion cracking alloy composition

Stress corrosion cracking alloy influences

Stress corrosion cracking alloying additions

Stress corrosion cracking alloying element

Stress corrosion cracking aluminium alloys

Stress corrosion cracking aluminum

Stress corrosion cracking aluminum content

Stress corrosion cracking austenitic steels

Stress corrosion cracking beryllium

Stress corrosion cracking carbide precipitation

Stress corrosion cracking carbon steel

Stress corrosion cracking cases

Stress corrosion cracking cast iron

Stress corrosion cracking caustic

Stress corrosion cracking characteristics

Stress corrosion cracking characterization

Stress corrosion cracking chemical plant

Stress corrosion cracking cold work

Stress corrosion cracking composition

Stress corrosion cracking constant extension rate test

Stress corrosion cracking continued

Stress corrosion cracking crack external surface

Stress corrosion cracking crack fronts

Stress corrosion cracking crack initiation

Stress corrosion cracking crack morphology

Stress corrosion cracking crack path

Stress corrosion cracking crack propagation mechanisms

Stress corrosion cracking crack tip

Stress corrosion cracking crack velocity

Stress corrosion cracking curves

Stress corrosion cracking dealloying

Stress corrosion cracking dissolution processes

Stress corrosion cracking duplex structure

Stress corrosion cracking effect

Stress corrosion cracking electrochemical effects

Stress corrosion cracking electrochemical potential

Stress corrosion cracking electrochemical techniques

Stress corrosion cracking environmental alloy combinations

Stress corrosion cracking environmental aspects

Stress corrosion cracking environmental considerations

Stress corrosion cracking environmental influences

Stress corrosion cracking environments

Stress corrosion cracking environments promoting

Stress corrosion cracking factors

Stress corrosion cracking failure

Stress corrosion cracking ferritic steels

Stress corrosion cracking fractography

Stress corrosion cracking fracture mechanics

Stress corrosion cracking fracture mechanics testing

Stress corrosion cracking grain boundary segregation

Stress corrosion cracking grain size

Stress corrosion cracking heat treatment

Stress corrosion cracking high-temperature water

Stress corrosion cracking hydrides

Stress corrosion cracking hydrogen damage

Stress corrosion cracking hydrogen embrittlement

Stress corrosion cracking hydrogen water chemistry

Stress corrosion cracking in alloys

Stress corrosion cracking in stainless steels

Stress corrosion cracking induced

Stress corrosion cracking inhibitors

Stress corrosion cracking loading

Stress corrosion cracking local anode

Stress corrosion cracking local cathode

Stress corrosion cracking manganese

Stress corrosion cracking material parameters

Stress corrosion cracking materials affecting

Stress corrosion cracking mechanism

Stress corrosion cracking metallurgical factors

Stress corrosion cracking models

Stress corrosion cracking morphology

Stress corrosion cracking nitrate

Stress corrosion cracking other elements

Stress corrosion cracking oxygen levels

Stress corrosion cracking performance

Stress corrosion cracking polythionic acid

Stress corrosion cracking practical solution

Stress corrosion cracking precracked specimens

Stress corrosion cracking prevention

Stress corrosion cracking principles

Stress corrosion cracking propagation models

Stress corrosion cracking pure magnesium

Stress corrosion cracking solution

Stress corrosion cracking standards

Stress corrosion cracking structure

Stress corrosion cracking surface

Stress corrosion cracking surface treatments

Stress corrosion cracking susceptibility

Stress corrosion cracking techniques

Stress corrosion cracking test environments

Stress corrosion cracking test method

Stress corrosion cracking test specimens

Stress corrosion cracking testing

Stress corrosion cracking testing methods

Stress corrosion cracking testing techniques

Stress corrosion cracking transgranular

Stress corrosion cracking welding

Stress corrosion cracking welds

Stress corrosion cracking zirconium

Stress corrosion cracking, consequences

Stress corrosion cracking, tests

Stress crack

Stress cracking corrosion elasticity

Stress cracking, corrosion and

Stress-corrosion Cracking (SCC)

Stress-corrosion crack growth rate

Stress-corrosion cracking

Stress-corrosion cracking

Stress-corrosion cracking Environment-sensitive

Stress-corrosion cracking case histories

Stress-corrosion cracking cautions

Stress-corrosion cracking corrodent

Stress-corrosion cracking corrodent concentration

Stress-corrosion cracking critical factors

Stress-corrosion cracking definition

Stress-corrosion cracking elimination

Stress-corrosion cracking identification

Stress-corrosion cracking locations

Stress-corrosion cracking mechanisms alloys

Stress-corrosion cracking mechanisms anodic current density

Stress-corrosion cracking mechanisms appearance

Stress-corrosion cracking mechanisms crack velocity

Stress-corrosion cracking mechanisms definition

Stress-corrosion cracking mechanisms electrochemistry

Stress-corrosion cracking mechanisms fracture surfaces

Stress-corrosion cracking resistance

Stress-corrosion cracking specific corrodent

Stress-corrosion cracking test of low

Stress-corrosion cracking, discussion

Stress-corrosion critical crack depth

Sulfide stress cracking, corrosion

Surgical implants stress corrosion cracking

Systems exhibiting stress-corrosion cracking

Temperature stress corrosion cracking

Titanium alloys in stress-corrosion cracking

Titanium alloys stress-corrosion cracking

Titanium stress-corrosion cracking

Transgranular stress corrosion cracking model

Weldments stress-corrosion cracking

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