Examples of using Intergranular in English and their translations into Malay
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Intergranular Corrosion(IGC) Test.
Good resistance to intergranular corrosion.
As emphasized, however, annealing in the 800 to 15000F(427 to 8160C)temperature range does not result in a susceptibility to intergranular attack.
And subject to intergranular corrosion in some environments.
Due to low carbon content, its also has excellent resistance to intergranular corrosion.
The alloy has excellent resistance to intergranular corrosion in the as-welded condition.
AWS E308-16 weld metal(19Cr-9Ni) is austenite structure,it has excellent mechanical properties and shows good resistance to intergranular corrosion.
If the carbon content in such steels is below 0.03% or Ti orNi, the intergranular corrosion resistance can be significantly improved.
In a pure iron-phosphorus alloy, phosphorus segregation due to ferrite grain boundaries reduces the tensile strength Rm andcauses intergranular embrittlement.
L stainless steel pipe has good resistance to intergranular corrosion, excellent corrosion performance and cold processing, stamping performance, can be used as a heat-resistant stainless steel.
Oxygen in the steel causes segregation at the grain boundaries resulting in intergranular fracture of the iron alloy.
The aluminum alloys in the 2xxx series do not have as good corrosion resistance as most other aluminum alloys,and under certain conditions they may be subject to intergranular corrosion.
Low carbon content minimizes carbide precipitation in the HAZ near the weld,which may lead to intergranular corrosion(welding corrosion) of stainless steel in some environments.
Alloys 321 and 347 stainless steels offer higher creep and stress rupture properties than Alloy 304 and, particularly, Alloy 304L,which might also be considered for exposures where sensitization and intergranular corrosion are concerns.
Alloys 321(S32100) and 347(S34700) are stabilized stainless steels whichoffer as their main advantage an excellent resistance to intergranular corrosion following exposure to temperatures in the chromium carbide precipitation range from 800 to 15000F(427 to 8160C).
When Type 301 is heated or cooled slowly through a temperature range of 800- 1600 °F(427- 871 °C) without subsequent annealing,it may undergo carbide precipitation that may result in intergranular corrosion.
SS 321 Tubes(DIN 1.4541) is a stabilized stainless steel whichoffers as its main advantage an excellent resistance to intergranular corrosion following exposure to temperatures in the chromium carbide precipitation range from 800 to 1500 Degree F(427 to 816 Degree C).
Alloy 347 is used primarily in high temperature applications where high resistance to sensitization is essential,thereby preventing intergranular corrosion at lower temperatures.
Alloys 321(S32100) and 347(S34700) are stabilized stainless steels whichoffer as their main advantage an excellent resistance to intergranular corrosion following exposure to temperatures in the chromium carbide precipitation range from 800 to 15000F(427 to 8160C).
The groundwater then travels through a network ofcracks and fissures--openings ranging from intergranular spaces to large caves.
Incoloy® 825's chemical composition provides great resistance to many corrosive environments, such as pitting,crevice corrosion, intergranular corrosion, and stress- corrosion cracking.
Mainly used in high temperature applications,high temperature applications require strong sensitization of materials to prevent intergranular corrosion at lower temperatures.
Mainly used for high temperature applications, high temperature applications have high resistance of sensitized material,to avoid intergranular corrosion at lower temperatures.
Incoloy® 825's chemical composition provides great resistance to many corrosive environments, such as pitting,crevice corrosion, intergranular corrosion, and stress- corrosion cracking.
The lower carbon content minimizes the precipitation of carbides in the heat-affected zone near the weld,and the precipitation of carbides may cause intergranular corrosion in some environments(weld erosion).
For service temperatures up to about 1600°F, a stabilizing treatment at 1550-1650°F, air cool,may be used to provide optimum resistance to intergranular corrosion and to polythionic acid stress corrosion cracking.