Примери за използване на Intergranular на Английски и техните преводи на Български
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Contamination iron alloy, carbon andsilicon causes intergranular corrosion.
In order to avoid intergranular corrosion, the content of Cr23C6 should be reduced to make the carbide in the form of TiC.
This makes it possible to avoid the dangerous phenomena of intergranular corrosion.
In order to avoid intergranular corrosion, titanium-containing stainless steel must be stabilized after solid solution treatment.
The major benefit of 321 is its resistance to intergranular corrosion.
In order to avoid intergranular corrosion in the actual production of stainless steel, the addition amount of titanium is mainly about 0.8%.
Low carbon typical 0.01% content helps reduce risk of intergranular corrosion.
They are Superior to 304L and 316L in intergranular corrosion resistance and assures further improved safety against intergranular corrosion.
Description 2.4610(alloy C-4)shows excellent stability against intergranular corrosion.
There is also intergranular corrosion cracking inside the stainless steel, all of which damages the passivation film on the stainless steel surface.
Titanium combines with carbon to reduce susceptibility to intergranular corrosion.
As well as stainless steel internal intergranular corrosion cracking, all of which, on the surface of the stainless steel plate passivation film are destroyed.
The key feature of type 321 stainless is its resistance to intergranular corrosion.
Stainless steel tubes have good resistance to intergranular corrosion, excellent corrosion performance and cold processing, stamping performance, can be used as heat-resistant stainless steel.
Excellent stability against pitting corrosion,stress corrosion and intergranular corrosion.
In short, intergranular corrosion is the precipitation of carbon from saturated austenite microstructure in the form of Cr23C6, which reduces the content of chromium in the Austenite microstructure at the grain boundary.
Extra low carbon(0.03%)content helps reduce risk of intergranular corrosion.
It is used in field open-air machines for chemical, coal, andpetroleum industries with high resistance to intergranular corrosion, heat-resistant parts for building materials, and parts with difficult heat treatment. Use range.
The extra low carbon content provides good resistance to carbide precipitation and 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.
When heated to 450-800℃, Cr-Ni Austenitic stainless steel will appear a phenomenon along the grain boundary corrosion,which is called intergranular corrosion.
Mainly used for high temperature applications, high temperature applications have high resistance of sensitized material,to avoid intergranular corrosion at lower temperatures.
Uses: Equipment used in seawater, chemical, dye, paper, acetic acid, fertilizer and other production equipment, food industry and coastal facilities,products with special requirements against intergranular corrosion.
Mainly used for high temperature applications, high temperature applications have high resistance of sensitized material,to avoid intergranular corrosion at lower temperatures.
Details of the thin sheet and strip in the automotive industry, sales engineering for consumer goods products, for products subjected to hardening, for welding machines andchemical engineering vessels to operate in environments that do not cause intergranular corrosion.
Stainless steel tubes have excellent rust and corrosion resistance andgood resistance to intergranular corrosion….
When the Titanium element is added to steel, carbon will first combine with Titanium to form Titanium carbide, which can effectively prevent the formation of chromium carbide and the precipitation of poor chromium in grain boundary, andultimately effectively prevent intergranular corrosion.
Stainless steel plate has excellent rust and corrosion resistance andgood resistance to intergranular corrosion.
Suffering from damage, such as chemical damage and mechanical damage, the chemical destruction of the passivation film is mainly due to the interaction of aggressive anions such as chloride and the passivation film,resulting in local corrosion damage such as pitting, crevice corrosion and intergranular corrosion.
Lanthanum(La) is added so that the carbon and oxygen segregation reduced, enhanced binding force of the grain boundary, the crack propagation path is partially transferred to the grain interior,resulting in transgranular and intergranular fracture mix, increasing the toughness.