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410 stainless steel plate - Steel Exporter BeBon China

410 stainless steel heat treatment:solution treatment () 800-9000 slow cooling or 750 fast cooling ; the highest amount of Ta 0.10%. 410 stainless steel plate has similar resist general corrosion with an unstable nickel-chromium alloy 304 ,mainly used for high temperature applications, high-temperature applications require materials with a strong allergy resistance. COMPARATOR - AK SteelDec 15, 2015 · High-temperature scaling resistance Industrial ovens, heat exchangers, furnace liners THERMAK 17 SS 17 0.01 Si 1.3 Mn 1.0 Nb 0.3 Cu 1.3 Improved oxidation resistance, high temperature strength and thermal fatigue resistance Automotive manifolds, catalytic converter, exhaust resonator 18 Cr-Cb SS 1.4509 17.5 0.02 Ti

Grade 304 Stainless Steel Properties, Tensile Yield

AISI 304 Stainless Steel (UNS S30400) AISI 304 stainless steel (UNS S30400) is the most widely used stainless steel, containing 18-20% Cr and 8-10.5% Ni, and also known as 18-8 stainless steel.Type 304 is non-magnetic under annealing conditions, but after cold working (such as stamping, stretching, bending, rolling), part of the austenite structure may be converted into martensite and PVD Coatings for Medical Device Applications Products

  • PVD Coating Properties and Medical DevicesOrthopedic Implant ApplicationsSurgical Instrument TestingOther ApplicationsHardox 450 - The most popular structural wear plate - SSABHardox® 450 is an abrasion-resistant steel with a nominal hardness of 450 HBW. Hardox® 450 combines good bendability and weldability with an option for guaranteed impact toughness (Hardox® 450 Tuf). The products can be used in many different components and structures that are subject to wear. Hardox ® 450, with an extra 50 Brinell hardness Products SSINAThe most common grades are 409 and 430. These grades have good corrosion resistance and are magnetic. Austenitic grades. Austenitic (iron, chrome, nickel, manganese) grades that cannot be hardened by heat treatment but can develop higher strength by cold working. The most common grades are 201, 301, 303, 304/304L, 316/316L, and 321.

    Stainless Steel Information Knowledge 18-8 304 316

    Type 304 is also used for the dye tanks, pipelines buckets, dippers, etc. that come in contact with the lormic, acetic, and other organic acids used in the dyeing industry. In the marine environment, because of it slightly higher strength and wear resistance than type Stainless Steel:Tables of Technical PropertiesName Designation EN EN Number Designation Designation AISI/ASTM s r e h t O i N o M r C N S x a m P n M i S C X12CrMnNiN17-7-5 1.4372 201 0,15 1,00 5,50 to 7,50 0,045 0 Surface Hardening of Stainless Steelsin which corrosion resistance is of high im-portance. In many end-uses, the material is also expected to have a hard, scratch-resist - ant surface. When improved wear resistance is required, surface engineering provides solutions. Industrially proven processes are available that improve surface hardness, scratch and wear resistance.

    Type 321 Stainless Steel in ASTM A240 Specification

    ASTM A240 321 stainless steel is a Ni-Cr-Ti type austenitic stainless steel, its performance is very similar to the 304, but due to the addition of titanium, it has a better intergranular corrosion resistance and high temperature strength. The addition of titanium, making it effective control of Types 410, 420, 425 Mod, and 440ATypes 410, 420, 425 Mod, and 440A GENERAL PROPERTIES Types 410, 420, 425 Modified, and 440A (see composition on Page 2) are hardenable, straight-chromium stainless steels which combine superior wear resistance of high carbon alloys with the excellent corrosion resistance of chromium stainless steels. Oil quenching these alloys from temperaturesFIGHTS GALLING AND WEAR STRONGER THAN 304 / corrosion resistance is better than Type 304 in most media. Chloride pitting resistance is superior to Type 316. Room temperature yield strength is nearly twice that of Types 304 and 316. In addition, NITRONIC 60 Stainless Steel provides excellent high-temperature oxidation resistance and low-temperature impact resistance. Composition % Min % Max