With the exploration and innovation of company people, gradually formed four major advantageous products: steel plate, steel pipe, stainless steel, special steel.
321 is similar to 304, but uses titanium as a stabiliser. They differ in that they are resistant to intergranular corrosion after heating to temperatures in the carbide precipitation range. Applications include aircraft exhaust manifolds, furnace parts, heat exchangers, furnace parts etc.
General Properties. Alloy 321 (UNS S32100) is titanium stabilized austenitic stainless steel plate with good general corrosion resistance. It has excellent resistance to intergranular corrosion after exposure to temperatures in the chromium carbide precipitation range of 800 - 1500F (427 - 816C).
Physical Properties; Mechanical Properties; 321 is a titanium stabilized austenitic chromium-nickel stainless steel which was developed to provide an 18-8 type alloy with improved intergranular-corrosion resistance. This material is stabilized against chromium carbide formation by the addition of titanium.
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GENERAL PROPERTIES Type 321 is a stabilized stainless steel which offers as its main advantage an excellent resistance to intergranular corrosion following exposure to temperatures in the chromium carbide precipitation range from 800 to 1500 F (427 to 816 C).
Grade 321 stainless steel (1.4541) is a heat resistant grade supplied into numerous industry sectors. The key property of this grade is the added titanium content (5 x C%) stabilising the material and making its resistance to carbide precipitation when exposed to high temperatures and resistance to oxidation its main characteristics.
British Stainless Steel Association Issue 01 1st May 2000 Page 1 of 2 Magnetic Properties of Stainless Steel Ferritic, martensitic and duplex stainless steels are usually classified as magnetic, whilst austenitic stainless steels are often described as non-magnetic. This is because ferritic,
Magnetism - Magnetism - Magnetic properties of matter: All matter exhibits magnetic properties when placed in an external magnetic field. Even substances like copper and aluminum that are not normally thought of as having magnetic properties are affected by the presence of a magnetic field such as that produced by either pole of a bar magnet.
There are dozens of grades of stainless steel that are magnetic and dozens that aren't. So, while a strongly magnetic sample is probably not type 321, unfortunately a non-magnetic type is not necessarily 321. Regards, Ted Mooney, P.E. finishing.com - Pine Beach, New Jersey Striving to live Aloha
For critical applications specialist ferritic bar grades are available (subject to mill enquiry) with guaranteed magnetic properties. SORTING OF STEELS The magnetic response of a piece of steel is a quick and qualitative test that can be useful for sorting grades of stainless steel.
The physical properties of ATI 321, ATI 347 and ATI 348 stainless steels are quite similar and, for all practical purposes, may be considered to be the same. The values given in the table below may be used to apply to all three steels.
Grade 321 Stainless Steel alloy, also has better intergranular corrosion resistance and chromium carbide formation resistance than 304. Stainless steel type 321 can be used continuously at temperatures anywhere from 800 F to 1500 F. In its annealed form, 321 Stainless Steel alloy normally has a magnetic permeability less than 1.02 at 200H.
properties, fabricationthe third most important selection variableshould be considered Most of the 11 basic steels shown on the diagram are representative of a group or family of closely allied steels having similar corrosion resistance and strength levels these many variations and modifications of the 11
The magnetic properties of stainless steel are very dependent on the elements added into the alloy. A basic stainless steel has a ferritic structure and is magnetic, formed from the addition of chromium it can be hardened through the addition of carbon, making it martensitic.
Alloy 321 is a general purpose austenitic stainless steel with a face centered cubic structure. It is essentially non-magnetic in the annealed condition and can only be hardened by cold working. Titanium is added to supress grain boundary Chromium Carbide precipitation and reduce susceptibilty to intergranular corrosion.
Grade Data Sheet 301 301L 301LN Revised May 2008 Page 1 of 2 www.atlassteels.com.au Grade 301 is a high work-hardening rate austenitic stainless steel. It can be supplied with a tensile strength of up to over 1300 MPa
CRYOGENIC PROPERTIES 19 MAGNETIC PROPERTIES 20 Magnetically Soft Stainless Steels 20 MECHANICAL PROPERTIES 21 Mechanical Properties of Wire 22 Mechanical Properties of Bar 22 FABRICATION 23 Forming Operations 23 Machining 25 Welding 26 Soft Soldering 27 Brazing ("Silver Soldering") 27 HEAT TREATMENT 29 Annealing 29 Hardening 30 Stress Relieving 30
different compositions and properties, but many common characteristics. They can be hardened by cold working, but not by heat treatment. In the annealed condition, all are essentially nonmagnetic, although some may become slightly magnetic by cold working. They have excellent corrosion resistance, unusually good
1.4541, X6CrNiTi18-10, AISI 321 - specifications and applications Chrome-nickel stainless steel with addition of titanium with increased hardness, elasticity, maintaining non-magnetic properties, resistance to intergranular corrosion and increased temperatures.
Austenitic steels are non-magnetic in the annealed condition, although they can become slightly magnetic when cold worked. They have good formability and weldability, as well as excellent toughness, particularly at low or cryogenic temperatures. Austenitic grades also have a low yield stress and relatively high tensile strength.
Physical properties of stainless steels The attached collection of data reflects inquiries directed to stainless steel development associations. The enclosed documents are for information only and cannot replace reference to either EN 10088, or EN 10095.
The properties of duplex stainless steels are achieved with an overall lower alloy content than similar-performing super-austenitic grades, making their use cost-effective for many applications.The pulp and paper industry was one of the first ones to use extensively duplex stainless steel.
In 1282, the properties of magnets and the dry compasses were discussed by Al-Ashraf, a Yemeni physicist, astronomer, and geographer. In 1600, William Gilbert published his De Magnete, Magneticisque Corporibus, et de Magno Magnete Tellure (On the Magnet and Magnetic Bodies, and on the Great Magnet the Earth).
347 stainless steel is a columbium/tantalum stabilized austenitic chromium-nickel stainless steel. This material is stabilized against chromium carbide formation by the addition of columbium and tantalum.
Alloy steels are designated by AISI four-digit numbers. They comprise different kinds of steels having composition exceeding the limitations of B, C, Mn, Mo, Ni, Si, Cr, and Va set for carbon steels. AISI 4340 alloy steel is a heat treatable and low alloy steel containing chromium, nickel and 321 magnetic properties
321 stainless is a titanium stabilized grade commonly used for service in the 1000-1600F temperature range. For service temperatures up to about 1600F, a stabilizing treatment at 1550-1650F, air cool, may be used to provide optimum resistance to intergranular corrosion and to polythionic acid stress corrosion cracking.
MakeItFrom.com is a curated database of engineering material properties that emphasizes ease of comparison. It is not a datasheet dump: every listed material is an internationally recognized generic material. The data is sourced from published standards, academic literature, and supplier documentation.
321: 321S20 321S12 EN58B / EN58C: AMS 5645 MIL-S-862B 321 321 magnetic properties Aerospace Stainless Steel MSRR 6503 Jethete M152: AMS 5719 : WS 1.4933 WS 1.4938 WS 1.4939 Z12CNDV12
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