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310S stainless steel,  310S stainless steel ex-stock

310S stainless steel, 310S stainless steel ex-stock

BEBON STEEL, a professional steel supplier, can not only offer 310S stainless steel ex-stock source, but also can offter chemical analysis and mechanical properties for you. If you are interested in 310S stainless steel, please contact BEBON STEEL.

310S stainless steel, 310S stainless steel knowledge

310S stainless steel is austenitic chromium nickel stainless steel. 310S stainless steel has good oxidation resistance, corrosion resistance and good more creep strength because of high percentage of chromium and nickel. 310S also has good high-temperature resistance and can work under high temperature. 310S stainless steel is widely used in Petroleum, electronics, chemical industry, medicine, textile, food, machinery, building, nuclear power, aerospace, military industry and other industries.

310S stainless steel chemical composition:

C %

Si %

Mn %

P %

S %

Cr %

Ni %

≤ 0.08

≤1.50

≤2.00

≤0.035

≤0.03

24-26

19-22


310S stainless steel mechanical property:

Hardness (HB)

Tensile Strength (бb)(Mpa)

Yield Strength
(бb)(Mpa)

Elongation
(δ)%

Area Reduction
(ψ)%

≤187

≥520

≥205

≥40

≥50

BEBON STEEL, as a professional steel supplier, can not only offer 310S stainless steel ex-stock source, but also can offer 310S chemical analysis and 310S mechanical properties for you. Certainly, if required, other detail informations can be offered, too. If you are interested in 310S stainless steel, please contact BEBON STEEL.


Tags: ASTM A240 310S Austenitic Stainless Steel, ASTM A240 309S Austenitic Stainless Steel, ASTM A240 410 Martensitic Stainless Steel

stainless steel processing

The manufacture of stainless steel involves a series of processes. First, the steel is melted, and then it is cast into solid form. After various forming steps, the steel is heat treated and then cleaned and polished to give it the desired finish. Next, it is packaged and sent to manufacturers, who weld and join the steel to produce the desired shapes.

Melting and Casting
Melting and Casting

The raw materials that constitute a stainless steel item are placed together and melted in a giant electric furnace. Intense heat is applied rigorously for a period of 8 to 12 hours during this step. Once the melting is complete, the molten steel is cast into desired semi-finished forms. Some of the most common forms or shapes include slabs, blooms (rectangular shapes), billets (these could either be round or square), rods, and tube rounds.

Forming
Forming

In the second stage, the semi-finished steel shapes undergo a series of forming operations. For instance, the stainless steel is hot rolled (heated and passed through enormous rolls). The blooms and billets mentioned above are converted to bar and wire. The slabs on the other hand are formed into plates, strips or sheets. It is very common to turn semi-finished steel shapes into bars, as it is the most versatile stainless steel form (it comes in all grades and sizes). You have round, square, octagonal, and hexagonal bars, each suitable for a different type of application.

Heat Treatment
Heat Treatment

The various stainless steel forms undergo a thorough annealing process during this step. Annealing is another name for heat treatment where the stainless steel is heated and cooled in a controlled environment. The purpose of this heat treatment is to relieve the pent-up stress inside the stainless steel and soften the material to make it more suitable for a wide variety of applications. The people in charge of carrying out the annealing process have to be very careful about the conditions as even the slightest of changes in the temperature, pressure, duration, or cooling rate could result in a faulty product.

Descaling
Descaling

During the annealing process, a certain amount of scale appears on the surface of the stainless steel. This scale can be removed using a number of different processes that are collectively known as descaling. Pickling is one of the more common methods of carrying out the descaling process.

Cutting
Cutting

The semi-finished, heat-treated, and descaled stainless steel forms are cut into specific shapes in this step. Mechanical cutting is performed with the aid of guillotine knives, blanking, nibbling, and high-speed blades.

Finishing
Finishing

Finishing is applied to help the stainless steel product achieve its signature aesthetically appealing appearance. Finishes are also needed to make the stainless steel product smooth and easier to clean, which is a top requirement in sanitary applications.

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