
SA-213 T36 Stainless Steel Pipe
The seamless nature of SA-213 T36 stainless steel tubing further enhances its reliability. Seamless tubing is free of corrosion-prone and fragile welds, providing a smoother internal surface, improving fluid flow and reducing the risk of contamination in sensitive processes. This feature is particularly valuable in industries such as pharmaceutical and food processing.
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SA-213 T36 Stainless Pipe
SA-213 T36 Steel Pipe
ASME SA Grade 213 T36 Alloy Steel Seamless Pipe has a typical chemical composition with additions of up to 0.30 Chromium and 0.25-0.50 Molybdenum. The minimum tensile strength of the bearing is 415 MPa and the minimum yield strength of ASME SA 213 T36 grade pipe is 205 MPa.
SA 213 T36 Stainless Steel Pipe Description
| Property | Specification |
|---|---|
| Material | Stainless Steel (SA-213 T36) |
| Size Range | 1/2" - 36" |
| Wall Thickness Range | SCH 10 - SCH 160 |
| Length | Customizable |
| Surface Finish | Annealed and Pickled |
| Standards | ASME SA-213/ASTM A213 |
SA213 T36 Stainless Steel Tube

Product Element Content Table:
| Element | Content (%) |
|---|---|
| Chromium (Cr) | 3.30 - 3.90 |
| Molybdenum (Mo) | 0.80 - 1.10 |
| Carbon (C) | ≤ 0.10 |
| Manganese (Mn) | 0.30 - 0.60 |
| Silicon (Si) | 0.10 - 0.50 |
| Nickel (Ni) | 0.25 - 0.50 |
| Phosphorus (P) | ≤ 0.025 |
| Sulfur (S) | ≤ 0.025 |
Astm A213/ Asme Sa213 T36 Alloy Steel Tube Mechanical Properties
| Yield Strength | Tensile Strength | Elongation A5 min | |||
| MPa min | ksi min | MPa min | MPa min | ksi min | Percentage |
| 415 | – | 60 | 30 | ||
| ASTM A213 Grade T36 Equivalent Designation | |||||
|---|---|---|---|---|---|
| DIN | EN | BS | NFA | ASTM | ASME |
| – | – | – | ASTM A213 Grade T36 | ASME SA 213 Grade T36 | – |
Product Process
The production process of SA-213 T36 stainless steel tubes involves several steps. The first step is to select the raw material, which is a high quality stainless steel alloy that meets the required specifications. The next step is to heat the raw material until it reaches a molten state, which is called melting.
Once the material is melted, it is cast into billets or ingots and then hot or cold rolled to form stainless steel sheets. These plates are then cut to the desired size and shape and the edges are beveled in preparation for welding.
The next step is to form the pipe. The plate is fed through a series of rollers that gradually bend it into a tube shape. The pipe is then welded together using high frequency resistance welding or submerged arc welding to join the edges together. This welding process is carefully controlled to ensure a strong and defect-free joint.
After welding, the pipe is heat treated to improve its strength and ductility. The heat treatment process involves heating the pipe to a specific temperature and holding it there for a specific period of time to obtain the desired properties.
Finally, the pipe is quality inspected and tested to ensure that it meets the required specifications. The inspection process includes hydrostatic testing, ultrasonic testing, eddy current testing, etc.
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