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Stainless Steel 310 Seamless Instrumentation Tubes are cylindrical metal tubes made from alloy 310, a high-chromium, high-nickel stainless steel known for its excellent heat and corrosion resistance. These seamless tubes are used in high-temperature applications and instrumentation systems, ensuring durability, strength, and resistance to oxidation in demanding environments.
The table below provides a detailed breakdown of the chemical makeup of SS 310 Seamless Instrumentation Tubes.
STANDARD | WERKSTOFF NR. | UNS | JIS | BS | GOST | AFNOR | EN |
SS 310 | 1.4841 | S31000 | SUS 310 | 310S24 | 20Ch25N20S2 | - | X15CrNi25-20 |
This breakdown helps to make informed decisions regarding material selection, ensuring optimal performance and longevity in demanding industrial environments.
The table below provides vital data on the tube's strength, ductility, and resilience under different conditions.
Element | SS 310 |
C | 0.015 max |
Mn | 2.0 max |
Si | 0.15 max |
P | 0.020 max |
S | 0.015 max |
Cr | 24.00 - 26.00 |
Mo | 0.10 max |
Ni | 19.00 - 21.00 |
Fe | 54.7 min |
These properties ensure structural integrity and performance in high-temperature and corrosive environments.
The following are the key features of SS 310 seamless instrumentation tubes:
These features make Stainless Steel 310 seamless instrumentation tubes a popular choice for applications that require reliability, resistance to heat and corrosion, and overall strength.
SS 310 seamless instrumentation tubes are utilized across various industries due to their unique features. Below are some common applications where these tubes are used:
These are some key applications where Stainless Steel 310 seamless instrumentation tubes are used. Their properties make them a preferred choice in various challenging environments and industries.
Stainless Steel 310 Seamless Instrumentation Tubes are cylindrical metal tubes made from alloy 310, a high-chromium, high-nickel stainless steel known for its excellent heat and corrosion resistance. These seamless tubes are used in high-temperature applications and instrumentation systems, ensuring durability, strength, and resistance to oxidation in demanding environments.
The table below provides a detailed breakdown of the chemical makeup of SS 310 Seamless Instrumentation Tubes.
STANDARD | WERKSTOFF NR. | UNS | JIS | BS | GOST | AFNOR | EN |
SS 310 | 1.4841 | S31000 | SUS 310 | 310S24 | 20Ch25N20S2 | - | X15CrNi25-20 |
This breakdown helps to make informed decisions regarding material selection, ensuring optimal performance and longevity in demanding industrial environments.
The table below provides vital data on the tube's strength, ductility, and resilience under different conditions.
Element | SS 310 |
C | 0.015 max |
Mn | 2.0 max |
Si | 0.15 max |
P | 0.020 max |
S | 0.015 max |
Cr | 24.00 - 26.00 |
Mo | 0.10 max |
Ni | 19.00 - 21.00 |
Fe | 54.7 min |
These properties ensure structural integrity and performance in high-temperature and corrosive environments.
The following are the key features of SS 310 seamless instrumentation tubes:
These features make Stainless Steel 310 seamless instrumentation tubes a popular choice for applications that require reliability, resistance to heat and corrosion, and overall strength.
SS 310 seamless instrumentation tubes are utilized across various industries due to their unique features. Below are some common applications where these tubes are used:
These are some key applications where Stainless Steel 310 seamless instrumentation tubes are used. Their properties make them a preferred choice in various challenging environments and industries.
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