API 5L T95 P110 Q125 V150 Petroleum Oil Casing Ductile Factory Outlet
benefits of Using API 5L T95 P110 Q125 V150 petroleum Oil Casing Ductile for Oil and gas industry the oil and gas industry relies heavily on high-quality materials to ensure the safe and efficient extraction of petroleum products. One such material that has gained popularity in recent years is API 5L T95 P110 Q125 V150…
benefits of Using API 5L T95 P110 Q125 V150 petroleum Oil Casing Ductile for Oil and gas industry
the oil and gas industry relies heavily on high-quality materials to ensure the safe and efficient extraction of petroleum products. One such material that has gained popularity in recent years is API 5L T95 P110 Q125 V150 petroleum oil casing ductile. This type of casing ductile is known for its durability, strength, and resistance to corrosion, making it an ideal choice for use in oil and gas wells. One of the key benefits of using API 5L T95 P110 Q125 V150 petroleum oil casing ductile is its high tensile strength. This material is able to withstand high pressure and extreme temperatures, making it suitable for use in deep wells where conditions can be harsh. The high tensile strength of API 5L T95 P110 Q125 V150 petroleum oil casing ductile also helps to prevent deformation and collapse, ensuring the integrity of the well. In addition to its strength, API 5L T95 P110 Q125 V150 petroleum oil casing ductile is also highly resistant to corrosion. This is important in the oil and gas industry, where exposure to corrosive substances such as saltwater and hydrogen sulfide can cause damage to equipment and infrastructure. By using API 5L T95 P110 Q125 V150 petroleum oil casing ductile, Companies can reduce the risk of corrosion-related failures and extend the lifespan of their wells. Another benefit of API 5L T95 P110 Q125 V150 petroleum oil casing ductile is its ductility. This material is able to deform without breaking, allowing it to accommodate changes in pressure and temperature without compromising its structural integrity. This ductility makes API 5L T95 P110 Q125 V150 petroleum oil casing ductile a versatile choice for a wide range of well conditions, from shallow to deep wells and from conventional to unconventional drilling techniques. Furthermore, API 5L T95 P110 Q125 V150 petroleum oil casing ductile is manufactured to strict quality standards set by the American Petroleum institute (API). This ensures that the material meets the necessary requirements for use in oil and gas wells, including dimensional accuracy, chemical composition, and mechanical properties. By using API-certified materials, companies can have confidence in the reliability and performance of their well casings. In conclusion, API 5L T95 P110 Q125 V150 petroleum oil casing ductile offers a range of benefits for the oil and gas industry. From its high tensile strength and Corrosion resistance to its ductility and API certification, this material is a reliable choice for companies looking to ensure the safety and efficiency of their operations. By investing in API 5L T95 P110 Q125 V150 petroleum oil casing ductile, companies can protect their wells, reduce Maintenance costs, and improve overall productivity in the long run.Comparison of API 5L T95 P110 Q125 V150 Petroleum Oil Casing Ductile from Factory Outlet vs. Other Suppliers
API 5L T95 P110 Q125 V150 petroleum oil casing ductile is a crucial component in the oil and gas industry. It is used to protect the wellbore and ensure the smooth flow of oil and gas from the reservoir to the surface. When it comes to purchasing API 5L T95 P110 Q125 V150 petroleum oil casing ductile, it is essential to consider the source of the product. Factory outlets are a popular choice for many buyers, as they offer a range of benefits compared to other suppliers.
Tensile and Hardness Requirements | |||||||||
grade | Yield Strength MPa | Tensile Strength | Hardness a,c | Specified Wall thickness | Allowable Hardness Variation b | ||||
Type | Total Elongation Under Load | min MPa | max | ||||||
min | max | HRC | HBW | mm | HRC | ||||
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 |
H40 | — | 0.5 | 276 | 552 | 414 | — | — | — | — |
J55 | — | 0.5 | 379 | 552 | 517 | — | — | — | — |
K55 | — | 0.5 | 379 | 552 | 655 | — | — | — | — |
N80 | 1 | 0.5 | 552 | 758 | 689 | — | — | — | — |
N80 | Q | 0.5 | 552 | 758 | 689 | — | — | — | — |
R95 | — | 0.5 | 655 | 758 | 724 | — | — | — | — |
L80 L80 | 1 | 0.5 | 552 | 655 | 655 | 23 | 241 | — | — |
L80 | 9Cr 13Cr | 0.5 | 552 | 655 | 655 | 23 | 241 | — | — |
0.5 | 552 | 655 | 655 | 23 | 241 | — | — | ||
C90 | 1 | 0.5 | 621 | 724 | 689 | 25.4 | 255 | £12.70 | 3 |
12.71 to 19.04 | 4 | ||||||||
19.05 to 25.39 | 5 | ||||||||
³ 25.40 | 6 | ||||||||
T95 | 1 | 0.5 | 655 | 758 | 724 | 25.4 | 255 | £12.70 | 3 |
12.71 to 19.04 | 4 | ||||||||
19.05 to 25.39 | 5 | ||||||||
³ 25.40 | 6 | ||||||||
C110 | — | 0.7 | 758 | 828 | 793 | 30 | 286 | £12.70 | 3 |
12.71 to 19.04 | 4 | ||||||||
19.05 to 25.39 | 5 | ||||||||
³ 25.40 | 6 | ||||||||
P110 | — | 0.6 | 758 | 965 | 862 | — | — | — | — |
Q125 | 1 | 0.65 | 862 | 1034 | 931 | b | — | £12.70 | 3 |
12.71 to 19.04 19.05 | 4 | ||||||||
5 | |||||||||
a In case of dispute, laboratory Rockwell C hardness testing shall be used as the referee method. | |||||||||
b No hardness limits are specified, but the maximum variation is restricted as a manufacturing control in accordance with 7.8 and 7.9. | |||||||||
c For through-wall hardness tests of grades L80 (all types), C90, T95 and C110, the requirements stated in HRC scale are for maximum mean hardness number. |