OCTG PIPE-OCTG CASING AND TUBING size chart

OCTG (Oil Country Tubular Goods) casing and tubing are highly popular categories of steel pipes among TUSPIPE’s product offerings. TUSPIPE not only ensures the highest quality for the OCTG tubular products it supplies but also has obtained certifications from international safety standards such as API 5CT.

API 5CT N80

OCTG Meaning

OCTG, or oil country tubular goods, refers to a variety of steel products that are used in the drilling and extraction of oil and gas. Including tubing, casing, and couplings. OCTG products are essential for the safe and efficient operation of oil and gas wells. 

En API 5CT is the core standard for OCTG, this standard helps to ensure that OCTG products meet the highest standards of quality and safety. It includes requirements for material quality, dimensions, strength, threading, and testing. In addition to this, there are ISO standards, EN standards (developed by the European Organization for Standardization), non-standard for special environments, and so on. Safeguarding the safety and standards of OCTG piping systems, standardizing production and installation.

OCTG SPECIFICATION

OCTG Pipe Type

  1. Casing: Used to reinforce the well wall, prevent wall collapse, and isolate different formations to ensure drilling safety. It is the basic structure of oil wells and is divided into surface casing, technical casing and oil casing.
  2. Tubing: Used to transport oil and gas from the bottom of the well to the surface. It is usually inside the casing and must have the performance of corrosion resistance and high pressure resistance.
  3. Drill pipe: It is the core tool for drilling wells, and needs to have high strength, abrasion resistance and anti-fatigue performance.

Casing, tubing and drill pipe together constitute the complete structure of the well. The drill pipe completes the drilling task, the casing ensures the stability of the well wall, and the tubing realizes the transportation of oil and gas.

Features of OCTG

High strength and pressure resistance
The extraction process of oil wells will be subject to high pressure and impact, and the extraction time is long, so the related pipes must have pressure resistance to withstand the pressure of the ground, and the extraction intensity is high, the pipe needs to be more durable.
Resistencia a la corrosión
OCTG pipes need to be stable in environments containing corrosive media such as hydrogen sulfide and carbon dioxide to ensure the safety of the piping system.
Sealing
OCTG pipes need to be precisely processed to ensure dimensional accuracy and connection sealing, and threaded connections can be used for greater convenience.
Versatilidad
OCTG tubing includes casing, tubing and drill pipe, each of which has its own role to play.

Production Standards of OCTG

API 5CT is the American Petroleum Institute’s specification for oil and gaswell casing and tubing. The specification covers coupling, threading, dimensions and other mechanical properties for oil and gas industry products like casing and tubing. API 5CT is the most common standard used in oil and gas industry applications. The specification covers several grades of steel, including J55K55N80L80 y P110. Coupling is a threaded connection used to join oil and gas well casing or tubing. Threading refers to the process of cuttinng threads into the end of a pipe or coupling. Dimensions vary depending on the type of casing or tubing being used. American Petroleum Institute standards are voluntary consensus standards that are not mandated by law. However, oil and gas companies often require that products used in their operations meet API standards.

Tubería de acero para la venta - China tubería negro Fabricantes

Below is the OCTG pipe sizing chart, based on API 5CT standard, which contains casing, tubing sizes, chemical properties, physical properties, and more. Related questions can consult us!

Dimensions of OCTG pipe size Chart (Tubing and Casing)

- Specification & Size of OCTG( API Tubing Size Chart)

DNO. D.PesoW. T.Fin del proceso
Non-upsetUpsetGrado de acero
coupling-threadcoupling-thread
En pulgadasmmlb./ft.lb./ft.En pulgadasmmH40J55L80N80C90T95P110
2 3/82.37560.3240.1674.24PUPNPNPNPNPN
4.64.70.194.83PNUPNUPNUPNUPNUPNUPNU
5.85.950.2546.45PNUPNUPNUPNUPNU
6.60.2957.49PPP
7.357.450.3368.53PUPUPU
2 7/82.87573.026.46.50.2175.51PNUPNU
7.87.90.2767.01
8.68.70.3087.82PLBPLBPLBEPLB
9.359.450.348.64PLBPLBPLBEPLB
10.50.3929.96PLBPLBPLBPLB
11.50.4411.18PLB 
3 1/23.588.97.70.2165.49PNPNPNPNPNPN
9.29.30.2546.45PNUPNUPNUPNUPNUPNUPNU
10.20.2897.34PNPNPNPNPNPN
12.712.950.3759.52PNUPNUPNUPNUPNU
14.30.4310.92PPP
15.50.47612.09PPP
170.5313.46PPP
44101.69.50.2265.74PNPNPNPNPNPN
110.2626.65PUPUPUPUPUPU
13.20.338.38PPP
16.10.41510.54PPP
18.90.512.7PPP
22.20.6115.49PPP
4 1/24.5114.312.612.750.2716.88PNUPNUPNUPNUPNUPNU
15.20.3378.56PPP
170.389.65PPP
18.90.4310.92PPPPLB
21.50.512.7PPPPLB
23.70.5614.22PPPPLB
26.10.6316PPPPLB
P--Plano;N-- Rosca de acoplamiento sin recalcado;U-- Rosca de acoplamiento recalcado; L--Integral

 

- Specification & Size of OCTG Steel (API Casing Pipe Size Chart)

DNO. D.PesoW. T.Formulario de mecanizado de extremos
Grado de acero
En pulgadasmmlb/ftkg/mEn pulgadasmmH40J55L80N80C90P110
K55T95
4 1/24.5114.39.514.140.2055.21PSPS
10.515.630.2245.69RSP
11.617.260.256.35PSLBPLBPLBPLBPLB
13.520.090.297.37PLBPLBPLBPLB
15.122.470.3379.56PLB
5512711.517.110.225.59PS
1319.350.2536.43PSLB
1522.320.2967.52PSLBPLBPLBPLBEPLB
1826.790.3629.19PLBPLBPLBEPLB
21.431.850.43711.1PLBPLBPLBPLB
23.234.530.47812.14PLB
24.135.860.512.7PLB
5 1/25.5139.71420.830.2446.2PSPS
15.523.070.2756.98PSLB
1725.30.3047.72PSLBPLBPLBPLBEPLB
2029.760.3619.17PLBPLBPLBEPLB
2334.230.41510.54PLBPLBPLBEPLB
26.839.880.512.7
29.744.20.56214.27
32.648.510.62515.88
35.352.530.68717.45
3856.550.7519.05
40.560.270.81220.62
43.164.140.87522.22
6 5/86.625168.282029.760.2887.32PSPSLB
2435.720.3528.94PSLBPLBPLBPLBEPLB
2841.670.41710.59PLBPLBPLBEPLB
3247.620.47512.06PLBPLBPLBEPLB
77177.81725.30.2315.87PS
2029.760.2726.91PSPS
2334.230.3178.05PSLBPLBPLBPLBE
2638.690.3629.19PSLBPLBPLBPLBEPLB
2943.160.40810.36PLBPLBPLBEPLB
3247.620.45311.51PLBPLBPLBEPLB
3552.090.49812.65PLBPLBPLBEPLB
3856.550.5413.72PLBPLBPLBEPLB
42.763.540.62515.88
46.469.050.68717.45
50.174.560.7519.05
53.679.770.81220.62
57.184.970.87522.22
7 5/87.625193.682435.720.37.62PS
26.439.290.3288.33PSLBPLBPLBPLBEPLB
29.744.20.3759.52PLBPLBPLBEPLB
33.750.150.4310.92PLBPLBPLBEPLB
3958.050.512.7PLBPLBPLBEPLB
42.863.690.56214.27PLBPLBPLBPLB
45.367.410.59515.11PLBPLBPLBPLB
47.170.090.62515.88PLBPLBPLBPLB
51.276.190.68717.45
55.380.30.7519.05
 8 5/88.625219.082435.720.2646.71PS
2841.620.3047.72PS
3247.620.3528.94PSPSLB
3653.570.410.16PSLBPLBPLBPLBEPLB
4059.530.4511.43PLBPLBPLBEPLB
4465.480.512.7PLBPLBPLBEPLB
4972.920.55714.15PLBPLBPLBEPLB
 9 5/89.625244.4832.348.070.3127.92PS
3653.570.3528.94PSPSLB
4059.530.39510.03PSLBPLBPLBPLBE
43.564.730.43511.05PLBPLBPLBEPLB
4769.940.47211.99PLBPLBPLBEPLB
53.579.620.54513.84PLBPLBPLBEPLB
58.486.910.59515.11PLBPLBPLBPLB
59.488.40.60915.47
64.996.580.67217.07
70.3104.620.73418.64
75.6112.50.79720.24
 10 3/410.75273.0532.7548.740.2797.09PS
40.560.270.358.89PSRSP
15.567.710.410.16RSP
5175.90.4511.43RSPRSPRSPPSBERSP
55.582.590.49512.57RSPRSPPSBERSP
60.790.330.54513.84PSBERSP
65.797.770.59515.11RSPRSP
73.2108.930.67217.07
79.2117.860.73418.64
85.3126.940.79720.24
 11 3/411.75298.454262.50.3338.46PS
4769.940.37520.24
5480.360.4358.46
6089.290.4899.53
6596.730.53411.05
71105.660.58214.42
 13 3/813.375339.734871.430.338.38PS
54.581.10.389.65RSP
6190.780.4310.92RSP
68101.190.4812.19RSPRSPRSPRSPRSP
72107.150.51413.06RSPRSPRSPRSP
1616406.46596.730.3759.53PS
75111.610.43811.13RSP
84125.010.49512.57RSP
109162.210.65616.66PPPP
 18 5/818.625473.0887.5130.210.43511.05PSRSP
202050894139.890.43811.13PSLPSLB
106.5158.490.512.7PSLB
133197.930.63516.13PSLB
P--Plain;S--Hilo corto;L--Hilo largo;B--Hilo de tope;E--Hilo extremo

Chemical Composition of OCTG

GrupoAceroTipoCMnMoCrNiCuPSSi
Gradomin.máx.min.máx.min.máx.min.máx.min.máx.máx.máx.máx.
1H40-----------0.030.03-
J55-----------0.030.03-
K55-----------0.030.03-
N801----------0.030.03-
Q----------0.030.03-
2M65-----------0.030.03-
L801-0.43-1.9----0.250.350.030.030.5
9Cr-0.150.30.60.91.18100.50.250.020.011
13Cr0.150.220.251--12140.50.250.020.011
C901-0.35-1.20.250.85-1.50.99-0.020.01-
2-0.5-1.9-NL-NL0.99-0.030.01-
C95--0.45-1.9------0.030.030.5
T951-0.35-1.20.250.850.41.50.99-0.020.01-
2-0.5-1.9----0.99-0.030.01-
3P110-----------0.030.03-
4Q1251-0.35-1.35-0.85-1.50.99-0.020.01-
2-0.35-1-NL-NL0.99-0.020.02-
3-0.5-1.9-NL-NL0.99-0.030.01-
4-0.5-1.9-NL-NL0.99-0.030.02-
a. El contenido de carbono para L80 puede aumentarse hasta un máximo de 0,50 % si el producto está templado en aceite.
b. El contenido de molibdeno para el Grado C90 Tipo 1 no tiene tolerancia mínima si el WT es inferior a 17, 78 mm.
c. El contenido de carbono para R95 puede aumentarse hasta un máximo de 0,55 % si el producto está templado en aceite.
d. El contenido de molibdeno para T95 Tipo 1 puede disminuirse a 0, 15 % mínimo si el WT es inferior a 17, 78 mm.
e. Para EW Grado P110, el contenido de fósforo será 0,020 % máximo y el contenido de azufre 0,010 % máximo.
NL = sin límite. Los elementos indicados se notificarán en el análisis del producto.

Mechanical Properties of OCTG pipe chart

Tensile and Hardness Requirements
Grado Tipo Total Elongation Under Load Yield strength MPa Tensile strength MPa Hardness a,c max Specified Wall Thickness Allowable Hardness Variation b
min max min 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 1 0.5 552 655 655 23.0 241 -
L80 9Cr 0.5 552 655 655 23.0 241 -
L80 13Cr 0.5 552 655 655 23.0 241 -
C90 1 0.5 621 724 689 25.4 255 ≤12.70 12.71 to 19.04 19.05 to 25.39 ≥25.40 3.0 4.0 5.0 6.0
T95 1 0.5 655 758 724 25.4 255 ≤12.70 12.71 to 19.04 19.05 to 25.39 ≥25.40 3.0 4.0 5.0 6.0
C110 - 0.7 758 828 793 30.0 286 ≤12.70 12.71 to 19.04 19.05 to 25.39 ≥25.40 3.0 4.0 5.0 6.0
P110 - 0.6 758 965 862 - - - -
Q125 1 0.65 862 1034 931 b - ≤12.70 12.71 to 19.04 19.05 3.0 4.0 5.0
a In case of dispute, laboratory Rockwell C hardness testing shall be used as the referee method. b No hardness limits, 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, T98 and C110, the requirements stated in HRC scale are for maximum mean hardness number.

What Is OCTG--Types of OCTG products

OCTG stands for Petroleum State Pipe. It is a family of rolled metal products used in oil and gas drilling and production operations. The term OCTG is used in a wide range of products, including drill pipe, casing and tubing. These products are used to connect wellheads and downhole equipment to extract oil and gas from the surface. OCTG plays an important role in the oil and gas industry, and its products have great significance for safe and efficient drilling operations.

Drill Pipe

Drill pipe is a type of steel pipe used in oil and gas Wells. It consists of several different parts, including kelly, drill bit, drill string and casing. The kelly pipe is attached to the rig, it helps to rotate the drill string, it is part of the drill pipe. The drill bit is the part of the drill pipe that is drilled into the rock and is generally made of steel or tungsten. The drill string consists of drill pipe and extends from the kelly pipe to the drill bit, which helps to provide support for the bit as it is drilled. Casing is the end of the drill pipe and helps prevent the well from collapsing. All of these components work together to help oil and gas Wells run properly.

Casing Pipe

Casing and tubing are necessary in the process of oil drilling. Casing is placed and wrapped around the wellbore before drilling begins. The purpose is to protect soil layers and groundwater from contamination by drilling mud and/or fracturing fluids. In addition, casing stabilizes the wellbore. Drilling and casing operations alternate — the drill string is removed at predetermined intervals and the wellbore is lined and cemented with casing.

Tubos

Tubing is used to carry oil from deep inside an oil well to the surface. This is the third stage of the wellbore process. Oil and gas occasionally rise to the surface on their own; However, pumps are usually required to bring the fluid to the surface. Tubing is usually smaller in diameter than casing, except for those with a diameter of 4 1/2 inches. Therefore, the tubing must be secured to an external support structure, such as a rig or platform, to prevent collapse due to differential pressure.

Types of OCTG Connections

Oil Country Tubular Goods (OCTG) is a type of steel pipe used to transport crude oil, natural gas and other fluids in the oil and gas industry. It consists of metal attachments and steel pipes, which come in different sizes and grades, and each length of pipe has a special function and purpose. The purpose of the OCTG connection is to connect these steel pipelines together in series to build a network that can transport oil and gas from one location to another.

API Connection
API connection is a type of connection widely used in the oil and gas industry. They meet and exceed all of the American Petroleum Institute’s (API) regulatory standards. The API defines two types of coupling: one is undisturbed coupling (NU) and the other is externally disturbed coupling (EU). The NU connection is designed to connect two pipes of the same diameter, while the EU connection is designed to connect two pipes of different diameters.

Advanced connectivity
Advanced connectivity is a special type of proprietary connection that provides advanced features that API connectivity does not. Most advanced connections offer metal-to-metal seals to improve the integrity of high-pressure seals. The advanced connection has the characteristics of straight connection, no slot and special gap. This connection is suitable for gas Wells, high-pressure Wells, and Wells prone to corrosive wastewater production.

Furthermore, OCTG threading technology is a process method for forming grooves in the casing body and end. 

It can form a seal with these grooves when the pipe is connected to another device or pipe. Threads are generally leak-proof and robust enough to withstand oil and gas distribution grids. There are three different types of OCTG casing, each with its own unique advantages: for example, short round thread casing (STC), long Round thread casing (LTC), and support thread casing (BTC).

STC is considered the preferred solution for short length casing applications that do not involve high axial loads or bending. LTC is particularly suitable for axial loads, except in the case of extreme temperature or pressure overall well conditions. BTC is an excellent connection that provides long life in the face of high axial loads, moderate internal pressures and temperatures. Both the STC and LTC are round threads of a non-runout design with 8 dome threads per inch. The BTC has a flat root and flat top square thread, a runout design, and is equipped with five support threads per inch.

Each type of OCTG thread has different advantages and performance, which also makes OCTG the best choice for some applications. When choosing the best type of threading for your project, be sure to consider the well condition and the type of equipment that will be used.

OCTG for Sand Control - Slotted Liner

Slotted liner is a well screening device that is used for sand control and fluid retention in petroleum wells. It consists of a series of slotted holes that are drilled into the well screen to allow fluid to flow through while retaining sand and other particulate matter. Slotted liner is an effective way to improve well productivity and prevent formation damage. It is also a cost-effective alternative to traditional well screens. Slotted liner can be used in both new and existing wells, and it is available in a variety of materials and configurations.

Why Choose TUSPIPE?

icono-tubo

Desde 1998, Tianjin United Steel Piping Co., Ltd (TUSPIPE) se ha comprometido a suministrar tubos de línea de alta calidad.

Con más de 500.000 toneladas de capacidad de producción anual, la empresa presta servicio a diversos campos e industrias, como la explotación y transmisión de petróleo y gas, la construcción naval y de automóviles, el agua y la electricidad, la protección del medio ambiente, la ingeniería mecánica, la construcción de infraestructuras, etc.

TUSPIPE places a premium on product quality and rigorous product quality control. In order to maintain good product quality,  the company has established a Test & Inspection Center since 2004. With a series of state-of-the-art tests and inspection equipment, the test & inspection center is able to perform the tensile tests, hydro tests, impact tests, DWTT, etc.

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