API 11 B Sucker Rod for Sale
Class D sucker rods are made of steel, including carbon steel, alloy steel, and KD special steel. Dimensions and tolerances for rods and sucker rods are in accordance with API SPEC 11B and AISI Steel Product Manual. Sock rods are available in 5/8 in. (15.88mm), 3/4 in. (19.05mm), 7/8 in. (22.23mm), 1 in. (25.40mm), and 1 1/8 in. (28.58mm) diameters, with lengths of 25' (7.62m) and 30' (9.14m), respectively, depending on D
Class D: Designed for use in medium-pressure to heavy-duty Wells, it provides adequate corrosion resistance.
Minimum yield strength: 586 MPa (115,000) psi
Tensile range: 793-965 MPa (115,000-140,000 psi)
Class D carbon steel sucker rods are designed for use in moderate strength Wells that are not corrosive or effectively suppressive.
Class D alloy steel sucker rods are designed for use in medium-strength to heavy-duty non-corrosive or effectively inhibited Wells.
The manufacturing process uses advanced technology worldwide. High Strength and Ultra High Strength Sucker Rods are our primary products and meet SY/TSO29, SYTS6272 and API Spec 11B standards. We also manufacture special sucker rods and pony sucker rods to meet customer requirements.
Before production, the material was analyzed using a spectrometer. Magnetic detectors are used to inspect the pipes one by one. Infrared thermometers are used to monitor temperature. Other high technology is also used in production to ensure quality.
Class D sucker rods are made of steel, including carbon steel, alloy steel, and KD special steel. Dimensions and tolerances for rods and sucker rods are in accordance with API SPEC 11B and AISI Steel Product Manual. Sock rods are available in 5/8 in. (15.88mm), 3/4 in. (19.05mm), 7/8 in. (22.23mm), 1 in. (25.40mm), and 1 1/8 in. (28.58mm) diameters, with lengths of 25' (7.62m) and 30' (9.14m), respectively, depending on D
Class D: Designed for use in medium-pressure to heavy-duty Wells, it provides adequate corrosion resistance.
Minimum yield strength: 586 MPa (115,000) psi
Tensile range: 793-965 MPa (115,000-140,000 psi)
Class D carbon steel sucker rods are designed for use in moderate strength Wells that are not corrosive or effectively suppressive.
Class D alloy steel sucker rods are designed for use in medium-strength to heavy-duty non-corrosive or effectively inhibited Wells.
The manufacturing process uses advanced technology worldwide. High Strength and Ultra High Strength Sucker Rods are our primary products and meet SY/TSO29, SYTS6272 and API Spec 11B standards. We also manufacture special sucker rods and pony sucker rods to meet customer requirements.
Before production, the material was analyzed using a spectrometer. Magnetic detectors are used to inspect the pipes one by one. Infrared thermometers are used to monitor temperature. Other high technology is also used in production to ensure quality.
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Class D sucker rods are made of steel, including carbon steel, alloy steel, and KD special steel. Dimensions and tolerances for rods and sucker rods are in accordance with API SPEC 11B and AISI Steel Product Manual. Sock rods are available in 5/8 in. (15.88mm), 3/4 in. (19.05mm), 7/8 in. (22.23mm), 1 in. (25.40mm), and 1 1/8 in. (28.58mm) diameters, with lengths of 25' (7.62m) and 30' (9.14m), respectively, depending on D
Class D: Designed for use in medium-pressure to heavy-duty Wells, it provides adequate corrosion resistance.
Minimum yield strength: 586 MPa (115,000) psi
Tensile range: 793-965 MPa (115,000-140,000 psi)
Class D carbon steel sucker rods are designed for use in moderate strength Wells that are not corrosive or effectively suppressive.
Class D alloy steel sucker rods are designed for use in medium-strength to heavy-duty non-corrosive or effectively inhibited Wells.
The manufacturing process uses advanced technology worldwide. High Strength and Ultra High Strength Sucker Rods are our primary products and meet SY/TSO29, SYTS6272 and API Spec 11B standards. We also manufacture special sucker rods and pony sucker rods to meet customer requirements.
Before production, the material was analyzed using a spectrometer. Magnetic detectors are used to inspect the pipes one by one. Infrared thermometers are used to monitor temperature. Other high technology is also used in production to ensure quality.
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