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HP12x74 HP12x84 HP12x89 H-Section Piles
Structural Steel H-Piles Specifications
HP12x74 H-Pile Beam: 12 inches (304.8 mm) high, 74 pounds per foot, 110.1 kg/m per meter.
HP12x84 HP Shape: 12 inches (304.8 mm) high, 6.63 inches (168.4 mm) wide, 0.375 inches (9.5 mm) thick, 84 pounds per foot, 125.0 kg/m per meter.
HP12x89 H-pile: 12 inches (304.8 mm) high, 89 pounds per foot, 132.5 kg/m per meter.
HP Shape Material Characteristics
HP12x74 h-shaped steel beam, HP12x84 steel h-column and HP12x89 h-section beam are usually made of A992 material.
A992 is a high-strength low-alloy structural steel with high tensile strength and good ductility. Compared with traditional A36 steel, it is more suitable for heavy-load structures. The material also has good welding performance, which is convenient for connection and processing during construction.
Hp Section Steel Mechanical Properties
HP12x89 Steel H-Piling has more advantages in bearing capacity and stiffness than HP12x74 and HP12x84 HP section steel due to its heavier weight, and has smaller deformation when subjected to stress. At the same time, they all have good toughness and impact resistance, and can ensure structural safety under complex stress conditions. For example, under dynamic loads such as earthquakes, they can absorb energy through their own deformation and reduce structural damage.
Structural Steel H-piles Processing Performance
Welding performance: A992 material has good weldability, and these three steel sections are easy to connect to other structural components by welding.
Cold processing performance: can be cold-bent, cold-drawn and other cold processing.
Hot processing performance: good performance in hot processing such as forging and hot rolling.
H-pile Structural Beams Application Field
Building structure: commonly used in the frame structure of high-rise buildings and industrial buildings.
Bridge engineering: used as a load-bearing component in the construction of various bridges, bearing the weight of the bridge itself, vehicle loads, and natural forces such as wind and water flow.
Mechanical manufacturing: in some load-bearing mechanical equipment, such as heavy machine tools, cranes, etc., it can be used as the frame and support frame of the equipment to provide strong support.
Civil engineering: can be used in key projects such as dams and tunnels to enhance the stability of the project and bear various loads in the project.





















