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第 1 個:lifting column cylinder
第 1 個:lifting column cylinder

lifting column cylinder

lifting column cylinder(lifting column cylinder,produced by Hengyu Group)lifting column cylinder are widely used ,because of powerful torque,clever hydraul

Product Description
lifting column cylinder

lifting column cylinder

(lifting column cylinder,produced by Hengyu Group)

lifting column cylinder are widely used ,because of powerful torque,clever hydraulic energy conversion,simple structure and reliable operation.So our company has designed lifting column cylinder for our customers.

Introduction to lifting column cylinder:

Do not regularly check the damage of the chrome layer of the lifting column cylinder: completely extend the lifting column cylinder and carefully check whether there is any surface damage such as injury, strain, welding slag, such as the surface damage position, in the lifting column cylinder block < 20cm, and the damage depth < 5mm, should be repaired in time to prevent long-term damage to the lifting column cylinder seal. Welding slag is strictly prohibited on the surface of the lifting column cylinder.

In recent years, the processing process of the lifting column cylinder generally adopts the rolling method, which is a pressure finishing processing, which uses the cold plastic characteristics of the metal at room temperature, and uses the rolling tool to exert a certain pressure on the surface of the workpiece, so that the surface metal of the workpiece produces plastic flow, and fills in the low concave trough of the original residue, and the roughness value of the workpiece surface is reduced. Due to the plastic deformation of the rolled surface metal, the surface tissue is cold hardened and the grain is fine, forming a dense fiber, and forming a residual stress layer, and the hardness and strength are increased, thus improving the wear resistance, corrosion resistance and compatibility of the workpiece surface. Rolling is a plastic machining method without cutting.

The lifting column cylinder is a hydraulic actuator that converts hydraulic energy into mechanical energy and does linear reciprocating motion (or swinging motion). It is simple in structure and reliable in operation. When it is used to achieve reciprocating movement, the deceleration device can be eliminated, and there is no transmission gap, and the movement is smooth, so it is widely used in various mechanical hydraulic systems. The output force of the lifting column cylinder is proportional to the effective area of the piston and the pressure difference between the two sides; The lifting column cylinder is basically composed of lifting column cylinder and lifting column cylinder head, piston and piston rod, sealing device, buffer device and exhaust device. Buffer device and exhaust device depending on the specific application, other devices are essential.

When producing oil lifting column cylinders, there are two processing processes, grinding and rolling, the latter is better than the former. Rolling machining is a kind of non-cutting machining, using the plastic deformation of the metal at room temperature, so that the micro roughness of the workpiece surface is flattened to achieve the purpose of changing the surface structure, mechanical characteristics, shape and size. Therefore, this method can achieve the two purposes of finishing and strengthening at the same time, which can not be done by grinding.

Answers to some questions about lifting column cylinder:

When the cylinder is tested, why can't the pressure be maintained with the balance valve?
Because the oil into the oil chamber through the hydraulic lock on the control oil circuit through the other side of the spool, the original valve is designed in this way. It locks the circuit after the oil supply circuit loses pressure, on the contrary, if you keep supplying pressure, it is always in the state of opening the other side of the one-way spool. So this valve can't be used in the test.

How to choose cylinder size, pump type, motor power for a 30-ton press?
30 tons = 30,000 kg. It is expected to use a 16 mpa oil pump, then the cylinder area =30000/(160x3.14) and then square, the cylinder bore is 150 mm. Calculated at 500 mm travel per minute, the flow rate per minute is :0.75^2x3.14x5=8.8 liters/minute. Motor power =8.8x16/60=2.355. A 9 L/min, 16 mpa pump is available. Piston diameter 150 mm cylinder. 3 kW motor.

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