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        tilting furnace hydraulic cylinder Sold to Peru

        Release time:2023-11-12 15:27:46 Hits: Current position: Home > News

        This article mainly introduces:

        Peru hydraulic cylinder,tilting furnace hydraulic cylinder manufacturer,tilting furnace hydraulic cylinder

        Peru tilting furnace hydraulic cylinder

        (Peru tilting furnace hydraulic cylinder,produced by Hengyu Group)

        tilting furnace hydraulic cylinder are widely used in Peru,because of excellent fatigue and impact resistance,smooth movement,high work efficiency.So our company has designed tilting furnace hydraulic cylinder for customers from Peru.

        Introduction to tilting furnace hydraulic cylinder:

        The difference between the integral tilting furnace hydraulic cylinder and the split tilting furnace hydraulic cylinder: The integral tilting furnace hydraulic cylinder and the split tilting furnace hydraulic cylinder in the tilting furnace hydraulic cylinder are two different tilting furnace hydraulic cylinders, and they are very different. The whole tilting furnace hydraulic cylinder, which is cast in one body, is not prone to problems such as oil leakage; The split tilting furnace hydraulic cylinder is welded twice, so if it is not handled well at the welding, it is prone to problems such as oil leakage and tilting furnace hydraulic cylinder damage. Therefore, it is obvious that the answer to this question is for difference.

        The tilting furnace hydraulic cylinder should not be mixed with foreign objects during assembly, which will cause scars. Before the total assembly of the tilting furnace hydraulic cylinder, all parts must be fully removed and cleaned. When the parts are installed with burrs or dirt, foreign objects are easily embedded into the surface of the tilting furnace hydraulic cylinder wall due to the stiffness and the weight of the parts, causing scars.

        The repair method of tilting furnace hydraulic cylinder wear: 1. Metal repair material is applied to the scratched surface; The first layer should be thin, uniform and fully covered with the scratched surface to ensure the best adhesion between the material and the metal surface, and then apply the material to the entire repair site and press repeatedly to ensure that the material is filled and reaches the required thickness, so that it is slightly higher than the surface of the guide rail; 2, the material at 24℃ to fully achieve the performance of 24 hours, in order to save time, can be through the tungsten halogen lamp to increase the temperature, the temperature rises 11℃, the curing time will be reduced by half, the best curing temperature 70℃; 3. After the material is cured, use a fine grinding stone or a scraper to repair and smooth the material higher than the surface of the guide rail, and the construction is completed.

        The internal leakage of the tilting furnace hydraulic cylinder should be prevented when the tilting furnace hydraulic cylinder is used. The internal leakage of tilting furnace hydraulic cylinder includes the leakage caused by excessive wear of tilting furnace hydraulic cylinder block seal, piston rod and seal cover seal and piston seal. The cause of sealing leakage between the piston rod and the seal cover is that the seal is wrinkled, squeezed, torn, worn, aging, deterioration, deformation, etc., and a new seal should be replaced at this time.

        Answers to some questions about tilting furnace hydraulic cylinder:

        What is the pressure provided for a 63-bore cylinder with a pressure of 2 mpa?
        2 mpa pressure is equivalent to 20 kg per square centimeter, 6.3 cm straight longitude, 3.15 cm radius, square, multiplied by, calculated an area of about 31.5 square centimeters, multiplied by 20 kg, the pressure is about 630 kg.

        How to calculate the hydraulic cylinder pressure? How much pressure can put up how much weight?
        If you want to calculate the pressure of the cylinder, you must know the inner diameter of the cylinder, if the piston rod is needed to lift the weight, it should be: cylinder (no piston rod end) pressure = load (4000N) ÷{(PI /4)X the square of the cylinder diameter (mm) ", it has nothing to do with the piston rod diameter, the rod diameter of the piston rod is only related to the stability of the cylinder. The pressure inside the cylinder should be p=F/S=400×10/(3.14×(0.5×25)×(0.5×25))=8.15MPa which means that you need to provide at least that much pressure to complete the operation.

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