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        tilting furnace hydraulic cylinder Sold to Uzbekistan

        Release time:2023-11-12 11:05:36 Hits: Current position: Home > News

        This article mainly introduces:

        Uzbekistan hydraulic cylinder,tilting furnace hydraulic cylinder manufacturer,tilting furnace hydraulic cylinder

        Uzbekistan tilting furnace hydraulic cylinder

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

        tilting furnace hydraulic cylinder are widely used in Uzbekistan,because of no transmission clearance,powerful torque,excellent temperature resistance.So our company has designed tilting furnace hydraulic cylinder for customers from Uzbekistan.

        Introduction to tilting furnace hydraulic cylinder:

        When purchasing the tilting furnace hydraulic cylinder, try to clarify the following parameters of the tilting furnace hydraulic cylinder: A. tilting furnace hydraulic cylinder diameter, rod diameter, stroke; B. Working pressure or tilting furnace hydraulic cylinder load; C. Working environment temperature; D. Working medium; E. Operating speed; F. Other parameters, such as connection form, mounting size, etc. In this way, the right tilting furnace hydraulic cylinder type can be found accurately and quickly.

        In the hydraulic system, sometimes the inner layer of the rubber hose is peeled off, so that the oil circuit is on and off, resulting in irregular tilting furnace hydraulic cylinder action. Troubleshooting method: Replace the rubber hose.

        Factors that should be considered when selecting the oil seal in the tilting furnace hydraulic cylinder: some specific factors should be taken into account when selecting the oil seal in the tilting furnace hydraulic cylinder, so as to have correct consideration and get accurate results, and then avoid wrong selection. The factors and aspects that should be taken into account are eight: tilting furnace hydraulic cylinder diameter, piston rod diameter, piston rod and piston groove size, tilting furnace hydraulic cylinder working pressure, tilting furnace hydraulic cylinder movement speed, hydraulic system oil temperature and tilting furnace hydraulic cylinder working environment.

        Under normal circumstances, the tilting furnace hydraulic cylinder is composed of the rear end cover, body, piston, piston rod and front end cover and other main parts. In order to prevent the working medium from leaking out of the tilting furnace hydraulic cylinder or from the high pressure chamber to the low pressure chamber, a sealing device (sealing ring) is arranged between the tilting furnace hydraulic cylinder and the end cover, the piston and the piston rod, the piston and the tilting furnace hydraulic cylinder, the piston rod and the front end cover. A dustproof device is also provided on the outside of the front end cover. In order to prevent the piston from impacting the end cap when it moves rapidly to the end of the stroke, the end of the tilting furnace hydraulic cylinder can also be provided with a buffer device. If necessary, the exhaust device should be set in order to exhaust.

        Answers to some questions about tilting furnace hydraulic cylinder:

        How to calculate hydraulic cylinder thrust?
        Cylinder diameter = piston diameter =200MM Piston area =π (200/2) square =3140 square mm =31.4 square cm 25MPA=250KG/ square cm Maximum thrust = pressure * Piston area =250 *31.4 =7850KG=78500 Newtons This is the maximum thrust. The formula can be derived from the calculation formula.

        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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