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    reset cylinder Sold to Ethiopia

    Release time:2023-12-09 16:24:34 Hits: Current position: Home > News

    This article mainly introduces:

    Ethiopia hydraulic cylinder,reset cylinder manufacturer,reset cylinder

    Ethiopia reset cylinder

    (Ethiopia reset cylinder,produced by Hengyu Hydraulic Co., Ltd)

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

    Introduction to reset cylinder:

    The reset cylinder should not be mixed with foreign objects during assembly, which will cause scars. Before the total assembly of the reset 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 reset cylinder wall due to the stiffness and the weight of the parts, causing scars.

    How the cavitation of the reset cylinder is formed: With the gradual rise of pressure, the gas in the oil will become bubbles, when the pressure rises to a certain limit value, these bubbles will break under the action of high pressure, so that the high temperature and high pressure gas will quickly act on the surface of the parts, resulting in cavitation of the reset cylinder, resulting in corrosive damage to the parts.

    After chrome plating of the piston rod of the reset cylinder, the surface flatness is not fully treated: After chrome plating of the piston rod surface, the method of post-plating polishing should be changed to post-plating polishing. Although it is necessary to increase the thickness of the coating before grinding (generally increased by about 0.02 in the diameter direction), it can remove chrome plating defects well, and test the binding force of the coating. In addition, due to the micro-roughness of the grinding surface, the trough can store lubricating oil, which can improve the wear resistance and extend the service life.

    If the reset cylinder slips or crawls, please check whether there is astringency inside the reset cylinder, because the internal parts of the reset cylinder are improperly assembled, the parts are deformed, worn or the shape and position tolerance is excessive, the action resistance is too large, so that the piston speed of the reset cylinder changes with the different stroke position, and the slip or crawl occurs. Most of the reasons are due to poor assembly quality of parts, surface scars or sintered iron filings, so that the resistance increases, the speed decreases. For example, the piston is different from the piston rod or the piston rod is bent, the reset cylinder or the piston rod is offset from the mounting position of the guide rail, and the sealing ring is too tight or too loose. The solution is to repair or adjust, replace damaged parts and remove iron filings.

    Answers to some questions about reset cylinder:

    How long can a hydraulic cylinder work continuously?
    If the maintenance is good, the service life can be extended a lot. The life of the cylinder is related to the structure of the cylinder, working pressure, stress state, hydraulic oil cleanliness, oil temperature control, maintenance and preventive measures. For example, the cylinder structure, the inner wall of the cylinder has quilting, rolling, chrome plating and other methods, the sealing parts have polyurethane rings, glay rings, metal sealing rings, etc., different combinations, the life difference is dozens of times. Metallurgical system is a typical cylinder application, in 24 hours of work, a year or more can not be shut down, in the middle of continuous work.

    About the hydraulic cylinder wall thickness problem?
    Hydraulic cylinder wall thickness calculation formula: t=PD/200St= pipe wall thickness (minimum thickness) mmP= maximum pressure kg/cm2? d= inner diameter mm? S=δ/5 safety factor δ= minimum tensile strength This case: set the cylinder material 45#, tensile strength 58kg/cm2t=(640X40)/(200X11.6)t=11mm piston output (i.e. Thrust) calculation formula: F1=PD2X(3.14/4)F1=640X42X0.785=8,038kg Note: Square numbers will not be used, all 2's in the text are square codes.

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