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        displacement sensor cylinder Sold to Nigeria

        Release time:2023-11-12 15:31:59 Hits: Current position: Home > News

        This article mainly introduces:

        Nigeria hydraulic cylinder,displacement sensor cylinder manufacturer,displacement sensor cylinder

        Nigeria displacement sensor cylinder

        (Nigeria displacement sensor cylinder,produced by Hengyu Hydraulic Cylinder Factory)

        displacement sensor cylinder are widely used in Nigeria,because of no need for deceleration device,long service life,smooth movement.So our company has designed displacement sensor cylinder for customers from Nigeria.

        Introduction to displacement sensor cylinder:

        How to determine the working pressure of the displacement sensor cylinder: The pressure depends on the load size (i.e., F) and the type of equipment. The limitations of assembly space, economic conditions and component availability of the actuator should also be considered. In the case of a certain load, it is necessary to increase the structural size of the actuator if the working pressure is low, for some equipment, the size may be limited, and it is not economical from the point of view of material consumption; On the contrary, if the pressure selection is too high, the material, sealing and manufacturing accuracy of the pump, displacement sensor cylinder, valve and other components are also required to be high, which will inevitably increase the cost of equipment. In general, for equipment with a fixed size that is not too limited, the pressure can be selected lower, and the walking machinery should be selected higher.

        How to repair the displacement sensor cylinder body when it is damaged: When the displacement sensor cylinder has trace deformation and shallow tensile marks, the displacement sensor cylinder is repaired by strong honing process. The heavy honing process can repair displacement sensor cylinders up to 2.5 times out of tolerance than the original tolerance. It honed the parts with excessive size or shape error through a powerful honing machine, so that the overall size, shape tolerance and roughness of the displacement sensor cylinder can meet the technical requirements.

        displacement sensor cylinder buffer valve inspection and maintenance: For the valve buffer displacement sensor cylinder, the focus should be on checking the wear of the buffer valve spool and seat. Once it is found that the amount of wear increases and the seal fails, it should be replaced. It can also be repaired by using abrasive spool and seat matching grinding method.

        When the displacement sensor cylinder is installed, it is necessary to ensure that the direction of the connecting head at the top of the piston rod should be consistent with the direction of the displacement sensor cylinder head, earring (or middle hinge shaft), and ensure the straightness of the whole piston rod during the advance and return process to prevent rigid interference and cause unnecessary damage.

        Answers to some questions about displacement sensor cylinder:

        How does the cylinder work?
        Hydraulic transmission principle: oil as the working medium, through the change of the sealing volume to transfer movement, through the internal pressure of the oil to transfer power. 1. The power part - converts the mechanical energy of the prime mover into the pressure energy of the oil (hydraulic energy). For example: hydraulic pump. 2, the executive part - the hydraulic pump input oil pressure energy into the mechanical energy to drive the working mechanism. For example: hydraulic cylinder, hydraulic motor. 3, the control part - used to control and adjust the oil pressure, flow and flow direction. For example: pressure control valve, flow control valve and direction control valve. 4, the auxiliary part - the first three parts are connected together to form a system, which plays the role of oil storage, filtration, measurement and sealing.

        In a hydraulic system, a hydraulic pump has many hydraulic cylinders and hydraulic motors, and these executive components do not coordinate their actions with each other.
        A load-sensitive variable pump can be used if these components sometimes need to work simultaneously and the power required is large. The required flow is distributed by the multi-way reversing valve, and the required flow and pressure changes are automatically adjusted by the hydraulic pump. Pressure reducing valves can be used for particularly low pressure circuits. Because you execute more components, the use of quantitative pump will cause a waste of energy, the system heat is large, not suitable.

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