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        tilting furnace hydraulic cylinder Sold to New Zealand

        Release time:2023-11-14 08:41:50 Hits: Current position: Home > News

        This article mainly introduces:

        New Zealand hydraulic cylinder,tilting furnace hydraulic cylinder manufacturer,tilting furnace hydraulic cylinder

        New Zealand tilting furnace hydraulic cylinder

        (New Zealand tilting furnace hydraulic cylinder,produced by Hebei Hengyu company)

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

        Introduction to tilting furnace hydraulic cylinder:

        In use, the tilting furnace hydraulic cylinder should try to avoid the friction iron powder or iron filings formed by buffering the plunger. When the matching gap of the buffer device is small and the transverse load on the piston rod is large, the sintering phenomenon may be caused. These friction iron powder or the metal fragments that have fallen off as a result of sintering will remain in the tilting furnace hydraulic cylinder.

        How to repair the tilting furnace hydraulic cylinder body when it is damaged: When the tilting furnace hydraulic cylinder has trace deformation and shallow tensile marks, the tilting furnace hydraulic cylinder is repaired by strong honing process. The heavy honing process can repair tilting furnace hydraulic 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 tilting furnace hydraulic cylinder can meet the technical requirements.

        The meaning of the tilting furnace hydraulic cylinder model marked by the tilting furnace hydraulic cylinder manufacturer: for example, 160/100-1150, its meaning: from a professional point of view, 160 refers to the tilting furnace hydraulic cylinder diameter, which is 160mm, and the 100 behind refers to the rod diameter, which is 100mm. The 1150 refers to the tilting furnace hydraulic cylinder stroke, which is 1150mm. Therefore, on this point, we should have a correct understanding and can not make mistakes.

        The cavitation of the tilting furnace hydraulic cylinder has a great influence, and to avoid it, it is necessary to use the hydraulic oil reasonably and ensure the quality of the hydraulic oil. If the anti-foam property of the oil is poor, it is easy to produce foam, resulting in cavitation. Secondly, the change frequency of oil pressure is too fast and too high, which will also directly cause the formation of bubbles and accelerate the rupture rate of bubbles. The test shows that the speed of cavitation will be accelerated in the part with high frequency of pressure change. For example, at the inlet and outlet of the tilting furnace hydraulic cylinder, due to the relatively high frequency of pressure changes, the degree of cavitation is also relatively higher than that of other parts. In addition, overheating of the oil will also increase the probability of cavitation.

        Answers to some questions about tilting furnace hydraulic cylinder:

        Hydraulic cylinder load algorithm?
        If it is thrust, load = working pressure x piston area. If it is pulling force, load = working pressure x(piston area - piston rod area).

        What is the cause of the deep scratch of the cylinder?
        The following reasons can cause the cylinder to be scratched. 1: Hydraulic oil containing particulate impurities into the hydraulic cylinder, these particulate impurities stuck between the piston rod and the guide ring (or stuck between the piston and the inner wall of the cylinder), when the piston movement in the cylinder will scratch the piston rod, the phenomenon of the inner wall of the cylinder, the more particles, the larger the scratch marks the deeper and more obvious. 2: The body of the cylinder itself. Due to assembly or design reasons, the coaxial error between the piston rod, piston, cylinder, guide ring and other parts is too large, or the cylinder, piston rod straightness error is too large, so that the piston rod and the guide ring interference between the cylinder, this mechanical interference will certainly lose the piston rod or cylinder wall.

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