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Working principle and process of the 100X remote control float valve

2017-06-06View Original

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This post was last edited by At the foot of Hengshan Slope on 2017-6-8 at 13:41. The 100X remote-controlled float valve is a multi-functional hydraulically operated valve, typically installed at the inlets and outlets of elevated water towers or tanks, and is used primarily for controlling water flow at these inlets and outlets. This valve can be installed at any desired height corresponding to the water level in the tank, and it offers advantages such as reliable sealing, a long service life, easy maintenance and installation, as well as quick and precise operation.   Working principle of the 100X remote-controlled float valve: The 100X remote-controlled float valve is primarily composed of components such as a float valve, main valve, needle valve, ball valve, and micro-filter. Through appropriate design adjustments, this valve is able to automatically control the level of the liquid. This valve can also be used for level control; it can operate without the need for any additional equipment. It offers high accuracy in level control, is easy to maintain and clean, and is not affected by water pressure during operation, boasting quite reliable sealing performance.   The 100X remote-controlled float valve can be equipped with various actuators depending on the operating conditions in different environments, thereby transforming into multiple types of control valves for water pressure regulation ; Ball valves are compact and easy to operate; they can be manufactured in large diameters. Under normal conditions, both the sealing surface and the ball surface remain closed, which prevents erosion by the medium and ensures good sealing performance. The 100X remote-controlled float valve is widely used in various industries, and can be applied in high-rise buildings, water supply systems in residential areas, or for controlling the liquid level in tanks and water towers.   Operating process of the 100X remote-controlled float valve   (1) Opening process   ① Above the closed position, under the mechanical pressure exerted by the valve stem, the ball is pressed tightly against the valve seat ;   ②When the handwheel is turned counterclockwise during operation, the valve stem moves in the opposite direction; this causes the bottom corner of the valve to form a flat surface that allows the ball to disengage from the valve seat ;   ③The continuous upward movement of the valve stem interacts with the pawl located in the spiral groove of the valve stem, allowing the ball to begin rotating without any friction ;   ④When all ball valves are fully opened, the position to which the valve stem rises reaches its extreme limit, and at the same time the ball also rotates to its fully open position.   (2) Closing process   ① To close the ball valve, turn the handwheel clockwise; the position of the valve stem will begin to drop, and as the ball moves away from the valve seat, it will continue to rotate ;   ②After continuously turning the handwheel, the valve stem is acted upon by the check pins embedded in the helical grooves thereon, causing the ball to rotate 90° simultaneously with the valve stem ;   ③When a ball valve is about to close, the ball rotates without making contact with the valve seat, rotating up to 90° ;   ④When the handwheel is turned through the last few turns, the mechanical wedge at the bottom of the valve stem presses the ball tightly against the valve seat, achieving complete sealing.   100X Remote Control Floating Ball Valve Legend

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