The present invention relates to a water hammer absorption device, mainly using a non-return diaphragm on the side of the device where the high-pressure air is injected, so as to simplify the structure of the water hammer absorption device and achieve the manufacturing and using convenience.
In the pressure pipeline, due to the change of the liquid flow rate, the liquid pressure in the pipe has significant and repeated changes, and the hammering phenomenon occurs on the pipeline. Since the pressure in the pipeline is increased, it will exceed the normal pressure in the pipe, and the repeatedly changed pressure forms the pulse with damaging force, which causes vibration and noise in the pipeline and equipment.
To solve the above noise and vibration problems, one side of the inlet pipe is equipped with a water hammer absorber, the structure of which fundamentally has a hollow pipe body, piston, joint and cover.
Upon manufacturing, the piston is assembled with the hollow pipe body, and the joint and cover are next respectively provided on the two ends of the hollow pipe body. Furthermore, the joint is used to install the water hammer absorber on an inlet pipe; one end of the cover is further provided with an air nozzle, which can be operated in coordination with a spring to inject high pressure air into the hollow pipe body from one side of the air nozzle. When the high-pressure air is removed from one side of the air nozzle, the spring rebounds to close the air nozzle.
However, the conventional product has the following disadvantages:
The main object of the present invention is to provide a water hammer absorption device, using a non-return diaphragm to replace the original air nozzle, allowing the water hammer absorption device to have no a exposed air nozzle, and preventing operation collision to damage. In addition, the non-return diaphragm is low in cost and easy in assembly, and can greatly simplify the structure of the water hammer absorption device.
To achieve the above object, the present invention proposes a water hammer absorption device, provided with a movable water plug slidable inside a water hammer pipe, both ends of the water hammer pipe respectively in connection with a joint and cover, the joint adapted to be connected with a connecting pipe, and the cover closing the water hammer pipe, characterized in that: a bottom wall is provided inside the side of the water hammer pipe opposite to the joint, the bottom wall is provided with a mounting hole and a plurality of filling holes, a non-return diaphragm is assembled inside the water hammer pipe, the non-return diaphragm is adapted to shield the filling holes of the bottom wall of the water hammer pipe, and the non-return diaphragm is provided with a rod configured in the mounting hole; high-pressure air is removed after injected into an internal space of the water hammer pipe, allowing high pressure to be generated inside the water hammer pipe, and the non-return diaphragm to attach to and cover the bottom wall and the plurality of filling holes, preventing the high-pressure air from leaking out, and closing the side of the water hammer pipe having non-return diaphragm through the cover, thereby strengthening the airtightness of the internal space.
According to the device mentioned above, the movable water plug is sleeved with a plurality of water-stop rubber rings.
According to the device mentioned above, the joint is connected to the water hammer pipe by means of rotary welding, welding or screwing.
According to the device mentioned above, the joint is provided with a turn part allowing the joint to be turned to fix to the connecting pipe with a wrench or tool.
The present invention further proposes a method for manufacturing the water hammer absorption device, including the following steps:
The present invention has the following advantages compared to the prior art:
Referring to
According to the present invention, the movable water plugs 20, in a preferred embodiment, is further sleeved with several water-stop rubber rings 21 used to increase the airtightness of the internal space of the water hammer tube 10.
Furthermore, the joint 30, cover 40 of the present invention, according to the material of the water hammer pipe 10, may be connected to the water hammer pipe by means of rotary welding (plastics), welding (metal material), or screwing (physical connection).
Furthermore, the joint 30 of the present invention may be a structure with internal threads or external threads, or it may be provided with a turn part 31, which makes it convenient to be turned with a tool or wrench.
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The above is the introduction of each part of the present invention, and the following will introduce the assembly method of the present invention and the advantages that can be obtained:
With the design of the present invention, using the non-return diaphragm to replace the original air nozzle allows the water hammer absorption device to have no exposed air nozzle, thereby preventing operation collision to damage. In addition, the non-return diaphragm is low in cost and easy in assembly, and can greatly simplify the structure of the water hammer absorption device.