The present utility model relates to an electromechanical valve for gas meter, more specifically, the present utility model mainly relates to a bidirectional blockage-free gear-driven shutoff valve for gas meter purpose.
The shutoff valve of intelligent gas meter, as the control unit of intelligent gas meter, can manage and control the gas of user by open/close of shutoff valve. In intelligent gas meter, the shutoff valve will close and alarm in cases of using up of pre-ordered gas, no power of battery, metering performance of gas meter interfered by strong magnetic field, lower pressure of gas meter, abnormal large and small flow leak, and using gas for too long time etc. when communicating with seismic sensor and gas leak alarm, the intelligent gas meter can realize the functions of seismic and gas leak alarm to ensure user safety; the gas will be normally supplied after fault is corrected. It helps families and enterprises manage their own use of gas, prevents emergency and big bills, not only ensure the normal gas supply and gas safety for user, but also avoid loss of gas company. In intelligent gas meter, the intelligent gas meter is terminal sensor and shutoff valve is the core control unit, the open/close of shutoff valve is controlled by information exchange of sensor, so as to ensure the convenient, correct and safe use of gas for user and correct, reliable and controllable sale of gas for gas company.
The shutoff valves of intelligent gas meter currently available in market are mainly of screw drive type and worm drive type. The screw drive shutoff valve controls its open/close by using motor rotation shaft to pass the kinetic energy to drive screw and push the drive nut and sealing cap to move; the worm drive shutoff valve controls its open/close by using motor rotation shaft to pass the kinetic energy to drive worm and push the drive nut and sealing cap to move. Both shutoff valves have disadvantages such as excess current of switching valve, short service life and unreliability of switching valve, which cause unreliable valve control of intelligent gas meter, inconvenience and potential risk for user and loss for gas company. Therefore, it is necessary to further improve the structure of shutoff valve for intelligent gas meter.
One purpose of the invention is to provide a bidirectional blockage-free gear-driven shutoff valve for gas meter purpose to overcome the advantages mentioned above, so as to solve technical problems in existing technologies including that anti-locked rotation structure of drive gear in electromechanical valve cannot fully realize bidirectional unloading and motor coil tends to be corroded by natural gas.
To solve the aforementioned technical problems, the invention adopts the following technical proposals:
The bidirectional blockage-free gear-driven shutoff valve for gas meter purpose provided by the invention includes outer housing in which inner housing is installed; the motor, a gear box and a valve rod are installed inside of the inner housing; one end of the valve rod is equipped with sealing cap, another end is equipped with connecting hole; input gear, output gear and driving gear are installed in the gear box; the output shaft of the motor is coupled to the input gear which is dynamically connected to output gear through multi-stage drive gears, which is used to increase and transmit the power of input gear to output gear through multiple drive gears; the output gear is also dynamically connected to driving gear through drive shaft; a ratchet duplex gear and a incomplete gear are installed in the gear box; the ratchet duplex gear is meshed with driving gear and incomplete gear respectively; the incomplete gear is equipped with eccentric shaft which inserts into the connecting hole at the end of valve rod; locking piece is also installed in the gear box; the locking piece is engaged with ratchet duplex gear, which is used to prevent reverse rotation of ratchet duplex gear; reset device is installed on both locking piece and incomplete gear.
For optimization, the further technical proposal is: the motor is sealed and installed inside of the inner housing and top cap is seal-installed with the gear box, and the top cap is sealed on gear box; the drive shaft is seal-connected to the driving gear.
Further on technical proposal is: the motor is static seal-connected to the inside of the housing by seal ring.
Further on technical is: the output shaft of the motor extends into a gear box and a seal ring is installed between output shaft of motor and gear box; the drive shaft is installed on the top cap of gear box by seal ring and dynamically connected to driving gear.
Further on technical proposal is: the ratchet duplex gear consists of ratchet fixed on the gear; the locking piece is engaged with ratchet which is meshed with incomplete gear and driving gear respectively.
Further on technical proposal is: the ratch on the ratchet inclines counter-clockwise, which allows it only to rotate clockwise after engaged with locking piece.
Further on technical proposal is: the reset device installed on the locking piece and incomplete gear is torsion spring, which is used to keep the locking piece engaged with ratchet duplex gear and make the incomplete gear automatically reset under non-meshed state.
Compared to current technologies, one of the advantages of the invention is: the motor adopts static seal ring and reinforced dynamic seal, which completely seal the motor in outer housing to avoid corrosion of motor coil by natural gas and improve the safety of electromechanical valve; a ratchet duplex gear is added in gear box to coordinate with locking and unlocking of incomplete gear and locking piece; it can be completely unloaded during positive and negative rotation of motor and eliminate locked rotation during open and close of valve; therefore, it improves the use reliability of electromechanical valve, reduces the energy consumption of electromechanical valve and increases its service life; meanwhile, the bidirectional blockage-free gear-driven shutoff valve for gas meter purpose provided by the invention has simple structure and can be widely installed and applied on gas meters of various structures.
Where, 1-motor, 2-gear box, 21-input gear, 22-output gear, 23-driving gear, 24-driven gear, 25-drive shaft, 26-ratchet duplex gear, 27-incomplete gear, 271-eccentric shaft, 28-locking piece, 29-reset device, 3-valve rod, 31-sealing cap, 32-connecting hole, 4-inner housing, 5-seal ring, 6-gas inlet.
Here is further description of the invention in combination with the figures.
As shown in
On this basis, a ratchet duplex gear and an incomplete gear need to be installed in the gear box; the ratchet duplex gear is meshed with driving gear and incomplete gear respectively; the incomplete gear is equipped with eccentric shaft which inserts into the connecting hole at the end of valve rod; locking piece is also installed in the gear box; the locking piece is engaged with ratchet duplex gear, which is used to prevent reverse rotation of ratchet duplex gear; reset device is installed on both locking piece and incomplete gear.
In this embodiment, the motor drives input gear to rotate; the input gear is meshed with multiple drive gears to increase the torque of motor output shaft and transmit the torque to output gear which transmits the torque to driving gear through drive shaft; as the driving gear drives ratchet duplex gear to rotate, the ratchet duplex gear drives incomplete gear to rotate; when the incomplete gear rotates, eccentric shaft can drive valve rod to move forward and backward; in order to ensure the linear displacement of valve rod by circumferential movement of eccentric shaft, the connecting hole at the end of valve rod may be strip-type hole to allow eccentric shaft move in strip-type hole; when the incomplete gear rotates to gearless position, the locking piece engaged with ratchet duplex gear can prevent it reversely rotating caused by reset device; so the locking piece is engaged with incomplete gear to maintain the current state of valve rod.
In another embodiment of the invention, in order to prevent corrosion of lines in shutoff valve caused by natural gas, it is better to seal the motor inside of the inner housing and add top cap on gear box, the top cap shall be sealed on gear box. The drive shaft is seal-connected to the driving gear. Furthermore, as shown in figures, the inventor believes the better technical proposal of preventing corrosion of motor interior by gas is to statically and install the motor inside of the inner housing by seal ring on the basis of method mentioned above; extend the output shaft of motor into gear box and install seal ring between output shaft of motor and gear box; the drive shaft is enforced and installed on the top cap of gear box by seal ring and dynamically connected to driving gear.
As mentioned above, the ratchet duplex gear is meshed with locking piece by using structural principle of ratchet, and make the ratch on ratchet incline counter-clockwise, so as to achieve the purpose of “clockwise rotation between ratchet duplex gear and locking piece is unblocked and counter-clockwise rotation is engaged”; however, the gear integrated with ratchet is restrained by ratchet, when it is meshed with incomplete gear and driving gear respectively, i.e. the positive rotation of incomplete gear is unblocked and reverse rotation is engaged, so as to prevent the reverse rotation of the incomplete gear.
As shown in
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Likewise, as shown in
In addition, it is necessary to notice that the words such as “one embodiment”, “another embodiment” and “embodiment” mentioned in this manual mean that the specific feature, structure or characteristic related to the embodiment are included in at least one of embodiments briefly described in this application. The same word mentioned in several parts of this manual does not necessarily refer to the same embodiment. Furthermore, the scope of the invention also includes: when one specific feature, structure or characteristic is described with any embodiment, the purpose is to realize such feature, structure or characteristic with other embodiments.
Although the present utility model has been described by referencing to several explanatory embodiments of the present utility model, It should be understood that various modifications and embodiments can be designed by those skilled in the art, and those modifications and embodiments are within the principle scope and spirit of the disclosure of the present application. More specifically, within the scope of the disclosure and the figures, as well as the claims of the present application, various alterations and improvements can be made for the components and/or the layouts of the combined layout of the subject matter. The other usages of the present utility model would be apparent for those skilled in the art, in addition to the alterations and the improvements of the component and/or the layout.
Number | Date | Country | Kind |
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201320496858.2 | Aug 2013 | CN | national |