CN210703479U - Assembly machine for installing gas meter control valve coordinate plate - Google Patents

Assembly machine for installing gas meter control valve coordinate plate Download PDF

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Publication number
CN210703479U
CN210703479U CN201921311109.1U CN201921311109U CN210703479U CN 210703479 U CN210703479 U CN 210703479U CN 201921311109 U CN201921311109 U CN 201921311109U CN 210703479 U CN210703479 U CN 210703479U
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China
Prior art keywords
plate
bottom plate
coordinate
control valve
gas meter
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CN201921311109.1U
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Chinese (zh)
Inventor
杨磊
朱建荣
闵欢
熊志猛
杨怀深
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Goldcard Smart Group Co Ltd
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Goldcard Smart Group Co Ltd
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Abstract

The utility model discloses an assembly machine for installing a gas meter control valve coordinate plate, wherein the coordinate plate comprises a bottom plate and a coordinate axis connected with the bottom plate; the assembly machine comprises a platform, a first storage device used for conveying the bottom plate, a second storage device used for conveying the coordinate axis, a positioning device used for pressing the bottom plate and pressing the coordinate axis downwards to the press fitting device on the bottom plate and used for positioning the bottom plate to the lower side of the press fitting device, and the first storage device and the second storage device are both arranged on the platform. The utility model discloses gas table control valve coordinate board's assembly machine has replaced the traditional manual pressure equipment of coordinate board, has realized automatic pressure equipment, has solved because manual placing, and pressure equipment in-process uniformity is poor, and the low and unstable problem of product quality of production efficiency improves the security of pressure equipment process simultaneously.

Description

Assembly machine for installing gas meter control valve coordinate plate
Technical Field
The utility model belongs to the technical field of the valve is made, especially, relate to an assembly machine for installing gas table control valve coordinate board.
Background
The gas meter control valve is used for controlling the gas circulation of the gas meter to be opened and closed, along with the increasing popularization of intelligent meters, the requirement on the control valve is higher and higher, if the valve cannot be closed in the using process, a user side can use gas without paying, and when a gas company detects the fact that gas is supplied, loss can be caused to the gas company. The control valve mainly comprises motor, reduction gears, rubber, main part frame, and general motor speed is high, and unable direct use needs to pass through reduction gears, after reducing the rotational speed, reuses, the valve of production on the existing market, coordinate board subassembly mainly act on gear reduction, and the coordinate axis on the coordinate board is usually placed the coordinate axis by the manual work, places the completion back, presses start button and carries out the pressure equipment, and the back is accomplished in the pressure equipment, and the manual coordinate board subassembly that takes out.
The valve of production in the existing market, coordinate board subassembly mainly act on gear reduction, and the coordinate axis on the coordinate board adopts manual pneumatics pressure equipment basically, because manual placing, the pressure equipment in-process uniformity is poor than full automatization, also has certain danger in the pressure equipment in-process, and production efficiency is low and product quality is unstable.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an overcome prior art not enough, provide an practice thrift artifical, production efficiency is high and be used for installing the assembly machine of gas table control valve coordinate board.
In order to achieve the above purpose, the utility model adopts the following technical scheme: an assembly machine for installing a gas meter control valve coordinate plate comprises a bottom plate and a coordinate axis which is connected with the bottom plate; the assembly machine comprises a platform, a first storage device used for conveying the bottom plate, a second storage device used for conveying the coordinate axis, a positioning device used for pressing the bottom plate and pressing the coordinate axis downwards to the press fitting device on the bottom plate and used for positioning the bottom plate to the lower side of the press fitting device, and the first storage device and the second storage device are both arranged on the platform.
The utility model discloses a pressure equipment device, positioner can realize that it is automatic to fix the coordinate axis on the bottom plate, need not manual operation to the coordinate axis in this in-process, consequently not only reduced the intensity of artificial work in the course of working to need not manual operation, can process for a long time, it carries out the efficient of processing to bottom plate and coordinate axis, and stability is high after the installation.
Preferably, a feeding structure for conveying the bottom plate to the position below the press-fitting device is arranged on the platform, and the positioning device is arranged on one side of the feeding structure; the feeding structure is arranged, so that the bottom plate can be conveniently conveyed, automatic feeding is realized, and the processing efficiency is high.
Preferably, the press-fitting device comprises a pressing plate member for pressing the bottom plate, a pushing plate member arranged above the pressing plate member, and a press-fitting cylinder for pressing the coordinate axis downwards, wherein the press-fitting cylinder is arranged above the pushing plate member.
Preferably, the press-fitting device further comprises a first driving structure for driving the pressing plate to move up and down to press the bottom plate and a second driving structure for driving the pressing plate to move back and forth.
Preferably, the first driving structure comprises a supporting plate and a driving cylinder for driving the supporting plate to move up and down, and the pressing plate is arranged on the supporting plate.
Preferably, the second driving structure comprises a track arranged on the supporting plate, a sliding block matched with the track and a power cylinder for pushing the sliding block to move back and forth along the length direction of the track, and the push plate is arranged on the sliding block; the push plate piece can move back and forth smoothly and stably conveniently by arranging the track and the sliding block.
Preferably, the positioning device comprises a positioning part for limiting the bottom plate, a first cylinder body for driving the positioning part to move left and right, a plate body for supporting the first cylinder body and a second cylinder body for driving the plate body to move front and back, and the second cylinder body is arranged on the platform.
Preferably, one end of the positioning piece is provided with a plurality of positioning grooves which can be sleeved on the bottom plate; the positioning groove is arranged to be capable of being sleeved into the bottom plate, so that the bottom plate can be positioned by the positioning piece, the side wall of the positioning groove limits the bottom plate, the positioning effect is good, and each bottom plate can accurately move to the position under the pushing piece.
Preferably, a first convex rail is arranged on the plate body, and a first movable block matched with the first convex rail is arranged on the bottom plate; through setting up first protruding rail and first movable block, it supports the setting element to the guarantee setting element process of making a round trip is more smooth and easy.
Preferably, a second convex rail is arranged on the platform, and a second movable block matched with the second convex rail is arranged on the plate body; the second convex rail and the second movable block can ensure that the resistance received by the plate body is small when the plate body moves back and forth, and the plate body is stable and does not shake in the moving process.
In summary, the utility model discloses automatic coordinate board pressure equipment has replaced traditional manual pressure equipment, because manual placing, the uniformity is poor than full automatization in the pressure equipment process, also has certain danger in the pressure equipment process, and production efficiency is low and product quality is unstable; automatic pressure equipment, pressure equipment process need not artifical guard, and the material personnel only need the material loading, and the finished product is received the material can, and pressure equipment speed is faster than artifical, greatly improves production efficiency, has reduced the cost of enterprises.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the press-fitting device of the present invention.
Fig. 3 is a schematic structural diagram of the positioning device of the present invention.
Fig. 4 is a schematic structural diagram of the coordinate plate of the present invention.
Detailed Description
In order to make the technical field personnel understand the utility model discloses the scheme, will combine the drawing in the embodiment of the utility model below, to the technical scheme in the embodiment of the utility model carries out clear, complete description.
As shown in fig. 1 to 4, an assembling machine for mounting a gas meter control valve coordinate plate, wherein the coordinate plate comprises a bottom plate 9 and coordinate axes 91, wherein the bottom plate 9 is a plastic plate, the coordinate axes 91 are metal axes, the number of the coordinate axes 91 is three, one bottom plate 9 is provided with three coordinate axes 91, and the coordinate axes 91 are vertically inserted on the bottom plate 9. The assembly machine is used for actively inserting the coordinate axis 91 into the bottom plate 9; the assembling machine comprises a platform 1, a first material storage device 3, a second material storage device 4, a press-fitting device 8, a positioning device 7 and a feeding structure 6, wherein the platform 1 is a metal platform, and the first material storage device 3, the second material storage device 4, the press-fitting device 8, the positioning device 7 and the feeding structure 6 are all arranged on the platform 1; the first storing device 3 is used for storing the bottom plates 9, and orderly arranging and automatically feeding the bottom plates 9; the first storage device 3 comprises a vibration disc 31 and a spiral track 32, wherein the vibration disc 31 is a metal disc, the vibration disc 31 can vibrate, the spiral track 32 is a track fixed on the inner wall of the vibration disc, and when the vibration disc 31 vibrates, the bottom plates 9 gradually move outwards one by one along the spiral track 32; the feeding structure 6 is a concave rail fixed on the platform 1, one end of the concave rail is communicated with the spiral track 32, and the other end of the concave rail is partially inclined from top to bottom so as to facilitate the falling of the bottom plate 9; the bottom plate 9 is placed in the vibration disc 3, the vibration bottom plate 4 is sequentially arranged out of the vibration disc 3 and flows into the concave rail, and the direction is consistent in the arrangement process of the bottom plate 9, so that automatic press fitting is facilitated.
Further, the second material storage device 4 is used for storing a coordinate axis 91, the second material storage device 4 is a coordinate axis vibration disc connected with a material track, and the coordinate axis 91 vibration disc can convey the coordinate axis to the press-fitting device 8.
Specifically, a pushing component for pushing the bottom plate 9 is arranged on the platform 1, the pushing component comprises a pushing plate 21 and a pushing cylinder 22, the pushing plate 21 is a metal plate, the pushing cylinder 22 is a conventional cylinder, and after the bottom plate 9 gradually moves to the concave rail, the pushing cylinder 22 intermittently works to push the bottom plate 9 to move; when the bottom plate 9 flows into the concave rail, the vibration disc 31 vibrates to sequentially push the bottom plate 9 to the front of the pushing plate 21, after the next bottom plate 9 is taken away by the positioning mechanism 6, a signal is automatically sent to the pushing cylinder 22 through the sensor, and the pushing cylinder 22 pushes the bottom plate 9 in front into a fixed position of the positioning device; meanwhile, a material selecting part is arranged at the other end adjacent to the concave rail and is positioned at one side of the concave rail, the material selecting part comprises a cylinder 101 and a material selecting push plate 10, and an output shaft of the cylinder 101 is connected with the material selecting push plate 10; and one side of the concave rail is provided with a notch, and when the coordinate plate after being installed is unqualified, the coordinate plate can be pushed out from the notch by the material selecting push plate 10.
The press-fitting device 8 is used for pressing the bottom plate 9 and pressing the coordinate axis 91 down onto the bottom plate 9; the press-fitting device 8 comprises a press-fitting part 81, a press-fitting plate 82, a press-fitting air cylinder 84, a first driving structure and a second driving structure, wherein the press-fitting part 81 is an inverted L-shaped metal strip, the first driving structure drives the press-fitting part 81 to move up and down to press the bottom plate 9, the first driving structure comprises a supporting plate 85 and a driving air cylinder 86, the driving air cylinder 86 is a conventional air cylinder in the market, and the driving air cylinder 86 is installed on the platform 1; the support plate 85 is a metal plate, the support plate 85 is connected to the shaft of the driving cylinder 86, and the pressure plate member 81 is fixed to one end of the support plate 85; therefore, the driving cylinder 86 pushes the supporting plate 85 to move up and down, so as to drive the pressing plate 81 to move up and down.
Further, the pushing plate member 82 is a metal plate located above the pressing plate member 81, the pushing plate member 82 is provided with three shaft holes 820, and the coordinate axis 91 can be inserted into the shaft holes 820; the second driving structure is used for driving the pushing plate 82 to move back and forth, the second driving structure comprises a rail 87, a sliding block 88 and a power cylinder 89, the power cylinder 89 is a conventional cylinder, and the power cylinder 89 is connected with one end of the pushing plate 82, so that the power cylinder 89 drives the pushing plate 82 to work back and forth; the rail 87 is a convex rail, the rail 87 is fixed on the support plate 85, the sliding block 88 is a metal block, and the sliding block 88 is sleeved on the rail 87; the sliding block 88 is connected with the pushing plate part 82; the press-fitting cylinder 84 is a conventional cylinder, and the press-fitting cylinder 84 is arranged above the press-fitting plate 81; the press-fitting cylinder 84 is used to press down the coordinate axes 91 so that the coordinate axes 91 are inserted into the base plate 9 to constitute a coordinate plate.
The movement of the bottom plate press-fitting mechanism 8 indicates that the driving cylinder 86 pushes upwards, the supporting plate 85 is lifted, and when the pushing plate 82 returns to the initial state, three coordinate axes on the coordinate axis separating plate fall into the pushing plate 82. When the bottom plate 9 is pushed to the position right below the pressing plate 81, the driving cylinder 86 is pulled downwards, the pressing plate 81 compresses the bottom plate, the power cylinder 89 pushes the pressing plate 82, when the pressing plate 82 is overlapped with the coordinate axis fixing plate, three coordinate axes on the pressing plate 82 fall into the pressing plate 81, after falling, the power cylinder 89 pulls back to restore the initial state of the pressing plate 82, the pressing cylinder 84 presses downwards to press the coordinate axes into the bottom plate for automatic pressing, after the pressing, the driving cylinder 86 pushes upwards to complete the whole pressing action, the coordinate plate is moved out by the positioning device 7, and the actions are repeated.
Specifically, the positioning device 7 is used for positioning the bottom plate 9 to a position below the press-fitting device 8; the positioning device 7 comprises a positioning member 71, a first cylinder 73, a plate 75 and a second cylinder 74, wherein the positioning member 71 is a metal plate, one end of the positioning member 71 is provided with a plurality of positioning grooves 710, the width of the positioning grooves 710 is slightly larger than that of the bottom plate 9, and the positioning member 71 can move back and forth and left and right; the first cylinder 73 is an air cylinder, the first cylinder 73 is connected with the positioning member 71, and the first cylinder 73 drives the positioning member 73 to move left and right; the plate body 75 is a metal plate, the first cylinder 73 is arranged on the plate body 75, a first convex rail 751 is arranged on the plate body 75, the first convex rail 751 is a metal rail, the positioning member 71 is connected with a first movable block 711, the first movable block 711 is sleeved on the first convex rail 751, and the first movable block 711 moves along the first convex rail 751.
Further, the second cylinder 74 is an air cylinder, the second cylinder 74 drives the plate 75 to move forward and backward, and the second cylinder 74 is connected to the plate 75; a second convex rail 11 is arranged on the platform 1, the second convex rail 11 is a metal rail, and the plate body 75 is provided with a second movable block 752; the second movable block 752 is inserted into the second protruding rail 11, so that the plate 75 moves along the length direction of the second protruding rail 11.
When the positioning device 7 works, the second cylinder 74 is pulled backwards, the plate body 75 moves backwards, the bottom plate assembly is separated from the positioning piece 71, the first cylinder 73 is pushed leftwards, the positioning piece 71 moves leftwards, and after the positioning piece is in place, the second cylinder 74 pushes forwards to enable the positioning piece 71 to move forwards and insert into the bottom plate, the first cylinder 73 is pulled rightwards to move the bottom plate, when the bottom plate moves to the position under the pressing plate 81, the pressing plate 81 starts to be pressed, and after the pressing is completed, the second cylinder 74 is pulled backwards to repeat the actions.
It is obvious that the described embodiments are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts shall belong to the protection scope of the present invention.

Claims (10)

1. An assembling machine for installing a gas meter control valve coordinate plate, wherein the coordinate plate comprises a bottom plate (9) and a coordinate axis (91) connected with the bottom plate (9); the method is characterized in that: the assembly machine comprises a platform (1), a first material storage device (3) for conveying the bottom plate (9), a second material storage device (4) for conveying a coordinate axis (91), a positioning device (7) for pressing the bottom plate (9) and the coordinate axis (91) downwards pressing the coordinate axis (91) to the press fitting device (8) on the bottom plate (9) and the positioning device, wherein the bottom plate (9) is arranged on the positioning device (7) below the press fitting device (8), and the first material storage device and the second material storage device are both arranged on the platform (1).
2. The assembling machine for installing a gas meter control valve coordinate plate as claimed in claim 1, wherein: the platform (1) is provided with a feeding structure (6) used for conveying the bottom plate (9) to the lower part of the press mounting device (8), and the positioning device (7) is arranged on one side of the feeding structure (6).
3. The assembling machine for installing a gas meter control valve coordinate plate as claimed in claim 2, wherein: the press fitting device (8) comprises a pressing plate piece (81) for pressing the bottom plate (9), a pressing plate piece (82) arranged above the pressing plate piece (81), and a press fitting cylinder (84) for pressing down the coordinate axis (91), wherein the press fitting cylinder (84) is arranged above the pressing plate piece (82).
4. An assembling machine for installing a gas meter control valve coordinate plate according to claim 3, characterized in that: the press-fitting device (8) further comprises a first driving structure for driving the press-fitting component (81) to move up and down to press the bottom plate (9) and a second driving structure for driving the press-fitting component (82) to move back and forth.
5. The assembling machine for installing the gas meter control valve coordinate plate as claimed in claim 4, wherein: the first driving structure comprises a supporting plate (85) and a driving cylinder (86) used for driving the supporting plate (85) to move up and down, and the pressing plate piece (81) is arranged on the supporting plate (85).
6. The assembling machine for installing a gas meter control valve coordinate plate as claimed in claim 5, wherein: the second driving structure comprises a track (87) arranged on the supporting plate (85), a sliding block (88) matched with the track (87) and a power cylinder (89) for pushing the sliding block (88) to move back and forth along the length direction of the track (87), and the pushing plate (82) is arranged on the sliding block (88).
7. The assembling machine for installing a gas meter control valve coordinate plate as claimed in claim 1, wherein: the positioning device (7) comprises a positioning piece (71) used for limiting the bottom plate (9), a first cylinder body (73) used for driving the positioning piece (71) to move left and right, a plate body (75) used for supporting the first cylinder body (73) and a second cylinder body (74) used for driving the plate body (75) to move front and back, and the second cylinder body (74) is arranged on the platform (1).
8. The assembling machine for installing a gas meter control valve coordinate plate as claimed in claim 7, wherein: one end of the positioning piece (71) is provided with a plurality of positioning grooves (710) which can be sleeved on the bottom plate (9).
9. The assembling machine for assembling the gas meter control valve coordinate plate as claimed in claim 8, wherein: a first convex rail (751) is arranged on the plate body (75), and a first movable block (711) matched with the first convex rail (751) is arranged on the positioning piece (71).
10. The assembling machine for assembling the gas meter control valve coordinate plate as claimed in claim 8, wherein: the platform (1) is provided with a second convex rail (11), and the plate body (75) is provided with a second movable block (752) matched with the second convex rail (11).
CN201921311109.1U 2019-08-13 2019-08-13 Assembly machine for installing gas meter control valve coordinate plate Active CN210703479U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921311109.1U CN210703479U (en) 2019-08-13 2019-08-13 Assembly machine for installing gas meter control valve coordinate plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921311109.1U CN210703479U (en) 2019-08-13 2019-08-13 Assembly machine for installing gas meter control valve coordinate plate

Publications (1)

Publication Number Publication Date
CN210703479U true CN210703479U (en) 2020-06-09

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Application Number Title Priority Date Filing Date
CN201921311109.1U Active CN210703479U (en) 2019-08-13 2019-08-13 Assembly machine for installing gas meter control valve coordinate plate

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112192214A (en) * 2020-10-20 2021-01-08 江阴市新万沅机件有限公司 Automatic wheel penetrating machine of compressor supporting plate
CN113059333A (en) * 2021-02-26 2021-07-02 旺荣电子(深圳)有限公司 Relay upper cover mounting device
CN116175131A (en) * 2022-11-25 2023-05-30 浙江飞哲工贸有限公司 Automatic assembling machine for bolt sleeve gaskets
CN118123450A (en) * 2024-04-15 2024-06-04 浙江巨宏仪表有限公司 Assembly production line, positioning device and assembly method for gas meter shell and interface

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112192214A (en) * 2020-10-20 2021-01-08 江阴市新万沅机件有限公司 Automatic wheel penetrating machine of compressor supporting plate
CN113059333A (en) * 2021-02-26 2021-07-02 旺荣电子(深圳)有限公司 Relay upper cover mounting device
CN116175131A (en) * 2022-11-25 2023-05-30 浙江飞哲工贸有限公司 Automatic assembling machine for bolt sleeve gaskets
CN118123450A (en) * 2024-04-15 2024-06-04 浙江巨宏仪表有限公司 Assembly production line, positioning device and assembly method for gas meter shell and interface
CN118123450B (en) * 2024-04-15 2025-06-06 浙江巨宏仪表有限公司 Assembly production line, positioning device and assembly method for gas meter shell and interface

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