CN212095780U - Waterway valve processing device - Google Patents

Waterway valve processing device Download PDF

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Publication number
CN212095780U
CN212095780U CN202020623310.XU CN202020623310U CN212095780U CN 212095780 U CN212095780 U CN 212095780U CN 202020623310 U CN202020623310 U CN 202020623310U CN 212095780 U CN212095780 U CN 212095780U
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China
Prior art keywords
driving
clamping
driving device
clamp
moving plate
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Active
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CN202020623310.XU
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Chinese (zh)
Inventor
章炳法
梁江海
茅金祥
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Shaoxing Shangyu Kaidi Precision Co ltd
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Shaoxing Shangyu Kaidi Precision Co ltd
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Abstract

The utility model provides a water route valve processingequipment belongs to the processing equipment field. The grinding machine solves the problems that in the prior art, every interface is ground, a clamp and a waterway valve need to be disassembled and assembled again, workers need to disassemble and assemble repeatedly, and the grinding machine is very inconvenient to use; the polishing device comprises a polishing piece for polishing a workpiece and a first driving device for driving the polishing piece to move; the clamping device comprises a rotary clamping device and a second driving device for driving the rotary clamping device to rotate, the rotary clamping device comprises a rotary shaft and a clamping piece arranged at the head end of the rotary shaft, the head end of the rotary shaft is provided with an opening, the clamping piece is located in the opening, the clamping piece is provided with a third driving device for driving the clamping piece to rotate, the clamping piece comprises an upper clamp and a lower clamp, a clamping cavity for clamping a workpiece is formed between the upper clamp and the lower clamp, and the lower clamp is provided with a fourth driving device for driving the lower clamp to move up and down. The utility model has the advantages of convenience and the like.

Description

Waterway valve processing device
Technical Field
The utility model belongs to the processing equipment field, in particular to waterway valve processingequipment.
Background
The waterway valve can be used as a general name of all valves used on a waterway pipeline, such as a plate-changing waterway valve, a three-way valve and the like, and the whole waterway valve is produced by a mould and then needs to be polished.
The three-way valve or the plate-type water line valve with the three-way structure has three same interfaces, wherein two interfaces are on the same straight line and communicated, and the other interface is vertical to the straight line where the two interfaces are located and the three interfaces are communicated with each other. When polishing treatment is carried out on three interfaces of the existing polishing machine, the polishing treatment is carried out separately. The clamp is used for clamping the waterway valve with the three-way structure, one interface is polished, then the clamp is loosened, the waterway valve is switched to the direction, and then the clamp is used for clamping again, and the other interface is polished. And loosening the clamp, switching the direction of the waterway valve, clamping by the clamp again, and polishing the last interface.
There are problems in that: every interface of polishing now all will carry out the dismouting with anchor clamps and waterway valve again, and the staff need repeated dismouting, and is very inconvenient.
Disclosure of Invention
The utility model aims at providing a need not the water route valve processingequipment of repeated dismouting anchor clamps to the above-mentioned problem that exists among the prior art.
The purpose of the utility model can be realized by the following technical proposal: a waterway valve processing device comprises a frame, wherein a grinding device and a clamping device are arranged on the frame;
the polishing device comprises a polishing piece for polishing a workpiece and a first driving device for driving the polishing piece to move;
clamping device include rotatory clamping device and the rotatory second drive arrangement of the rotatory clamping device of drive, rotatory clamping device include the rotation axis and set up in the holder of rotation axis head end, the rotation axis head end be provided with the opening, the holder be located the opening, the holder be provided with the rotatory third drive arrangement of drive holder, the holder include anchor clamps and lower anchor clamps, last anchor clamps and lower anchor clamps between form the centre gripping chamber that is used for the centre gripping work piece, lower anchor clamps be provided with and be used for driving down the fourth drive arrangement that anchor clamps reciprocated.
The utility model discloses a theory of operation: the workpiece of the utility model refers to a waterway valve with a three-way structure, such as a three-way valve. The utility model discloses the during operation, at first, fourth drive arrangement starts, and anchor clamps downstream under the drive put into the centre gripping chamber with the work piece, then anchor clamps upstream under the drive of fourth drive arrangement for go up anchor clamps and lower anchor clamps press from both sides tight work piece, go up the top surface of anchor clamps laminating work piece, the bottom surface of lower anchor clamps laminating work piece, three interface is located the side of work piece respectively, and is located outside the centre gripping chamber.
After a workpiece is clamped, a third driving device is started, the third driving device drives the clamping piece to rotate, so that the first interface faces the outside of the opening, then the third driving device is closed, the second driving device drives the rotating shaft to rotate, the clamping piece clamps the workpiece and rotates along with the rotating shaft, the first driving device is started, and the first driving device drives the grinding piece to move, so that the grinding piece is close to the first interface to grind the first interface. After finishing, the grinding piece is far away from the first interface.
When the second interface is polished, the third driving device is started again, the third driving device drives the clamping piece to rotate, the second interface faces the outer side of the opening, then the third driving device is closed, the polishing piece is close to the second interface, and the second interface is polished. After finishing, the grinding piece is far away from the second interface.
When polishing the third interface, the third drive device is started again, the third drive device drives the clamping piece to rotate, so that the third interface faces the outside of the opening, then the third drive device is closed, the polishing piece is close to the third interface, the third interface is polished, and after the polishing is finished, the polishing piece is far away from the third interface.
The utility model discloses when carrying out the interface to the waterway valve that has the tee bend interface and polish, need not dismouting anchor clamps again, but through the direction that opens and close of third drive arrangement changed the interface to the piece of polishing is polished the interface. The staff need not repeated dismouting anchor clamps, and is very convenient. And because the direction of the interface is controlled through the third driving device, compared with the direction of the interface which is manually converted, the machine control is more accurate, and because the clamp is not required to be repeatedly disassembled and assembled, the manual error is also reduced. The processing precision is ensured, and particularly the concentricity of two communicated interfaces on the same straight line is ensured.
Preferably, the rotating shaft is provided with an upper half part and a lower half part, the opening is formed between the upper half part and the lower half part, the upper half part is provided with a first accommodating cavity for accommodating the third driving device, and the lower half part is provided with a second accommodating cavity for accommodating the fourth driving device. The first accommodating cavity and the second accommodating cavity are used for accommodating the third driving device and the fourth driving device respectively.
Preferably, the fourth driving device is connected with the lower clamp through a first electric telescopic rod, one end of the first electric telescopic rod is connected with the fourth driving device, and the other end of the first electric telescopic rod is connected with the bottom of the lower clamp through a rolling bearing, so that the lower clamp can rotate relative to the first electric telescopic rod. The fourth driving device drives the lower clamp to move up and down by driving the first electric telescopic rod to stretch. The workpiece is conveniently taken out of and put into the clamping cavity, and the workpiece is conveniently clamped.
Preferably, the third driving device is connected with the upper clamp through a rotating shaft, and the third driving device drives the rotating shaft to rotate so as to drive the upper clamp to rotate. The rotating shaft is fixedly connected with the upper clamp, the third driving device drives the upper clamp to rotate, and after the upper clamp and the lower clamp are matched and clamped, the lower clamp can also rotate along with the upper clamp. Thereby changing the interface direction.
Preferably, the rack is provided with an installation frame for installing a polishing part, a first moving plate is arranged at the bottom of the installation frame, the first driving device comprises a first driving part and a second driving part, and two ends of the first moving plate are respectively provided with a first supporting seat and a second supporting seat for supporting the first driving part; the second supporting seat is provided with a sliding cavity, one end of the first moving plate is connected with the first driving piece through a second electric telescopic rod, and the other end of the first moving plate is inserted into the sliding cavity and can slide along the length direction of the sliding cavity. The first moving plate can move, so that the grinding piece is convenient to be close to or far away from a workpiece to be ground.
Preferably, the mounting bracket pass through connecting piece and first movable plate fixed connection, the mounting bracket include the backup pad and set up and the support frame at backup pad both ends, the backup pad both ends be provided with first slider, the support frame be provided with and be used for mutually supporting's slide rail with the slider.
Preferably, the supporting plate on be provided with the second movable plate, the second movable plate can remove along the length direction of supporting plate, second movable plate and second driving piece between connect through third electric telescopic handle, the supporting plate be provided with the slide, second movable plate bottom be provided with the second slider that is used for slide in the slide.
Preferably, the number of said abrading elements is 4.
Preferably, the supporting plate and the first moving plate are both obliquely arranged. Prevent the accumulation of debris generated by grinding.
Preferably, the rack is further provided with a fixing frame for mounting the clamping device.
Compared with the prior art, the utility model has the advantages of it is following:
1. the utility model discloses when carrying out the interface to the waterway valve that has the tee bend interface and polish, need not dismouting anchor clamps again, but through the direction that opens and close of third drive arrangement changed the interface to the piece of polishing is polished the interface. The staff need not repeated dismouting anchor clamps, and is very convenient. And because the direction of the interface is controlled through the third driving device, compared with the direction of the interface which is manually converted, the machine control is more accurate, and because the clamp is not required to be repeatedly disassembled and assembled, the manual error is also reduced. The processing precision is ensured, and particularly the concentricity of two communicated interfaces on the same straight line is ensured.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural diagram of the connector of the present invention;
fig. 3 is a schematic structural view of the clamping device of the present invention;
fig. 4 is an enlarged schematic view of the utility model at a;
fig. 5 is a schematic structural diagram of the sliding chamber of the present invention.
In the figure, 1, a frame; 101. a mounting frame; 102. a fixed mount; 3. a polishing device; 4. a clamping device; 301. polishing the workpiece; 302. a first driving device; 401. rotating the clamping device; 402. a second driving device; 4011. a rotating shaft; 4022. a clamping member; 5. an opening; 6. a third driving device; 40221. an upper clamp; 40222. a lower clamp; 40223. a clamping cavity; 7. a fourth drive device; 40111. an upper half part; 40112. a lower half; 8. a first accommodating chamber; 9. a second accommodating chamber; 10. a first electric telescopic rod; 11. a rotating shaft; 12. a first moving plate; 3021. a first driving member; 3022. a second driving member; 13. a first support base; 14. a second support seat; 15. a slide chamber; 16. a second electric telescopic rod; 17. a connecting member; 1011. a support plate; 1012. a support frame; 18. a first slider; 19. a slide rail; 20. a second moving plate; 21. a third electric telescopic rod; 22. a slideway.
Detailed Description
The following are specific embodiments of the present invention and are made by combining the drawings
Further, the present invention is not limited to these examples.
As shown in fig. 1-5, a waterway valve processing device comprises a frame 1, wherein a grinding device 3 and a clamping device 4 are arranged on the frame 1, the grinding device 3 is used for grinding a workpiece, and the clamping device 4 is used for clamping the workpiece.
The clamp device 4 includes a rotary clamp device 4014 and a second drive device 402, and the clamp device 4 includes a rotary shaft 4011 and a clamp 4022. The clamp 4022 is for clamping a workpiece, and the second driving device 402 drives the rotation shaft 4011 and the clamp 4022 to rotate together. The rotary shaft 4011 is provided with an upper half 40111 and a lower half 40112, an opening 5 is formed between the upper half 40111 and the lower half 40112,
an opening 5 is provided at the front end of the rotary shaft 4011, and a clamp 4022 is provided in the opening 5. The grip 4022 is provided with a third drive means 6 which drives the grip 4022 in rotation. An upper half portion 40111 of the rotating shaft 4011 is provided with a first accommodation chamber 8, and the first accommodation chamber 8 is used for accommodating the third driving device 6.
The second driving device 402 drives the rotation shaft 4011 and the clamp 4022 to rotate together.
The third drive means 6 drives the clamp 4022 to rotate relative to the rotation shaft 11.
The clamping piece 4022 comprises an upper clamp 40221 and a lower clamp 40222, a clamping cavity 40223 is formed between the upper clamp 40221 and the lower clamp 40222, a workpiece is placed in the clamping cavity 40223, then the upper clamp 40221 is attached to the upper surface of the workpiece, the lower clamp 40222 is attached to the lower surface of the workpiece, the attaching surface of the upper clamp 40221 is identical in shape to the upper surface of the workpiece, and the attaching surface of the lower clamp 40222 is identical in shape to the lower surface of the workpiece. The contact surface of the upper jig 40221 is uneven, and the contact surface of the lower jig 40222 is also uneven.
A lower half portion 40112 of the rotation shaft 4011 provides a second accommodation chamber 9, and the second accommodation chamber 9 accommodates the fourth drive device 7. The fourth driving device 7 can drive the lower clamp 40222 to move up and down, so that the workpiece can be conveniently taken out, put in and clamped. In this embodiment, the fourth driving device 7 drives the first electric telescopic rod 10 to move the lower clamp 40222 up and down.
The third driving device 6 is connected with the upper clamp 40221 through a rotating shaft 11, and the third driving device 6 drives the rotating shaft 11 to rotate, so that the upper clamp 40221 is driven to rotate.
Therefore, after the clamp 4022 clamps a workpiece, the third driving device 6 drives the upper clamp 40221 to rotate, and since the upper clamp 40221 and the lower clamp 40222 clamp the workpiece together, and the bottom of the lower clamp 40222 is connected to the first electric telescopic rod 10 by the rolling bearing, after the third driving device 6 is started, the upper clamp 40221, the workpiece, and the lower clamp 40222 can rotate together, and the lower clamp 40222 can rotate relative to the first electric telescopic rod 10.
The three interfaces of the workpiece are located on the side of the workpiece and outside the clamping cavity 40223. Therefore, after clamping the workpiece, the third driving device 6 is started, the third driving device 6 drives the clamping member 4022 to rotate, so that the first interface faces to the outside of the opening 5, then the third driving device 6 is closed, the second driving device 402 drives the rotating shaft 4011 to rotate, the clamping member 4022 clamps the workpiece and rotates along with the rotating shaft 4011, the first driving device 302 is started, and the first driving device 302 drives the polishing member 301 to move, so that the polishing member 301 is close to the first interface, and the first interface is polished. At the end, the abrading article 301 is removed from the first interface. And subsequently polishing the second interface and the third interface in sequence.
The rack 1 is provided with a mounting frame 101, the mounting frame 101 is used for mounting the polishing member 301, a first movable plate 12 is arranged at the bottom of the mounting frame 101, the first driving device 302 comprises a first driving piece 3021 and a second driving piece 3022, the first movable plate 12 is driven by the first driving piece 3021, and the first driving piece 3021 drives the second electric telescopic rod 16 to drive the first movable plate 12 to move. One end of the first moving plate 12 is connected to the first driving member 3021 via a second electric telescopic rod 16, the first driving member 3021 is supported by the first support base 13, and the other end of the first moving plate 12 is inserted into the slide cavity 15 of the second support base 14 and can slide along the length direction of the slide cavity 15. This arrangement realizes the movement of the first moving plate 12.
The mounting rack 101 is fixedly connected with the first moving plate 12 through the connecting member 17, the mounting rack 101 includes a support plate 1011 and a support bracket 1012, the support bracket 1012 is used for supporting the support plate 1011 and is located at two ends of the support plate 1011, and two ends of the support plate 1011 are slidably connected with the slide rail 19 on the support bracket 1012 through the first slider 18. The present arrangement allows the support plate 1011 to move in conjunction with the movement of the first moving plate 12.
The supporting plate 1011 is provided with a second moving plate 20, the second moving plate 20 can move along the length direction of the supporting plate 1011, the second moving plate 20 is connected with the second driving element 3022 through a third electric telescopic rod 21, the supporting plate 1011 is provided with a slide 22, and the bottom of the second moving plate 20 is provided with a second slider used for the slide 22 in the slide 22. The sanding element 301 is located on the second moving plate 20.
The second moving plate 20 is connected to the second driving member 3022 through a third electric telescopic rod 21, a slide 22 is disposed on the supporting plate 1011, and a second slider engaged with the slide 22 is disposed at the bottom of the second moving plate 20. The support plate 1011 is slidably coupled to the second moving plate 20. The second moving plate 20 can move along the length direction of the support plate 1011. The sanding member 301 moves along the length direction of the support plate 1011 along with the second moving plate 20.
The polishing member 301 is disposed on the second moving plate 20, and the second moving plate 20 is disposed on the supporting plate 1011, so that the polishing member 301 can move along the length direction of the supporting plate 1011 along with the second moving plate 20, and can also move along with the movement of the first moving plate 12 along with the supporting plate 1011. Since the grinding member 301 needs to be close to the workpiece held by the holding members 4022 at the time of grinding, the grinding member 301 needs to be movable together with the support plate 1011 along with the movement of the first moving plate 12 so that the approaching or the distancing to the held workpiece can be realized.
In the embodiment, the number of the polishing members 301 is 4, and the polishing members 301 required are different in different interfaces, wherein each of the three polishing members 301 corresponds to one interface. The last abrading element 301 is used to abrade the exterior of the interface. Therefore, the sanding member 301 needs to be replaced, and the sanding member 301 is mounted on the second moving plate 20, so that the sanding member 301 needs to be movable along the length direction of the support plate 1011 along with the second moving plate 20. Thereby enabling the unused abrading article 301 to be aligned with the interface to be abraded.
In this embodiment, the polishing member 301 does not rotate, but the rotating clamp 4014 holding the tool rotates, that is, the second drive device 402 drives the rotating shaft 4011 and the clamp 4022 to rotate together. The clamp 4022 clamps the tool, thereby polishing.
The support plate 1011 and the first moving plate 12 are both obliquely arranged. The chips are easy to fall off due to the inclined arrangement. The purpose is to prevent debris generated by grinding from accumulating on the support plate 1011 and the first moving plate 12.
The frame 1 is further provided with a holder 102 for mounting the holding device 4.
The first driver 3021, the second driver 3022, the second driving device 402, the third driving device 6, and the fourth driving device 7 may be motors. And can be controlled to start or close in a remote control mode.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.
Although terms are used more often herein, the possibility of using other terms is not excluded. These terms are used merely to more conveniently describe and explain the nature of the present invention; they are to be construed in a manner that is inconsistent with the spirit of the invention.

Claims (9)

1. The waterway valve processing device is characterized by comprising a rack (1), wherein a grinding device (3) and a clamping device (4) are arranged on the rack (1);
the grinding device (3) comprises a grinding piece (301) for grinding a workpiece and a first driving device (302) for driving the grinding piece (301) to move;
the clamping device (4) comprises a rotary clamping device (401) and a second driving device (402) for driving the rotary clamping device (401) to rotate, the rotary clamping device (401) comprises a rotating shaft (4011) and a clamping piece (4022) arranged at the head end of the rotating shaft (4011), the head end of the rotating shaft (4011) is provided with an opening (5), the clamping piece (4022) is positioned in the opening (5), the clamping piece (4022) is provided with a third driving device (6) for driving the clamping piece (4022) to rotate, the clamping piece (4022) comprises an upper clamp (40221) and a lower clamp (40222), a clamping cavity (40223) for clamping a workpiece is formed between the upper clamp (40221) and the lower clamp (40222), the lower clamp (40222) is provided with a fourth driving device (7) for driving the lower clamp (40222) to move up and down.
2. A waterway valve processing device according to claim 1, wherein the rotary shaft (4011) is provided with an upper half portion (40111) and a lower half portion (40112), the opening (5) is formed between the upper half portion (40111) and the lower half portion (40112), the upper half portion (40111) is provided with a first receiving chamber (8) for receiving the third driving device (6), and the lower half portion (40112) is provided with a second receiving chamber (9) for receiving the fourth driving device (7).
3. The waterway valve processing device of claim 1, wherein the fourth driving device (7) is connected with the lower clamp (40222) through a first electric telescopic rod (10), one end of the first electric telescopic rod (10) is connected with the fourth driving device (7), and the other end of the first electric telescopic rod (10) is connected with the bottom of the lower clamp (40222) through a rolling bearing, so that the lower clamp (40222) can rotate relative to the first electric telescopic rod (10).
4. The waterway valve processing device of claim 1, wherein the third driving device (6) is connected with the upper clamp (40221) through a rotating shaft (11), and the third driving device (6) drives the rotating shaft (11) to rotate so as to drive the upper clamp (40221) to rotate.
5. The waterway valve processing device of claim 1, wherein the frame (1) is provided with a mounting frame (101) for mounting the polishing member (301), a first moving plate (12) is arranged at the bottom of the mounting frame (101), the first driving device (302) comprises a first driving member (3021) and a second driving member (3022), and a first supporting seat (13) and a second supporting seat (14) for supporting the first driving member (3021) are respectively arranged at two ends of the first moving plate (12); the second supporting seat (14) is provided with a sliding cavity (15), one end of the first moving plate (12) is connected with the first driving piece (3021) through a second electric telescopic rod (16), and the other end of the first moving plate (12) is inserted into the sliding cavity (15) and can slide along the length direction of the sliding cavity (15).
6. The waterway valve processing device of claim 5, wherein the mounting frame (101) is fixedly connected with the first movable plate (12) through a connecting member (17), the mounting frame (101) comprises a support plate (1011) and a support frame (1012) arranged at two ends of the support plate (1011), first sliding blocks (18) are arranged at two ends of the support plate (1011), and the support frame (1012) is provided with sliding rails (19) for being matched with the sliding blocks.
7. The waterway valve processing device of claim 6, wherein the supporting plate (1011) is provided with a second moving plate (20), the second moving plate (20) can move along the length direction of the supporting plate (1011), the second moving plate (20) is connected with the second driving member (3022) through a third electric telescopic rod (21), the supporting plate (1011) is provided with a slideway (22), and the bottom of the second moving plate (20) is provided with a second slider for the slideway (22) in the slideway (22).
8. A waterway valve-processing device according to claim 1, wherein the number of the grinders (301) is 4.
9. The waterway valve processing device of claim 7, wherein the supporting plate (1011) and the first moving plate (12) are both disposed obliquely; the rack (1) is also provided with a fixing frame (102) for installing the clamping device (4).
CN202020623310.XU 2020-04-22 2020-04-22 Waterway valve processing device Active CN212095780U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020623310.XU CN212095780U (en) 2020-04-22 2020-04-22 Waterway valve processing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020623310.XU CN212095780U (en) 2020-04-22 2020-04-22 Waterway valve processing device

Publications (1)

Publication Number Publication Date
CN212095780U true CN212095780U (en) 2020-12-08

Family

ID=73611824

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020623310.XU Active CN212095780U (en) 2020-04-22 2020-04-22 Waterway valve processing device

Country Status (1)

Country Link
CN (1) CN212095780U (en)

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