CN217554841U - Be applied to circuit board printing discharging device - Google Patents

Be applied to circuit board printing discharging device Download PDF

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Publication number
CN217554841U
CN217554841U CN202220861865.7U CN202220861865U CN217554841U CN 217554841 U CN217554841 U CN 217554841U CN 202220861865 U CN202220861865 U CN 202220861865U CN 217554841 U CN217554841 U CN 217554841U
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China
Prior art keywords
rod
circuit board
seat
discharging device
bolt
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CN202220861865.7U
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Chinese (zh)
Inventor
钟华
李德民
王淋
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Jiaxing Mingrui Electronic Technology Co ltd
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Jiaxing Mingrui Electronic Technology Co ltd
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Priority to CN202220861865.7U priority Critical patent/CN217554841U/en
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Abstract

The utility model provides a printing and discharging device applied to a circuit board, which relates to the technical field of discharging devices and comprises a feeding component and a printing mechanism, wherein the inner side of the feeding component is provided with a clamping mechanism assembled by bolts, the upper side of the side of the feeding component is provided with a translation component assembled by bolts, and one end of the translation component is provided with the printing mechanism which comprises a cylinder seat; the utility model discloses mainly utilize and separately connect the material storehouse, and utilize the one-way pump to carry out the connection of pipeline, make equipment when the processing product, start the single suction pump and carry out output power, make the printing material can export the material section of thick bamboo, and can carry out effectual printing to the circuit board by output device under electric screw rod's effect, can add man-hour at equipment like this, can carry out quantitative supply material according to the needs of processing, can not cause the waste of material, and can play the effect that prevents the jam under the effect at the hob.

Description

Be applied to circuit board printing discharging device
Technical Field
The utility model relates to a discharging device technical field especially relates to a be applied to circuit board printing discharging device.
Background
Circuit board printing is a new industry developed nowadays, and the rapid development of screen printing brings great revolution to the electronic industry.
Current discharging device in the use, can appear being difficult to the ration and carry out the material loading, causes the waste of material, has increased user's cost scheduling problem, consequently, the utility model provides a be applied to the problem that circuit board printing discharging device exists in order to solve prior art.
SUMMERY OF THE UTILITY MODEL
To the above problem, the utility model provides a be applied to circuit board printing discharging device, should be applied to circuit board printing discharging device and mainly utilize and separately connect the material storehouse, and utilize the unidirectional pump to carry out the connection of pipeline, make equipment when the processing product, start the single suction pump and carry out output power, make the printing material can export a material section of thick bamboo, and can output device carry out effectual printing to the circuit board under the effect of electronic hob, can add man-hour at equipment like this, can carry out quantitative supply material according to the needs of processing, can not cause the waste of material, and can play the effect that prevents the jam under the effect at the hob.
For realizing the purpose of the utility model, the utility model discloses a following technical scheme realizes: a printed discharging device applied to a circuit board comprises a feeding assembly and a printing mechanism, wherein a clamping mechanism assembled by bolts is arranged on the inner side of the feeding assembly, a translation assembly assembled by bolts is arranged above the side of the feeding assembly, and the printing mechanism is arranged at one end of the translation assembly;
the printing mechanism comprises an air cylinder seat, a push rod, an electric rotating seat, a rotary rod, a telescopic rod, a material barrel, a needle nozzle, a motor, a spiral rod, a conveying pipe, a one-way pump and a storage box, wherein the air cylinder seat is arranged at one end of the translation assembly, the output end of the air cylinder seat is provided with the push rod, one end of the push rod is connected with the rotary rod through the electric rotating seat, one end of the rotary rod is provided with the telescopic rod in telescopic connection, the other end of the telescopic rod is provided with the material barrel, the needle nozzle is arranged below the material barrel, the motor is arranged on the top side of the material barrel, the output end of the motor is connected with the spiral rod, one side of the material barrel is connected with the one-way pump through the conveying pipe, and one side of the one-way pump is connected with the storage box arranged on one side of the air cylinder seat.
The improved structure is characterized in that the needle nozzle is of a needle tube-shaped structure, the needle nozzle and the central axis of the material cylinder are positioned on the same straight line, and the material cylinder and the push rod are arranged in parallel.
The material cylinder and the material conveying pipe are matched with a one-way pump and a material storage box to form a one-way circulation structure, and the material cylinder and the material storage box are arranged in parallel.
The improved structure is characterized in that the feeding assembly comprises a bottom plate, a bracket, a side plate, an inclined plate, a roller rod, a first motor and a conveying belt, the bracket is arranged above the bottom plate, the side of the bracket is provided with the side plate, the inclined plate is arranged at one end of the bracket, the roller rod is connected to the bracket in a penetrating mode and is connected with the output end of the first motor, and the conveying belt is connected to the outer side of the roller rod in a rolling mode.
Further improve in, fixture includes bolt lateral plate, spout box, electromagnetism slide bar, electromagnetism sliding sleeve seat and electronic clamping piece, the bolt lateral plate sets up the interior limit side of bracket, the inboard of bolt lateral plate is provided with the spout box, just be provided with the electromagnetism slide bar on the spout box, the outside sliding connection of electromagnetism slide bar has the electromagnetism sliding sleeve seat, just one side top of electromagnetism sliding sleeve seat is provided with electronic clamping piece.
The improved structure is characterized in that the translation assembly comprises a bolt groove seat, a side frame, a gantry beam, a screw rod and a bolt sliding sleeve, the bolt groove seat is arranged above the two sides of the bottom plate, the side frame is arranged above the bolt groove seat, the top side of the side frame is provided with the gantry beam, the inner side of the gantry beam is provided with the screw rod, and the outer side of the screw rod is connected with the bolt sliding sleeve through a bolt.
The beneficial effects of the utility model are that:
the utility model discloses mainly utilize and separately connect the material storehouse, and utilize the one-way pump to carry out the connection of pipeline, make equipment when the processing product, start the single suction pump and carry out output power, make the printing material can export the material section of thick bamboo, and can carry out effectual printing to the circuit board by output device under electric screw rod's effect, can add man-hour at equipment like this, can carry out quantitative supply material according to the needs of processing, can not cause the waste of material, and can play the effect that prevents the jam under the effect at the hob.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
fig. 2 is a schematic bottom perspective view of the present invention;
FIG. 3 is a schematic view of the electromagnetic sliding sleeve seat and the electric clamping piece of the present invention;
fig. 4 is a schematic view of a three-dimensional structure of the motor and the screw rod of the present invention;
fig. 5 is a schematic view of a three-dimensional structure of the electric rotary seat and the rotary rod of the present invention.
Wherein: 1. a feeding assembly; 101. a base plate; 102. a bracket; 103. a side plate; 104. a sloping plate; 105. a roll bar; 106. a first motor; 107. a conveyor belt; 2. a clamping mechanism; 201. a bolt side piece; 202. a chute box; 203. an electromagnetic slide bar; 204. an electromagnetic sliding sleeve seat; 205. an electric clip; 3. a translation assembly; 301. a bolt slot seat; 302. a side frame; 303. a gantry beam; 304. a screw rod; 305. a bolt sliding sleeve; 4. a printing mechanism; 401. a cylinder block; 402. a push rod; 403. an electric rotating base; 404. rotating the rod; 405. a telescopic rod; 406. a material cylinder; 407. a needle nozzle; 408. an electric motor; 409. a screw rod; 4010. a delivery pipe; 4011. a one-way pump; 4012. a material storage box.
Detailed Description
In order to deepen the understanding of the present invention, the following embodiments will be combined to make the present invention do further details, and the present embodiment is only used for explaining the present invention, and does not constitute the limitation of the protection scope of the present invention.
According to fig. 1-5, the embodiment provides a discharging device for circuit board printing, which includes a feeding assembly 1 and a printing mechanism 4, wherein a clamping mechanism 2 assembled by bolts is disposed on an inner side of the feeding assembly 1, a translation assembly 3 assembled by bolts is disposed above an edge side of the feeding assembly 1, and one end of the translation assembly 3 is provided with the printing mechanism 4;
printing mechanism 4 includes cylinder base 401, push rod 402, electronic roating seat 403, rotary rod 404, telescopic link 405, material barrel 406, needle nozzle 407, motor 408, hob 409, conveying pipeline 4010, one-way pump 4011 and storage tank 4012, cylinder base 401 sets up the one end at translation subassembly 3, the output of cylinder base 401 is provided with push rod 402, and the one end of push rod 402 is connected with rotary rod 404 through electronic roating seat 403, the one end of rotary rod 404 is provided with telescopic link 405 of flexible connection, and the one end of telescopic link 405 is provided with material barrel 406, the below of material barrel 406 is provided with needle nozzle 407, the top side of material barrel 406 is provided with motor 408, and the output of motor 408 is connected with hob 409, one side of material barrel 406 is connected with one-way pump 4011 through conveying pipeline 4010, and one side of one-way pump 4011 is connected with the storage tank 4012 that sets up in cylinder base 401 one side.
The needle nozzle 407 is a needle tube-shaped structure, the central axes of the needle nozzle 407 and the material cylinder 406 are in the same straight line, and the material cylinder 406 and the push rod 402 are arranged in parallel.
In this embodiment, when the bolt sliding sleeve 305 is at the processing position, the cylinder block 401 is started to output power, the length of the push rod 402 is adjusted, so that the rotating rod 404 runs to the height of the processing position, then the rotating rod 404 is adjusted by using the electric rotating block 403, and the telescopic rod 405 at one end of the rotating rod 404 is started so that the material barrel 406 can be always at the processing position.
The material cylinder 406 and the material delivery pipe 4010 are matched with a one-way pump 4011 and a material storage tank 4012 to form a one-way circulation structure, and the material cylinder 406 and the material storage tank 4012 are arranged in parallel.
In this embodiment, when the material cylinder 406 is located at the processing position, the one-way pump 4011 is started to output power to drive the processing material in the material storage box 4012 to enter the material cylinder 406 from the material delivery pipe 4010 through the action of the one-way pump 4011, and meanwhile, the motor 408 is started to output power to drive the screw rod 409 to rotate, so that the processed material is processed effectively on the circuit board through the needle nozzle 407 output device below the material cylinder 406.
The feeding assembly 1 comprises a bottom plate 101, a bracket 102, a side plate 103, an inclined plate 104, a roller rod 105, a first motor 106 and a conveying belt 107, the bracket 102 is arranged above the bottom plate 101, the side plate 103 is arranged on the side of the bracket 102, the inclined plate 104 is arranged at one end of the bracket 102, the roller rod 105 is connected to the bracket 102 in a penetrating mode, the roller rod 105 is connected with an output end of the first motor 106, and the conveying belt 107 is connected to the outer side of the roller rod 105 in a rolling mode.
In this embodiment, when the electromagnetic slide bar 203 drives the electromagnetic sliding sleeve seat 204 to operate, the first motor 106 is started to output power to drive the roller 105 to operate, so that the roller 105 drives the conveyor belt 107 to rotate, and the conveyor belt 107 cooperates with the upper electromagnetic slide bar 203 to move the circuit board on the electromagnetic sliding sleeve seat 204 to a processing position and stop the circuit board.
The clamping mechanism 2 comprises a bolt side piece 201, a sliding groove box 202, an electromagnetic sliding rod 203, an electromagnetic sliding sleeve seat 204 and an electric clamping piece 205, the bolt side piece 201 is arranged on the inner side of the bracket 102, the sliding groove box 202 is arranged on the inner side of the bolt side piece 201, the electromagnetic sliding rod 203 is arranged on the sliding groove box 202, the electromagnetic sliding sleeve seat 204 is connected to the outer side of the electromagnetic sliding rod 203 in a sliding mode, and the electric clamping piece 205 is arranged above one side of the electromagnetic sliding sleeve seat 204.
In this embodiment, a circuit board to be printed is first placed on the electromagnetic sliding sleeve seat 204, the electric clamping piece 205 is started to clamp the circuit board, then the electromagnetic sliding rod 203 on the inner side of the starting sliding groove box 202 drives the electromagnetic sliding sleeve seat 204 to operate, when the circuit board is processed, the electromagnetic sliding rod 203 and the first motor 106 are started again, so that the product leaves the processing position, and finally, the processing operation is completed through the output device of the inclined plate 104 on one side of the bracket 102.
The translation assembly 3 comprises a bolt slot seat 301, side frames 302, a portal beam 303, a screw rod 304 and a bolt sliding sleeve 305, the bolt slot seat 301 is arranged above two sides of the bottom plate 101, the side frames 302 are arranged above the bolt slot seat 301, the portal beam 303 is arranged on the top side of the side frames 302, the screw rod 304 is arranged on the inner side of the portal beam 303, and the bolt sliding sleeve 305 is connected to the outer side of the screw rod 304 through a bolt.
In this embodiment, when the circuit board is located the processing position, the screw 304 that starts the inboard gantry beam 303 drives the bolt sliding sleeve 305 to move, so that the bolt sliding sleeve 305 always keeps in the processing position.
The working principle of the discharging device applied to the circuit board printing is as follows: firstly, a circuit board to be printed is placed on an electromagnetic sliding sleeve seat 204, an electric clamping piece 205 is started to clamp the circuit board, when an electromagnetic sliding rod 203 drives the electromagnetic sliding sleeve seat 204 to operate, a first motor 106 is started to output power to drive a roller 105 to operate, the roller 105 drives a conveyor belt 107 to rotate, then an electromagnetic sliding rod 203 inside a starting chute box 202 drives the electromagnetic sliding sleeve seat 204 to operate, when the circuit board is located at a processing position, a screw rod 304 inside a gantry beam 303 is started to drive a bolt sliding sleeve 305 to move, the bolt sliding sleeve 305 is always kept at the processing position, when the bolt sliding sleeve 305 is located at the processing position, a cylinder seat 401 is started to output power, the length of a push rod 402 is adjusted, the rotary rod 404 is operated to the height of the processing position, then the rotary rod 403 is adjusted by using the electric rotating seat, a telescopic rod 405 at one end of the rotary rod 404 is started to enable a material barrel 406 to be always at the processing position, when the material barrel 406 is located at the processing position, a one end of the material barrel 4011 is started to output power by a one-way pump 4011 to drive processing material to pass through the effect of a processing barrel 4011, and a screw rod 408 is started to output from a processing machine a processing device, and a material barrel 406 is input and output by a screw rod 408, when the chute 106, the processing device 106, the chute 406 is started, and a processing device is started to finish processing device to finish processing operation, and a processing nozzle 106, and a processing operation of a processing machine processing nozzle 106, and a processing machine a processing nozzle 106, and a processing machine is finished, and a processing machine is finished.
The foregoing illustrates and describes the general principles, features and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides a be applied to circuit board printing discharging device, includes material loading subassembly (1) and printing mechanism (4), its characterized in that: a clamping mechanism (2) assembled by bolts is arranged on the inner side of the feeding assembly (1), a translation assembly (3) assembled by bolts is arranged above the side of the feeding assembly (1), and a printing mechanism (4) is arranged at one end of the translation assembly (3);
the printing mechanism (4) comprises a cylinder seat (401), a push rod (402), an electric rotating seat (403), a rotating rod (404), a telescopic rod (405), a material cylinder (406), a needle nozzle (407), an electric motor (408), a spiral rod (409), a conveying pipe (4010), a one-way pump (4011) and a material storage box (4012), wherein the cylinder seat (401) is arranged at one end of the translation assembly (3), the output end of the cylinder seat (401) is provided with the push rod (402), one end of the push rod (402) is connected with the rotating rod (404) through the electric rotating seat (403), one end of the rotating rod (404) is provided with the telescopic rod (405) in telescopic connection, one end of the telescopic rod (405) is provided with the material cylinder (406), the needle nozzle (407) is arranged below the material cylinder (406), the top side of the material cylinder (406) is provided with the electric motor (408), the output end of the electric motor (408) is connected with the spiral rod (409), one side of the material cylinder (406) is connected with the one-way pump (4011) through the conveying pipe (4010), and one side of the material storage box (4011) is connected with the material storage box (4012).
2. The discharging device for circuit board printing according to claim 1, wherein: the needle nozzle (407) is of a needle tube-shaped structure, the needle nozzle (407) and the central axis of the material barrel (406) are positioned on the same straight line, and the material barrel (406) and the push rod (402) are arranged in parallel.
3. The discharging device for circuit board printing according to claim 2, wherein: the material cylinder (406) and the delivery pipe (4010) are matched with a one-way pump (4011) and a storage box (4012) to form a one-way circulation structure, and the material cylinder (406) and the storage box (4012) are arranged in parallel.
4. The discharging device for circuit board printing according to claim 1, wherein: feeding component (1) includes bottom plate (101), bracket (102), curb plate (103), swash plate (104), roller rod (105), first motor (106) and conveyer belt (107), the top of bottom plate (101) is provided with bracket (102), just the avris of bracket (102) is provided with curb plate (103), the one end of bracket (102) is provided with swash plate (104), bracket (102) through connection has roller rod (105), just roller rod (105) are connected with the output of first motor (106), the outside roll connection of roller rod (105) has conveyer belt (107).
5. The discharging device for circuit board printing according to claim 4, wherein: fixture (2) are including bolt lateral plate (201), spout box (202), electromagnetism slide bar (203), electromagnetism sliding sleeve seat (204) and electronic clamping piece (205), bolt lateral plate (201) sets up the interior limit side of bracket (102), the inboard of bolt lateral plate (201) is provided with spout box (202), just be provided with electromagnetism slide bar (203) on spout box (202), the outside sliding connection of electromagnetism slide bar (203) has electromagnetism sliding sleeve seat (204), just one side top of electromagnetism sliding sleeve seat (204) is provided with electronic clamping piece (205).
6. The discharging device for circuit board printing according to claim 4, wherein: translation subassembly (3) are including bolt groove seat (301), side bearer (302), longmen roof beam (303), lead screw (304) and bolt sliding sleeve (305), bolt groove seat (301) set up the both sides top of bottom plate (101), the top of bolt groove seat (301) is provided with side bearer (302), the top avris of side bearer (302) is provided with longmen roof beam (303), just the interior border side of longmen roof beam (303) is provided with lead screw (304), the outside bolted connection of lead screw (304) has bolt sliding sleeve (305).
CN202220861865.7U 2022-04-14 2022-04-14 Be applied to circuit board printing discharging device Active CN217554841U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220861865.7U CN217554841U (en) 2022-04-14 2022-04-14 Be applied to circuit board printing discharging device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220861865.7U CN217554841U (en) 2022-04-14 2022-04-14 Be applied to circuit board printing discharging device

Publications (1)

Publication Number Publication Date
CN217554841U true CN217554841U (en) 2022-10-11

Family

ID=83470423

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220861865.7U Active CN217554841U (en) 2022-04-14 2022-04-14 Be applied to circuit board printing discharging device

Country Status (1)

Country Link
CN (1) CN217554841U (en)

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