CN213920130U - Silicon chip printing machine - Google Patents

Silicon chip printing machine Download PDF

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Publication number
CN213920130U
CN213920130U CN202021958758.3U CN202021958758U CN213920130U CN 213920130 U CN213920130 U CN 213920130U CN 202021958758 U CN202021958758 U CN 202021958758U CN 213920130 U CN213920130 U CN 213920130U
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China
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baffle
spring
printing machine
fixedly connected
piece
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CN202021958758.3U
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Chinese (zh)
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张瀚丹
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Hunan Huashang Culture Business Co ltd
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Hunan Huashang Culture Business Co ltd
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Abstract

The utility model relates to a silicon chip printing machine technical field specifically is a silicon chip printing machine, including printing machine organism and brush head, the fixed surface of printing machine organism installs two sets of brush heads, and is two sets of the equal fixedly connected with splashproof mechanism in one side that the brush head was kept away from each other, the splashproof mechanism includes the baffle, the inside of baffle all is provided with the feeler lever, and feeler lever one end all passes the outside that the baffle extended to the baffle. The utility model discloses a baffle can carry out quick separation to the printing ink that falls when brushing the head operation and spatter, avoids printing ink direct outside drippage, falls on machinery subaerially on every side, causes the pollution to ground, and the user adds man-hour to the silicon chip using machinery, can deposit the instrument of certain auxiliary processing on the surface of storage plate, and effectual depositing auxiliary processing instrument, convenience of customers is adding man-hour, and is quick taking the instrument.

Description

Silicon chip printing machine
Technical Field
The utility model relates to a silicon chip printing machine technical field specifically is a silicon chip printing machine.
Background
The silicon chip is used as a carrier of the solar cell, and is often applied to the production and manufacturing process of the solar cell, the photovoltaic solar silicon chip is used for converting solar energy into electric energy, and the electric energy is sent to a storage battery for storage or is directly used for pushing a load to work;
in the production and manufacturing process of solar silicon wafers, a silicon wafer printing machine is often needed to be used, very fine circuits are manufactured on the front and back of the silicon wafers, conductive slurry containing metal is impressed on the silicon wafers through screen meshes to form circuits or electrodes, however, when the existing printing machine prints the silicon wafers, a brush head of the printing machine does not have a certain protection structure, when the solar silicon wafers are processed and printed, the brush head usually works for a long time, if the brush head is excessively swung, part of ink can be thrown and splashed outwards, and the ink can be splashed on the surrounding operation ground or dripped on the bodies of surrounding operators, so that the processing operation environment around a machine is polluted, and the operation mood of the operators is influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a silicon chip printing machine to current printing machine that proposes in solving above-mentioned background art is to the silicon chip when the printing, and the brush head of printing machine does not have certain protective structure, when processing printing, often the long-time work of brush head, if the brush head whipping is excessive, can outwards get rid of partial printing ink and spatter, drips to spatter around operate subaerially or drip around operating personnel on one's body, pollute the processing operation environment around the machinery, and influence the problem of processing personnel's operation mood.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a silicon chip printing machine, includes the printing machine organism and brushes the head, the fixed surface of printing machine organism installs two sets of brush heads, and two sets of first symmetric distribution of brush, and is two sets of the equal fixedly connected with splashproof mechanism in one side that the brush head was kept away from each other, the supplementary receiving mechanism of all fixedly connected with in both sides of printing machine organism, splashproof mechanism includes the baffle, the inside of baffle all is provided with the conflict pole, and conflict pole one end all passes the outside that the baffle extended to the baffle.
Preferably, the one end gomphosis of feeler lever has conflict piece, and conflicts the piece and be the ball form, the inside of baffle is provided with the spring, the one end of spring and the inner wall fixed connection of baffle, the other end of spring and the one end fixed connection of feeler lever, one side fixedly connected with slider of feeler lever, the spout with slider matched with is seted up to the inside of baffle.
Preferably, the sides of the baffle plates close to each other are fixedly connected with the plug-in units, the sides of the brush heads far away from each other are fixedly connected with the connecting blocks, the sides of the connecting blocks far away from each other are all provided with slots, the sides of the plug-in units near to each other are all extended to the inside of the slots, the two ends of the plug-in are both provided with buffer slots, the inner walls of the two sides of the slot are both provided with fixed slots, the inner wall of one side of the fixed groove is provided with a moving groove, the inner part of the moving groove is provided with a squeezing piece, one end of the extruding piece penetrates through the connecting block and extends to the outer side of the connecting block, clamping blocks are arranged inside the buffer grooves, and the sides of the clamping blocks which are far away from each other all extend to the inside of the fixing groove, the inside of the buffer groove is provided with a spring, one end of the spring is fixedly connected with the inner wall of the buffer groove, and the other end of the spring is fixedly connected with one end of the clamping block.
Preferably, the inside of motion groove all is provided with the spring, the one end of spring all with the inner wall fixed connection of motion groove, the other end of spring all with one side fixed connection of crowded piece, one side of crowded piece all is the inclined plane form, the clamp splice all is the inclined plane form with one side that crowded piece is close to each other.
Preferably, the plug-in components are cross-shaped plug blocks, and the slots are cross-shaped grooves.
Preferably, supplementary receiving mechanism is including accomodating the board, it is articulated mutually with the printing machine organism all through the articulated shaft to accomodate one side that the board is close to each other, the below of accomodating the board all is provided with the threaded rod, and the surface of threaded rod all overlaps and is equipped with two sets of mountings to the one end of threaded rod all is connected with a set of mounting through embedded bearing, the surface of threaded rod all overlaps and is equipped with the thread bush, the surface of thread bush all is articulated mutually through the articulated shaft with the one end of pull rod, the other end of pull rod all is articulated mutually through the articulated shaft and the surface of accomodating the board.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses a baffle can carry out quick separation to the printing ink that falls when the brush head is operated, avoids printing ink direct outward dripping, falls on machinery around the ground, causes the pollution to ground, and the user adds man-hour to the silicon chip when using machinery, can deposit certain instrument of auxiliary processing on the surface of storage plate, effectively deposits the auxiliary processing instrument, and convenience of customers is adding man-hour, and quick taking to the instrument;
1. by arranging the splash-proof mechanism, when a user uses the device to print and process a silicon wafer, the user can insert the plug-in into the connecting block, the baffle is quickly and fixedly installed, then when the machine operates, the ink splashed when the brush head is operated can be quickly separated through the baffle, the ink is prevented from directly dripping outwards and falling on the ground around the machine to pollute the ground, the surrounding operating environment is effectively maintained, and after the machine operates for a certain time, the user can press the squeezing piece to quickly disassemble the baffle, so that the operation of the user is facilitated, and the baffle can be quickly replaced and cleaned only by simply pressing the squeezing piece;
2. through being provided with supplementary receiving mechanism, if operating personnel operates machinery, the threaded rod is moved to the twisting that the user can be quick, make the thread bush constantly drive the storage plate and upwards do the circular arc motion, place horizontal position until with the storage plate, the user adds man-hour to the silicon chip using machinery, can deposit certain appurtenance's instrument on the surface of storage plate, effectually deposit appurtenance, convenience of customers is adding man-hour, quick taking to the instrument, the user passes through supplementary receiving mechanism, effectual convenience of customers is to appurtenance deposit and accomodate, to a certain extent, the usability scope of user when to mechanical operation has been strengthened.
Drawings
FIG. 1 is a schematic sectional view of the front view of the structure of the present invention;
fig. 2 is a schematic structural front sectional view of the middle splash guard of the present invention;
fig. 3 is an enlarged schematic view of the structure a in fig. 2 according to the present invention;
FIG. 4 is a schematic side view of the connecting block of the present invention;
fig. 5 is a schematic structural side view of the middle splash guard of the present invention;
fig. 6 is a schematic sectional view of the auxiliary storage mechanism in front view;
fig. 7 is a schematic front view of the structure of the present invention.
In the figure: 100. a printer body; 200. a brush head; 300. a splash guard mechanism; 310. a baffle plate; 311. a touch bar; 312. a contact member; 313. a plug-in; 314. connecting blocks; 315. a slot; 316. a buffer tank; 317. fixing grooves; 318. a clamping block; 319. a squeezing member; 320. a motion groove; 400. an auxiliary storage mechanism; 410. a storage plate; 411. a threaded rod; 412. a fixing member; 413. a threaded sleeve; 414. a pull rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-7, the present invention provides an embodiment:
a silicon chip printer comprises a printer body 100 and brush heads 200, wherein two groups of brush heads 200 are fixedly mounted on the surface of the printer body 100, the two groups of brush heads 200 are symmetrically distributed, one sides, away from each other, of the two groups of brush heads 200 are fixedly connected with splash-proof mechanisms 300, two sides of the printer body 100 are fixedly connected with auxiliary receiving mechanisms 400, each splash-proof mechanism 300 comprises a baffle plate 310, each baffle plate 310 is internally provided with a touch rod 311, and one end of each touch rod 311 penetrates through the baffle plate 310 and extends to the outer side of the baffle plate 310;
further, the abutting part 312 is embedded in one end of the abutting rod 311, the abutting part 312 is in a spherical shape, and through the arrangement, a spring is arranged inside the baffle 310, one end of the spring is fixedly connected with the inner wall of the baffle 310, the other end of the spring is fixedly connected with one end of the abutting rod 311, one side of the abutting rod 311 is fixedly connected with a sliding block, a sliding groove matched with the sliding block is formed inside the baffle 310, when a user operates and uses the printer body 100, the brush head 200 continuously drives the baffle 310 to move downwards, the abutting rod 311 continuously abuts against an operating surface, after the abutting rod 311 is stressed, the user rapidly moves towards the inside of the baffle 310 to extrude the spring, so that the spring is deformed, and through the resilience of the spring, the abutting rod 311 can always drive the abutting part 312 to be attached to the surface of the operating platform, and through the arrangement, the abutting part 312 is in a spherical shape, the contact surface between the abutting rod 311 and the operating platform surface can be effectively reduced, the printing effect on the silicon wafer is prevented from being influenced by overlarge contact surface;
furthermore, one side of the baffle 310 close to each other is fixedly connected with an insert 313, one side of the brush head 200 far away from each other is fixedly connected with a connecting block 314, one side of the connecting block 314 far away from each other is provided with a slot 315, one side of the insert 313 close to each other is extended into the slot 315, two ends of the insert 313 are provided with buffer slots 316, inner walls of two sides of the slot 315 are provided with fixed slots 317, inner walls of one sides of the fixed slots 317 are provided with moving slots 320, the moving slots 320 are internally provided with squeezing pieces 319, one end of the squeezing pieces 319 is extended to the outer side of the connecting block 314 through the connecting block 314, the buffer slots 316 are internally provided with clamping blocks 318, one side of the clamping blocks 318 far away from each other is extended into the fixed slots 317, the buffer slots 316 are internally provided with springs, one end of each spring is fixedly connected with the inner wall of the buffer slot 316, and the other end of each spring is fixedly connected with one end of the clamping block 318, the squeezing piece 319 and the clamping block 318 are arranged, so that the baffle 310 can be conveniently and fixedly installed by a user, and after the baffle 310 is used, the baffle 310 can be quickly disassembled and replaced, so that the user can conveniently clean the baffle 310;
furthermore, springs are arranged inside the moving groove 320, one end of each spring is fixedly connected with the inner wall of the moving groove 320, the other end of each spring is fixedly connected with one side of the extruding piece 319, one side of each extruding piece 319 is in an inclined plane shape, one side, close to each other, of each clamping block 318 and each extruding piece 319 is in an inclined plane shape, when a user presses the extruding piece 319, the extruding piece 319 rapidly abuts against the clamping block 318, the contact surface between the extruding piece 319 and the clamping block 318 is designed to be an inclined plane, after the extruding piece 319 contacts with the clamping block 318, the clamping block 318 can rapidly continue to contract towards the inside of the buffer groove 316, no obstruction is caused, and when the extruding piece 319 moves, the springs inside the moving groove 320 are pulled to deform, the springs are deformed, and after the user finishes disassembling, the extruding pieces 319 can be rapidly and automatically reset through resilience force of the springs, so that the user can use the moving groove for a second time conveniently;
furthermore, the plug 313 is a cross-shaped plug block, the slot 315 is a cross-shaped groove, and by designing the plug 313 and the slot 315 in a cross shape, when a user inserts the plug 313 into the slot 315, the cross-shaped block is tightly attached to the cross-shaped groove, so that the fixing effect of the plug 313 and the connecting block 314 can be effectively enhanced;
further, supplementary receiving mechanism 400 includes receiving plate 410, one side that receiving plate 410 is close to each other all is articulated mutually with printing machine body 100 through the articulated shaft, receiving plate 410's below all is provided with threaded rod 411, and threaded rod 411's surface all overlaps and is equipped with two sets of mounting 412, and threaded rod 411's one end all is connected with a set of mounting 412 through embedded bearing, threaded rod 411's surface all overlaps and is equipped with thread bush 413, thread bush 413's surface all is articulated mutually through the articulated shaft and the one end of pull rod 414, the other end of pull rod 414 all is articulated mutually through the articulated shaft and receiving plate 410's surface, through being provided with supplementary receiving mechanism 400, when the user is using, can be simple twist threaded rod 411, then can extend receiving plate 410 fast, the convenience of customers deposits supplementary processing tool on receiving plate 410's surface, convenience of customers takes.
The working principle is as follows: when the user uses the device, the user can firstly insert one end of the plug-in 313 into the slot 315, when the connecting block 314 continuously extends into the slot 315, the clamping block 318 continuously abuts against the inner wall of the slot 315, after the clamping block 318 is stressed, the clamping block is quickly contracted towards the inside of the buffer slot 316, the spring is extruded, so that the spring is quickly deformed, when the plug-in 313 drives the clamping block 318 to move to the position on the same plane as the fixed slot 317, the clamping block 318 is quickly driven to move to the inside of the fixed slot 317 through the resilience force of the spring, the plug-in 313 and the baffle 310 are quickly fixed, then, when the mechanical early operation is performed, the baffle 310 can effectively block ink splashed by the swinging of the brush head 200, the ink is prevented from directly splashing on the ground, the ground is prevented from being polluted, the user operation is facilitated, otherwise, the user can quickly press the extruding part 319, so that the extruding part 319 continuously moves towards the inside of the fixed slot 317 in the moving slot 320, meanwhile, when the squeezing piece 319 moves, the spring in the moving groove 320 is pulled, so that the spring is rapidly deformed, the squeezing piece 319 continuously abuts against the clamping block 318, the clamping block 318 is rapidly moved into the buffer groove 316 after being squeezed, and a user can rapidly detach the plug-in piece 313 and the baffle plate 310, so that the user can conveniently clean and replace the plug-in piece;
simultaneously the user is when adding man-hour to machinery, the threaded rod 411 is twisted that the user can be quick, threaded rod 411 cooperatees through the helicitic texture who sets up with thread bush 413, make thread bush 413 upwards move on the surface of threaded rod 411 fast, squeeze pull rod 414 simultaneously and upwards move, it is circular arc motion to drive storage plate 410, until storage plate 410 is in same horizontal position with printing machine organism 100 operation mesa, the user then can be when the operation man-hour, on storage plate 410's surface, place some instrument of assisting processing, be convenient for user operation and take.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. A silicon chip printing machine comprises a printing machine body (100) and a brush head (200), and is characterized in that: the fixed surface of printer body (100) installs two sets of brush heads (200), and two sets of brush heads (200) symmetric distribution, and is two sets of brush head (200) one side fixedly connected with splashproof mechanism (300) of keeping away from each other, the supplementary receiving mechanism (400) of both sides all fixedly connected with of printer body (100), splashproof mechanism (300) includes baffle (310), the inside of baffle (310) all is provided with and supports feeler lever (311), and supports feeler lever (311) one end and all passes the outside that baffle (310) extended to baffle (310).
2. The silicon wafer printer of claim 1, wherein: the one end gomphosis of conflict pole (311) has conflict piece (312), and conflict piece (312) are the ball form, the inside of baffle (310) is provided with the spring, the one end of spring and the inner wall fixed connection of baffle (310), the other end of spring and the one end fixed connection of conflict pole (311), one side fixedly connected with slider of conflict pole (311), the spout with slider matched with has been seted up to the inside of baffle (310).
3. The silicon wafer printer of claim 1, wherein: one side, close to each other, of the baffle plate (310) is fixedly connected with an inserting piece (313), one side, far away from each other, of the brush head (200) is fixedly connected with a connecting block (314), one side, far away from each other, of the connecting block (314) is provided with a slot (315), one side, close to each other, of the inserting piece (313) is extended into the slot (315), two ends of the inserting piece (313) are provided with buffer grooves (316), inner walls of two sides of the slot (315) are provided with fixing grooves (317), inner walls of one side of the fixing grooves (317) are provided with moving grooves (320), the moving grooves (320) are internally provided with extruding pieces (319), one ends of the extruding pieces (319) penetrate through the connecting block (314) and extend to the outer side of the connecting block (314), clamping blocks (318) are arranged inside the buffer grooves (316), and one sides, far away from each other, of the clamping blocks (318) are extended into the fixing grooves (317), the inside of buffer slot (316) all is provided with the spring, the one end of spring all with the inner wall fixed connection of buffer slot (316), the other end of spring all with the one end fixed connection of clamp splice (318).
4. The silicon wafer printer of claim 3, wherein: the inside of motion groove (320) all is provided with the spring, the one end of spring all with the inner wall fixed connection of motion groove (320), the other end of spring all with one side fixed connection of crowded piece (319), one side of crowded piece (319) all is the inclined plane form, clamp splice (318) all is the inclined plane form with one side that crowded piece (319) are close to each other.
5. The silicon wafer printer of claim 3, wherein: the plug-in components (313) are cross-shaped plug blocks, and the slots (315) are cross-shaped grooves.
6. The silicon wafer printer of claim 1, wherein: supplementary receiving mechanism (400) are including accomodating board (410), one side that accomodating board (410) are close to each other all is articulated mutually through articulated shaft and printing machine body (100), the below of accomodating board (410) all is provided with threaded rod (411), and the surface of threaded rod (411) all overlaps and is equipped with two sets of mountings (412) to the one end of threaded rod (411) all is connected with a set of mountings (412) through embedded bearing, the surface of threaded rod (411) all overlaps and is equipped with thread bush (413), the surface of thread bush (413) all is articulated mutually through the articulated shaft and the one end of pull rod (414), the other end of pull rod (414) all is articulated mutually through the articulated shaft and the surface of accomodating board (410).
CN202021958758.3U 2020-09-09 2020-09-09 Silicon chip printing machine Active CN213920130U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021958758.3U CN213920130U (en) 2020-09-09 2020-09-09 Silicon chip printing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021958758.3U CN213920130U (en) 2020-09-09 2020-09-09 Silicon chip printing machine

Publications (1)

Publication Number Publication Date
CN213920130U true CN213920130U (en) 2021-08-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021958758.3U Active CN213920130U (en) 2020-09-09 2020-09-09 Silicon chip printing machine

Country Status (1)

Country Link
CN (1) CN213920130U (en)

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