CN221736677U - Glass substrate cutting device for producing liquid crystal display modules - Google Patents

Glass substrate cutting device for producing liquid crystal display modules Download PDF

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Publication number
CN221736677U
CN221736677U CN202322327878.3U CN202322327878U CN221736677U CN 221736677 U CN221736677 U CN 221736677U CN 202322327878 U CN202322327878 U CN 202322327878U CN 221736677 U CN221736677 U CN 221736677U
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groups
dust collection
glass substrate
electric push
liquid crystal
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赵圣铭
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Shenzhen Juxianda Technology Co ltd
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Jiangsu Julong Display Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

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  • Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)

Abstract

本实用新型公开了一种液晶显示模组生产用玻璃基板切割装置,涉及液晶显示模组加工附属装置技术领域,调节组件,其包括架体,架体内顶壁的一端设置有纵向平移件,架体内顶壁的另一端设置有限位件,纵向平移件和限位件的底部均安装有第一电动推杆,两组第一电动推杆的底部设置有横向平移件,横向平移件底部的两端均设置有切割件,定位组件,定位组件设置于架体之间。本实用新型通过架体、纵向平移件、限位件、第一电动推杆、横向平移件和切割件的配合设置,通过横向平移件能够快速调整两组切割件之间的间距,从而能够切割出不同尺寸的玻璃基板,解决了现有装置切割的玻璃基板规格单一的问题,提高了装置的适用范围。

The utility model discloses a glass substrate cutting device for producing liquid crystal display modules, and relates to the technical field of liquid crystal display module processing auxiliary devices, an adjustment component, which includes a frame, a longitudinal translation member is arranged at one end of the top wall of the frame, a limiting member is arranged at the other end of the top wall of the frame, a first electric push rod is installed at the bottom of the longitudinal translation member and the limiting member, a transverse translation member is arranged at the bottom of the two groups of first electric push rods, and cutting members are arranged at both ends of the bottom of the transverse translation member, and a positioning component is arranged between the frames. The utility model can quickly adjust the spacing between the two groups of cutting members through the coordination of the frame, the longitudinal translation member, the limiting member, the first electric push rod, the transverse translation member and the cutting member, so that glass substrates of different sizes can be cut, which solves the problem of single specification of glass substrates cut by existing devices and improves the application range of the device.

Description

Glass substrate cutting device for liquid crystal display module production
Technical Field
The utility model relates to the technical field of auxiliary devices for processing liquid crystal display modules, in particular to a glass substrate cutting device for producing liquid crystal display modules.
Background
The liquid crystal display screen is one kind of planar display, and has liquid crystal solution in two sheets of polarized material to re-align crystal for imaging when current passes through the liquid, and the glass substrate has high transparency, certain mechanical hardness, easy machining and other features, the glass substrate is required to be cut in the production process of the liquid crystal display module, so that the glass substrate becomes a plurality of monomers of the liquid crystal display panel.
The utility model discloses a glass cutting device for producing a liquid crystal display screen, which comprises an operation table, wherein a cleaning port is arranged outside the front of the operation table and connected with the operation table through a rotary bolt, a cleaning box is arranged on two sides of the inside of the operation table, a clamping block is arranged below the cleaning box, the outer wall of the clamping block is matched with a clamping groove, the clamping groove is formed in the surface below the inner wall of the operation table, a gear is arranged in the operation table, a driving motor is arranged in front of the gear, the driving motor is connected with the gear, baffles are arranged on two sides of the gear and connected with the operation table through a first fixing bolt, and a supporting frame is arranged on one side of the upper part of the operation table. In this glass cutting device is used in LCD production, can concentrate the clearance with the piece that falls when cutting glass, the piece splashes when avoiding cutting glass, leads to inconvenient clearance to the effectual result of use that promotes the device, above-mentioned device cuts glass substrate through the gear in the use, but the position of above-mentioned cutting member is fixed, the inconvenient regulation in position of cutting member makes the device only cut out the base plate of unified specification, when the base plate of other specifications of needs cutting, needs to change cutting device, and then reduced the application range of device.
Disclosure of utility model
This section is intended to outline some aspects of embodiments of the utility model and to briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section as well as in the description of the utility model and in the title of the utility model, which may not be used to limit the scope of the utility model.
Therefore, the utility model aims to provide the glass substrate cutting device for the production of the liquid crystal display module, which can solve the problems that the conventional cutting piece is fixed in position and the position of the cutting piece is inconvenient to adjust, so that the device can only cut substrates with uniform specifications, and the application range of the device is further reduced.
In order to solve the technical problems, the utility model provides a glass substrate cutting device for producing a liquid crystal display module, which adopts the following technical scheme: the adjusting assembly comprises a frame body, one end of the top wall in the frame body is provided with a longitudinal translation part, the other end of the top wall in the frame body is provided with a limiting part, the bottoms of the longitudinal translation part and the limiting part are respectively provided with a first electric push rod, the bottoms of the two groups of first electric push rods are respectively provided with a transverse translation part, and the two ends of the bottom of the transverse translation part are respectively provided with a cutting part;
the positioning assembly is arranged between the frame bodies and comprises two groups of second electric push rods, the two groups of second electric push rods are arranged on two sides of the inner cavity of the frame body, and clamping pieces are arranged at the output ends of the two groups of second electric push rods;
The longitudinal translation part (102) comprises two groups of first fixing plates (1021), the two groups of first fixing plates (1021) are arranged at one end of the inner top wall of the frame body (101), a unidirectional screw rod (1022) is connected between the two groups of first fixing plates (1021), a positive and negative motor (1023) is arranged at the outer side of the first fixing plates (1021) at the rear end, the power output end of the positive and negative motor (1023) is fixedly connected with the rear end of the unidirectional screw rod (1022), a first screw nut (1024) is connected with the outer wall of the positive and negative motor (1023) through threads, and the bottom of the first screw nut (1024) is fixedly connected with the top of the first electric push rod (104) at the left end;
The transverse translation piece (105) comprises a mounting plate (1051), the mounting plate (1051) is mounted at the bottom of two groups of first electric push rods (104), connecting plates (1052) are mounted at the two ends of the bottom of the mounting plate (1051), two groups of connecting plates are connected with a bidirectional screw rod (1053) through bearings, the left end of each connecting plate is provided with a servo motor (1054) for driving the bidirectional screw rod (1053) to rotate, two ends of the outer wall of the bidirectional screw rod (1053) are connected with second nuts (1055) in a threaded mode, limiting blocks (1056) are connected at the tops of the two groups of the second nuts (1055), limiting grooves (1057) can be formed in the two ends of the bottom of the mounting plate (1051), and the limiting blocks (1056) are connected with the limiting grooves (1057) in a sliding mode.
Through adopting the technical scheme, the glass substrate can be fixed and clamped through the second electric push rod and the clamping piece, the situation that the substrate is displaced during cutting is avoided as much as possible, and then the distance between the two groups of cutting pieces can be adjusted through the transverse translation piece, so that the device can cut substrates with different specifications according to requirements, the application range of the device is enlarged, and the cutting pieces can be driven to move back and forth through the longitudinal translation piece and the limiting piece, so that the cutting work of the glass substrate is realized;
when the positive and negative motor is started, the unidirectional screw rod is driven to rotate, and the unidirectional screw rod rotates to drive the first screw to move back and forth, so that the transverse translation piece and the cutting piece can be driven to move back and forth;
The servo motor drives the two-way screw rod to rotate when starting, and the two-way screw rod rotates and drives the second screw to move left and right, and the second screw drives the stopper to slide in the limiting groove when moving to can carry out spacing to the second screw, the second screw moves left and right and drives the cutting piece to move left and right, and then can adjust the interval between two sets of cutting pieces.
Optionally, the locating part includes two sets of second fixed plates, two sets of the second fixed plate is installed the other end of roof in the support body, two sets of be connected with the polished rod between the second fixed plate, the outer wall cover of polished rod is equipped with the sliding sleeve, the bottom and the right-hand member of sliding sleeve the top fixed connection of first electric putter, the sliding sleeve with be connected with the connecting rod between the first screw.
Through adopting above-mentioned technical scheme, drive the sliding sleeve through the connecting rod and slide along the polished rod when first screw removes, and then can carry out spacingly to first screw, prevent that first screw from rotating.
Optionally, the cutting member includes two sets of risers, two sets of the riser is installed in two sets of the bottom of second screw, two sets of the riser is close to one side at mounting panel center all installs driving motor, two sets of cutting blade is all installed to driving motor's power take off end.
Through adopting above-mentioned technical scheme, driving motor during operation drives the cutting blade and rotates to can realize cutting work to glass substrate.
Optionally, the holder includes two sets of holders, two sets of the holders install respectively two sets of the output of second electric putter, two sets of the top of holder is all run through there is the movable rod, two sets of the arm-tie is all installed at the top of movable rod, two sets of the clamp plate is all installed to the bottom of movable rod, the top of clamp plate with be connected with positioning spring between the interior roof of holder.
Through adopting above-mentioned technical scheme, before fixing a position glass substrate, upwards pulling arm-tie, the arm-tie drives the clamp plate upward movement through the movable rod, and then can compress positioning spring, place glass substrate in the bottom of clamp plate and loosen the arm-tie this moment, under positioning spring's elasticity effect, the clamp plate downwardly moving presses fixed glass substrate, avoids glass substrate to appear the condition of displacement at the in-process of cutting as far as possible.
Optionally, the bottom of clamp plate and the interior bottom wall of grip slipper all are connected with the rubber pad.
By adopting the technical scheme, the resistance of the pressing plate and the clamping seat when in contact with the glass substrate is increased, and the glass substrate is clamped more firmly.
Optionally, the bottom of support body is provided with dust collection subassembly, dust collection subassembly includes the dust collection box, the dust collection box is installed the bottom of support body, negative pressure fan is all installed at the both ends of the diapire in the dust collection box, the through-hole has been seted up at the top of dust collection box, the inner chamber of dust collection box is provided with the filter, the both sides of dust collection box all are connected with the dust absorption pipe, two sets of the dust absorption pipe is kept away from the dust collection cover is all installed to the one end of dust collection box, two sets of the dust collection cover is installed the both sides of support body inner chamber.
Through adopting above-mentioned technical scheme, through dust absorption pipe and suction hood with the glass piece suction dust collection incasement portion that produces when cutting, set up intensive through-hole under the upper surface of dust collection case is close to glass substrate simultaneously here for the glass piece that the cutting produced can be through-hole suction dust collection incasement, realizes the omnidirectional absorption from top to bottom, avoids tiny glass piece diffusion to the air as far as possible, is inhaled internal harm health by the staff.
Optionally, the surface mounting of dust collection box, with the junction of dust collection box is provided with sealed pad.
Through adopting above-mentioned technical scheme to can open after the device work is finished, clear up the piece that the dust collection box is inside to collect, the leakproofness when having increased to be connected with the dust collection box is sealed to the setting of pad, avoids the piece to be raised outward as far as possible.
Optionally, the filter comprises a filter screen plate, the filter screen plate is installed the inner chamber of dust collection box, the both ends of filter screen plate all are connected with the inserted block, the slot body is all installed to the both sides of dust collection box inner chamber, the inserted block with inserted block sliding connection.
Through adopting above-mentioned technical scheme, can block the piece through the filter screen plate, prevent that the piece from damaging negative pressure fan, after the device work, outwards stimulate the filter screen plate, and then drive the inserts outwards remove, until the inserts separates with the slot body to can dismantle the filter screen plate and clear up the piece.
In summary, the present utility model includes at least one of the following beneficial effects:
(1) Through support body, vertical translation spare, locating part, first electric putter, horizontal translation spare and the cooperation setting of cutting member, can the interval between two sets of cutting members of fast adjustment through horizontal translation spare to can cut out not unidimensional glass substrate, solve the single problem of glass substrate specification of current device cutting, improved the application scope of device.
(2) Through the cooperation setting of second electric putter and holder to can be with the fixed pressing of glass substrate, avoid the glass substrate to appear the condition of displacement at the in-process of cutting as far as possible, and then improve glass substrate's cutting quality.
(3) Through the cooperation setting of dust collection box, negative pressure fan, through-hole, filter, dust absorption pipe and dust hood to can concentrate the inside of dust collection box with the glass piece that produces in the cutting process, avoid tiny glass piece diffusion to the air as far as possible, inhale internal harm health by the staff.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic cross-sectional view of the present utility model;
FIG. 2 is a schematic elevational view of the present utility model;
FIG. 3 is a schematic view of the translating element and limiting element structure of the present utility model;
FIG. 4 is a schematic view of the structure of FIG. 1A according to the present utility model;
fig. 5 is a schematic diagram of the structure B in fig. 1 according to the present utility model.
In the figure:
1. An adjustment assembly; 101. a frame body; 102. a longitudinal translation member; 1021. a first fixing plate; 1022. a unidirectional screw rod; 1023. a forward and reverse motor; 1024. a first nut; 103. a limiting piece; 1031. a second fixing plate; 1032. a polish rod; 1033. a sliding sleeve; 1034. a connecting rod; 104. a first electric push rod; 105. a lateral translation member; 1051. a mounting plate; 1052. a connecting plate; 1053. a second bidirectional screw rod; 1054. a servo motor; 1055. a second nut; 1056. a limiting block; 1057. a limit groove; 106. a cutting member; 1061. a riser; 1062. a driving motor; 1063. a cutting blade;
2. A positioning assembly; 201. a second electric push rod; 202. a clamping member; 2021. a clamping seat; 2022. a movable rod; 2023. pulling a plate; 2024. a pressing plate; 2025. a positioning spring;
3. A dust collection assembly; 301. a dust collection box; 302. a negative pressure fan; 303. a through hole; 304. a filter; 3041. a filter screen plate; 3042. inserting blocks; 3043. a slot body; 305. a dust collection pipe; 306. a dust hood.
Detailed Description
The utility model is described in further detail below with reference to fig. 1-5.
Referring to fig. 1 and 2, in this embodiment, in order to solve the problem that the existing cutting member is fixed in position and the position of the cutting member is inconvenient to adjust, so that the device can only cut a substrate with uniform specification, and further the application range of the device is reduced, the utility model discloses a glass substrate cutting device for producing a liquid crystal display module, which comprises a frame body 101, wherein one end of the inner top wall of the frame body 101 is provided with a longitudinal translation member 102, the other end of the inner top wall of the frame body 101 is provided with a limiting member 103, the bottoms of the longitudinal translation member 102 and the limiting member 103 are both provided with first electric push rods 104, the bottoms of the two groups of first electric push rods 104 are provided with transverse translation members 105, and both ends of the bottom of the transverse translation members 105 are provided with cutting members 106, so that the glass substrate can be cut through the cutting members 106.
The positioning assembly 2 is arranged between the frame bodies 101, the positioning assembly 2 comprises two groups of second electric push rods 201, the two groups of second electric push rods 201 are arranged on two sides of an inner cavity of the frame body 101, clamping pieces 202 are arranged at output ends of the two groups of second electric push rods 201, and the glass substrate is conveniently fixed and pressed through the clamping pieces 202.
Referring to fig. 1 and 3, the longitudinal translation member 102 includes two sets of first fixing plates 1021, the two sets of first fixing plates 1021 are fixedly mounted at one end of an inner top wall of the frame 101, a unidirectional screw rod 1022 is rotatably connected between the two sets of first fixing plates 1021, a forward and reverse motor 1023 is mounted at the outer side of the rear end first fixing plate 1021, a power output end of the forward and reverse motor 1023 is fixedly connected with the rear end of the unidirectional screw rod 1022, a first screw 1024 is in threaded connection with the outer wall of the forward and reverse motor 1023, and the bottom of the first screw 1024 is fixedly connected with the top of the left end first electric push rod 104. When the forward and reverse motor 1023 is started, the unidirectional screw 1022 is driven to rotate, and the unidirectional screw 1022 drives the first screw 1024 to move forwards and backwards, so that the transverse translation member 105 and the cutting member 106 can be driven to move forwards and backwards.
Referring to fig. 1 and 3, the limiting member 103 includes two sets of second fixing plates 1031, the other end of the inner top wall of the frame 101 is mounted with two sets of second fixing plates 1031, a polish rod 1032 is fixedly connected between the two sets of second fixing plates 1031, a sliding sleeve 1033 is sleeved on the outer wall of the polish rod 1032, the bottom of the sliding sleeve 1033 is fixedly connected with the top of the right-end first electric push rod 104, and a connecting rod 1034 is connected between the sliding sleeve 1033 and the first screw 1024. When the first nut 1024 moves, the sliding sleeve 1033 is driven by the connecting rod 1034 to slide along the polished rod 1032, so that the first nut 1024 can be limited, and the first nut 1024 is prevented from rotating.
Referring to fig. 1, the transverse translation member 105 includes a mounting plate 1051, the bottom of two sets of first electric putter 104 is installed to mounting plate 1051, the equal fixed mounting in both ends of mounting plate 1051 bottom has connecting plate 1052, be connected with two-way lead screw 1053 through the bearing rotation between two sets of connecting plates 1052, servo motor 1054 for driving two-way lead screw 1053 pivoted is installed in the outside of left end connecting plate 1052, the equal threaded connection in both ends of two-way lead screw 1053 outer wall has second screw 1055, the equal fixedly connected with stopper 1056 in top of two sets of second screw 1055, spacing groove 1057 all can be seted up at the both ends of mounting plate 1051 bottom, sliding connection between two sets of spacing piece 1056 and two sets of spacing groove 1057. The servo motor 1054 drives the bidirectional screw rod 1053 to rotate when being started, the bidirectional screw rod 1053 rotates to drive the second screw 1055 to move left and right, and the second screw 1055 drives the limiting block 1056 to slide in the limiting groove 1057 when moving, so that the second screw 1055 can be limited, the second screw 1055 moves left and right to drive the cutting pieces 106 to move left and right, and the distance between the two groups of cutting pieces 106 can be adjusted.
Referring to fig. 2, the cutting member 106 includes two sets of risers 1061, the two sets of risers 1061 are mounted at bottoms of the two sets of second nuts 1055, the driving motors 1062 are fixedly mounted on one sides of the two sets of risers 1061 near the center of the mounting plate 1051, and the cutting blades 1063 are fixedly mounted on power output ends of the two sets of driving motors 1062. The driving motor 1062 operates to rotate the cutting blade 1063, thereby cutting the glass substrate.
The specific implementation principle is as follows: according to the glass substrate specification that needs the cutting, start servo motor 1054, servo motor 1054 during operation drives two-way lead screw 1053 and rotates, two-way lead screw 1053 rotates and drives second screw 1055 and move about, second screw 1055 removes and drives stopper 1056 and slide in spacing groove 1057, thereby can carry out spacing to second screw 1055, simultaneously second screw 1055 also can drive cutting member 106 and move about, and then the interval between two sets of cutting members 106 is conveniently adjusted, conveniently cut out the base plate of different specifications, after the distance adjustment between cutting member 106 finishes, operating personnel control first electric putter 104 stretches out, first electric putter 104 stretches out and promotes horizontal translation piece 105 downwardly moving, and then can drive cutting member 106 downwardly moving, until cutting blade 1063 and glass substrate contact, then start driving motor 1062, driving motor 1062 during operation drives cutting blade 1063 and rotates, simultaneously, positive and negative motor 1023 starts to drive unidirectional lead screw 1022 and rotates, unidirectional lead screw 1022 rotates and drives first screw 1024 and moves, thereby the first screw 1024 moves, first screw 1024 moves through 1034 and drives first screw 1024 and moves along 1034 when the glass substrate is cut out the work device, thereby can cut glass substrate 1024 and move along the first electric putter 1024, thereby the work device is cut out, the work is realized, the glass substrate is cut by the side of moving along the first electric putter 1024, the glass substrate is cut, the work is cut by the first glass substrate is cut, the front and the glass substrate is cut.
Referring to fig. 1 and 5, in this embodiment, based on the same concept as that of the first embodiment, the glass substrate cutting device for producing a liquid crystal display module further includes two groups of clamping holders 2021, the two groups of clamping holders 2021 are respectively mounted at output ends of the two groups of second electric push rods 201, movable rods 2022 vertically penetrate through tops of the two groups of clamping holders 2021, pull plates 2023 are fixedly mounted on tops of the two groups of movable rods 2022, pressing plates 2024 are fixedly mounted at bottoms of the two groups of movable rods 2022, and positioning springs 2025 are connected between tops of the pressing plates 2024 and inner top walls of the clamping holders 2021.
Referring to fig. 5, rubber pads are fixedly connected to the bottom of the pressing plate 2024 and the inner bottom wall of the clamping base 2021. Thereby increasing the resistance of the pressing plate 2024 and the clamping base 2021 when they are in contact with the glass substrate, and further making the glass substrate clamped more firmly.
The specific implementation principle is as follows: before cutting the glass substrate, an operator pulls the pull plate 2023 upwards, the pull plate 2023 drives the pressing plate 2024 to move upwards through the movable rod 2022, at the moment, the positioning spring 2025 is stressed and contracted, then the operator places the glass substrate on the inner bottom wall of the clamping seat 2021 and releases the pull plate 2023, the pressing plate 2024 moves downwards to press and fix the glass substrate under the elastic force of the positioning spring 2025, the situation that the glass substrate is displaced in the cutting process is avoided as much as possible, and the cutting effect of the device is improved.
Referring to fig. 1, in this embodiment, based on the same concept as that of the first embodiment, the glass substrate cutting device for producing a liquid crystal display module further includes a dust collecting assembly 3 disposed at the bottom of the frame 101, the dust collecting assembly 3 includes a dust collecting box 301, the dust collecting box 301 is mounted at the bottom of the frame 101, negative pressure fans 302 are fixedly mounted at two ends of an inner bottom wall of the dust collecting box 301, a plurality of through holes 303 are formed at the top of the dust collecting box 301, filtering members 304 are disposed in an inner cavity of the dust collecting box 301, dust collecting pipes 305 are fixedly connected at two sides of the dust collecting box 301, dust collecting hoods 306 are mounted at one ends, far away from the dust collecting box 301, of the two groups of dust collecting pipes 305, and the two groups of dust collecting hoods 306 are mounted at two sides of the inner cavity of the frame 101. Glass scraps generated during cutting are sucked into the dust collection box 301 through the dust collection pipe 305 and the dust collection cover 306, and meanwhile, dense through holes 303 are formed in the upper surface of the dust collection box 301, which is close to the lower portion of the glass substrate, so that the glass scraps generated during cutting can be sucked into the dust collection box 301 through the through holes 303, the up-down omnibearing absorption is realized, fine glass scraps are prevented from being diffused into the air as much as possible, and the inside of the body is sucked by workers to damage health.
Referring to fig. 4, the filter 304 includes a filter screen 3041, the filter screen 3041 is mounted in an inner cavity of the dust box 301, two ends of the filter screen 3041 are fixedly connected with an insert 3042, two sides of the inner cavity of the dust box 301 are fixedly mounted with an insert body 3043, and the insert 3042 is slidably connected with the insert 3042. The filter screen plate 3041 can block scraps, the negative pressure fan 302 is prevented from being damaged by the scraps, after the device works, the filter screen plate 3041 is pulled outwards, and then the insert 3042 is driven to move outwards until the insert 3042 is separated from the slot body 3043, so that the filter screen plate 3041 can be detached and scraps can be cleaned.
The specific implementation principle is as follows: the device can produce a large amount of piece at the in-process of cutting, start negative pressure fan 302 this moment, dust absorption pipe 305 and suction hood 306 are with the inside of the partial piece suction dust collection box 301 that produces when cutting, set up intensive through-hole 303 under the upper surface of dust collection box 301 is close to the glass substrate simultaneously, make the partial piece that produces of cutting inhale in the dust collection box 301 through-hole 303, realize the omnidirectional absorption from top to bottom, avoid tiny glass piece diffusion to the air as far as possible, by staff inhale internal harm health, when piece gets into the dust collection box 301 inside, block the piece through filter screen 3041, prevent that the piece from getting into the inner chamber of negative pressure fan 302 and damaging it, after the device work is finished, open 3011, the convenience is unified clearance to the piece of collecting in the dust collection box 301 inside.
The above embodiments are not intended to limit the scope of the present utility model, so: all equivalent changes in structure, shape and principle of the utility model should be covered in the scope of protection of the utility model.

Claims (7)

1. The utility model provides a glass substrate cutting device is used in production of liquid crystal display module, its characterized in that: comprising the steps of (a) a step of,
The adjusting assembly (1) comprises a frame body (101), one end of the inner top wall of the frame body (101) is provided with a longitudinal translation part (102), the other end of the inner top wall of the frame body (101) is provided with a limiting part (103), first electric push rods (104) are respectively arranged at the bottoms of the longitudinal translation part (102) and the limiting part (103), transverse translation parts (105) are arranged at the bottoms of the two groups of first electric push rods (104), and cutting parts (106) are respectively arranged at the two ends of the bottom of the transverse translation part (105);
The positioning assembly (2) is arranged between the frame bodies (101) and comprises two groups of second electric push rods (201), the two groups of second electric push rods (201) are arranged on two sides of an inner cavity of the frame bodies (101), and clamping pieces (202) are arranged at output ends of the two groups of second electric push rods (201);
The longitudinal translation part (102) comprises two groups of first fixing plates (1021), the two groups of first fixing plates (1021) are arranged at one end of the inner top wall of the frame body (101), a unidirectional screw rod (1022) is connected between the two groups of first fixing plates (1021), a positive and negative motor (1023) is arranged at the outer side of the first fixing plates (1021) at the rear end, the power output end of the positive and negative motor (1023) is fixedly connected with the rear end of the unidirectional screw rod (1022), a first screw nut (1024) is connected with the outer wall of the positive and negative motor (1023) through threads, and the bottom of the first screw nut (1024) is fixedly connected with the top of the first electric push rod (104) at the left end;
The transverse translation piece (105) comprises a mounting plate (1051), the mounting plate (1051) is mounted at the bottom of two groups of first electric push rods (104), connecting plates (1052) are mounted at the two ends of the bottom of the mounting plate (1051), two groups of connecting plates are connected with a bidirectional screw rod (1053) through bearings, the left end of each connecting plate is provided with a servo motor (1054) for driving the bidirectional screw rod (1053) to rotate, two ends of the outer wall of the bidirectional screw rod (1053) are connected with second nuts (1055) in a threaded mode, limiting blocks (1056) are connected at the tops of the two groups of the second nuts (1055), limiting grooves (1057) can be formed in the two ends of the bottom of the mounting plate (1051), and the limiting blocks (1056) are connected with the limiting grooves (1057) in a sliding mode.
2. The glass substrate cutting device for producing a liquid crystal display module according to claim 1, wherein: the limiting part (103) comprises two groups of second fixing plates (1031), the two groups of second fixing plates (1031) are arranged at the other end of the inner top wall of the frame body (101), a polished rod (1032) is connected between the two groups of second fixing plates (1031), a sliding sleeve (1033) is sleeved on the outer wall of the polished rod (1032), the bottom of the sliding sleeve (1033) is fixedly connected with the top of the first electric push rod (104), and a connecting rod (1034) is connected between the sliding sleeve (1033) and the first screw (1024).
3. The glass substrate cutting device for producing a liquid crystal display module according to claim 1, wherein: the cutting piece (106) comprises two groups of vertical plates (1061), the two groups of vertical plates (1061) are arranged at the bottoms of the two groups of second nuts (1055), driving motors (1062) are arranged on one sides, close to the centers of the mounting plates (1051), of the two groups of vertical plates (1061), and cutting blades (1063) are arranged at the power output ends of the driving motors (1062).
4. The glass substrate cutting device for producing a liquid crystal display module according to claim 1, wherein: clamping piece (202) are including two sets of grip brackets (2021), two sets of grip brackets (2021) are installed respectively in two sets of the output of second electric putter (201), two sets of the top of grip brackets (2021) is all run through movable rod (2022), two sets of arm-tie (2023) are all installed at the top of movable rod (2022), two sets of clamp plate (2024) are all installed to the bottom of movable rod (2022), the top of clamp plate (2024) with be connected with positioning spring (2025) between the interior roof of grip brackets (2021).
5. The glass substrate cutting device for producing a liquid crystal display module according to claim 4, wherein: rubber pads are connected to the bottom of the pressing plate (2024) and the inner bottom wall of the clamping seat (2021).
6. The glass substrate cutting device for producing a liquid crystal display module according to claim 1, wherein: the dust collection device comprises a frame body (101), and is characterized in that a dust collection assembly (3) is arranged at the bottom of the frame body (101), the dust collection assembly (3) comprises a dust collection box (301), the dust collection box (301) is arranged at the bottom of the frame body (101), negative pressure fans (302) are arranged at two ends of the inner bottom wall of the dust collection box (301), through holes (303) are formed in the top of the dust collection box (301), filtering pieces (304) are arranged in an inner cavity of the dust collection box (301), dust collection pipes (305) are connected to two sides of the dust collection box (301), dust collection covers (306) are arranged at two groups of dust collection pipes (305) at one ends of the dust collection box (301), and the dust collection covers (306) are arranged at two sides of the inner cavity of the frame body (101).
7. The glass substrate cutting device for producing a liquid crystal display module according to claim 6, wherein: the filter piece (304) comprises a filter screen plate (3041), the filter screen plate (3041) is installed in an inner cavity of the dust collection box (301), inserting blocks (3042) are connected to two ends of the filter screen plate (3041), inserting groove bodies (3043) are installed on two sides of the inner cavity of the dust collection box (301), and the inserting blocks (3042) are connected with the inserting blocks (3042) in a sliding mode.
CN202322327878.3U 2023-08-29 2023-08-29 Glass substrate cutting device for producing liquid crystal display modules Active CN221736677U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322327878.3U CN221736677U (en) 2023-08-29 2023-08-29 Glass substrate cutting device for producing liquid crystal display modules

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322327878.3U CN221736677U (en) 2023-08-29 2023-08-29 Glass substrate cutting device for producing liquid crystal display modules

Publications (1)

Publication Number Publication Date
CN221736677U true CN221736677U (en) 2024-09-20

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ID=92744480

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322327878.3U Active CN221736677U (en) 2023-08-29 2023-08-29 Glass substrate cutting device for producing liquid crystal display modules

Country Status (1)

Country Link
CN (1) CN221736677U (en)

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Effective date of registration: 20250922

Address after: 518000 Room 501, building a11, silicon valley power intelligent terminal Industrial Park, 20 Dafu Industrial Zone, Dafu community, Guanlan street, Longhua District, Shenzhen City, Guangdong Province

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Patentee before: JIANGSU JULONG DISPLAY TECHNOLOGY Co.,Ltd.

Country or region before: China