CN210694508U - Unilateral suspension type alignment exposure device - Google Patents

Unilateral suspension type alignment exposure device Download PDF

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Publication number
CN210694508U
CN210694508U CN201921874780.7U CN201921874780U CN210694508U CN 210694508 U CN210694508 U CN 210694508U CN 201921874780 U CN201921874780 U CN 201921874780U CN 210694508 U CN210694508 U CN 210694508U
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transverse
moving plate
exposure
vertical
transverse sliding
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CN201921874780.7U
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Chinese (zh)
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陈宁
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Shenzhen Ranbo Technology Co ltd
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Shenzhen Ranbo Technology Co ltd
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Abstract

A single-side suspension type alignment exposure device comprises two groups of transverse sliding rails, wherein a feeding station and an exposure station are sequentially arranged between the two groups of transverse sliding rails along the direction of a symmetry line of the transverse sliding rails; each transverse sliding rail corresponds to one transverse moving plate, and one side of each transverse moving plate is provided with a transverse sliding block matched with the transverse sliding rail; the vertical moving plate is arranged on the transverse moving plate in a vertically sliding manner, a vertical sliding rail is arranged on the transverse moving plate at the other side of the transverse moving plate where the transverse sliding block is arranged, and a vertical sliding block matched with the vertical sliding rail is arranged on the vertical moving plate; the lifting driving mechanism is used for driving the vertical moving plate to vertically slide on the horizontal moving plate; the exposure platform, one side edge and the vertical movable plate fixed connection of exposure platform are in order to be unilateral suspension type structure to make two sets of exposure platforms respectively in proper order the round trip movement between material loading station and exposure station. The utility model discloses a unilateral suspension type counterpoint exposure device has not only saved the cost of labor, has reached the improvement work efficiency purpose moreover.

Description

Unilateral suspension type alignment exposure device
Technical Field
The utility model relates to a PCB circuit board exposure equipment technical field, concretely relates to unilateral suspension type counterpoint exposure device.
Background
With the continuous development of social science and technology, more and more electronic products with more and more abundant functions emerge on the market. In the development of electronic products in the prior art, a circuit board is usually required to be manufactured, so the manufacturing process of the circuit board is particularly important in the development process of the electronic products. In the production process of the PCB, the exposure of the PCB is an extremely important link. The existing PCB circuit board exposure adopts manual operation, and the defect of low operation efficiency exists.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a solve the above-mentioned problem that prior art exists, provide a unilateral suspension type counterpoint exposure device to the PCB circuit board exposure of solving among the prior art adopts artifical manual work, the technical problem that work efficiency is low.
In order to achieve the above object, the utility model provides a unilateral suspension type counterpoint exposure device, include:
the device comprises two groups of transverse sliding rails, a feeding station and an exposure station, wherein the two groups of transverse sliding rails are arranged symmetrically left and right and are arranged in parallel, and the feeding station and the exposure station are sequentially arranged between the two groups of transverse sliding rails along the direction of a symmetrical line of the two groups of transverse sliding rails;
the transverse moving plates are arranged on the transverse sliding rails in a transverse sliding mode, the number of the transverse moving plates is two, the transverse moving plates are vertically arranged, each transverse sliding rail corresponds to one transverse moving plate, and a transverse moving slider matched with the transverse sliding rails is arranged on one side of each transverse moving plate;
the transverse moving plates are provided with transverse sliding blocks, and vertical sliding blocks matched with the vertical sliding rails are arranged on the transverse moving plates;
the lifting driving mechanisms are arranged in two groups, each vertical moving plate corresponds to one lifting driving mechanism, and the lifting driving mechanisms are used for driving the vertical moving plates to vertically slide on the transverse moving plates;
the exposure tables are arranged horizontally, each vertical moving plate corresponds to one exposure table, one side edge of each exposure table is fixedly connected with the vertical moving plate to form a single-side suspension structure, and therefore the two groups of exposure tables respectively reciprocate between the loading station and the exposure station in sequence.
As a further preferred technical scheme of the utility model, the device is still including the fixed plate that is used for installing horizontal slide rail, the face of fixed plate is vertical setting.
As the utility model discloses a further preferred technical scheme, every group horizontal sliding rail includes at least one top horizontal sliding rail and at least one side horizontal sliding rail, the top horizontal sliding rail set up in top and the atress face of fixed plate are upwards, the side horizontal sliding rail set up in side and the atress face perpendicular to of fixed plate the fixed plate, the last sideslip slider of horizontal moving plate includes top sideslip slider and side sideslip slider, top sideslip slider with the cooperation of top horizontal sliding rail, side sideslip slider with the cooperation of side horizontal sliding rail.
As a further preferred technical scheme of the utility model, vertical slide rail on the lateral shifting board is many, and the interval sets up.
As a further preferred technical scheme of the utility model, lift actuating mechanism includes elevator motor and lead screw, elevator motor is fixed in on the lateral shifting board, the screw-nut of lead screw set up in on the vertical movable plate, the lead screw of lead screw is vertical to be passed screw-nut and with the elevator motor transmission is connected.
As a further preferred technical scheme of the utility model, lift actuating mechanism is still including the lift helping hand cylinder that is vertical setting, the body of lift helping hand cylinder is fixed in on the lateral shifting board, the piston rod of lift helping hand cylinder with vertical movable plate is connected.
As a further preferred technical scheme of the utility model, the lead screw is vertical set up in the middle part of vertical movable plate, the quantity of lift helping hand cylinder is two, two lift helping hand cylinder symmetry set up in the left and right sides of lead screw.
As a further preferred technical scheme of the utility model, the device still includes servo motor, servo motor and two sets of lateral shifting board transmission is respectively connected with drive lateral shifting board lateral sliding on the lateral slide rail that corresponds.
The utility model discloses a unilateral suspension type counterpoint exposure device uses in PCB circuit board exposure field, through including above-mentioned technical scheme, makes the utility model discloses can come and go in proper order two exposure platforms between material loading station and the exposure station to stagger in order to realize the upper and lower position through the elevating movement control, and through both one high one low in order to ensure each other not influencing of lateral shifting in-process, exchange in order to realize the circulation of two exposure platforms between two stations with unilateral suspension type structure promptly, not only saved the cost of labor, reached the purpose that improves work efficiency moreover.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic structural diagram of an example provided by the single-side suspension type alignment exposure apparatus of the present invention;
FIG. 2 is a top view of the single-sided suspended alignment exposure apparatus of FIG. 1;
FIG. 3 is a partial detail view of a single-sided suspended alignment exposure apparatus;
fig. 4 is another partial detail view provided by the single-side suspended alignment exposure apparatus.
In the figure: 1. the device comprises an exposure table, 2, a fixing plate, 3, a lateral side transverse slide rail, 4, a top transverse slide rail, 5, a transverse slide rail, 6, a vertical slide rail, 7, a transverse moving plate, 8, a vertical moving plate, 9, a lifting power cylinder, 10, a lifting motor, 12, a lead screw, 13, a top transverse slide block, 14, a lateral side transverse slide block, 15 and a transverse slide block.
The purpose of the present invention is to provide a novel and improved method and apparatus for operating a computer.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description. In the preferred embodiments, the terms "upper", "lower", "left", "right", "middle" and "a" are used for the sake of clarity only, and are not intended to limit the scope of the invention, its relative relationship between the terms and their derivatives, and the scope of the invention should be understood as being limited by the claims.
As shown in fig. 1 to 4, the one-sided suspended type alignment exposure apparatus includes:
the device comprises two groups of transverse sliding rails 5, wherein the two groups of transverse sliding rails are arranged symmetrically left and right and are arranged in parallel, and a feeding station and an exposure station are sequentially arranged between the two groups of transverse sliding rails 5 along the direction of a symmetry line of the transverse sliding rails;
the transverse moving plates 7 are arranged on the transverse sliding rails 5 in a transverse sliding mode, the number of the transverse moving plates is two, the transverse moving plates are vertically arranged, each transverse sliding rail 5 corresponds to one transverse moving plate 7, and a transverse moving slider 15 matched with the transverse sliding rails 5 is arranged on one side of each transverse moving plate 7;
the vertical moving plates 8 are vertically slidably arranged on the transverse moving plates 7, the number of the vertical moving plates is two, the two groups of vertical moving plates are vertically arranged, each transverse moving plate 7 corresponds to one vertical moving plate 8, a vertical sliding rail 5 is arranged on the transverse moving plate 7 at the other side where the transverse sliding block 15 is arranged, and a vertical sliding block matched with the vertical sliding rail 5 is arranged on each vertical moving plate 8;
the number of the lifting driving mechanisms is two, each vertical moving plate 8 corresponds to one lifting driving mechanism, and the lifting driving mechanisms are used for driving the vertical moving plates 8 to vertically slide on the transverse moving plate 7;
the exposure tables 1 are arranged horizontally, each vertical moving plate 8 corresponds to one exposure table 1, one side edge of each exposure table 1 is fixedly connected with the vertical moving plate 8 to form a single-side suspension structure, and therefore the two groups of exposure tables 1 respectively move back and forth between a feeding station and an exposure station in sequence.
In specific implementation, the device further comprises a fixing plate 2 used for installing transverse sliding rails 5, the surface of the fixing plate 2 is vertically arranged, each group of transverse sliding rails 5 comprises at least one top transverse sliding rail 4 and at least one side transverse sliding rail 53, the top transverse sliding rail 4 is arranged at the top of the fixing plate 2 and is stressed upwards, the side transverse sliding rails 53 are arranged at the sides of the fixing plate 2 and are stressed upwards, the side transverse sliding rails 53 are perpendicular to the fixing plate 2, a transverse sliding block 15 on the transverse moving plate 7 comprises a top transverse sliding block 13 and a side transverse sliding block 14, the top transverse sliding block 13 is matched with the top transverse sliding rails 4, and the side transverse sliding blocks 14 are matched with the side transverse sliding rails 53, so that the transverse moving plate 7 is arranged on the transverse sliding rails 5 in a suspended structure to ensure the stability of transverse movement.
In specific implementation, the plurality of vertical slide rails 5 on the horizontal moving plate 7 are arranged at intervals to ensure that the exposure table 1 is stressed evenly and moves stably along with the vertical moving plate 8 when the horizontal moving plate 7 slides vertically.
In specific implementation, the lifting driving mechanism comprises a lifting motor 10 and a lead screw 12, the lifting motor 10 is fixed on the transverse moving plate 7, a lead screw nut of the lead screw 12 is arranged on the vertical moving plate 8, the lead screw of the lead screw 12 vertically penetrates through the lead screw nut and is in transmission connection with the lifting motor 10, the lifting motor 10 drives the lead screw to rotate, the rotating lead screw is matched with the lead screw nut to provide lifting driving force, the vertical moving plate 8 is lifted on the transverse moving plate 7, and in the lifting process, the vertical sliding rail 5 is in guiding fit with the vertical moving sliding block.
In specific implementation, the lifting driving mechanism further comprises a lifting assisting cylinder 9 which is vertically arranged, a body of the lifting assisting cylinder 9 is fixed on the transverse moving plate 7, a piston rod of the lifting assisting cylinder 9 is connected with the vertical moving plate 8, and the lifting assisting cylinder 9 provides assisting power for lifting of the vertical moving plate 8.
In specific implementation, the screw 12 is vertically arranged in the middle of the vertical moving plate 8, the number of the lifting power cylinders 9 is two, and the two lifting power cylinders 9 are symmetrically arranged on the left side and the right side of the screw 12 and are stressed in a balanced manner, so that lifting is more stable.
In specific implementation, the device further comprises a servo motor, and the servo motor is in transmission connection with the two groups of transverse moving plates 7 respectively to drive the transverse moving plates 7 to transversely slide on the corresponding transverse sliding rails 5.
The utility model discloses a unilateral suspension type counterpoint exposure device, its theory of operation as follows:
when the lifting motor 10 rotates, the lead screw nut is driven by the lead screw to move upwards or downwards, the lead screw nut is fixed on the vertical moving plate 8, so that the vertical moving plate 8 and the exposure table 1 connected with the vertical moving plate 8 are driven to move together, the lifting power cylinders 9 on two sides simultaneously drive the piston rods upwards or downwards to move, the purpose of controlling the exposure table 1 to move up and down is achieved, and the servo motor is used for controlling the two groups of exposure tables 1 to move transversely. As shown in fig. 1, the two exposure tables 1 are respectively located at the loading station and the exposure station, at this time, the exposure table 1 located at the loading station on the left side rises to the highest point after loading, and the exposure table 1 located at the exposure station on the right side falls to the lowest position after exposure is completed. The exposure platform 1 located at the feeding station moves to the exposure station at the highest position rightwards, and the exposure platform 1 located at the exposure station moves to the feeding station at the lowest position. After the traverse movement is completed, the exposure stage 1 which reaches the exposure station is lowered after being subjected to exposure, and the exposure stage 1 which reaches the loading station is raised and loaded, thereby completing the reciprocating cycle.
The device of this embodiment is used in PCB circuit board exposure field, and in proper order the back and forth motion in two exposure platforms 1 between material loading station and the exposure station and stagger in order to realize upper and lower position through elevating movement control, both one high one low in order to ensure each other not to influence among the lateral shifting process, and exchange in order to realize the circulation of two exposure platforms 1 between two stations with unilateral suspension type structure, not only saved the cost of labor, reached the purpose that improves work efficiency moreover.
Although specific embodiments of the present invention have been described above, it will be appreciated by those skilled in the art that these are merely examples and that many changes and modifications may be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims.

Claims (8)

1. The utility model provides a unilateral suspension type counterpoint exposure device which characterized in that includes:
the device comprises two groups of transverse sliding rails, a feeding station and an exposure station, wherein the two groups of transverse sliding rails are arranged symmetrically left and right and are arranged in parallel, and the feeding station and the exposure station are sequentially arranged between the two groups of transverse sliding rails along the direction of a symmetrical line of the two groups of transverse sliding rails;
the transverse moving plates are arranged on the transverse sliding rails in a transverse sliding mode, the number of the transverse moving plates is two, the transverse moving plates are vertically arranged, each transverse sliding rail corresponds to one transverse moving plate, and a transverse moving slider matched with the transverse sliding rails is arranged on one side of each transverse moving plate;
the transverse moving plates are provided with transverse sliding blocks, and vertical sliding blocks matched with the vertical sliding rails are arranged on the transverse moving plates;
the lifting driving mechanisms are arranged in two groups, each vertical moving plate corresponds to one lifting driving mechanism, and the lifting driving mechanisms are used for driving the vertical moving plates to vertically slide on the transverse moving plates;
the exposure tables are arranged horizontally, each vertical moving plate corresponds to one exposure table, one side edge of each exposure table is fixedly connected with the vertical moving plate to form a single-side suspension structure, and therefore the two groups of exposure tables respectively reciprocate between the loading station and the exposure station in sequence.
2. The single-sided suspended type alignment exposure apparatus according to claim 1, further comprising a fixing plate for mounting the transverse slide rail, wherein the plate surface of the fixing plate is vertically disposed.
3. The single-sided suspended type alignment exposure apparatus of claim 2, wherein each set of the lateral slide rails comprises at least one top lateral slide rail and at least one side lateral slide rail, the top lateral slide rail is disposed on the top of the fixed plate and faces upward, the side lateral slide rails are disposed on the sides of the fixed plate and faces perpendicular to the fixed plate, the traverse slide on the lateral moving plate comprises a top traverse slide block and a side traverse slide block, the top traverse slide block is engaged with the top lateral slide rail, and the side traverse slide block is engaged with the side lateral slide rail.
4. The single-sided suspended type alignment exposure apparatus according to claim 1, wherein the plurality of vertical slide rails are spaced apart from each other on the lateral moving plate.
5. The single-sided suspension type alignment exposure apparatus according to claim 1, wherein the lifting driving mechanism comprises a lifting motor and a lead screw, the lifting motor is fixed on the lateral moving plate, a lead screw nut of the lead screw is arranged on the vertical moving plate, and the lead screw of the lead screw vertically penetrates through the lead screw nut and is in transmission connection with the lifting motor.
6. The single-sided suspension type alignment exposure apparatus according to claim 5, wherein the lifting driving mechanism further comprises a vertically disposed lifting power cylinder, a body of the lifting power cylinder is fixed on the lateral moving plate, and a piston rod of the lifting power cylinder is connected to the vertical moving plate.
7. The single-sided suspension type alignment exposure apparatus according to claim 6, wherein the lead screw is vertically disposed in the middle of the vertical moving plate, the number of the lifting power cylinders is two, and the two lifting power cylinders are symmetrically disposed on the left and right sides of the lead screw.
8. The single-sided suspension type alignment exposure apparatus of any one of claims 1 to 7, further comprising a servo motor, wherein the servo motor is in transmission connection with the two sets of lateral moving plates respectively to drive the lateral moving plates to slide laterally on the corresponding lateral slide rails.
CN201921874780.7U 2019-11-01 2019-11-01 Unilateral suspension type alignment exposure device Active CN210694508U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921874780.7U CN210694508U (en) 2019-11-01 2019-11-01 Unilateral suspension type alignment exposure device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921874780.7U CN210694508U (en) 2019-11-01 2019-11-01 Unilateral suspension type alignment exposure device

Publications (1)

Publication Number Publication Date
CN210694508U true CN210694508U (en) 2020-06-05

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CN201921874780.7U Active CN210694508U (en) 2019-11-01 2019-11-01 Unilateral suspension type alignment exposure device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114290583A (en) * 2021-12-31 2022-04-08 青岛胜汇塑胶有限公司 Equipment for melting plastic part at opening of refrigerator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114290583A (en) * 2021-12-31 2022-04-08 青岛胜汇塑胶有限公司 Equipment for melting plastic part at opening of refrigerator
CN114290583B (en) * 2021-12-31 2024-03-12 青岛胜汇塑胶有限公司 Refrigerator mouth plastic part stirring and thawing equipment

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