Off-line double-station board dividing machine
By installing a filter screen inside the heat dissipation vent of the PCB depaneling machine and designing an easily removable limiting block structure, the dust pollution problem was solved, ensuring the heat dissipation effect of the PCB depaneling machine.
Patent Information
- Application Number
- CN202520229972.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-02-13
AI Technical Summary
To meet heat dissipation requirements, existing dual-station depaneling machines have ventilation holes on their casings, which allows dust to enter the machine body, causing contamination and affecting heat dissipation performance.
A filter screen is installed inside the heat dissipation vent, and the design of connecting blocks and limiting blocks facilitates the removal and cleaning of the filter screen, preventing dust from entering the machine body.
It effectively filters dust, keeps the inside of the machine clean, prevents dust from clogging the mesh and affecting heat dissipation, and improves the heat dissipation efficiency of the PCB separator.
Smart Images

Figure CN223613556U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical equipment technical field especially relates to a kind of offline double-station board separator. BACKGROUND
[0002] PCB board separator is a kind of machine equipment that multiple circuit boards set as a whole are cut off the rib position to separate into single circuit board, and after corresponding process of PCB, the PCB board is divided into single body.However, most of the current PCB dividing machine is single station cutting, and the machine needs to be cleaned during cutting to prevent dust from causing damage to the next PCB, so it is necessary to use double-station board separator, and the work efficiency can be increased.
[0003] The present inventor found the following problems in the practical use process:
[0004] In order to meet the heat dissipation capacity of the double-station board separator in the prior art, multiple heat dissipation holes are usually provided on the external shell, but this also brings the problem that dust easily enters the internal body and causes pollution, which is still not conducive to the heat dissipation of the board separator. Therefore, it is necessary to provide an offline double-station board separator to solve the above technical problems. UTILITY MODEL CONTENTS
[0005] The technical problem to be solved by the utility model is that in order to meet the heat dissipation capacity of the double-station board separator in the prior art, multiple heat dissipation holes are usually provided on the external shell, but this also brings the problem that dust easily enters the internal body and causes pollution, which is still not conducive to the heat dissipation of the board separator. In view of the above defects of the prior art, an offline double-station board separator is provided, which comprises a double-station board separator main body, and a limiting block is fixedly connected to the upper end of the spring and inserted into a limiting groove. The utility model is provided with a filter screen inside the heat dissipation port, which can be used to filter dust in the external air, avoid pollution of the internal body, and the filter screen and the electrical cabinet are connected by a connecting block and a connecting groove. At the same time, by pulling down the limiting block, the spring is compressed, the upper end of the limiting block is separated from the inside of the limiting groove, so that the filter screen can be easily disassembled and cleaned, the heat dissipation effect will not be reduced due to dust blocking the screen holes, and the technical problem of the double-station board separator in the prior art is solved, which is that in order to meet the heat dissipation capacity of the double-station board separator, multiple heat dissipation holes are usually provided on the external shell, but this also brings the problem that dust easily enters the internal body and causes pollution, which is still not conducive to the heat dissipation of the board separator.
[0006] The utility model discloses a technical scheme for achieving the above object is: a kind of offline double-station board separator, including double-station board separator main body, the double-station board separator main body includes the electrical cabinet being arranged in bottom, the both sides of the electrical cabinet are all provided with heat dissipation opening and two connecting grooves, each connecting groove is connected between heat dissipation opening, and the inner chamber upper surface of the connecting groove is provided with limiting slot, the inside of the heat dissipation opening is provided with filter screen, the front and rear surface of the filter screen is all fixedly installed with the connecting block that is engaged with connecting groove, the upper surface of the connecting block is provided with mounting groove, the inner chamber bottom of the mounting groove is fixedly installed with spring, the upper end of the spring is fixedly connected with the limiting block that is inserted into limiting slot.
[0007] Further setting, the limiting block and connecting block are all L-shaped structure, and the heat dissipation opening is convex-shaped structure.
[0008] Further setting, the double-station board separator main body includes computer support being arranged in one side, and the one side of the computer support is fixedly installed with supporting plate.
[0009] Further setting, the double-station board separator main body includes window being arranged in front surface, and the inside of the window is hingedly connected with left and right sliding door.
[0010] Further setting, the bottom of the double-station board separator main body is uniformly fixedly installed with multiple screwing columns, and the lower end of each screwing column is screw-connected with supporting foot.
[0011] Further setting, the bottom of the electrical cabinet is provided with accommodating groove, the inner chamber upper surface of the accommodating groove is fixedly installed with multiple tension springs, the lower end of multiple tension springs is fixedly connected with supporting plate, the lower surface of the supporting plate is uniformly fixedly installed with multiple equipment rollers, and the upper surface of the supporting plate is fixedly installed with multiple telescopic columns connected with the electrical cabinet.
[0012] Further setting, the upper surface of the supporting plate is symmetrically fixedly installed with ladder-shaped block, the inner side of the accommodating groove is inlaid with motor, the output shaft of the motor is fixedly connected with bidirectional screw rod, the outer side of the bidirectional screw rod is symmetrically screw-connected with movable plate, the bottom of each movable plate is symmetrically rotationally connected with limiting wheel, and each limiting wheel is rotationally connected with ladder-shaped block.
[0013] Further setting, the rear surface of the electrical cabinet is provided with electrical cabinet lock position, and the front surface of the electrical cabinet is symmetrically hingedly connected with hidden door opening, the inside of the electrical cabinet is provided with air valve lock position, the rear surface of the double-station board separator main body is respectively provided with emergency stop button and rear door, and the top of the double-station board separator main body is provided with signal tower, the one side of the double-station board separator main body is respectively provided with side door and dust collecting pipe opening, and the front surface of the double-station board separator main body is provided with multiple control buttons.
[0014] Compared with the related art, the offline double-station board separating machine has the following beneficial effects:
[0015] The utility model provides a kind of offline double-station board separating machine, by being provided with filter screen in the inside of heat dissipation port, it can be used to filter dust in external air, avoid to pollute inside machine body, and filter screen and electrical cabinet adopt connecting block and connecting groove clamping, simultaneously by pulling down limiting block, make its compression spring, realize the upper end of limiting block to separate the inside of limiting slot, to facilitate disassembly filter screen, it is convenient to clean, will not because dust clogging mesh and reduce heat dissipation effect, solve the technical problem that double-station board separating machine in prior art is in order to be able to meet the heat dissipation capacity of itself, usually multiple heat dissipation holes are set on the outside shell, but also bring the trouble that dust is easy to enter inside machine body and cause pollution simultaneously, still not conducive to the heat dissipation of board separating machine.
[0016] The utility model provides a kind of offline double-station board separating machine, by starting motor, drive and rotate with the output shaft connection of two-way screw rod, realize control outside two movable plates to the opposite direction movement, to make limiting wheel along the slope of ladder block roll, force support plate to move downwards, reach the effect that equipment roller will board separating machine whole lift off ground, it is convenient to move. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the structure schematic diagram of a preferred embodiment of the offline double-station board separating machine provided by the utility model;
[0018] Figure 2 It is the right view structure schematic diagram of the utility model;
[0019] Figure 3 It is the A part local enlarged view of the utility model;
[0020] Figure 4 It is the main view structure schematic diagram of equipment roller and electrical cabinet connection of the utility model;
[0021] Figure 5 It is the rear view structure schematic diagram of the utility model.
[0022] The diagram shows the following components: 1. Main body of the dual-station PCB separator; 2. Heat dissipation vent; 3. Filter screen; 4. Electrical cabinet; 5. Support feet; 6. Window; 7. Left and right sliding doors; 8. Support plate; 9. Computer bracket; 10. Equipment rollers; 11. Screw-in column; 12. Limiting groove; 13. Limiting block; 14. Connecting groove; 15. Connecting block; 16. Mounting groove; 17. Spring; 18. Movable plate; 19. Bidirectional screw; 20. Receiving groove; 21. Limiting wheel; 22. Trapezoidal block; 23. Telescopic column; 24. Tension spring; 25. Support plate; 26. Motor; 27. Side opening door; 28. Dust collection pipe opening; 29. Signal tower; 30. Control button; 31. Concealed door opening; 32. Emergency stop button; 33. Rear opening door; 34. Electrical cabinet lock position; 35. Air valve lock position. Detailed Implementation
[0023] To facilitate understanding of this utility model, a more comprehensive description will be provided below with reference to the accompanying drawings. The drawings show typical embodiments of this utility model.
[0024] Example 1:
[0025] like Figures 1-5 As shown, this utility model discloses an offline dual-station PCB separator, including a dual-station PCB separator body 1. The dual-station PCB separator body 1 includes an electrical cabinet 4 located at the bottom. The electrical cabinet 4 has heat dissipation vents 2 and two connecting slots 14 on both sides. Each connecting slot 14 is connected to the heat dissipation vent 2. A limiting slot 12 is provided on the upper surface of the inner cavity of the connecting slot 14. A filter screen 3 is provided inside the heat dissipation vent 2. Connecting blocks 15 that engage with the connecting slots 14 are fixedly installed on the front and rear surfaces of the filter screen 3. An installation slot 16 is provided on the upper surface of the connecting block 15. A spring 17 is fixedly installed at the bottom of the inner cavity of the installation slot 16. A limiting block 13 that is inserted into the limiting slot 12 is fixedly connected to the upper end of the spring 17.
[0026] like Figure 3 As shown, both the limiting block 13 and the connecting block 15 have an L-shaped structure, and the heat dissipation port 2 has a convex shape.
[0027] like Figure 1 As shown, the main body 1 of the dual-station depaneling machine includes a computer bracket 9 set on one side, a support plate 8 fixedly installed on one side of the computer bracket 9, and a window 6 set on the front surface, with left and right sliding doors 7 hinged inside the window 6.
[0028] In the implementation, the filter screen 3 is arranged in the inside of the heat dissipation opening 2, which can be used to filter dust in the outside air, avoid pollution of the inside of the machine body, and the filter screen 3 is clamped with the electrical cabinet 4 through the connecting block 15 and the connecting groove 14, and the lower limit block 13 is pulled down to compress the spring 17, so that the upper end of the limit block 13 is separated from the inside of the limit groove 12, thereby facilitating the disassembly of the filter screen 3 and the cleaning, and the heat dissipation effect is not reduced due to the dust blocking the mesh, and the technical problem that the double-station board dividing machine in the prior art is usually provided with multiple heat dissipation holes on the outside shell to meet the heat dissipation capacity, but dust is easily introduced into the machine body to cause pollution, and the heat dissipation of the board dividing machine is still not facilitated.
[0029] Embodiment two:
[0030] As shown in Figures 1-5 the utility model provides a technical scheme on the basis of embodiment one: multiple screwing columns 11 are uniformly fixed and installed on the bottom of the double-station board dividing machine body 1, the lower end of each screwing column 11 is screwed with a supporting foot 5, the bottom of the electrical cabinet 4 is provided with a containing groove 20, multiple tension springs 24 are fixed and installed on the inner chamber upper surface of the containing groove 20, the lower end of the multiple tension springs 24 is commonly fixedly connected with a supporting plate 25, multiple equipment rollers 10 are uniformly fixed and installed on the lower surface of the supporting plate 25, multiple telescopic columns 23 connected with the electrical cabinet 4 are fixed and installed on the upper surface of the supporting plate 25, the upper surface of the supporting plate 25 is fixedly installed with symmetrical ladder-shaped blocks 22, a motor 26 is inlaid on the inner side of the containing groove 20, the output shaft of the motor 26 is fixedly connected with a bidirectional screw rod 19, the outer side of the bidirectional screw rod 19 is symmetrically screwed with a movable plate 18, the bottom of each movable plate 18 is symmetrically rotationally connected with a limiting wheel 21, each limiting wheel 21 is rollingly connected between the ladder-shaped blocks 22, the rear surface of the electrical cabinet 4 is provided with an electrical cabinet locking position 34, the front surface of the electrical cabinet 4 is symmetrically hingedly provided with a hidden door opening 31, the inside of the electrical cabinet 4 is provided with an air valve locking position 35, the rear surface of the double-station board dividing machine body 1 is respectively provided with an emergency stop button 32 and a rear door opening 33, the top of the double-station board dividing machine body 1 is provided with a signal tower 29, one side of the double-station board dividing machine body 1 is respectively provided with a side door opening 27 and a dust collecting pipe opening 28, and the front surface of the double-station board dividing machine body 1 is provided with multiple control buttons 30.
[0031] In the implementation, the motor 26 is started to drive the bidirectional screw rod 19 connected with the output shaft to rotate, so that the two movable plates 18 on the outer side are controlled to move in opposite directions, so that the limiting wheels 21 roll along the inclined surface of the ladder-shaped blocks 22, forcing the supporting plate 25 to move downward, so that the equipment rollers 10 can lift the whole board dividing machine from the ground, facilitating the movement.
[0032] When the technical scheme needs to be moved, first, the motor 26 is started, the bidirectional screw rod 19 connected with the output shaft of the motor 26 is driven to rotate, the two movable plates 18 on the outside are driven to move towards opposite directions, the limiting wheels 21 are driven to roll upwards along the inclined surface of the ladder-shaped block 22, the supporting plate 25 is forced to move downwards, the plurality of equipment rollers 10 lift the whole board separating machine from the ground, at this time, the telescopic column 23 and the tension spring 24 are stretched, and then the double-station board separating machine body 1 is moved to a working area. When in use, heat is dissipated through the mesh holes of the filter screen 3, and the filter screen 3 can avoid dust from polluting the inside of the double-station board separating machine body 1. When the filter screen 3 needs to be disassembled, first, the limiting block 13 is pulled downwards, the compression spring 17 is compressed, the upper end of the limiting block 13 is separated from the inside of the limiting groove 12, then the filter screen 3 is taken out from the inside of the heat dissipation opening 2, at this time, the connecting block 15 is separated from the inside of the connecting groove 14.
[0033] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An off-line double station board splitter comprising a double station board splitter body (1), characterized in that: The double-station board separator main body (1) includes an electrical cabinet (4) arranged at the bottom, both sides of the electrical cabinet (4) are provided with a heat dissipation opening (2) and two connecting grooves (14), each connecting groove (14) is connected with the heat dissipation opening (2), and the inner cavity upper surface of the connecting groove (14) is provided with a limiting groove (12), the inside of the heat dissipation opening (2) is provided with a filter screen (3), the front and rear surfaces of the filter screen (3) are fixedly installed with a connecting block (15) engaged with the connecting groove (14), the upper surface of the connecting block (15) is provided with a mounting groove (16), the inner cavity bottom of the mounting groove (16) is fixedly installed with a spring (17), and the upper end of the spring (17) is fixedly connected with a limiting block (13) inserted into the limiting groove (12).
2. An off-line double station board debonder as claimed in claim 1, characterized in that, The limiting block (13) and the connecting block (15) are both L-shaped structures, and the heat dissipation opening (2) is a convex letter-shaped structure.
3. An off-line double station board debonder as defined in claim 1 wherein, The double-station board separator main body (1) includes a computer support (9) arranged on one side.
4. An off-line double station board debonder as in claim 1, wherein, The double-station board separator main body (1) includes a window (6) arranged on the front surface, and the inside of the window (6) is hingedly connected with left and right sliding doors (7).
5. An off-line two-station board debonder as in claim 1, wherein, The bottom of the double-station board separator main body (1) is uniformly fixedly installed with a plurality of screw columns (11), and the lower end of each screw column (11) is screwed with a supporting foot (5).
6. An off-line two-station board debonder as in claim 1, wherein, The bottom of the electrical cabinet (4) is provided with a containing groove (20), the inner cavity upper surface of the containing groove (20) is fixedly installed with a plurality of tension springs (24), the lower ends of the plurality of tension springs (24) are fixedly connected with a supporting plate (25), the lower surface of the supporting plate (25) is uniformly fixedly installed with a plurality of equipment rollers (10), and the upper surface of the supporting plate (25) is fixedly installed with a plurality of telescopic columns (23) connected with the electrical cabinet (4).
7. An off-line two-station board debonder as in claim 6, wherein, The upper surface of the supporting plate (25) is fixedly installed with a ladder-shaped block (22) in a symmetrical manner, the inner side of the containing groove (20) is inlaid with a motor (26), the output shaft of the motor (26) is fixedly connected with a bidirectional screw rod (19), the outer side of the bidirectional screw rod (19) is symmetrically screwed with a movable plate (18), the bottom of each movable plate (18) is symmetrically rotationally connected with a limiting wheel (21), and each limiting wheel (21) is rollingly connected with the ladder-shaped block (22).
8. An off-line two-station board debonder as in claim 1, wherein, The rear surface of the electrical cabinet (4) is provided with an electrical cabinet locking position (34), the front surface of the electrical cabinet (4) is hingedly connected with a hidden door (31) in a symmetrical manner, the inside of the electrical cabinet (4) is provided with a gas valve locking position (35), the rear surface of the double-station board separator main body (1) is respectively provided with an emergency stop button (32) and a rear door (33), the top of the double-station board separator main body (1) is provided with a signal tower (29), one side of the double-station board separator main body (1) is respectively provided with a side door (27) and a dust collecting pipe opening (28), and the front surface of the double-station board separator main body (1) is provided with a plurality of control buttons (30).