Anti-missing machining structure for perforating machine

By installing sensors and electronic door systems on the punching machine, the feeding time of the workpiece is controlled, and the problem of unpunched workpieces being accidentally put into the aggregate box is solved, and the pass rate and cost reduction of the workpiece are improved.

CN223146717UActive Publication Date: 2025-07-25福州承昌机械有限公司
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Patent Information

Application Number
CN202422417149.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-07-25
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

In existing hole punching equipment, unpunched workpieces may be accidentally put into the aggregate box by workers, resulting in unqualified workpieces and increasing costs.

Method used

The first sensor and the second sensor are installed on the punching machine, combined with the induction piece, the electrically controlled door and the feeding sensor, and the opening and closing of the electrically controlled door is controlled by sensing the lifting stroke of the punching mechanism to ensure that only the workpiece after the punching can enter the aggregate box.

Benefits of technology

Effectively avoid unpunched workpieces entering the aggregate box, preventing workpieces from failing, and reducing later assembly costs.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223146717U_ABST
    Figure CN223146717U_ABST
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Abstract

The utility model relates to the field of automobile accessory processing, in particular to an anti-missing processing structure for a perforating machine, which comprises a fixed machine tool, a first sensor and a second sensor, the punching mechanism is arranged on the fixed machine tool in a liftable mode, and the punching mechanism is provided with a sensing piece used for triggering the first sensor and the second sensor; a feeding port is formed in the side wall of the material collecting box, a first electric control door, a second electric control door and a feeding sensor are arranged at the feeding port, the first electric control door is connected with the first sensor and the feeding sensor, and the second electric control door is connected with the second sensor and the feeding sensor. According to the anti-missing machining structure for the perforating machine, the situation that due to negligence of workers, workpieces which are not perforated are put into the material collecting box sometimes, the workpieces are unqualified, assembling cannot be conducted in the later period, and cost is increased can be avoided.
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Description

Technical Field

[0001] The utility model relates to the field of auto parts processing, in particular to a leak-proof processing structure for a drilling machine. Background Art

[0002] During the production process of automobile sheet metal parts, drilling processing is required. For the existing drilling equipment, reference can be made to the Chinese utility model patent with the application number CN201821052805.0 and the name of a drilling device for automobile sheet metal parts. After the sheet metal parts are drilled, they are generally put into an aggregate box for unified collection. However, due to the negligence of workers, sometimes the workpieces that have not been drilled are put into the aggregate box, resulting in unqualified workpieces, unable to be assembled in the later stage, and increasing costs. Content of the Utility Model

[0003] The technical problem to be solved by the utility model is to provide a leak-proof processing structure for a drilling machine to avoid putting un-drilled workpieces into the aggregate box, resulting in unqualified workpieces.

[0004] To solve the above technical problem, the technical solution adopted by the utility model is: a leak-proof processing structure for a drilling machine, including:

[0005] A fixed machine tool, with a first sensor and a second sensor arranged at intervals in the vertical direction;

[0006] A drilling mechanism, which is arranged on the fixed machine tool in a liftable manner, and the drilling mechanism is provided with an induction part for triggering the first sensor and the second sensor;

[0007] An aggregate box, with a feeding port arranged on the side wall, and a first electric control door, a second electric control door and a feeding inductor are arranged at the feeding port. The first electric control door is respectively connected with the first sensor and the feeding inductor, and the second electric control door is respectively connected with the second sensor and the feeding inductor.

[0008] Further, the induction part includes a first induction block and a second induction block. The first induction block is used for triggering the first sensor, and the second induction block is used for triggering the second sensor.

[0009] Further, both the first sensor and the second sensor are distance sensors.

[0010] Further, both the first sensor and the second sensor are detachably connected to the fixed machine tool.

[0011] Further, the inside of the aggregate box is hollow, the feeding port is located on the top wall of the aggregate box, the first electric control door and the second electric control door are located on the inner and outer sides of the feeding port, and the feeding inductor is arranged on the inner wall of the feeding port.

[0012] Further, both the first electric control door and the second electric control door include an electric cylinder and a door panel. The electric cylinder is arranged on the wall panel of the aggregate bin, the electric cylinder is connected to the door panel, and the door panel is used to block the feeding port.

[0013] Further, the feeding inductor is an infrared sensor.

[0014] Further, an indicator light is arranged on the aggregate bin, and the indicator light is respectively connected to the first sensor and the second sensor.

[0015] Further, the fixed machine tool is provided with a loading platform. The loading platform is located below the punching mechanism, and a loading inductor is arranged on the loading platform. The loading inductor is respectively connected to the first electric control door and the second electric control door.

[0016] Further, the loading inductor is a non-contact inductor.

[0017] The beneficial effects of the present utility model are as follows: A leak-proof processing structure for a punching machine is designed with a first sensor and a second sensor on the fixed machine tool to sense the lifting stroke of the punching mechanism. An induction part is arranged on the punching mechanism. When the induction part rises or falls to the induction range of the first sensor and the second sensor, the first sensor and the second sensor will be triggered. The feeding port of the aggregate bin is used for workpiece feeding. A first electric control door and a second electric control door corresponding to the first sensor and the second sensor in sequence are arranged at the feeding port, and a feeding inductor for sensing the passing of the workpiece is provided. During use, the punching mechanism is controlled to descend to punch the workpiece. The induction part triggers the first sensor, and the first sensor sends a signal to control the opening of the first electric control door. At this time, feeding cannot be carried out yet. When the punching mechanism rises after punching is completed, the induction part triggers the second sensor, and the second sensor sends a signal to control the opening of the second electric control door. At this time, the feeding port is completely opened, and the punched workpiece can be put into the aggregate bin. When the workpiece enters the feeding port and is sensed by the feeding inductor, the feeding inductor sends a signal to control the first electric control door and the second electric control door to reset and close. The leak-proof processing structure for a punching machine provided by the present utility model can avoid the situation that sometimes due to the negligence of workers, unpunched workpieces are put into the aggregate bin, resulting in unqualified workpieces, inability to assemble in the later stage, and increased costs. Description of the Drawings

[0018] Figure 1 It is a schematic structural diagram of a leak-proof processing structure for a punching machine;

[0019] Figure 2 It is another schematic structural diagram of a leak-proof processing structure for a punching machine;

[0020] Figure 3 It is a partial schematic diagram of a leak-proof processing structure for a punching machine;

[0021] Label Description:

[0022] 1. Fixed machine tool; 11. First sensor; 12. Second sensor; 13. Loading platform; 14. Loading inductor; 2. Drilling mechanism; 21. Inductive part;

[0023] 3. Aggregate bin; 31. Feeding port; 32. First electric control door; 33. Second electric control door; 34. Feeding inductor. Detailed implementation mode

[0024] To describe in detail the technical content, achieved purpose and effects of the present utility model, the following is described in conjunction with the implementation modes and with reference to the drawings.

[0025] The present utility model provides a leak-proof processing structure for a drilling machine, for leak-proof processing design of automotive sheet metal parts drilling.

[0026] Please refer to Figures 1 to 3 As shown, a leak-proof processing structure for a drilling machine of the present utility model includes:

[0027] A fixed machine tool 1, with a first sensor 11 and a second sensor 12 arranged at intervals in the vertical direction;

[0028] A drilling mechanism 2, which is arranged on the fixed machine tool 1 in a liftable manner, and the drilling mechanism 2 is provided with an inductive part 21 for triggering the first sensor 11 and the second sensor 12;

[0029] An aggregate bin 3, with a feeding port 31 provided on the side wall, and a first electric control door 32, a second electric control door 33 and a feeding inductor 34 are provided at the feeding port 31. The first electric control door 32 is respectively connected to the first sensor 11 and the feeding inductor 34, and the second electric control door 33 is respectively connected to the second sensor 12 and the feeding inductor 34.

[0030] As can be seen from the above description, the beneficial effects of the present utility model are as follows: A leak-proof processing structure for a drilling machine is designed with a first sensor 11 and a second sensor 12 on the fixed machine tool 1 to sense the lifting stroke of the drilling mechanism 2. An induction member 21 is provided on the drilling mechanism 2. When the induction member 21 rises or falls into the sensing range of the first sensor 11 and the second sensor 12, the first sensor 11 and the second sensor 12 will be triggered. The feeding port 31 of the aggregate bin 3 is used for workpiece feeding. A first electric control door 32 and a second electric control door 33 corresponding to the first sensor 11 and the second sensor 12 in sequence are provided at the feeding port 31, and a feeding inductor 34 for sensing the passing of the workpiece is provided. During use, the drilling mechanism 2 is controlled to descend to drill the workpiece. The induction member 21 triggers the first sensor 11, and the first sensor 11 sends a signal to control the opening of the first electric control door 32. At this time, feeding cannot be carried out yet. After the drilling mechanism 2 completes drilling and rises, the induction member 21 triggers the second sensor 12, and the second sensor 12 sends a signal to control the opening of the second electric control door 33. Only then is the feeding port 31 completely open, and the drilled workpiece can be put into the aggregate bin 3. When the workpiece enters the feeding port 31 and is sensed by the feeding inductor 34, the feeding inductor 34 sends a signal to control the first electric control door 32 and the second electric control door 33 to reset and close. The leak-proof processing structure for a drilling machine provided by the present utility model can avoid the situation that due to the negligence of workers, un-drilled workpieces are sometimes put into the aggregate bin 3, resulting in unqualified workpieces, inability to assemble in the later stage, and increased costs.

[0031] In an alternative embodiment, the induction member 21 includes a first induction block and a second induction block. The first induction block is used to trigger the first sensor 11, and the second induction block is used to trigger the second sensor 12.

[0032] In an alternative embodiment, both the first sensor 11 and the second sensor 12 are distance sensors.

[0033] In an alternative embodiment, both the first sensor 11 and the second sensor 12 are detachably connected to the fixed machine tool 1.

[0034] As can be seen from the above description, according to the change in the operating height of the drilling mechanism 2, the installation heights of the first sensor 11 and the second sensor 12 are flexibly adjusted, so as to realize the triggering of the sensors by the induction member 21.

[0035] In an alternative embodiment, the interior of the aggregate bin 3 is hollow. The feeding port 31 is located on the top wall of the aggregate bin 3. The first electric control door 32 and the second electric control door 33 are located on the inner and outer sides of the feeding port 31, and the feeding inductor 34 is arranged on the inner wall of the feeding port 31.

[0036] In an alternative embodiment, both the first electric control door 32 and the second electric control door 33 include an electric cylinder and a door panel. The electric cylinder is arranged on the wall panel of the aggregate bin 3. The electric cylinder is connected to the door panel, and the door panel is used to block the feeding port 31.

[0037] In an alternative embodiment, the feeding inductor 34 is an infrared sensor.

[0038] In an alternative embodiment, an indicator light is provided on the aggregate bin 3, and the indicator light is respectively connected to the first sensor 11 and the second sensor 12.

[0039] As can be seen from the above description, the indicator light serves to prompt feeding. After both the first sensor 11 and the second sensor 12 are triggered, the indicator light gives a feeding indication.

[0040] In an alternative embodiment, the fixed machine tool 1 is provided with a loading platform 13. The loading platform 13 is located below the punching mechanism 2. An unloading inductor 14 is provided on the loading platform 13, and the unloading inductor 14 is respectively connected to the first electric control door 32 and the second electric control door 33.

[0041] As can be seen from the above description, after the unloading inductor 14 senses the workpiece to be processed and subsequently the punching successively triggers the first sensor 11 and the second sensor 12, the first electric control door 32 and the second electric control door 33 are opened.

[0042] In an alternative embodiment, the unloading inductor 14 is a non-contact inductor.

[0043] Please refer to Figures 1 to 3 As shown in the figure, Embodiment 1 of the present utility model is: a leak-proof processing structure for a punching machine, including:

[0044] A fixed machine tool 1, with a first sensor 11 and a second sensor 12 arranged at intervals in the vertical direction;

[0045] A punching mechanism 2, which is arranged on the fixed machine tool 1 in a liftable manner. The punching mechanism 2 is provided with an induction member 21 for triggering the first sensor 11 and the second sensor 12;

[0046] An aggregate bin 3, with a feeding port 31 provided on the side wall. At the feeding port 31, there are a first electric control door 32, a second electric control door 33 and a feeding inductor 34. The first electric control door 32 is respectively connected to the first sensor 11 and the feeding inductor 34, and the second electric control door 33 is respectively connected to the second sensor 12 and the feeding inductor 34.

[0047] The sensing member 21 includes a first sensing block and a second sensing block. The first sensing block is used to trigger the first sensor 11, and the second sensing block is used to trigger the second sensor 12. Both the first sensor 11 and the second sensor 12 are distance sensors. Both the first sensor 11 and the second sensor 12 are detachably connected to the fixed machine tool 1. The inside of the aggregate bin 3 is hollow. The feeding port 31 is located on the top wall of the aggregate bin 3. The first electric control door 32 and the second electric control door 33 are located on the inner and outer sides of the feeding port 31. The feeding inductor 34 is arranged on the inner wall of the feeding port 31. Both the first electric control door 32 and the second electric control door 33 include an electric cylinder and a door panel. The electric cylinder is arranged on the wall panel of the aggregate bin 3. The electric cylinder is connected to the door panel, and the door panel is used to block the feeding port 31. The feeding inductor 34 is an infrared sensor. An indicator light is arranged on the aggregate bin 3, and the indicator light is respectively connected to the first sensor 11 and the second sensor 12. The fixed machine tool 1 is provided with a loading platform 13. The loading platform 13 is located below the punching mechanism 2. The loading platform 13 is provided with a loading inductor 14. The loading inductor 14 is respectively connected to the first electric control door 32 and the second electric control door 33. The loading inductor 14 is a non-contact inductor. The cooperative connection and control among the above-mentioned first sensor 11, second sensor 12, first electric control door 32, second electric control door 33, feeding inductor 34, indicator light and loading inductor 14 belong to conventional technologies and will not be elaborated here.

[0048] In summary, for the anti-leakage processing structure of the drilling machine of the present utility model, a first sensor and a second sensor for sensing the lifting stroke of the punching mechanism are designed on the fixed machine tool. An induction member is arranged on the punching mechanism. When the induction member rises or falls to the sensing range of the first sensor and the second sensor, the first sensor and the second sensor will be triggered. The feeding port of the aggregate bin is used for workpiece feeding. A first electric control door and a second electric control door corresponding to the first sensor and the second sensor in sequence, and a feeding inductor for sensing the passing of the workpiece are arranged at the feeding port. During use, the punching mechanism is controlled to descend to punch the workpiece. The induction member triggers the first sensor, and the first sensor sends a signal to control the opening of the first electric control door. At this time, feeding cannot be carried out yet. When the punching mechanism rises after punching is completed, the induction member triggers the second sensor, and the second sensor sends a signal to control the opening of the second electric control door. At this time, the feeding port is completely opened, and the punched workpiece can be put into the aggregate bin. When the workpiece enters the feeding port and is sensed by the feeding inductor, the feeding inductor sends a signal to control the first electric control door and the second electric control door to reset and close. The anti-leakage processing structure of the drilling machine provided by the present utility model can avoid the situation that sometimes due to the negligence of workers, unpunched workpieces are put into the aggregate bin, resulting in unqualified workpieces, inability to assemble later and increased costs.

[0049] The above are only embodiments of the present utility model, and thus do not limit the patent scope of the present utility model. Any equivalent transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in the relevant technical fields, shall be equally included in the patent protection scope of the present utility model.

Claims

1. An anti-leakage processing structure for a punching machine, characterized in that, Comprising: A fixed machine tool, with a first sensor and a second sensor spaced vertically thereon; A punching mechanism, which is arranged on the fixed machine tool in a liftable manner, and the punching mechanism is provided with sensing members for triggering the first sensor and the second sensor; An aggregate bin, with a feeding port provided on the side wall, and a first electric control door, a second electric control door and a feeding inductor are provided at the feeding port. The first electric control door is respectively connected to the first sensor and the feeding inductor, and the second electric control door is respectively connected to the second sensor and the feeding inductor.

2. The anti-leakage processing structure for a drilling machine according to claim 1, characterized in that, The sensing members include a first sensing block and a second sensing block. The first sensing block is used for triggering the first sensor, and the second sensing block is used for triggering the second sensor.

3. The anti-leakage processing structure for a punching machine according to claim 1, wherein Both the first sensor and the second sensor are distance sensors.

4. The anti-leakage processing structure for a punching machine according to claim 1, wherein, Both the first sensor and the second sensor are detachably connected to the fixed machine tool.

5. The anti-leakage processing structure for a punching machine according to claim 1, characterized in that, The inside of the aggregate bin is hollow. The feeding port is located on the top wall of the aggregate bin. The first electric control door and the second electric control door are located on the inner and outer sides of the feeding port respectively, and the feeding inductor is arranged on the inner wall of the feeding port.

6. The anti-leakage processing structure for a punching machine according to claim 1, characterized in that, Both the first electric control door and the second electric control door include an electric cylinder and a door panel. The electric cylinder is arranged on the wall panel of the aggregate bin. The electric cylinder is connected to the door panel, and the door panel is used for blocking the feeding port.

7. The anti-leakage processing structure for a punching machine according to claim 1, characterized in that, The feeding inductor is an infrared sensor.

8. The leak-proof processing structure for a punching machine according to claim 1, wherein, An indicator light is provided on the aggregate bin, and the indicator light is respectively connected to the first sensor and the second sensor.

9. The leak-proof processing structure for a punching machine according to claim 1, characterized in that, The fixed machine tool is provided with a loading platform, which is located below the punching mechanism. A loading inductor is provided on the loading platform, and the loading inductor is respectively connected to the first electric control door and the second electric control door.

10. The anti-leakage processing structure for a drilling machine according to claim 9, characterized in that, The loading inductor is a non-contact inductor.

Citation Information

Patent Citations

  • A perforating device for vehicle sheet metal piece

    CN208374695U