CN210848837U - Pressing mechanism for laser cutting machine - Google Patents
Pressing mechanism for laser cutting machine Download PDFInfo
- Publication number
- CN210848837U CN210848837U CN201921692362.6U CN201921692362U CN210848837U CN 210848837 U CN210848837 U CN 210848837U CN 201921692362 U CN201921692362 U CN 201921692362U CN 210848837 U CN210848837 U CN 210848837U
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- aluminum plate
- support rod
- locking
- aluminum
- cutting machine
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Abstract
The utility model relates to the field of aluminum plate cutting equipment, in particular to a pressing mechanism for a laser cutting machine, which comprises two aluminum plate bearing plates, two slide rails, a plurality of aluminum plate bearing plate locking assemblies and a plurality of aluminum plate pressing assemblies; the aluminum plate loading device comprises two aluminum plate loading plates, a workbench, a plurality of aluminum plate compression assemblies and a plurality of aluminum plate locking assemblies, wherein the two sliding rails are arranged on the external workbench at intervals in parallel, two ends of the two aluminum plate loading plates are respectively connected to the two sliding rails in a sliding manner, the plurality of aluminum plate loading plate locking assemblies are respectively used for locking the two aluminum plate loading plates on the two sliding rails, and the plurality of aluminum plate compression assemblies are used for compressing the aluminum plates loaded by; the aluminum plate pressing assembly comprises a swing cylinder and a pressing block. The application of a plurality of aluminum plate of hold-down mechanism compress tightly the subassembly with the aluminum plate that two aluminum plate loading boards bore tightly on the surface of two aluminum plate loading boards, has guaranteed aluminum plate's processingquality, and hold-down mechanism can compress tightly the aluminum plate of different specifications moreover, increases hold-down mechanism's application range.
Description
Technical Field
The utility model belongs to the technical field of laser cutting machine equipment and specifically relates to indicate a hold-down mechanism for laser cutting machine.
Background
Aluminum plate laser cutting machine's that uses on the existing market aluminum plate hold-down mechanism can not compress tightly aluminum plate tightly to influence aluminum plate's processingquality, aluminum plate hold-down mechanism can only compress tightly the aluminum plate of a specification moreover, and application range is little.
Disclosure of Invention
The to-be-solved technical problem of the utility model is to provide a hold-down mechanism for laser cutting machine, this hold-down mechanism's a plurality of aluminum plate compress tightly the subassembly can tightly compress tightly the aluminum plate that two aluminum plate loading boards bore in the surface of two aluminum plate loading boards, has guaranteed aluminum plate's processingquality, and hold-down mechanism can compress tightly the aluminum plate of different specifications moreover, increases hold-down mechanism's application range.
In order to solve the technical problem, the utility model discloses a following technical scheme:
a pressing mechanism for a laser cutting machine comprises two aluminum plate bearing plates, two sliding rails, a plurality of aluminum plate bearing plate locking assemblies and a plurality of aluminum plate pressing assemblies; the aluminum plate pressing assemblies are respectively arranged on the two aluminum plate bearing plates and are used for pressing the aluminum plates borne by the two aluminum plate bearing plates onto the two aluminum plate bearing plates;
aluminum plate compresses tightly the subassembly including stretching pendulum cylinder and compact heap, stretch the pendulum cylinder and install in the aluminum plate loading board, the compact heap with stretch pendulum cylinder drive connection, the compact heap is used for compressing tightly or unclamping aluminum plate.
Furthermore, the aluminum plate bearing plate comprises a cross beam and two sliding blocks, the two sliding blocks are respectively arranged at two ends of the cross beam, and the two sliding blocks are respectively connected to the two sliding rails in a sliding manner; a plurality of aluminum plate compress tightly the subassembly and install respectively in the crossbeam of two aluminum plate loading boards, and a plurality of aluminum plate loading board locking Assembly are used for locking two sliders of aluminum plate loading board in two slide rails respectively.
And furthermore, the cross beams of the two aluminum plate bearing plates are provided with positioning blocks for positioning the aluminum plates.
Further, the aluminum plate bearing plate locking assembly is a locking handle.
Furthermore, the two ends of the slide rail are respectively provided with a limiting block for limiting the two aluminum plate bearing plates.
Further, hold-down mechanism still includes mounting panel and many support rod spare, and the mounting panel is installed in external workstation, and many support rod spare are connected in the mounting panel and are used for supporting aluminum plate and compress tightly the aluminum plate that the subassembly compressed tightly.
Further, the support rod piece comprises a support rod installation part, a support rod expansion part and a plurality of locking screws, the support rod installation part is connected to the installation plate, the support rod expansion part is arranged on the support rod installation part in an expansion mode, the locking screws are connected to the support rod expansion part and the support rod installation part in a threaded mode, and the locking screws are used for locking the support rod expansion part to the support rod installation part.
Further, the magnet has been installed to the bracing piece installation department one end of keeping away from the bracing piece pars contractilis, the mounting panel is iron plate, and the bracing piece installation department is connected in the mounting panel through magnet magnetism.
The utility model has the advantages that: before actual work, according to aluminum plate's specification earlier, two aluminum plate loading boards of operating personnel drive slide along two slide rails respectively, adjust the distance between two aluminum plate loading boards to make hold-down mechanism can compress tightly the aluminum plate of different specifications, increase hold-down mechanism's application range. Then a plurality of aluminum plate bearing plate locking assemblies respectively lock the two aluminum plate bearing plates on the two slide rails. In the actual work, external manipulator places an aluminum plate in the surface of two aluminum plate loading boards earlier, then stretches the top that pendulum cylinder drive compact heap rotated the aluminum plate that two aluminum plate loading boards bore, then stretches pendulum cylinder redrive compact heap and down removes in order to compress tightly the aluminum plate that two aluminum plate loading boards bore in the surface of two aluminum plate loading boards. After the aluminum plate cutting is completed, the pressing block of the forerunner of the stretching swing cylinder moves upwards to enable the pressing block to loosen the aluminum plate, then the stretching swing cylinder drives the pressing block to rotate to a set position, and then an external manipulator takes away the aluminum plate after the cutting is completed. The aluminum plate pressing assembly is simple in structure, aluminum plates borne by the two aluminum plate bearing plates can be tightly pressed on the surfaces of the two aluminum plate bearing plates, and the processing quality of the aluminum plates is guaranteed.
The application of a plurality of aluminum plate compress tightly the subassembly and can tightly compress tightly the aluminum plate that two aluminum plate loading boards bore in the surface of two aluminum plate loading boards, has guaranteed aluminum plate's processingquality, and hold-down mechanism can compress tightly the aluminum plate of different specifications moreover, increases hold-down mechanism's application range.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the support rod of the present invention.
Description of reference numerals:
aluminum plate bearing board 11, crossbeam 111, slider 112, locating piece 113, slide rail 12, stopper 121, aluminum plate bearing board locking subassembly 13, aluminum plate compresses tightly subassembly 14, stretches out pendulum cylinder 141, compact heap 142, mounting panel 3, support rod piece 31, bracing piece installation department 32, bracing piece pars contractilis 33, locking screw 34, magnet 35.
Detailed Description
In order to facilitate understanding of those skilled in the art, the present invention will be further described with reference to the following examples and drawings, which are not intended to limit the present invention.
As shown in fig. 1, the pressing mechanism for a laser cutting machine provided by the present invention comprises two aluminum plate bearing plates 11, two slide rails 12, a plurality of aluminum plate bearing plate locking assemblies 13 and a plurality of aluminum plate pressing assemblies 14; the two slide rails 12 are arranged on an external workbench at intervals in parallel, two ends of the two aluminum plate bearing plates 11 are respectively connected to the two slide rails 12 in a sliding manner, the two aluminum plate bearing plates 11 are used for bearing aluminum plates, the plurality of aluminum plate bearing plate locking assemblies 13 are respectively used for locking the two aluminum plate bearing plates 11 on the two slide rails 12, and the plurality of aluminum plate pressing assemblies 14 are respectively arranged on the two aluminum plate bearing plates 11 and are used for pressing the aluminum plates borne by the two aluminum plate bearing plates 11 on the two aluminum plate bearing plates 11;
the aluminum plate pressing assembly 14 comprises a stretching and swinging cylinder 141 and a pressing block 142, the stretching and swinging cylinder 141 is installed on the aluminum plate bearing plate 11, the pressing block 142 is in driving connection with the stretching and swinging cylinder 141, and the pressing block 142 is used for pressing or loosening the aluminum plate.
Before actual work, according to aluminum plate's specification earlier, two aluminum plate loading boards 11 of operating personnel drive slide along two slide rails 12 respectively, adjust the distance between two aluminum plate loading boards 11 to make hold-down mechanism can compress tightly the aluminum plate of different specifications, increase hold-down mechanism's application range. Then, the aluminum plate bearing plate locking assemblies 13 respectively lock the two aluminum plate bearing plates 11 to the two slide rails 12.
In actual work, an aluminum plate is placed on the surface of two aluminum plate bearing plates 11 by an external manipulator, then the swing cylinder 141 drives the pressing block 142 to rotate to the upper side of the aluminum plate borne by the two aluminum plate bearing plates 11, and then the swing cylinder 141 drives the pressing block 142 to move downwards so as to press the aluminum plate borne by the two aluminum plate bearing plates 11 on the surface of the two aluminum plate bearing plates 11. After the aluminum plate is cut, the pressing block 142 is pressed upwards by the swing extending cylinder 141, so that the pressing block 142 loosens the aluminum plate, then the swing extending cylinder 141 drives the pressing block 142 to rotate to a set position, and then an external manipulator takes away the cut aluminum plate. The aluminum plate pressing assembly 14 is simple in structure, aluminum plates borne by the two aluminum plate bearing plates 11 can be tightly pressed on the surfaces of the two aluminum plate bearing plates 11, and the processing quality of the aluminum plates is guaranteed.
The application of a plurality of aluminum plate compress tightly subassembly 14 can compress tightly the aluminum plate that two aluminum plate loading boards 11 bore on two aluminum plate loading board 11's surface, has guaranteed aluminum plate's processingquality, and hold-down mechanism can compress tightly the aluminum plate of different specifications moreover, increases hold-down mechanism's application range.
As shown in fig. 1, in this embodiment, the aluminum plate bearing plate 11 includes a cross beam 111 and two sliding blocks 112, the two sliding blocks 112 are respectively disposed at two ends of the cross beam 111, and the two sliding blocks 112 are respectively connected to the two sliding rails 12 in a sliding manner; the aluminum plate pressing assemblies 14 are respectively mounted on the cross beams 111 of the two aluminum plate bearing plates 11, and the aluminum plate bearing plate locking assemblies 13 are used for respectively locking the two sliding blocks 112 of the aluminum plate bearing plates 11 to the two sliding rails 12.
When the operator drives the two aluminum plate bearing plates 11 to slide, the two sliders 112 of the aluminum plate bearing plates 11 slide along the two slide rails 12, respectively, so that the aluminum plate bearing plates 11 slide along the correct direction. When the aluminum plate bearing plate 11 slides to a proper position, the plurality of aluminum plate bearing plate locking assemblies 13 respectively lock the two sliding blocks 112 of the aluminum plate bearing plate 11 to the two sliding rails 12. The aluminum plate bearing plate 11 has a simple structure, and can smoothly slide on the two sliders 112, thereby facilitating the position adjustment of the aluminum plate bearing plate 11.
As shown in fig. 1, in this embodiment, the cross beams 111 of the two aluminum plate bearing plates 11 are provided with positioning blocks 113 for positioning aluminum plates. In actual work, an aluminum plate is placed on the surface of the two aluminum plate bearing plates 11 by an external manipulator, and the positioning blocks 113 of the two aluminum plate bearing plates 11 respectively abut against the two sides of the aluminum plate, so that the aluminum plate is accurately placed on the surface of the two aluminum plate bearing plates 11.
In the present embodiment, the aluminum plate carrier plate locking assembly 13 is a locking handle, as shown in fig. 1. The locking handle is simple to operate and low in price.
As shown in fig. 1, in this embodiment, two ends of the sliding rail 12 are respectively provided with a limiting block 121 for limiting the two aluminum plate bearing plates 11. The limiting blocks 121 at the two ends of the sliding rail 12 limit the two aluminum plate bearing plates 11, and prevent the two aluminum plate bearing plates 11 from sliding out of the sliding rail 12.
As shown in fig. 1 and fig. 2, in this embodiment, the pressing mechanism further includes a mounting plate 3 and a plurality of support rods 31, the mounting plate 3 is mounted on an external work table, and the plurality of support rods 31 are connected to the mounting plate 3 and are used for supporting the aluminum plate pressed by the aluminum plate pressing assembly 14. The support rod piece 31 comprises a support rod mounting part 32, a support rod telescopic part 33 and a plurality of locking screws 34, the support rod mounting part 32 is connected to the mounting plate 3, the support rod telescopic part 33 is arranged on the support rod mounting part 32 in a telescopic mode, the locking screws 34 are connected to the support rod telescopic part 33 and the support rod mounting part 32 in a threaded mode, and the locking screws 34 are used for locking the support rod telescopic part 33 to the support rod mounting part 32. The support bar mounting portion 32 is provided with a magnet 35 at an end thereof away from the support bar extension portion 33, the mounting plate 3 is an iron plate, and the support bar mounting portion 32 is magnetically connected to the mounting plate 3 via the magnet 35.
In actual operation, the plurality of support bars 31 are used for supporting the aluminum plate pressed by the aluminum plate pressing assembly 14, so as to prevent the middle part of the aluminum plate from sinking, thereby ensuring the processing quality of the aluminum plate. The length of the support rod 31 can be adjusted in a telescopic manner according to the processing requirement, so that the application range of the support rod 31 is enlarged. Specifically, the support rod extending portion 33 can extend or contract along the support rod mounting portion 32, and when the support rod extending portion 33 extends to a proper position, the plurality of locking screws 34 are screwed into the support rod extending portion 33 and the support rod mounting portion 32 and lock the support rod extending portion 33 to the support rod mounting portion 32. The support rod mounting portion 32 is attracted to the mounting plate 3 via the magnet 35, facilitating mounting and dismounting of the support rod member 31.
All the technical features in the embodiment can be freely combined according to actual needs.
The above-mentioned embodiment is the utility model discloses the implementation scheme of preferred, in addition, the utility model discloses can also realize by other modes, any obvious replacement is all within the protection scope of the utility model under the prerequisite that does not deviate from this technical scheme design.
Claims (8)
1. The utility model provides a hold-down mechanism for laser cutting machine which characterized in that: the aluminum plate locking device comprises two aluminum plate bearing plates, two sliding rails, a plurality of aluminum plate bearing plate locking assemblies and a plurality of aluminum plate pressing assemblies; the aluminum plate pressing assemblies are respectively arranged on the two aluminum plate bearing plates and are used for pressing the aluminum plates borne by the two aluminum plate bearing plates onto the two aluminum plate bearing plates;
aluminum plate compresses tightly the subassembly including stretching pendulum cylinder and compact heap, stretch the pendulum cylinder and install in the aluminum plate loading board, the compact heap with stretch pendulum cylinder drive connection, the compact heap is used for compressing tightly or unclamping aluminum plate.
2. The pressing mechanism for a laser cutting machine according to claim 1, characterized in that: the aluminum plate bearing plate comprises a cross beam and two sliding blocks, the two sliding blocks are respectively arranged at two ends of the cross beam, and the two sliding blocks are respectively connected to the two sliding rails in a sliding manner; a plurality of aluminum plate compress tightly the subassembly and install respectively in the crossbeam of two aluminum plate loading boards, and a plurality of aluminum plate loading board locking Assembly are used for locking two sliders of aluminum plate loading board in two slide rails respectively.
3. The pressing mechanism for a laser cutting machine according to claim 2, characterized in that: and two cross beams of the aluminum plate bearing plate are provided with positioning blocks for positioning the aluminum plates.
4. The pressing mechanism for a laser cutting machine according to claim 1 or 2, characterized in that: the aluminum plate bearing plate locking assembly is a locking handle.
5. The pressing mechanism for a laser cutting machine according to claim 1, characterized in that: and two ends of the sliding rail are respectively provided with a limiting block for limiting the two aluminum plate bearing plates.
6. The pressing mechanism for a laser cutting machine according to claim 1, characterized in that: hold-down mechanism still includes mounting panel and many support rod spare, and the mounting panel is installed in external workstation, and many support rod spare are connected in the mounting panel and are used for supporting aluminum plate and compress tightly the aluminum plate that the subassembly compressed tightly.
7. The pressing mechanism for a laser cutting machine according to claim 6, characterized in that: the support rod piece comprises a support rod installation part, a support rod telescopic part and a plurality of locking screws, the support rod installation part is connected to the installation plate, the support rod telescopic part is arranged in the support rod installation part in a telescopic mode, the locking screws are connected to the support rod telescopic part and the support rod installation part in a threaded mode, and the locking screws are used for locking the support rod telescopic part to the support rod installation part.
8. The pressing mechanism for a laser cutting machine according to claim 7, characterized in that: the utility model discloses a bracing piece installation department, including bracing piece telescopic part, bracing piece installation department is equipped with magnet, the mounting panel is iron plate, and the bracing piece installation department is connected in the mounting panel via magnet magnetism.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201921692362.6U CN210848837U (en) | 2019-10-10 | 2019-10-10 | Pressing mechanism for laser cutting machine |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201921692362.6U CN210848837U (en) | 2019-10-10 | 2019-10-10 | Pressing mechanism for laser cutting machine |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN210848837U true CN210848837U (en) | 2020-06-26 |
Family
ID=71301436
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201921692362.6U Expired - Fee Related CN210848837U (en) | 2019-10-10 | 2019-10-10 | Pressing mechanism for laser cutting machine |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN210848837U (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112091508A (en) * | 2020-09-08 | 2020-12-18 | 成都宏明电子股份有限公司 | A fixed welding device for a connector |
| CN114405776A (en) * | 2022-01-12 | 2022-04-29 | 墙煌新材料股份有限公司 | Arc diffuse reflection coating aluminum plate and manufacturing process thereof |
-
2019
- 2019-10-10 CN CN201921692362.6U patent/CN210848837U/en not_active Expired - Fee Related
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN112091508A (en) * | 2020-09-08 | 2020-12-18 | 成都宏明电子股份有限公司 | A fixed welding device for a connector |
| CN114405776A (en) * | 2022-01-12 | 2022-04-29 | 墙煌新材料股份有限公司 | Arc diffuse reflection coating aluminum plate and manufacturing process thereof |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant | ||
| CF01 | Termination of patent right due to non-payment of annual fee | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200626 |