Cutting and punching integrated equipment for metal skirt plate of massage pool
Through integrated cutting and punching equipment, the problems of metal skirt board burrs and equipment batch processing are solved, efficient automated processing and equipment integration are achieved, and grinding quality and efficiency are improved.
Patent Information
- Application Number
- CN202510791737.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-08-26
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, metal skirt plates have burrs on the rear edge of the cutting and the grinding quality is uneven. Multiple equipment requires cutting, punching and polishing in batches, resulting in large space for the equipment and cumbersome material transportation.
Design an integrated cutting and punching integrated equipment, including a shear housing, conveying components, cutting mechanism, conveying components, shearing components, adjustment components, grinding components, vacuuming components and transportation components, to realize continuous automatic processing of the plate, and use rotating cylinder to drive the plate to rotate and adjustable angle grinding blocks for grinding. Combined with spring buffering and friction wheel design, the vacuuming components are used for debris collection.
It realizes efficient automatic processing of metal skirt boards, solves the burr problem, reduces equipment footprint and material transfer time, improves grinding quality and efficiency, and reduces manual cleaning frequency.
Smart Images

Figure CN120533482A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of pool metal skirt processing, in particular to integrated cutting and punching equipment for metal skirt plates of massage pools. Background Art
[0002] With the continuous improvement of people's living and economic level, massage pools integrating bathing and fitness have become very common in home life. Existing massage pools mainly include a tank body, a frame for supporting the tank body, and a skirt plate arranged on the periphery of the frame.
[0003] As the external decoration and supporting structure of the pool, the metal skirt combines aesthetics and functionality. Its design and manufacturing technology directly affect the durability, safety and user experience of the product. In order to achieve both aesthetics and functionality, the existing skirts are basically special-shaped parts, such as trapezoidal parts.
[0004] At present, there are still the following problems when processing and forming trapezoidal metal skirt plates: 1. Burrs will appear on the edges of the trapezoidal skirt plate after cutting. Currently, the burrs are removed by manual handheld grinders. Not only is the grinding quality uneven, but the efficiency is also slow. 2. When cutting, punching, and grinding metal skirt plates, operations such as these need to be completed in batches using multiple different devices. This not only takes up a large amount of space, but also makes the transfer of semi-finished products between devices cumbersome. Therefore, improving the level of equipment integration and optimizing the transfer process are also issues that urgently need to be addressed. Summary of the Invention
[0005] In response to the shortcomings of the existing technology, the present invention provides an integrated cutting and punching equipment for metal skirt plates of massage pools, which is mainly used to solve the problem that burrs will appear on the edges of trapezoidal skirt plates after cutting. Currently, burrs are removed by manual handheld grinders. Not only is the grinding quality uneven, but the efficiency is also slow. In addition, when cutting, punching, grinding and other operations on metal skirt plates, it is necessary to rely on multiple different equipment to complete them in batches. Not only does the equipment occupy a large space, but the transportation process of semi-finished products between various equipment is cumbersome. Therefore, how to improve the degree of equipment integration and optimize the transportation process are also urgent problems that need to be solved.
[0006] To achieve the above object, the present invention provides the following technical solutions: An integrated device for cutting and punching metal skirt plates for massage pools. An integrated device for cutting and punching metal skirt plates for massage pools, comprising a shearing machine housing and a punching machine body arranged on the right side of the shearing machine housing. The upper surface of the shearing machine housing is provided with a conveying assembly for the skirt plate body. The top surface of the shearing machine housing is provided with a cutting mechanism for cutting the skirt plate body into a suitable size. The bottom surface of the shearing machine housing is provided with a conveying assembly for conveying the cut skirt plate body. The right side of the shearing machine housing is provided with a workbench flush with the top surface of the shearing machine housing. The top surface of the workbench is provided with a A shearing component is provided for cutting the skirt plate body of a certain size into a trapezoidal shape. A receiving shell for receiving waste materials is provided under the workbench. An adjustment component for positioning the skirt plate body is provided on the bottom surface of the workbench. A grinding component for grinding the edge of the skirt plate body is provided on the surface of the adjustment component. A dust collection component for collecting debris dropped during grinding is provided on the bottom surface of the workbench. A conveying component for conveying the polished metal plate is provided on the bottom surface of the workbench. A pressing mechanism for transmitting the trapezoidal metal plate is provided on the top surface of the workbench.
[0007] Furthermore, the conveying assembly includes two first positioning shells symmetrically fixedly connected to the top surface of the shearing machine housing, a pressure roller is arranged between the two first positioning shells, two ends of the pressure roller are respectively inserted into the interior of the two first positioning shells and slidably connected thereto, the internal thread of the first positioning shell is connected to a screw, and a first spring is arranged inside the first positioning shell, two ends of the first spring are respectively fixedly connected to two bearings, and the two bearings are respectively rotatably connected to the screw and the pressure roller, a first stepper motor is installed inside the shearing machine housing, the output shaft of the first stepper motor is fixedly connected to the second pulley through a coupling, and the surface of the second pulley is fitted with a linkage belt, a conveying roller is arranged inside the shearing machine housing below the pressure roller, one end of the conveying roller is fixedly connected to the first pulley, the first pulley is meshed with the linkage belt, and the end of the conveying roller away from the first pulley is rotatably connected to the shearing machine housing through a bearing, and a skirt plate body is provided between the conveying roller and the pressure roller.
[0008] Furthermore, the transmission assembly includes a first bracket fixedly connected to the bottom surface of the shearing machine housing by bolts, two first motors are symmetrically arranged below the first bracket, the first motor is fixedly connected to the shearing machine housing through a first fixing plate, a plurality of first transmission mechanisms are evenly arranged on the top surface of the first bracket, each of the first transmission mechanisms is interconnected through a second synchronization mechanism, the output shaft of the first motor is fixedly connected to the first synchronization mechanism through a coupling, the other end of the first synchronization mechanism is fixedly connected to one of the first transmission mechanisms, the right end of the first bracket is fixedly connected to the second bracket, a plurality of second transmission mechanisms are evenly arranged on the top surface of the second bracket, and each of the second transmission mechanisms is connected to each other through a third synchronization mechanism.
[0009] Furthermore, the first transmission mechanism includes a support rod - rotatably connected to the first bracket through a bearing, the support rod - is provided with a friction wheel - at one end away from the first bracket, the outer surface of the friction wheel - is fixedly connected to a rubber pad, a plurality of positioning holes - are evenly opened inside the friction wheel -, a positioning pin - is provided inside each of the -, the positioning pin - is slidingly connected to the friction wheel - through the positioning hole -, a third spring - is provided inside the positioning hole -, the two ends of the third spring - are respectively fixedly connected to the positioning pin - and the friction wheel -, the end of the support rod - located inside the friction wheel - is fixedly connected to a limiting bead ring -, and the positioning pin - and the limiting bead ring - fit each other.
[0010] Furthermore, the first synchronization mechanism and the third synchronization mechanism are both composed of two synchronization pulleys and a synchronization belt, and the circumference of the synchronization belt of the third synchronization mechanism is longer than the circumference of the synchronization belt of the second synchronization mechanism.
[0011] Furthermore, the shearing assembly includes a second positioning shell fixedly connected to the surface of the workbench by bolts, a first cylinder is installed on the top surface of the second positioning shell, the output shaft of the first cylinder passes through the surface of the second positioning shell and is fixedly connected to the mounting plate, the bottom surface of the mounting plate is fixedly connected to the shear knife by bolts, and the mounting plate is provided with a first positioning block on the side of the mounting plate facing the conveying assembly, the bottom surface of the first positioning block is fixedly connected to the first pressure block by bolts, and the first positioning block has two symmetrical positioning grooves on the side facing the mounting plate, each of the positioning grooves is provided with a connecting block, the connecting block is slidably connected to the first positioning block through the positioning groove, the connecting block and the mounting plate are fixedly connected, a second spring is provided inside the positioning groove, and the two ends of the second spring are fixedly connected to the connecting block and the first positioning block respectively.
[0012] The top of described sliding panel also is provided with an interlocking structure, and the interlocking structure is hinged on the base plate, is fixed with a backing pin on the interlocking structure, and an end of sliding panel withstands on the backing pin of interlocking structure.
[0013] Furthermore, the grinding assembly includes two connecting frames symmetrically fixedly connected to the surface of the positioning frame by bolts, and an electric push rod is evenly installed on the surface of each connecting frame, and the output shafts of the two electric push rods are fixedly connected to the connecting shaft through a coupling, and the surface of the connecting shaft is slidably connected to a positioning cylinder, and a fourth spring is provided inside the positioning cylinder, and the two ends of the fourth spring are respectively fixedly connected to the positioning cylinder and the connecting shaft, and the end of the positioning cylinder away from the connecting shaft is fixedly connected to a turntable, and the surface of the turntable is rotatably connected to a grinding block, and the surface of the turntable is provided with a torsion spring, and the two ends of the torsion spring are respectively fixedly connected to the grinding block and the turntable, and the surface of the grinding block is symmetrically fixedly connected to two scrapers by bolts.
[0014] Furthermore, the dust suction assembly includes an exhaust fan arranged under the workbench, a chip storage shell is provided on one side of the exhaust fan, the output end of the exhaust fan is fixedly connected to the air pipe and inserted into the inside of the chip storage shell, the top surface of the chip storage shell is provided with a cover plate, and the inside of the chip storage shell is provided with an isolation cloth. Two connecting hoses are symmetrically fixedly connected to the surface of the cover plate, and the ends of the two connecting hoses away from the cover plate are fixedly connected to a chip bowl, and the chip bowl is arranged below the grinding block and fixedly connected to it by bolts.
[0015] Furthermore, the conveying assembly includes two second stepper motors symmetrically installed on the bottom surface of the workbench, the output shaft of the second stepper motor is fixedly connected to the screw rod by bolts, the surface of the screw rod is threadedly connected to the second positioning block, the surface of the second positioning block is fixedly connected to the slider through a connecting plate, the bottom surface of the workbench is fixedly connected to the slide rail through a second fixed plate, the slider is slidably connected to the slide rail, and a small cylinder is installed on the top surface of the slider, the output end of the small cylinder faces the workbench and is fixedly connected to the finger cylinder.
[0016] Compared with the existing technology, the present invention provides an integrated cutting and punching device for metal skirt plates of massage pools, which has the following beneficial effects: 1. The present invention drives the plate to rotate by a rotary cylinder, and cooperates with an angle-adjustable grinding block and a double-sided scraper to complete the grinding of bevel and straight edges and double-sided burr removal at one time, solving the problem of low grinding efficiency of traditional processes.
[0017] 2. The present invention integrates cutting, punching, grinding and waste collection functions into one, realizing continuous automated processing of metal skirt plates from raw materials to finished products. The coordinated work of the conveying components, cutting mechanism and punching machine body significantly reduces the material transfer time between traditional multiple processes.
[0018] 3. The present invention adopts a spring-buffered pressure roller and friction wheel design, combined with a sliding mechanism of a limit bead ring and a positioning pin, to ensure that the plate can be tightly clamped during transmission and that the local friction wheel rotation can be automatically stopped during cutting to avoid displacement or deformation of the plate.
[0019] 4. The present invention uses isolation cloth and exhaust fans to achieve directional collection of debris, avoiding contamination of the internal structure of the equipment; the material receiving shell and the shearing component are linked to automatically recycle waste, reducing the frequency of manual cleaning.
[0020] 5. The present invention supports the precise positioning and transportation of the plate by adopting a combination of a screw rod and a finger cylinder. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the front three-dimensional structure of an integrated device for cutting and punching metal skirt plates for a massage pool proposed by the present invention; Figure 2 This is a schematic diagram of the skirt plate body and pressing roller structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 3 This is a schematic diagram of the skirt plate body and shear blade structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 4This is a schematic diagram of the shearing machine housing and the first motor structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 5 This is a schematic diagram of the skirt plate main body and linkage plate structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 6 This is a schematic diagram of the skirt plate body and rotating cylinder structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 7 This is a schematic diagram of the skirt plate body and finger cylinder structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 8 This is a schematic structural diagram of the workbench and the second cylinder of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 9 This is a schematic diagram of the mounting plate and connecting block structure of an integrated cutting and punching device for metal skirt panels for a massage pool proposed by the present invention; Figure 10 This is a schematic diagram of the connecting block and positioning groove structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 11 This is a structural schematic diagram of the first motor and first synchronization mechanism of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 12 This is a schematic diagram of the vertical cross-section structure of the friction wheel of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 13 This is a schematic diagram of the top plate and rotating cylinder structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 14 This is a schematic diagram of the vertical cross-section structure of the positioning cylinder of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 15 This is a schematic diagram of the cover plate and connecting hose structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 16 This is a schematic diagram of the structure of the small cylinder and finger cylinder of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention; Figure 17 This is a schematic diagram of the screw and first spring structure of the integrated cutting and punching equipment for the metal skirt plate of a massage pool proposed by the present invention.
[0022] In the figure: 1, shearing machine housing; 11, skirt plate body; 12, workbench; 13, cutting mechanism; 14, pressing mechanism; 2. Conveying assembly; 21. First positioning housing; 22. Screw; 23. First spring; 24. Pressure roller; 25. Conveying roller; 26. First pulley; 27. Linking belt; 28. Second pulley; 29. First stepper motor; 3. Shear assembly; 31. Second positioning housing; 32. First cylinder; 33. Mounting plate; 34. Shear blade; 35. Connecting block; 36. First positioning block; 37. First pressure block; 38. Positioning slot; 39. Second spring; 4. Conveying assembly; 41. First bracket; 42. First fixing plate; 43. First motor; 44. First synchronization mechanism; 45. Second bracket; 46. Second synchronization mechanism; 47. First conveying mechanism; 47-1. Support rod; 47-2. Friction wheel; 47-3. Positioning hole; 47-4. Positioning pin; 47-5. Third spring; 47-6. Positioning bead ring; 48. Third synchronization mechanism; 49. Second conveying mechanism; 5. Adjustment assembly; 51. Positioning frame; 52. Positioning column; 53. Extrusion block; 54. Extrusion plate; 55. Bottom plate; 56. Second cylinder; 57. Top plate; 58. Rotating cylinder; 59. Linkage plate; 510. Guide rod; 6. Grinding assembly; 61. Connecting frame; 62. Electric push rod; 63. Connecting shaft; 64. Positioning cylinder; 65. Fourth spring; 66. Turntable; 67. Torsion spring; 68. Scraper; 69. Grinding block; 7. Dust collection assembly; 71. Exhaust fan; 72. Chip storage shell; 73. Isolation cloth; 74. Cover plate; 75. Connecting hose; 76. Chip bowl; 8. Transport assembly; 81. Second stepper motor; 82. Screw; 83. Second positioning block; 84. Slider; 85. Second fixing plate; 86. Slide rail; 87. Small cylinder; 88. Finger cylinder; 9. Material receiving shell; 10. Punching machine body. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0024] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings). In the description of the present invention, it should be understood that terms such as "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise" indicate positions or relationships based on those shown in the accompanying drawings. These terms are intended solely to facilitate the description of the present invention and simplify the description. They are not intended to indicate or imply that the device or component being referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention.
[0025] In the present invention, unless otherwise expressly specified or limited, when a first feature is "above" or "below" a second feature, it may mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediary. Furthermore, when a first feature is "above," "above," or "above" a second feature, it may mean that the first feature is directly above or diagonally above the second feature, or simply means that the first feature is at a higher level than the second feature. When a first feature is "below," "below," or "below" a second feature, it may mean that the first feature is directly below or diagonally below the second feature, or simply means that the first feature is at a lower level than the second feature.
[0026] See also Figures 1-17 As shown, a massage pool metal skirt plate cutting and punching integrated equipment includes a shearing machine housing 1 and a punching machine body 10 arranged on the right side of the shearing machine housing 1, the upper surface of the shearing machine housing 1 is provided with a conveying component 2 for the skirt plate body 11, the top surface of the shearing machine housing 1 is provided with a cutting mechanism 13 for cutting the skirt plate body 11 into a suitable size, the bottom surface of the shearing machine housing 1 is provided with a conveying component 4 for conveying the cut skirt plate body 11, the right side of the shearing machine housing 1 is provided with a workbench 12 flush with the top surface of the shearing machine housing 1, and the top surface of the workbench 12 is provided with A shearing assembly 3 is provided for cutting a skirt plate body 11 of a certain size into a trapezoidal shape; a receiving shell 9 for receiving waste materials is provided under the workbench 12; an adjusting assembly 5 for positioning the skirt plate body 11 is provided on the bottom surface of the workbench 12; a grinding assembly 6 for grinding the edge of the skirt plate body 11 is provided on the surface of the adjusting assembly 5; a dust collecting assembly 7 for collecting debris dropped during grinding is provided on the bottom surface of the workbench 12; a conveying assembly 8 for conveying the polished metal plate is provided on the bottom surface of the workbench 12; and a pressing mechanism 14 for transmitting the trapezoidal metal plate is provided on the top surface of the workbench 12.
[0027] In order to solve the technical problem of conveying metal plates, the present invention adopts a conveying assembly 2 including two first positioning shells 21 symmetrically fixedly connected to the top surface of the shearing machine housing 1, a pressure roller 24 is provided between the two first positioning shells 21, and the two ends of the pressure roller 24 are respectively inserted into the interior of the two first positioning shells 21 and slidably connected therewith, the internal thread of the first positioning shell 21 is connected with a screw 22, and the interior of the first positioning shell 21 is provided with a first spring 23, and the two ends of the first spring 23 are respectively fixedly connected to two bearings, and the two bearings are respectively rotatably connected to the screw 22 and the pressure roller 24, and the shearing machine A first stepper motor 29 is installed inside the shell 1. The output shaft of the first stepper motor 29 is fixedly connected to the second pulley 28 through a coupling. The surface of the second pulley 28 is fitted with a linkage belt 27. A conveying roller 25 is provided inside the shearing machine shell 1 below the pressure roller 24. One end of the conveying roller 25 is fixedly connected to the first pulley 26. The first pulley 26 is meshed with the linkage belt 27. The end of the conveying roller 25 away from the first pulley 26 is rotatably connected to the shearing machine shell 1 through a bearing. A skirt plate body 11 is provided between the conveying roller 25 and the pressure roller 24.
[0028] When the skirt plate body 11 needs to be conveyed, one end of the skirt plate body 11 is placed between the pressure roller 24 and the conveying roller 25, and then force is applied to the screw 22 to make it rotate. The screw 22 will move in the direction of the pressure roller 24, causing the pressure roller 24 to move in the direction of the plate until the pressure roller 24 and the plate contact each other. The first spring 23 will be compressed by the force, so that the plate is tightly clamped and positioned. Then the first stepper motor 29 is connected to the external power supply and then started. The output shaft of the first stepper motor 29 will drive the second pulley 28 to rotate. The rotation of the second pulley 28 will drive the first pulley 26 to rotate through the linkage belt 27, thereby rotating the conveying roller 25. The conveying roller 25 will extend the metal plate in the direction of the cutting mechanism 13 through friction until the plate passes through the cutting mechanism 13.
[0029] When the plate passes through the cutting mechanism 13 and reaches a suitable length, the output component inside the cutting mechanism 13 is started, and the plate is cut by the internal cutter. During cutting, the first stepper motor 29 is in a power-off state.
[0030] In order to solve the technical problem of transmitting metal plates, the present invention adopts a transmission assembly 4 including a first bracket 41 fixedly connected to the bottom surface of the shearing machine housing 1 by bolts, and two first motors 43 are symmetrically arranged below the first bracket 41, and the first motor 43 is fixedly connected to the shearing machine housing 1 through a first fixed plate 42. A plurality of first transmission mechanisms 47 are evenly arranged on the top surface of the first bracket 41, and each first transmission mechanism 47 is interconnected through a second synchronization mechanism 46. The output shaft of the first motor 43 is fixedly connected to the first synchronization mechanism 44 through a coupling, and the other end of the first synchronization mechanism 44 is fixedly connected to one of the first transmission mechanisms 47. The right end of the first bracket 41 is fixedly connected to the second bracket 45, and a plurality of second transmission mechanisms 49 are evenly arranged on the top surface of the second bracket 45, and each second transmission mechanism 49 is interconnected through a third synchronization mechanism 48. The first transmission mechanism 47 includes a first transmission mechanism 47 that rotates with the first bracket 41 through a bearing. The first and third synchronizing mechanisms 44 and 48 are both composed of two synchronous pulleys and synchronous belts, and the circumference of the synchronous belt of the third synchronous mechanism 48 is longer than that of the synchronous belt of the second synchronous mechanism 46.
[0031] When the conveying assembly 2 conveys the plate, the first motor 43 is connected to the external power supply and started. When the plate passes through the cutting mechanism 13, it will contact the friction wheel 47-2, and the output shaft of the first motor 43 will drive one of the support rods 47-1 to rotate on the surface of the first bracket 41 through the first synchronization mechanism 44. The rotation of the support rod 47-1 will indirectly drive the friction wheel 47-2 to rotate. The friction wheel 47-2 has the same rotation speed as the conveying roller 25. When the plate is extended to a certain length for cutting, the pressure on the plate during cutting will cause the plate to stop, and the friction wheel 47-2 will also stop due to friction, and the support rod 47-1 will still rotate, causing the limiting bead ring 47-6 to slide on the surface of the positioning pin 47-4. Through the repeated squeezing of the positioning pin 47-4 by the limiting bead ring 47-6, the third spring 47-5 will be repeatedly compressed, thereby stopping the rotation of the friction wheel 47-2 used for plate contact, and will not affect the rotation of other friction wheels 47-2. They are relatively independent while being linked. In order to facilitate subsequent transportation after cutting, the first conveying mechanism 47 will drive the second conveying mechanism 49 to rotate on the first bracket 41 through the third synchronization mechanism 48, and the second conveying mechanism 49 has the same structure as the first conveying mechanism 47.
[0032] In order to solve the technical problem of shearing the metal plate into a trapezoid, the present invention adopts a shearing assembly 3 including a second positioning shell 31 fixedly connected to the surface of the workbench 12 by bolts, and a first cylinder 32 is installed on the top surface of the second positioning shell 31, and the output shaft of the first cylinder 32 passes through the surface of the second positioning shell 31 and is fixedly connected to the mounting plate 33, and the bottom surface of the mounting plate 33 is fixedly connected to the shearing knife 34 by bolts, and a first positioning block 36 is provided on the side of the mounting plate 33 facing the conveying assembly 4, and the bottom surface of the first positioning block 36 is fixedly connected to the first pressure block 37 by bolts, and the first positioning block 36 is symmetrically provided with two positioning grooves 38 on the side facing the mounting plate 33, and a connecting block 35 is provided inside each positioning groove 38, and the connecting block 35 is slidably connected to the first positioning block 36 through the positioning groove 38, and the connecting block 35 and the mounting plate 33 are fixedly connected, and a second spring 39 is provided inside the positioning groove 38, and the two ends of the second spring 39 are fixedly connected to the connecting block 35 and the first positioning block 36 respectively.
[0033] When the plate needs to be sheared into a trapezoid, the skirt plate body 11 cut into segments will be conveyed to the bottom of the shearing knife 34 through the first conveying mechanism 47. When it reaches the adapted length, the first cylinder 32 is connected to the external power supply and then started. The output shaft of the first cylinder 32 will drive the shearing knife 34 to move toward the plate through the mounting plate 33. While moving down, the first positioning block 36 will move down with the first pressing block 37. The first pressing block 37 contacts the plate before the shearing knife 34. The first positioning block 36 continues to move down, and the connecting block 35 will move down inside the positioning groove 38. The second spring 39 will be compressed, so that the first pressing block 37 will squeeze the plate more tightly, so that the plate no longer moves. Then the first positioning block 36 will contact each other with the plate and shear the plate. Due to the matching of the shape of the shearing knife 34 and the shape of the workbench 12, the plate is processed into a trapezoidal structure.
[0034] When the plate is sheared into a trapezoidal structure, one end of the plate contacts the last group of first conveying mechanisms 47, and the other end contacts the first group of second conveying mechanisms 49, so that after the trapezoidal shearing of the plate is completed, the trapezoidal plate will be moved to the next process through the rotation of the second conveying mechanism 49, and when the first pressing block 37 moves up, the last group of first pressing blocks 37 will send the waste into the material receiving shell 9 below the workbench 12.
[0035] It should be noted that the cutting mechanism 13 is consistent with the internal components of the shearing assembly 3, and only the shape of the cutting tool is different. The tool inside the cutting mechanism 13 is a linear tool, while the shearing tool 34 is a trapezoidal tool, in order to cut the plate into different shapes.
[0036] In order to solve the technical problem of grinding the edge of the metal plate, the present invention adopts an adjustment component 5 including a bottom plate 55 fixedly connected to the bottom surface of the workbench 12 by a connecting guide rod, a second cylinder 56 is installed on the top surface of the bottom plate 55, and the output shaft of the second cylinder 56 is fixedly connected to the top plate 57 through a coupling, a rotating cylinder 58 is installed on the top surface of the top plate 57, and the output shaft of the rotating cylinder 58 is installed with an extrusion plate 54. The surface of the workbench 12 is located at the position of the extrusion plate 54 and a through groove of the same shape as the extrusion plate 54 is opened, and a positioning frame 51 is provided above the workbench 12. The surface of the positioning frame 51 is slidably connected with a positioning column 52, and the positioning column 52 and the extrusion plate 54 are coaxial. The end of the positioning column 52 facing the extrusion plate 54 is rotatably connected to the extrusion block 53 through a bearing, and the end of the positioning column 52 away from the extrusion block 53 is fixedly connected to a linkage plate 59, and a tension spring is wound around the surface of the positioning column 52, and the two ends of the tension spring are respectively fixedly connected to the linkage plate 59 and the positioning frame 51 The bottom surface of the linkage plate 59 is symmetrically fixedly connected to two guide rods 510, and the two guide rods 510 respectively penetrate the surface of the positioning frame 51 and are slidably connected thereto. The grinding assembly 6 includes two connecting frames 61 symmetrically fixedly connected to the surface of the positioning frame 51 by bolts. An electric push rod 62 is evenly installed on the surface of each connecting frame 61. The output shafts of the two electric push rods 62 are fixedly connected to the connecting shaft 63 through a coupling. The surface of the connecting shaft 63 is slidably connected to a positioning cylinder 64. A fourth spring 65 is provided inside the positioning cylinder 64. The two ends of the fourth spring 65 are respectively fixedly connected to the positioning cylinder 64 and the connecting shaft 63. The end of the positioning cylinder 64 away from the connecting shaft 63 is fixedly connected to a turntable 66. The surface of the turntable 66 is rotatably connected to a grinding block 69. The surface of the turntable 66 is provided with a torsion spring 67. The two ends of the torsion spring 67 are respectively fixedly connected to the grinding block 69 and the turntable 66. The surface of the grinding block 69 is symmetrically fixedly connected to two scrapers 68 by bolts.
[0037] When the trapezoidal plate is conveyed to the last group of the second conveying mechanism 49 and is no longer in contact, the trapezoidal plate will be located above the extrusion plate 54, and then the second cylinder 56 will be connected to the external power supply and then started. The top plate 57 will be forced to move upward on the surface of the connecting guide rod, indirectly causing the extrusion plate 54 to push the trapezoidal plate upward until the upper surface of the trapezoidal plate contacts the extrusion block 53. The positioning column 52 will be forced to move upward, and the tension spring wrapped around the surface of the positioning column 52 will be stretched and deformed. The two guide rods 510 will slide on the surface of the positioning frame 51 due to the connection of the linkage plate 59, so that the movement of the positioning column 52 is more stable and will not deviate.
[0038] When it is necessary to grind the edge of the trapezoidal plate, the two electric push rods 62 are connected to an external power supply and then started. The connecting shaft 63 will drive the grinding block 69 to move toward the plate through the positioning cylinder 64 until the grinding block 69 contacts the edge of the trapezoidal plate. The connecting shaft 63 continues to move forward, and the fourth spring 65 will be compressed until it is in close contact with the edge of the trapezoidal plate. Then the rotating cylinder 58 will drive the trapezoidal plate to rotate through the extrusion plate 54, and the extrusion block 53 will also rotate. The rotation of the trapezoidal plate will cause the grinding block 69 to slide on the edge of the trapezoidal plate, so that the edge of the trapezoidal plate can be polished by the grinding block 69.
[0039] During grinding, the two grinding blocks 69 will first grind the two short sides of the trapezoidal plate. When the trapezoidal plate rotates, the edge will be tilted and the grinding block 69 will rotate on the surface of the turntable 66 following the rotation of the trapezoidal plate. When it rotates to a certain angle, the grinding positions of the two grinding blocks 69 will change. One grinds the side with the bevel and the other grinds the side with the straight surface. When the grinding block 69 for grinding the straight surface finishes grinding the straight surface, it will be retracted, and the grinding block 69 for grinding the bevel will grind until the trapezoidal plate rotates one hundred and eighty degrees, thus achieving the grinding of the edge of the trapezoidal plate. After grinding is completed, the grinding block 69 is retracted and the second bracket 45 also returns to its original position, which is convenient for subsequent processing.
[0040] In order to prevent the burrs on the surface of the trapezoidal plate from pointing upward or downward, during grinding, two scrapers 68 will be located on the upper and lower surfaces of the trapezoidal plate and contact each other, and the scrapers 68 can be used to remove the burrs on the upper and lower surfaces of the trapezoidal plate.
[0041] In order to solve the technical problem of collecting debris generated during the grinding of metal plates, the present invention adopts a dust collection component 7 including an exhaust fan 71 arranged under the workbench 12, and a chip storage shell 72 is provided on one side of the exhaust fan 71. The output end of the exhaust fan 71 is fixedly connected to the air pipe and inserted into the interior of the chip storage shell 72. The top surface of the chip storage shell 72 is provided with a cover plate 74, and the interior of the chip storage shell 72 is provided with an isolation cloth 73. The surface of the cover plate 74 is symmetrically fixedly connected with two connecting hoses 75, and the ends of the two connecting hoses 75 away from the cover plate 74 are fixedly connected to a chip bowl 76. The chip bowl 76 is provided below the grinding block 69 and fixedly connected to it by bolts.
[0042] When the trapezoidal plate is being polished, the exhaust fan 71 is connected to an external power source and then started. The connecting hose 75 will suck air from the outside to the inside of the chip storage shell 72, so that the debris dropped by grinding will enter the inside of the chip receiving bowl 76, and then it will be sucked into the inside of the chip storage shell 72 through the connecting hose 75, and blocked by the isolation cloth 73, which prevents the debris from entering the inside of the exhaust fan 71 and also has the characteristic of facilitating the cleaning of the inside of the chip storage shell 72.
[0043] In order to solve the technical problem of transporting metal plates before punching, the present invention adopts a conveying component 8 including two second stepper motors 81 symmetrically installed on the bottom surface of the workbench 12, the output shaft of the second stepper motor 81 is fixedly connected to the screw rod 82 by bolts, the surface of the screw rod 82 is threadedly connected to the second positioning block 83, the surface of the second positioning block 83 is fixedly connected to the slider 84 through a connecting plate, the bottom surface of the workbench 12 is fixedly connected to the slide rail 86 through a second fixed plate 85, the slider 84 is slidably connected to the slide rail 86, and a small cylinder 87 is installed on the top surface of the slider 84, the output end of the small cylinder 87 faces the workbench 12, and is fixedly connected to the finger cylinder 88.
[0044] When the grinding is completed and the plate is put down, the trapezoidal plate will contact the second conveying mechanism 49 again due to the rotation of 180 degrees. The bottom surface of the extrusion block 53 is lower than the top surface of the second conveying mechanism 49. The second conveying mechanism 49 transports the trapezoidal plate again until it is no longer in contact. Then the small cylinder 87 is connected to the external power supply and then started. The small cylinder 87 will push the finger cylinder 88 toward the trapezoidal plate. Then the finger cylinder 88 is connected to the external power supply and then started. A through groove is provided on the surface of the workbench 12. The finger cylinder 88 will pass through and clamp the trapezoidal plate. When the finger cylinder 88 clamps the trapezoidal plate, the axis of the finger cylinder 88 is higher than the upper surface of the workbench 12, so that the trapezoidal plate will move later. It will not be limited, so that the second stepper motor 81 is connected to the external power supply and then started. The rotation of the screw rod 82 will drive the second positioning block 83 to drive the slider 84 to slide on the surface of the slide rail 86 through the connecting plate, thereby driving the small cylinder 87 to move, so that the trapezoidal plate moves again until the trapezoidal plate and the pressing mechanism 14 contact each other, and then the finger cylinder 88 releases the clamping of the trapezoidal plate. At the position where the finger cylinder 88 is released, the workbench 12 is also provided with a through groove, and then the pressing mechanism 14 will transfer the trapezoidal plate to the surface of the punching machine body 10, and then the worker will adjust the position of the trapezoidal plate, and then start the punching machine body 10 to punch the trapezoidal plate, thereby realizing the shearing and punching of the metal skirt plate.
[0045] It should be noted that the pressure-feeding mechanism 14 has the same components and working mode as those inside the conveying assembly 2 .
[0046] It should be noted that the cylinder, electric push rod and motor are existing technologies, and those skilled in the art can configure them according to actual needs, so they will not be described in detail here.
[0047] The present invention is divided into the following steps when used: S1: When the skirt plate body 11 needs to be conveyed, one end of the skirt plate body 11 is placed between the pressure roller 24 and the conveying roller 25, and then force is applied to the screw 22 to rotate it. The screw 22 will move in the direction of the pressure roller 24, so that the pressure roller 24 moves in the direction of the plate until the pressure roller 24 and the plate contact each other. The first spring 23 will be compressed by the force, so that the plate is tightly clamped and positioned. Then the first stepper motor 29 is connected to the external power supply and started. The output shaft of the first stepper motor 29 drives the second pulley 28 to rotate. The rotation of the second pulley 28 drives the first pulley 26 to rotate through the linkage belt 27, thereby rotating the conveying roller 25. The conveying roller 25 will extend the metal plate toward the cutting mechanism 13 through friction until the plate passes through the cutting mechanism 13; S2: When the conveying assembly 2 conveys the plate, the first motor 43 is connected to the external power supply and started. When the plate passes through the cutting mechanism 13, it will contact the friction wheel 47-2, and the output shaft of the first motor 43 will drive one of the support rods 47-1 to rotate on the surface of the first bracket 41 through the first synchronization mechanism 44. The rotation of the support rod 47-1 will indirectly drive the friction wheel 47-2 to rotate. The friction wheel 47-2 has the same rotation speed as the conveying roller 25. When the plate is extended to a certain length for cutting, the pressure on the plate during cutting will cause the plate to stop, and the friction wheel 47-2 will also stop due to friction, while the support rod 47-1 will still rotate, causing the limiting bead ring 47-6 to slide on the surface of the positioning pin 47-4. Through the repeated squeezing of the positioning pin 47-4 by the limiting bead ring 47-6, the third spring 47-5 will be repeatedly compressed, so that the friction wheel 47-2 in contact with the plate stops rotating, and will not affect the rotation of other friction wheels 47-2. They are relatively independent while being linked. S3: When the sheet needs to be sheared into a trapezoid, the skirt plate body 11 cut into segments will be conveyed to the bottom of the shearing knife 34 through the first conveying mechanism 47. When it reaches the adapted length, the first cylinder 32 will be connected to the external power supply and then started. The output shaft of the first cylinder 32 will drive the shearing knife 34 to move toward the sheet through the mounting plate 33. While moving downward, the first positioning block 36 will move downward with the first pressing block 37. The first pressing block 37 will contact the sheet before the shearing knife 34. The first positioning block 36 will continue to move downward, and the connecting block 35 will move downward inside the positioning groove 38. The second spring 39 will be compressed, so that the first pressing block 37 will more tightly press the sheet. The plate is squeezed so that the plate no longer moves, and then the first positioning block 36 contacts the plate and shears the plate. Due to the matching of the shape of the shearing knife 34 and the shape of the workbench 12, the plate is processed into a trapezoidal structure. When the plate is sheared into a trapezoidal structure, one end of the plate contacts the last group of first conveying mechanisms 47, and the other end contacts the first group of second conveying mechanisms 49. After the trapezoidal shearing of the plate is completed, the trapezoidal plate will be moved to the next process through the rotation of the second conveying mechanism 49. When the first pressing block 37 moves up, the last group of first pressing blocks 37 will send the waste into the material receiving shell 9 below the workbench 12. S4: When the trapezoidal plate is conveyed to the last set of second conveying mechanisms 49 and is out of contact, the trapezoidal plate will be located above the extrusion plate 54, and then the second cylinder 56 will be connected to the external power supply and started, and the top plate 57 will be forced to move upward on the surface of the connecting guide rod, indirectly causing the extrusion plate 54 to push the trapezoidal plate upward until the upper surface of the trapezoidal plate contacts the extrusion block 53, and the positioning column 52 will be forced to move upward, and the tension spring wrapped around the surface of the positioning column 52 will be stretched and deformed, and the two guide rods 510 will slide on the surface of the positioning frame 51 due to the connection of the linkage plate 59, so that the movement of the positioning column 52 is relatively stable and will not deviate; S5: When the edge of the trapezoidal plate needs to be polished, the two electric push rods 62 are connected to the external power supply and then started. The connecting shaft 63 drives the polishing block 69 to move toward the plate through the positioning cylinder 64 until the polishing block 69 contacts the edge of the trapezoidal plate. The connecting shaft 63 continues to move forward, and the fourth spring 65 is compressed until it contacts the edge of the trapezoidal plate tightly. Then the rotating cylinder 58 drives the trapezoidal plate to rotate through the extrusion plate 54, and the extrusion block 53 also rotates. The rotation of the trapezoidal plate causes the polishing block 69 to slide on the edge of the trapezoidal plate, so that the edge of the trapezoidal plate can be polished by the polishing block 69. During the polishing, the two polishing blocks 69 are pressed together. The block 69 will first grind the two short sides of the trapezoidal plate. When the trapezoidal plate rotates, the edge will be inclined and the grinding block 69 will rotate on the surface of the turntable 66 following the rotation of the trapezoidal plate. When it rotates to a certain angle, the grinding positions of the two grinding blocks 69 will change, one grinding the side with the bevel and the other grinding the side of the straight surface. When the grinding block 69 for grinding the straight surface finishes grinding the straight surface, it will be retracted, and the grinding block 69 for grinding the bevel will grind until the trapezoidal plate rotates 180 degrees, thus achieving the grinding of the edge of the trapezoidal plate. After grinding is completed, the grinding block 69 is retracted and the second bracket 45 also returns to its original position, which is convenient for subsequent processing. S6: When the trapezoidal plate is being polished, the exhaust fan 71 is connected to an external power source and then started. The connecting hose 75 sucks air from the outside into the chip storage shell 72, so that the chips dropped by the polishing enter the chip receiving bowl 76. Then, the chips are sucked into the chip storage shell 72 through the connecting hose 75 and blocked by the isolation cloth 73. This prevents the chips from entering the exhaust fan 71 and also facilitates the cleaning of the chip storage shell 72. S7: After the grinding is completed and the plate is put down, the trapezoidal plate will contact the second conveying mechanism 49 again due to the rotation of 180 degrees. The bottom surface of the extrusion block 53 is lower than the top surface of the second conveying mechanism 49. The second conveying mechanism 49 transports the trapezoidal plate again until it is no longer in contact. Then the small cylinder 87 is connected to the external power supply and then started. The small cylinder 87 will push the finger cylinder 88 toward the trapezoidal plate. Then the finger cylinder 88 is connected to the external power supply and then started. A through groove is provided on the surface of the workbench 12. The finger cylinder 88 will pass through and clamp the trapezoidal plate. When the finger cylinder 88 clamps the trapezoidal plate, the axis of the finger cylinder 88 is higher than the upper surface of the workbench 12, so that the trapezoidal plate will be moved later. It will not be limited when moving, so that the second stepper motor 81 is connected to the external power supply and then started. The rotation of the screw rod 82 will drive the second positioning block 83 to drive the slider 84 to slide on the surface of the slide rail 86 through the connecting plate, thereby driving the small cylinder 87 to move, so that the trapezoidal plate will move again until the trapezoidal plate and the pressing mechanism 14 contact each other, and then the finger cylinder 88 releases the clamping of the trapezoidal plate. At the position where the finger cylinder 88 is released, the workbench 12 is also provided with a through groove, and then the pressing mechanism 14 will transfer the trapezoidal plate to the surface of the punching machine body 10, and then the worker will adjust the position of the trapezoidal plate, and then start the punching machine body 10 to punch the trapezoidal plate, thereby realizing the shearing and punching of the metal skirt plate.
[0048] The technical features of the above embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0049] The above-described embodiments merely illustrate several embodiments of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. An integrated cutting and punching device for metal skirt plates of a massage pool, comprising a shearing machine housing (1) and a punching machine body (10) arranged on the right side of the shearing machine housing (1), characterized in that: The upper surface of the shearing machine housing (1) is provided with a conveying assembly (2) for the skirt plate body (11), the top surface of the shearing machine housing (1) is provided with a cutting mechanism (13) for cutting the skirt plate body (11) into a suitable size, the bottom surface of the shearing machine housing (1) is provided with a conveying assembly (4) for conveying the cut skirt plate body (11), the right side of the shearing machine housing (1) is provided with a workbench (12) flush with the top surface of the shearing machine housing (1), the top surface of the workbench (12) is provided with a shearing assembly (3) for cutting the skirt plate body (11) of a specified size into a trapezoid, A receiving shell (9) for receiving waste materials is provided below the workbench (12), an adjusting component (5) for positioning the skirt plate body (11) is provided on the bottom surface of the workbench (12), a grinding component (6) for grinding the edge of the skirt plate body (11) is provided on the surface of the adjusting component (5), a dust collecting component (7) for collecting debris dropped during grinding is provided on the bottom surface of the workbench (12), a conveying component (8) for conveying the polished metal plate is provided on the bottom surface of the workbench (12), and a pressing mechanism (14) for conveying the trapezoidal metal plate is provided on the top surface of the workbench (12).
2. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 1 is characterized in that: The conveying assembly (2) includes two first positioning shells (21) symmetrically fixedly connected to the top surface of the shearing machine housing (1), a pressure roller (24) is provided between the two first positioning shells (21), the two ends of the pressure roller (24) are respectively inserted into the interior of the two first positioning shells (21) and are slidably connected thereto, the interior of the first positioning shell (21) is threadedly connected to a screw rod (22), the interior of the first positioning shell (21) is provided with a first spring (23), the two ends of the first spring (23) are respectively fixedly connected to two bearings, the two bearings are respectively rotatably connected to the screw rod (22) and the pressure roller (24), and the interior of the shearing machine housing (1) is provided with a first stepper motor ( 29), the output shaft of the first stepper motor (29) is fixedly connected to the second pulley (28) through a coupling, the surface of the second pulley (28) is fitted with a linkage belt (27), and a conveying roller (25) is provided inside the shearing machine housing (1) below the pressure roller (24), one end of the conveying roller (25) is fixedly connected to the first pulley (26), the first pulley (26) is meshed with the linkage belt (27), and the end of the conveying roller (25) away from the first pulley (26) is rotatably connected to the shearing machine housing (1) through a bearing, and a skirt plate body (11) is provided between the conveying roller (25) and the pressure roller (24).
3. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 1 is characterized in that: The transmission assembly (4) includes a first bracket (41) fixedly connected to the bottom surface of the shearing machine housing (1) by bolts, two first motors (43) are symmetrically arranged below the first bracket (41), and the first motor (43) is fixedly connected to the shearing machine housing (1) through a first fixing plate (42), and a plurality of first transmission mechanisms (47) are evenly arranged on the top surface of the first bracket (41), and each of the first transmission mechanisms (47) is connected to each other through a second synchronization mechanism (46), and the output shaft of the first motor (43) is fixedly connected to the first synchronization mechanism (44) through a coupling, and the other end of the first synchronization mechanism (44) is fixedly connected to one of the first transmission mechanisms (47), and the right end of the first bracket (41) is fixedly connected to the second bracket (45), and a plurality of second transmission mechanisms (49) are evenly arranged on the top surface of the second bracket (45), and each of the second transmission mechanisms (49) is connected to each other through a third synchronization mechanism (48).
4. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 3 is characterized in that: The first transmission mechanism (47) includes a support rod (47-1) rotatably connected to the first bracket (41) via a bearing, a friction wheel (47-2) is sleeved on one end of the support rod (47-1) away from the first bracket (41), a rubber pad is fixedly connected to the outer surface of the friction wheel (47-2), a plurality of positioning holes (47-3) are evenly opened inside the friction wheel (47-2), and a positioning pin (47-4) is provided inside each of the (37-3), and the positioning pin (47-4) The positioning hole (47-3) and the friction wheel (47-2) are slidably connected, a third spring (47-5) is provided inside the positioning hole (47-3), two ends of the third spring (47-5) are respectively fixedly connected to the positioning pin (47-4) and the friction wheel (47-2), one end of the support rod (47-1) located inside the friction wheel (47-2) is fixedly connected to a limiting bead ring (47-6), and the positioning pin (47-4) and the limiting bead ring (47-6) are in contact with each other.
5. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 4 is characterized in that: The first synchronous mechanism (44) and the third synchronous mechanism (48) are both composed of two synchronous pulleys and a synchronous belt, and the circumference of the synchronous belt of the third synchronous mechanism (48) is longer than the circumference of the synchronous belt of the second synchronous mechanism (46).
6. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 1 is characterized in that: The shearing assembly (3) includes a second positioning shell (31) fixedly connected to the surface of the workbench (12) by bolts, a first cylinder (32) is installed on the top surface of the second positioning shell (31), an output shaft of the first cylinder (32) passes through the surface of the second positioning shell (31) and is fixedly connected to a mounting plate (33), a shearing knife (34) is fixedly connected to the bottom surface of the mounting plate (33) by bolts, a first positioning block (36) is provided on the side of the mounting plate (33) facing the conveying assembly (4), and the bottom surface of the first positioning block (36) is fixedly connected to A first pressing block (37) is provided with two symmetrical positioning grooves (38) on one side of the first positioning block (36) facing the mounting plate (33), a connecting block (35) is provided inside each of the positioning grooves (38), the connecting block (35) is slidably connected to the first positioning block (36) through the positioning groove (38), the connecting block (35) and the mounting plate (33) are fixedly connected, a second spring (39) is provided inside the positioning groove (38), and two ends of the second spring (39) are fixedly connected to the connecting block (35) and the first positioning block (36), respectively.
7. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 1 is characterized in that: The adjustment assembly (5) includes a bottom plate (55) fixedly connected to the bottom surface of the workbench (12) through a connecting guide rod, a second cylinder (56) is installed on the top surface of the bottom plate (55), an output shaft of the second cylinder (56) is fixedly connected to a top plate (57) through a coupling, a rotating cylinder (58) is installed on the top surface of the top plate (57), an extrusion plate (54) is installed on the output shaft of the rotating cylinder (58), a through groove of the same shape as the extrusion plate (54) is opened on the surface of the workbench (12) at the position of the extrusion plate (54), and a positioning frame (51) is provided above the workbench (12), and the surface of the positioning frame (51) slides A positioning column (52) is connected, and the positioning column (52) and the extrusion plate (54) are on the same axis. The end of the positioning column (52) facing the extrusion plate (54) is rotatably connected to the extrusion block (53) through a bearing, and the end of the positioning column (52) away from the extrusion block (53) is fixedly connected to the linkage plate (59). A tension spring is wound around the surface of the positioning column (52), and the two ends of the tension spring are respectively fixedly connected to the linkage plate (59) and the positioning frame (51). Two guide rods (510) are symmetrically fixedly connected to the bottom surface of the linkage plate (59), and the two guide rods (510) respectively penetrate the surface of the positioning frame (51) and are slidably connected thereto.
8. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 7, characterized in that: The grinding assembly (6) includes two connecting frames (61) symmetrically fixedly connected to the surface of the positioning frame (51) by bolts, and an electric push rod (62) is evenly installed on the surface of each connecting frame (61). The output shafts of the two electric push rods (62) are fixedly connected to the connecting shaft (63) through a coupling, and the surface of the connecting shaft (63) is slidably connected to a positioning cylinder (64). A fourth spring (65) is provided inside the positioning cylinder (64), and the two ends of the fourth spring (65) are respectively fixedly connected to the positioning cylinder (64) and the connecting shaft (63). The end of the positioning cylinder (64) away from the connecting shaft (63) is fixedly connected to a turntable (66), and the surface of the turntable (66) is rotatably connected to a grinding block (69). A torsion spring (67) is provided on the surface of the turntable (66), and the two ends of the torsion spring (67) are respectively fixedly connected to the grinding block (69) and the turntable (66). The surface of the grinding block (69) is symmetrically fixedly connected to two scrapers (68) by bolts.
9. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 8, characterized in that: The dust collection assembly (7) includes an exhaust fan (71) arranged below the workbench (12), a chip storage shell (72) is provided on one side of the exhaust fan (71), an output end of the exhaust fan (71) is fixedly connected to an air pipe and inserted into the interior of the chip storage shell (72), a cover plate (74) is provided on the top surface of the chip storage shell (72), and an isolation cloth (73) is provided inside the chip storage shell (72). Two connecting hoses (75) are symmetrically fixedly connected to the surface of the cover plate (74), and one end of the two connecting hoses (75) away from the cover plate (74) is fixedly connected to a chip bowl (76), and the chip bowl (76) is arranged below the grinding block (69) and fixedly connected thereto by bolts.
10. The integrated cutting and punching equipment for metal skirt plates of a massage pool according to claim 1, characterized in that: The transport assembly (8) includes two second stepper motors (81) symmetrically mounted on the bottom surface of the workbench (12), the output shaft of the second stepper motor (81) is fixedly connected to a screw rod (82) by a bolt, the surface of the screw rod (82) is threadedly connected to a second positioning block (83), the surface of the second positioning block (83) is fixedly connected to a slider (84) via a connecting plate, the bottom surface of the workbench (12) is fixedly connected to a slide rail (86) via a second fixing plate (85), the slider (84) is slidably connected to the slide rail (86), and a small cylinder (87) is mounted on the top surface of the slider (84), the output end of the small cylinder (87) faces the workbench (12) and is fixedly connected to a finger cylinder (88).