Plate processing equipment
By installing the cutting head module and the drilling head on the same slide in the plate processing equipment, synchronous movement is achieved, solving the problems of complex processing order and low space utilization in existing equipment, and improving processing accuracy and production efficiency.
Patent Information
- Application Number
- CN202422103176.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-29
Smart Images

Figure CN222957984U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sheet processing equipment, and particularly relates to a sheet processing device. Background Technique
[0002] The information disclosed in the background technique of the utility model is only intended to increase the understanding of the overall background of the utility model, and is not necessarily regarded as an admission or an indication in any form that this information constitutes the prior art already known to those of ordinary skill in the art.
[0003] With the progress of industrial technology and the continuous improvement of production efficiency requirements, sheet processing equipment is developing towards multi-function, high-precision and automation. Traditional sheet processing equipment usually adopts a single-function mode, that is, the cutting and drilling processes need to be completed by different equipment respectively. This separated processing method not only increases the handling times of workpieces, but also easily generates cumulative errors during the process conversion, affecting product quality.
[0004] In recent years, in order to improve processing efficiency and reduce production costs, some sheet processing equipment integrating cutting and drilling functions has emerged on the market. Such equipment is usually controlled by a numerical control system and can complete the cutting and drilling processes of sheets on the same machine, significantly improving production efficiency and processing accuracy.
[0005] However, most of the existing integrated equipment installs the cutting head and the drilling head on different sliding seats or moving mechanisms. Although processing on the same equipment is achieved, there are still problems of complex processing sequence and low space utilization rate in the actual operation process. When cutting and drilling, it is necessary to perform a positioning first, and then reposition for drilling after cutting, increasing the complexity of the operation. At the same time, although two functions are integrated, due to the cutting head and the drilling head being installed on different sliding seats respectively, the overall volume of the equipment is still large. Summary of the Utility Model
[0006] In order to solve the above technical problems, the utility model provides a sheet processing device with a compact structure, simple operation and high processing accuracy.
[0007] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0008] A sheet processing device includes a processing platform, above which a gantry that can slide back and forth along it is provided. The gantry includes a cross beam and sliding columns located on both sides of the cross beam, and a head device is slidably installed left and right on the cross beam;
[0009] The head device includes a sliding seat, on which a first sliding plate that can slide in the up and down direction is installed, and a cutting head module is fixedly installed on the first sliding plate;
[0010] The cutting head module includes a rotatable head frame, which is installed on the first slide plate through a single-side lifting frame and driven to rotate by a rotation driving device;
[0011] The head frame includes a top plate, a pair of side plates located on the left and right sides, a front end plate and a rear end plate located at the front and rear ends. An active bottom plate is hingedly installed at the bottom between the two side plates. A cutting device is fixedly installed on the lower side of the active bottom plate, and a first linear telescopic driving device for adjusting the cutting angle is arranged on the upper side of the active bottom plate;
[0012] A second slide plate that can slide up and down is further installed on the first slide plate on one side of the single-side lifting frame, and a drilling device is installed on the second slide plate.
[0013] Preferably, one end of the first linear telescopic driving device is hinged to the active bottom plate, and the other end is hingedly installed on the front end plate or the rear end plate.
[0014] Preferably, the cutting device includes a cutting driving device and a cutting blade;
[0015] The drilling device includes a drilling driving device and a second linear driving device.
[0016] Preferably, a first linear slide rail for cooperating with the first slide plate to slide up and down is arranged on the slide seat, and a lead screw adapted to the first linear slide rail is further installed on the slide seat. The lead screw is driven by a first motor;
[0017] The rotation driving device is a second motor.
[0018] Preferably, a second linear guide rail for cooperating with the second slide plate to slide up and down is arranged on the first slide plate, and the second linear driving device is installed on the top plate of the second slide plate.
[0019] Preferably, a third linear slide rail for cooperating with the slide seat to slide left and right is arranged on the front side or the rear side of the cross beam. A rack is arranged on the top side of the cross beam. Above the rack, a cross plate fixed on the slide seat is arranged. A sliding driving device is installed on the upper side of the cross plate. The sliding driving device is a third motor. The output shaft of the third motor passes through a mating hole and is installed with a gear adapted to the rack.
[0020] Preferably, a wire passing hole is opened on the front end plate or the rear end plate; the output end of the head frame and the rotation driving device are connected through a flange plate and a flange seat.
[0021] Preferably, a protective telescopic cover is arranged on the cross beam; a left head device and a right head device are slidably installed on the cross beam left and right.
[0022] The utility model includes but is not limited to the following beneficial effects:
[0023] In the utility model, since the cutting head module and the drilling head are installed on the same slide, their movements in the two-dimensional coordinate are completely synchronized, which eliminates the position deviation caused by secondary positioning and ensures the machining accuracy. At the same time, in one machining cycle, there is no need to reposition from cutting to drilling, reducing the cumulative error caused by multiple clamping.
[0024] In the utility model, cutting and drilling are completed on the same slide, simplifying the machining process and improving the production efficiency. The rapid switching between cutting and drilling can be achieved by simply moving the slide up and down, reducing the preparation time.
[0025] In the utility model, the cutting angle of the cutting head module can be adjusted by the first linear telescopic driving device, enabling multi-angle cutting, enhancing the flexibility of the equipment, and being able to adapt to various complex machining requirements. The headstock of the cutting head module can rotate, further expanding the functionality of the equipment and improving the machining flexibility.
[0026] In the utility model, the cutting head module and the drilling head share a set of moving mechanisms, reducing the overall size of the equipment, saving space, and making the equipment layout more compact. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is a schematic diagram of the overall structure of the utility model Figure 1 ;
[0028] Figure 2 is a schematic diagram of the structure of the cutting head module;
[0029] Figure 3 is a schematic diagram of the overall structure of the utility model Figure 2 .
[0030] The reference numerals involved in the drawings are as follows: 100, left machine head device; 200, right machine head device; 1, processing platform; 11, fourth linear slide rail; 2, sliding support pillar; 21, sliding base; 3, cross beam; 31, protective telescopic cover; 32, rack; 33, third linear guide rail; 4, sliding seat; 41, first linear slide rail; 42, lead screw; 43, first motor; 5, first sliding plate; 51, single-side lifting frame; 52, top plate; 521, second linear guide rail; 53, cross plate; 531, sliding drive device; 6, cutting head module; 61, machine head frame; 611, side plate; 612, top plate; 6121, flange seat; 613, front end plate; 6131, wire routing hole; 614, rear end plate; 62, movable bottom plate; 621, hinge shaft; 63, cutting drive device; 64, cutting blade; 65, first linear drive device; 66, second motor; 7, drilling drive device; 71, second linear drive device. Detailed implementation manners
[0031] In order to enable those skilled in the art to better understand the present utility model, the technical solution of the present utility model will be further described below in conjunction with the drawings and embodiments.
[0032] Figures 1 to 3 A sheet processing device is presented, including a processing platform 1. Above the processing platform 1, a gantry that can slide back and forth along it is provided. The gantry includes a cross beam 3 and sliding support pillars 2 located on both sides of the cross beam 3. A machine head device is slidably installed left and right on the cross beam 3;
[0033] The machine head device includes a sliding seat 4. On the sliding seat 4, a first sliding plate 5 that can slide in the up and down direction is installed. A cutting head module 6 is fixedly installed on the first sliding plate 5;
[0034] The cutting head module 6 includes a rotatable machine head frame 61. The machine head frame 61 is installed on the first sliding plate 5 through a single-side lifting frame 51 and is driven to rotate by a rotation drive device;
[0035] The machine head frame 61 includes a top plate 612, a pair of side plates 611 located on the left and right sides, a front end plate 613 and a rear end plate 614 located at the front and rear ends. At the bottom between the two side plates 611, a movable bottom plate 62 is hingedly installed through a hinge shaft 621. A cutting device is fixedly installed on the lower side of the movable bottom plate 62. On the upper side of the movable bottom plate 62, a first linear telescopic drive device for adjusting the cutting angle is provided;
[0036] On the first sliding plate 5, on one side of the single-side lifting frame 51, a second sliding plate that can slide up and down is further installed. A drilling device is installed on the second sliding plate.
[0037] One end of the first linear telescopic driving device is hinged to the movable bottom plate 62, and the other end is hinged and installed on the front end plate 613 or the rear end plate 614.
[0038] The cutting device includes a cutting driving device 63 and a cutting blade 64;
[0039] The drilling device includes a drilling driving device 7 and a second linear driving device 71.
[0040] A first linear slide rail 41 for the first slide plate 5 to slide up and down is arranged on the slide base 4. A lead screw 42 adapted to the first linear slide rail 41 is also installed on the slide base 4. The lead screw 42 is driven by a first motor 43;
[0041] The rotary driving device is a second motor 66.
[0042] A second linear guide rail 521 for the second slide plate to slide up and down is arranged on the first slide plate 5. The second linear driving device 71 is installed on the top plate 612 of the second slide plate.
[0043] A third linear slide rail for the slide base 4 to slide left and right is arranged on the front side or the rear side of the cross beam 3. A rack 32 is arranged on the top side of the cross beam 3. Above the rack 32, a cross plate 53 fixed on the slide base 4 is arranged. A sliding driving device 531 is installed on the upper side of the cross plate 53. The sliding driving device 531 is a third motor. The output shaft of the third motor passes through a mating hole and is installed with a gear adapted to the rack 32. Among them, the rack 32 and the gear are an inclined rack 32 and an inclined gear, and the matching degree is better.
[0044] The sliding support column 2 is provided with a sliding base 21. Fourth linear slide rails 11 for the sliding base 21 to slide are arranged on both sides of the processing platform 1.
[0045] A protective telescopic cover 31 is arranged on the cross beam 3. The upper side of the machine head frame 61 can be enclosed. A wire passing hole 6131 is opened on the front end plate 613 or the rear end plate 614. The wire passing hole 6131 can wrap the wires through a wire wrapping hose, so that the overall sealing performance and appearance are improved; the machine head frame 61 and the output end of the rotary driving device are connected through a flange and a flange seat 6121, so that the installation and fixation of the machine head frame 61 are more stable.
[0046] The sheet metal processing equipment can be provided with two machine head devices, including a left machine head device 100 and a right machine head device 200. The cooperation between the two machine heads is more efficient.
[0047] This sheet metal processing equipment installs the cutting head and the drilling head on the same slide 4, so that their movements in the two-dimensional coordinate are completely synchronized. Compared with the prior art, this sheet metal processing equipment not only further improves the processing accuracy, but also simplifies the positioning steps in the processing process, effectively improving the production efficiency. In addition, since the cutting head and the drilling head share a set of moving mechanisms, the overall size of the equipment can also be reduced, improving the space utilization rate.
[0048] In the specification and claims of the present utility model and the above-mentioned drawings, terms such as "upper", "lower", "outer side", "inner side", etc., if any, are used to distinguish the relative relationship in position and do not need to be qualitatively defined. It should be understood that such used data can be interchanged under appropriate circumstances so that the embodiments of the present utility model described herein can be implemented in an order different from those illustrated or described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.
[0049] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A plate processing device, comprising a processing platform, a gantry frame which can slide forward and backward along the processing platform is arranged above the processing platform, the gantry frame comprises a crossbeam and sliding struts located on both sides of the crossbeam, and a head device is installed on the crossbeam to slide left and right; characterized in that: The head device comprises a slide seat, on which a first slide plate which can slide in an up-down direction is mounted, and on which a cutting head module is fixedly mounted; The cutting head module comprises a rotatable head frame, which is mounted on the first slide plate through a single-side hanging frame and driven to rotate by a rotation driving device; The head frame includes a top plate, a pair of side plates located on the left and right sides, a front end plate and a rear end plate located at the front and rear ends, a movable bottom plate is hingedly installed at the bottom between the two side plates, a cutting device is fixedly installed on the lower side of the movable bottom plate, and a first linear telescopic drive device for adjusting the cutting angle is provided on the upper side of the movable bottom plate; A second slide plate which can slide up and down is also installed on the first slide plate at one side of the single-sided hanging frame, and a drilling device is installed on the second slide plate.
2. The sheet material processing equipment according to claim 1, characterized in that: One end of the first linear telescopic drive device is hinged on the movable bottom plate, and the other end is hingedly mounted on the front end plate or the rear end plate.
3. The plate processing equipment according to claim 1, characterized in that: The cutting device comprises a cutting drive device and a cutting blade; The drilling device comprises a drilling drive device and a second linear drive device.
4. The sheet material processing equipment according to claim 3, characterized in that: The slide seat is provided with a first linear slide rail that cooperates with the first slide plate to slide up and down, and the slide seat is also provided with a lead screw that matches the first linear slide rail, and the lead screw is driven by a first motor; The rotation driving device is a second motor.
5. The sheet material processing equipment according to claim 4, characterized in that: The first slide plate is provided with a second linear guide rail cooperating with the second slide plate to slide up and down, and the second linear drive device is installed on the top plate of the second slide plate.
6. The plate processing equipment according to claim 1, characterized in that: A third linear slide rail is arranged on the front or rear side of the crossbeam to cooperate with the slide seat to slide left and right. A rack is arranged on the top side of the crossbeam. A cross plate fixed on the slide seat is arranged above the rack. A sliding drive device is installed on the upper side of the cross plate. The sliding drive device is a third motor. The output shaft of the third motor is installed with a gear matching the rack through a matching hole.
7. The sheet material processing equipment according to claim 1, characterized in that: The front end plate or the rear end plate is provided with a wiring hole; the head frame and the output end of the rotary drive device are connected through a flange plate and a flange seat.
8. The sheet material processing equipment according to any one of claims 1 to 7, characterized in that: A protective telescopic cover is provided on the crossbeam; A left machine head device and a right machine head device are slidably mounted on the crossbeam.