Plate grooving assembly and grooving device
By sliding the dust removal assembly inside the cutting groove of the sheet groove device, the problem of low vacuum absorption efficiency in the prior art is solved, and fast and efficient dust collection is achieved, and dust is avoided.
Patent Information
- Application Number
- CN202421185836.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-28
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-05-28
AI Technical Summary
The existing grooved device has a distance from the grooved position, resulting in low vacuum efficiency and inability to vacuum in time, which affects processing efficiency.
A plate groove assembly is designed, including a dust removal assembly that slides inside the cutting groove. The dust removal assembly includes a dust collection frame, a dust collection groove, a ventilation hole, a filter mesh and a leak hole, which is used to directly suck dust during the groove process to prevent dust from flying.
By moving the dust removal assembly inside the cutting groove, dust impurities during the groove can be quickly and efficiently collected, avoiding dust flying, and improving dust removal efficiency.
Smart Images

Figure CN223000195U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of machinery, and particularly relates to a plate grooving assembly and a grooving device. Background Technique
[0002] When processing plates, a grooving device is required to process the surface of the plates so that the grooved plates can be assembled subsequently. Generally, during the grooving process of the plates, flying dust will be generated. Currently, the grooving device used utilizes a dust suction device placed on one side of the grooving device for dust removal. This dust suction device needs to wait until the dust flies up to complete subsequent dust suction.
[0003] The currently used dust removal equipment for grooving has a low dust suction efficiency because there is a distance between the dust suction device and the grooving position, and it cannot suck dust in a timely manner during the grooving process, and the dust suction effect is not fast and efficient enough.
[0004] Therefore, a plate grooving assembly and a grooving device are proposed. Content of the Utility Model
[0005] The purpose of the utility model is to provide a plate grooving assembly and a grooving device to solve the problem that the dust suction efficiency is not high because there is a distance between the dust suction device and the grooving position, and it cannot suck dust in a timely manner during the grooving process, and the dust suction effect is not fast and efficient enough as proposed in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solutions:
[0007] On the one hand, the utility model provides a plate grooving assembly. The plate grooving assembly is arranged at the top of an operation platform. The grooving assembly includes a cutting groove and a dust removal assembly. The cutting groove is arranged at the top of the operation platform. The dust removal assembly is arranged inside the cutting groove. The dust removal assembly slides inside the cutting groove. The dust removal assembly is used to suck the dust attached to the outer surface of the operation platform and the inside of the cutting groove into the operation platform. The dust removal assembly includes a dust collection frame arranged inside the cutting groove, a dust collection groove opened at the top of the dust collection frame, ventilation holes arranged on the side wall of the dust collection frame, a filter screen fixed at the bottom of the dust collection frame, and leakage holes opened on the surface of the filter screen.
[0008] Optionally, the inside of the operation platform is a hollow structure, and the hollow structure inside the operation platform below the filter screen is communicated with the ventilation holes.
[0009] Optionally, the ventilation holes are correspondingly arranged on the side walls of the dust collection frame on both sides of each filter screen, and the ventilation holes are symmetrically structured with respect to the central axis of the filter screen.
[0010] Optionally, the depth inside the cutting groove gradually increases from one end of the top of the operation platform to the other end. The dust removal components inside the two groups of cutting grooves are arranged in pairs and are set in the shallow and deep grooves inside the cutting groove.
[0011] Optionally, the width set inside the cutting groove matches the width set inside the dust removal component. The dust removal component is snap-fitted inside the cutting groove, and the outer side wall of the dust removal component fits against the inner side wall of the cutting groove.
[0012] On the other hand, the present utility model provides a device for grooving a plate, which further includes:
[0013] An exhaust fan, which is fixedly installed on the outer side wall of the operation platform and is used to extract impurities inside the cavity of the operation platform;
[0014] A dust collection pipe, which is arranged at the output end of the exhaust fan;
[0015] A dust collection box, the inside of which is connected to the end of the dust collection pipe away from the exhaust fan, and the dust collection box is used to store cutting impurities;
[0016] A grooving machine, the outer surface of which is fixedly connected to the outer surface of the dust collection box. Both the grooving machine and the dust collection box are fixedly connected to the side wall of the operation platform through support rods, and the grooving machine, the dust collection box and the operation platform are of an integrated structure;
[0017] A support box, the top of which is fixedly connected to the bottom end of the operation platform;
[0018] A control panel, which is fixedly installed on the outer surface of the operation platform and is used to control the operation of the exhaust fan and the grooving machine.
[0019] Compared with the prior art, the beneficial effects of the present utility model are:
[0020] By arranging a dust removal component movably inside the cutting groove to collect impurities during the grooving process, and collecting the dust removal component under the operation platform, it can avoid the flying of dust and impurities during the cutting process, and to the greatest extent avoid the flying of dust, and can quickly and efficiently collect the dust. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a three-dimensional structural schematic diagram of the main body of the device of the present utility model;
[0022] Figure 2 is a top three-dimensional structural schematic diagram of the operation platform of the present utility model;
[0023] Figure 3 is a partial side-sectional structural schematic diagram of the cutting groove of the present utility model;
[0024] Figure 4 is the Figure 2 schematic enlarged structure diagram of part A in the present utility model;
[0025] Figure 5 is the partial three-dimensional structure diagram of the dust removal assembly of the present utility model;
[0026] Figure 6 is the top three-dimensional structure diagram of the dust removal assembly of the present utility model.
[0027] In the figure:
[0028] 1. Operating platform;
[0029] 2. Cutting groove;
[0030] 3. Dust removal assembly; 31. Dust collection frame; 32. Dust collection groove; 33. Ventilation hole; 34. Filter screen; 35. Leakage hole;
[0031] 4. Dust collection box;
[0032] 5. Grooving machine;
[0033] 6. Dust collection pipe;
[0034] 7. Exhaust fan;
[0035] 8. Support box;
[0036] 9. Control panel. Specific embodiments
[0037] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0038] Please refer to Figures 1-6 , an embodiment provided by the present utility model:
[0039] Embodiment 1
[0040] Please refer to Figure 1 , Figure 2 , Figure 4 , Figure 5 and Figure 6, a sheet slitting assembly, the sheet slitting assembly is arranged at the top of the operation platform 1, the slitting assembly includes a cutting groove 2 and a dust removal assembly 3, the cutting groove 2 is arranged at the top of the operation platform 1, the dust removal assembly 3 is arranged inside the cutting groove 2, the dust removal assembly 3 slides inside the cutting groove 2, and the dust removal assembly 3 is used to suck the dust attached to the outer surface of the operation platform 1 and the inside of the cutting groove 2 into the inside of the operation platform 1. When in use, first fix the position of the dust removal assembly 3 by using the gap of the cutting groove 2. The fixation of the position of the dust removal assembly 3 realizes the treatment of debris during the slitting process. The surface of the dust removal assembly 3 can also filter the slitting debris and dust attached to the top of the operation platform 1. At the same time, when the dust removal assembly 3 slides out inside the cutting groove 2, the impurities inside the dust removal assembly 3 can be cleaned.
[0041] The dust removal assembly 3 includes a dust collection frame 31 arranged inside the cutting groove 2. The dust collection frame 31 is inserted inside the cutting groove 2 and is in contact with the inner side of the cutting groove 2. A dust collection groove 32 is opened at the top of the dust collection frame 31. Ventilation holes 33 are arranged on the side wall of the dust collection frame 31. There are several ventilation holes 33, and the impurities inside the dust collection groove 32 are recovered through the ventilation holes. A filter screen 34 is fixedly arranged at the bottom end of the dust collection frame 31, and leakage holes 35 are opened on the surface of the filter screen 34. The inside of the operation platform 1 is a hollow structure. The hollow structure inside the operation platform 1 below the filter screen 34 is communicated with the ventilation holes 33. The ventilation holes 33 are correspondingly arranged on the side walls of the dust collection frame 31 on both sides of each filter screen 34. The ventilation holes 33 are symmetrically structured with the central axis of the filter screen 34, so that debris can be collected on both sides inside the dust collection groove 32 at the same time. During the use of this embodiment, because the entire slitting process is carried out inside the cutting groove 2 and the dust removal assembly 3, during the slitting process, since the dust generated during the slitting process will fly in the air and pollute the working environment, so when the slitting dust is generated, the flow direction of the wind can be changed to make the dust pass through the filter screen 34 and the ventilation holes 33 respectively. In the prior art, basically a single direction is used to adsorb dust, such as adsorbing through a dust suction fan from above or one side of the device. In this embodiment, a two-way adsorption method is adopted, and impurities can be absorbed from both sides inside the dust collection groove 32.
[0042] Embodiment Two
[0043] The depth inside the cutting groove 2 gradually increases from one end of the top of the operation platform 1 to the other end. The dust removal components 3 inside the two groups of cutting grooves 2 are arranged in pairs and are set in the deep and shallow grooves inside the cutting groove 2. The width set inside the cutting groove 2 matches the width set inside the dust removal component 3. The dust removal component 3 is clamped inside the cutting groove 2, and the outer side wall of the dust removal component 3 fits against the inner side wall of the cutting groove 2. Further, it can be explained that since the cutting groove 2 is composed of a deep groove and a shallow groove, the two dust removal components 3 are respectively clamped inside the deep groove and the shallow groove of the cutting groove 2. The setting of the deep groove and the shallow groove is to meet the grooving of plates with different thicknesses. The connection between the deep groove and the shallow groove is an inclined surface. During the process of sucking impurities, the impurities in the shallow groove can transition to the inside of the deep groove, sharing the pressure of dust collection in the shallow groove and preventing the leakage holes 35 from being blocked due to too much dust in the shallow groove.
[0044] Another embodiment in this implementation manner is a plate grooving device. The plate grooving device further includes a suction fan 7, a dust collection pipe 6, a dust collection box 4, a grooving machine 5, a support box 8, and a control panel 9. The suction fan 7 is fixedly arranged on the outer side wall of the operation platform 1. The suction fan 7 is used to extract impurities inside the cavity of the operation platform 1, and the suction fan 7 is used to change the air direction in the air. At this time, the flying impurities during the grooving process can flow together with the air under the action of the suction fan 7. The dust collection pipe 6 is arranged at the output end of the suction fan 7. The inside of the dust collection box 4 is connected to the end of the dust collection pipe 6 far from the suction fan 7. Because of the flying dust and impurities during grooving, under the action of the suction fan 7, the dust and impurities sequentially enter the cavity inside the operation platform 1 through the ventilation holes 33 and the filter screen 34, and finally enter the inside of the dust collection box 4 through the dredging of the dust collection pipe 6, completing the entire dust removal process. The dust collection box 4 is used to store the cutting impurities. The outer surface of the grooving machine 5 is fixedly connected to the outer surface of the dust collection box 4. Both the grooving machine 5 and the dust collection box 4 are fixedly connected to the side wall of the operation platform 1 through support rods. The grooving machine 5, the dust collection box 4, and the operation platform 1 are of an integrated structure. The top of the support box 8 is fixedly connected to the bottom end of the operation platform 1. The control panel 9 is fixedly arranged on the outer surface of the operation platform 1. The control panel 9 is used to control the operation of the suction fan 7 and the grooving machine 5. During the operation of the grooving machine 5, it contacts the plate to be grooved, and the groove of the plate is opened during the contact process.
[0045] Working principle:
[0046] During the operation of the grooving machine 5, it contacts the plate to be grooved, and the groove of the plate is opened during the contact process. Under the action of the suction fan 7, the dust and impurities sequentially enter the cavity inside the operation platform 1 through the ventilation holes 33 and the filter screen 34, and finally enter the inside of the dust collection box 4 through the dredging of the dust collection pipe 6, completing the entire dust removal process.
[0047] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.
Claims
1. A plate slotting assembly, which is arranged on the top of an operating platform, characterized in that: The slotting assembly comprises: A cutting groove, wherein the cutting groove is arranged at the top of the operating platform; A dust removal component, the dust removal component is arranged on the inner side of the cutting groove, the dust removal component slides on the inner side of the cutting groove, and the dust removal component is used to suck the dust attached to the outer surface of the operating platform and the inner side of the cutting groove into the interior of the operating platform; The dust removal assembly comprises a dust collecting frame arranged inside the cutting groove, a dust collecting groove opened at the top of the dust collecting frame, ventilation holes arranged on the side wall of the dust collecting frame, a filter screen fixed at the bottom of the dust collecting frame and leakage holes opened on the surface of the filter screen.
2. A plate slotting assembly according to claim 1, characterized in that: The inner side of the operating platform is a hollow structure, and the hollow structure on the inner side of the operating platform below the filter is interconnected with the ventilation hole.
3. A plate slotting assembly according to claim 2, characterized in that: The ventilation holes are correspondingly arranged on the side walls of the dust collecting frame on both sides of each filter screen, and the ventilation holes are symmetrically structured with the central axis of the filter screen.
4. A plate slotting assembly according to claim 1, characterized in that: The depth of the inner side of the cutting groove increases from shallow to deep from one end of the top of the operating platform to the other end of the top of the operating platform. The dust removal components on the inner sides of the two groups of cutting grooves are arranged in pairs in the deep and shallow grooves on the inner sides of the cutting grooves.
5. A plate slotting assembly according to claim 1, characterized in that: The width of the inner side of the cutting groove matches the width of the inner side of the dust removal component. The dust removal component is clamped on the inner side of the cutting groove, and the outer side wall of the dust removal component fits with the inner side wall of the cutting groove.
6. A plate slotting device, characterized in that: The device comprises an operating platform and a plate slotting assembly according to any one of claims 1 to 5, wherein the plate slotting device further comprises: An exhaust fan, which is fixed on the outer wall of the operating platform and is used to extract impurities in the inner cavity of the operating platform; A dust collecting pipe, which is arranged at the output end of the exhaust fan; A dust box, the inner side of which is connected to an end of the dust collecting pipe away from the exhaust fan, and the dust box is used to store cutting impurities; A slotting machine, wherein the outer surface of the slotting machine is fixedly connected to the outer surface of the dust collecting box, the slotting machine and the dust collecting box are both fixedly connected to the side wall of the operating platform through a support rod, and the slotting machine, the dust collecting box and the operating platform are an integrated structure; A support box, the top of which is fixedly connected to the bottom of the operating platform; A control panel is fixed on the outer surface of the operating platform and is used to control the operation of the exhaust fan and the slotting machine.
Citation Information
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