Horizontal grooving machine for aluminum honeycomb panel production

By introducing clamping, grooving, and scrap collection mechanisms into the horizontal grooving machine, the problems of scrap splashing and accumulation have been solved, achieving centralized scrap cleaning and improved production efficiency.

CN120901346APending Publication Date: 2025-11-07JIANGSU JIYI NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202511097169.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

When processing honeycomb panels, existing horizontal grooving machines cause iron filings to fly and accumulate everywhere, resulting in decreased production efficiency, accelerated wear of the roller conveyor, and increased cleaning and maintenance workload.

Method used

A horizontal grooving machine for aluminum honeycomb panel production was designed, comprising a clamping mechanism, a grooving mechanism, and a chip collection mechanism. The movement of the milling cutter is controlled by an electric slide rail and a hydraulic cylinder, and combined with an air pump and a suction assembly, the centralized collection and cleaning of chips are achieved.

Benefits of technology

It effectively prevents iron filings from splashing and accumulating, improves iron filings collection efficiency, reduces wear, lowers cleaning costs, and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a horizontal grooving machine for aluminum honeycomb panel production, and relates to the technical field of horizontal grooving machines, the horizontal grooving machine comprises a base, a roller conveyor used for conveying panels is arranged on the upper side of the base, and clamping mechanisms used for clamping the panels are arranged on the two sides of the roller conveyor respectively; the two sides of the upper side of the base are fixedly connected with first electric sliding rails for controlling the milling cutter to move in the long edge area of the panel correspondingly, and the sliding ends of the first electric sliding rails are fixedly connected with second electric sliding rails for controlling the milling cutter to move in the wide edge area of the panel. When the V-shaped grooves with different depths are machined, the square pressing plate stretches out and draws back in a self-adaptive mode, the peripheries of the V-shaped grooves in the machining process are sealed, the phenomenon that scrap iron splashes everywhere and falls to the peripheries above the panel and the interior of the roller conveyor in the machining process of the V-shaped grooves is effectively prevented, and the machining efficiency of the V-shaped grooves is improved. And the effect of concentrated cleaning of scrap iron is achieved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of horizontal slotting machines, in particular to a horizontal slotting machine for aluminum honeycomb plate production. BACKGROUND

[0002] A honeycomb plate is an engineering material composed of two thin face plates and a thick honeycomb core, which are firmly bonded together by an adhesive to form a honeycomb sandwich structure. The surface face plate is generally made of stainless steel or aluminum plate, the bottom back plate is usually made of aluminum plate or galvanized plate, and the middle layer core material is usually made of aluminum honeycomb core. In addition, there are paper honeycomb plates, plastic honeycomb plates and other different types, which have the same structure and principle, only the materials are different.

[0003] A horizontal slotting machine is a metal plate processing equipment mainly used for V-shaped groove processing on stainless steel plates, aluminum plates, copper plates and other metal plates. The workbench is in a horizontal layout, which is convenient for slotting operation on large plates.

[0004] In order to facilitate the bending of the face plate of the honeycomb plate to a certain angle or shape, it is usually necessary to open a V-shaped groove on the face plate of the honeycomb plate. The V-shaped groove can make the bending more labor-saving and less prone to cracking, deformation and other problems, which is convenient for modeling and assembling to meet the needs of different application scenarios.

[0005] However, the existing horizontal slotting machine has the problem that a large amount of iron filings fly around when slotting the face plate of the honeycomb plate. Some iron filings accumulate on the face plate, which requires subsequent surface cleaning of the face plate after slotting, increasing the workload during honeycomb plate production and reducing the production efficiency of the honeycomb plate. In addition, some iron filings will fall into the roller conveyor for conveying the face plate, which not only causes abrasive wear between the roller and the shaft, accelerates the wear of the roller surface and the shaft, reduces the service life of the roller, but also increases the cleaning cost and maintenance workload of the subsequent roller conveyor, and reduces the production efficiency.

[0006] Therefore, it is necessary to design a horizontal slotting machine for aluminum honeycomb plate production which can prevent iron filings from flying around and collect iron filings efficiently. SUMMARY

[0007] The application aims to provide a horizontal slotting machine for aluminum honeycomb plate production to solve the problems in the background art.

[0008] In order to solve the above technical problems, the present application provides the following technical scheme: a horizontal slotting machine for aluminum honeycomb panel production, comprising a base, the upper side of the base is provided with a roller conveyor for transporting panels, the two sides of the roller conveyor are respectively provided with a clamping mechanism for clamping panels, the upper side of the base is respectively fixedly connected with a first electric sliding rail for controlling the movement of the milling cutter in the long edge area of the panel, the sliding end of the first electric sliding rail is fixedly connected with a second electric sliding rail for controlling the movement of the milling cutter in the wide edge area of the panel, the sliding end of the second electric sliding rail is provided with a slotting mechanism for V-grooving the panel, and the lower side of the second electric sliding rail is provided with a iron filings collecting mechanism for collecting iron filings above the panel and inside the V-groove.

[0009] According to the above technical scheme, the clamping mechanism comprises a first hydraulic cylinder fixedly connected to the two sides of the roller conveyor, and the output end of the first hydraulic cylinder penetrates one side of the roller conveyor and is fixedly connected with a clamping plate.

[0010] According to the above technical scheme, the slotting mechanism comprises a third electric sliding rail fixedly connected to the sliding end of the second electric sliding rail, the sliding end of the third electric sliding rail is fixedly connected with a gearbox, the upper side of the gearbox is fixedly connected with a first motor, and the output end of the first motor is fixedly connected with the output end of the gearbox.

[0011] According to the above technical scheme, the iron filings collecting mechanism comprises a first rotating shaft fixedly connected to the output end of the gearbox, the lower side of the gearbox is fixedly connected with a fixed cylinder, the first rotating shaft is slidingly connected to the inside of the fixed cylinder, the outside of the fixed cylinder is provided with a collecting box which is fixedly connected with the gearbox, one side of the collecting box is fixedly connected with an air pump and the input end of the air pump penetrates the collecting box, the other side of the collecting box is fixedly connected with a positioning plate, the lower side of the positioning plate is fixedly connected with a second hydraulic cylinder, the output end of the second hydraulic cylinder is fixedly connected with an arc-shaped clamping plate, one side of the arc-shaped clamping plate is provided with a material suction assembly, and the lower side of the material suction assembly is provided with a material blocking assembly.

[0012] The suction assembly comprises a first guide sliding disc fixedly connected to the outside of the fixed cylinder, the lower side of the first guide sliding disc is provided with a second guide sliding disc, and the second guide sliding disc is fixedly connected to the fixed cylinder, the outer sides of the first guide sliding disc and the second guide sliding disc are slidingly connected with rotating rings, the upper sides of the rotating rings are provided with hanging rings arranged in the interiors of the collecting boxes, the interiors of the rotating rings are provided with material passing holes, the upper sides of the material passing holes are fixedly connected with bent pipes, and the lower sides of the material passing holes are fixedly connected with suction pipes, the other end of the first rotating shaft is fixedly connected with a drill chuck, the interior of the drill chuck is fixedly connected with a V-shaped groove milling cutter, the lower inner sides of the rotating rings are uniformly fixedly connected with a plurality of first tooth columns, the outer side of the drill chuck is fixedly connected with a second gear, one side of the second gear is meshingly connected with a third gear, the third gear is connected with the second guide sliding disc bearing, and the third gear is meshingly connected with the first tooth column.

[0013] According to the technical scheme, the material blocking assembly comprises a guide sliding square plate fixedly connected to the lower side of the collecting box through the connecting plate, the interior of the guide sliding square plate is provided with a sliding groove, a plurality of first springs are uniformly fixedly connected in the interior of the sliding groove, the lower sides of the first springs are fixedly connected with square pressing plates, the inner lower sides of the square pressing plates are fixedly connected with square cotton cloths, and the interiors of the square pressing plates are uniformly provided with four groups of V-shaped groove alignment modules.

[0014] According to the technical scheme, the V-shaped groove alignment module comprises two second rotating shafts rotationally connected to the interior of the guide sliding square plate, the other end of each second rotating shaft is fixedly connected with a first gear, the interior of the square pressing plate is provided with two avoiding grooves, one side of each avoiding groove is provided with a plurality of second tooth columns, the second tooth columns are meshingly connected with the first gears, the middle of the two first gears is meshingly connected with a toothed plate, the lower side of the toothed plate is fixedly connected with a second spring, the lower side of the second spring is fixedly connected with an abutting plate, the two ends of the abutting plate are spherical surfaces, the lower side of the avoiding groove is provided with a through groove, the interior of the through groove is provided with a V-shaped block fixedly connected with the abutting plate, the lower side of the abutting plate is provided with a second button fixedly connected with the through groove.

[0015] Compared with the prior art, the present application has the following beneficial effects: 1. When processing V-shaped grooves of different depths, the square pressing plate is self-adapting and telescopic, the surrounding of the V-shaped groove during processing is closed, the phenomenon that iron scraps are scattered everywhere and fall on the surrounding of the panel and the interior of the roller transmission machine during processing of the V-shaped groove is effectively prevented, and the effect of centralized cleaning of the iron scraps is achieved.

[0016] 2. When the V-groove cutter moves downward to create a groove, it not only drives the square pressure plate upward and compresses the spring, thereby increasing the pressure below the square pressure plate and thus increasing the tightness of the contact between the square pressure plate and the panel, effectively reducing the occurrence of iron filings getting stuck under the square pressure plate and scratching the panel, but also drives the two first gears to rotate clockwise and counterclockwise respectively while the pressure plate is rising, thereby driving the gear plate to move downward and indirectly driving the V-block to slide downward and accurately engage inside the V-groove. When the V-groove cutter moves horizontally to create a groove, the square pressure plate and the V-block respectively drive the iron filings above the panel and inside the V-groove to move, thereby collecting and cleaning the iron filings above the panel and inside the V-groove.

[0017] 3. When processing one of the V-grooves, the air pump starts, and the suction pipe begins to pick up the iron filings above the panel in the area of ​​the pressure plate. The first motor not only drives the V-groove cutter to groove the panel, but also drives the suction pipe to rotate at the same time as the V-groove cutter rotates. This effectively prevents the suction pipe from staying in one area and causing the suction force in other areas to decrease, achieving the effect of uniformly picking up iron filings. After the first motor stops, the linkage of the first button, the second button, the stop plate, and the second hydraulic cylinder makes the suction pipe, which rotates due to inertia, accurately stop at the position of the V-block inside the V-groove. This allows for the precise picking up of the iron filings that have gathered inside the V-groove, speeding up the iron filings collection time and improving the iron filings collection efficiency and the production efficiency of the honeycomb panel. Attached Figure Description

[0018] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the overall structure of a horizontal grooving machine for producing aluminum honeycomb panels according to the present invention. Figure 2 This is a schematic diagram of the clamping mechanism in this invention; Figure 3 This is a schematic diagram of the grooving mechanism in this invention; Figure 4 This is a schematic diagram of the iron filings collection mechanism in this invention; Figure 5 This is a schematic diagram of the material suction assembly in this invention; Figure 6 In this invention Figure 5 An enlarged schematic diagram of area A; Figure 7 This is a schematic diagram of the structure below the transfer ring in this invention; Figure 8 This is a schematic diagram of the material blocking assembly in this invention; Figure 9Enlarged schematic view of the B zone of the present application. Figure 8 Enlarged schematic view of the B zone of the present application.

[0019] Figure: 1, base; 2, roller conveyor; 3, clamping mechanism; 31, first hydraulic cylinder; 32, clamping plate; 4, first electric sliding rail; 5, second electric sliding rail; 6, grooving mechanism; 61, gearbox; 62, first motor; 63, third electric sliding rail; 7, iron collection mechanism; 71, first rotating shaft; 72, fixed cylinder; 73, collection box; 74, air pump; 75, material suction assembly; 751, first guide sliding disc; 752, rotating ring; 7521, material passage hole; 7522, first tooth column; 753, second guide sliding disc; 754, elbow; 755, material suction pipe; 756, second gear; 757, third gear; 758, drill chuck; 759, V-shaped groove milling cutter; 76, material blocking assembly; 761, guide sliding square plate; 762, square pressing plate; 763, first button; 764, first spring; 765, V-shaped groove alignment module; 7651, toothed plate; 7652, first gear; 7653, second rotating shaft; 7654, through groove; 7655, stop plate; 7656, V-shaped block; 7657, second button; 7658, second spring; 7659, second tooth column; 766, square cotton cloth; 77, positioning plate; 78, second hydraulic cylinder; 79, arc-shaped clamping plate. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0021] Embodiment one, please refer to Figures 1-9 The present application provides a technical solution: a horizontal grooving machine for aluminum honeycomb panel production, comprising a base 1, the upper side of the base 1 is provided with a roller conveyor 2 for transporting panels, the two sides of the roller conveyor 2 are respectively provided with a clamping mechanism 3 for clamping the panels, the upper side of the base 1 is respectively fixedly connected with a first electric sliding rail 4 for controlling the movement of the milling cutter in the long edge area of the panel, the sliding end of the first electric sliding rail 4 is fixedly connected with a second electric sliding rail 5 for controlling the movement of the milling cutter in the wide edge area of the panel, the sliding end of the second electric sliding rail 5 is provided with a grooving mechanism 6 for V-grooving the panel, and the lower side of the second electric sliding rail 5 is provided with an iron collection mechanism 7 for collecting iron scraps above the panel and inside the V-groove.

[0022] Please refer to Figure 2The clamping mechanism 3 comprises a first hydraulic cylinder 31 fixedly connected to both sides of the drum conveyor 2, and the output end of the first hydraulic cylinder 31 penetrates one side of the drum conveyor 2 and is fixedly connected with a clamping plate 32.

[0023] Specifically, when the drum conveyor 2 transmits the panel of the honeycomb panel to the middle of the two clamping plates 32, the output end of the first hydraulic cylinder 31 extends to control the clamping plate 32 to move and clamp the panel.

[0024] Please refer to Figure 3 The slotting mechanism 6 comprises a third electric sliding rail 63 fixedly connected to the sliding end of the second electric sliding rail 5, the sliding end of the third electric sliding rail 63 is fixedly connected with a gearbox 61, the upper side of the gearbox 61 is fixedly connected with a first motor 62, and the output end of the first motor 62 is fixedly connected with the output end of the gearbox 61.

[0025] Specifically, the third electric sliding rail 63 is used to control the V-shaped groove milling cutter 759 to move downward, so as to control the slotting depth of the panel, the rotation of the output end of the first motor 62 is used to control the gearbox 61 to rotate, and the rotation of the gearbox 61 is used to control the first rotating shaft 71 to rotate, so as to control the high-speed rotation of the V-shaped groove milling cutter 759 and slot the upper side of the panel.

[0026] Please refer to Figure 4 The scrap iron collecting mechanism 7 comprises a first rotating shaft 71 fixedly connected to the output end of the gearbox 61, the lower side of the gearbox 61 is fixedly connected with a fixed cylinder 72, the first rotating shaft 71 is slidingly connected to the inside of the fixed cylinder 72, the outside of the fixed cylinder 72 is provided with a collecting box 73, the collecting box 73 is fixedly connected with the gearbox 61, one side of the collecting box 73 is fixedly connected with an air pump 74, the input end of the air pump 74 penetrates the collecting box 73, the other side of the collecting box 73 is fixedly connected with a positioning plate 77, the lower side of the positioning plate 77 is fixedly connected with a second hydraulic cylinder 78, the output end of the second hydraulic cylinder 78 is fixedly connected with an arc-shaped clamping plate 79, one side of the arc-shaped clamping plate 79 is provided with a material suction assembly 75, and the lower side of the material suction assembly 75 is provided with a material blocking assembly 76.

[0027] Specifically, the collecting box 73 is used to collect and store scrap iron, the output end of the second hydraulic cylinder 78 is used to control the arc-shaped clamping plate 79 to move, so as to press the arc-shaped clamping plate 79 on the surface of the rotating ring 752, and the rotating ring 752 is suddenly stopped through friction force, so as to indirectly suddenly stop the V-shaped groove milling cutter 759 through the third gear 757 and the second gear 756.

[0028] Please refer to Figures 5-8The material blocking assembly 76 comprises a guide sliding square plate 761 fixedly connected to the lower side of the collecting box 73 through a connecting plate, the inside of the guide sliding square plate 761 is provided with a sliding groove, a plurality of first springs 764 are uniformly fixedly connected in the inside of the sliding groove, the lower side of each of the plurality of first springs 764 is fixedly connected with a square pressing plate 762, the inner side of the lower side of the square pressing plate 762 is fixedly connected with a square cotton cloth 766, and the inside of the square pressing plate 762 is uniformly provided with four groups of V-shaped groove alignment modules 765, one side of each group of V-shaped groove alignment modules 765 is provided with a first button 763 and the first button 763 is fixedly connected to the inner side of the square pressing plate 762.

[0029] Specifically, the square cotton cloth 766 is used to push the iron scraps above the panel to move, and the square pressing plate 762 slides in the guide sliding square plate 761 through the spring force of the first spring 764.

[0030] In the initial state, the bottom end of the V-shaped groove milling cutter 759 and the bottom surface of the square pressing plate 762 that is completely ejected by the first spring 764 are in the same horizontal plane, when the bottom end of the V-shaped groove milling cutter 759 contacts the upper side of the panel, the bottom surface of the square pressing plate 762 also simultaneously contacts the upper side of the panel, when the third electric sliding rail 63 controls the V-shaped groove milling cutter 759 to move downward to groove the panel, the square pressing plate 762 exerts pressure on the first spring 764, the first spring 764 is compressed, and the square pressing plate 762 moves upward through the sliding groove, the deeper the V-shaped groove processed by the V-shaped groove milling cutter 759, the longer the distance of the upward movement of the square pressing plate 762, so as to adapt to the expansion and contraction of the square pressing plate 762 when processing V-shaped grooves of different depths, and the square pressing plate 762 is closed around the V-shaped groove during processing, effectively preventing the phenomenon that iron scraps are scattered everywhere and fall inside the panel above the panel and inside the roller conveyor 2 during processing of the V-shaped groove, and achieving the effect of concentrated cleaning of the iron scraps.

[0031] In the embodiment two, the square pressing plate 762 limits the iron scraps inside when grooving the panel, so that the iron scraps inside the square pressing plate 762 are scattered and fall on the panel above the panel and inside the V-shaped groove, therefore, when the square cotton cloth 766 drives the iron scraps inside the square pressing plate to move, the iron scraps inside the V-shaped groove cannot be moved, so that the iron scraps inside the V-shaped groove and the iron scraps above the panel cannot be gathered together for concentrated cleaning, resulting in that the staff needs to clean the iron scraps inside the entire V-shaped groove of the panel subsequently, increasing the workload during production of the honeycomb panel and reducing the production efficiency of the honeycomb panel, therefore, the following structure is designed to solve the above technical problems.

[0032] Please refer to Figures 8-9The V-shaped groove alignment module 765 comprises two second rotating shafts 7653 rotatably connected to the interior of the sliding square plate 761, one end of each second rotating shaft 7653 is fixedly connected with a first gear 7652, the interior of the square pressing plate 762 is provided with two avoiding grooves, one side of each avoiding groove is provided with a plurality of second tooth columns 7659, the second tooth columns 7659 are in meshing connection with the first gears 7652, the middle of the two first gears 7652 is in meshing connection with a toothed plate 7651, the lower side of the toothed plate 7651 is fixedly connected with a second spring 7658, the lower side of the second spring 7658 is fixedly connected with an abutting plate 7655, the two ends of the abutting plate 7655 are spherical surfaces, the lower side of the avoiding groove is provided with a through groove 7654, the interior of the through groove 7654 is provided with a V-shaped block 7656 and the V-shaped block 7656 is fixedly connected with the abutting plate 7655, the lower side of the abutting plate 7655 is provided with a second button 7657 and the second button 7657 is fixedly connected with the through groove 7654.

[0033] Specifically, the angle of the V-shaped groove is usually ninety degrees, which is convenient for subsequent folding. When the second spring 7658 is completely popped out, the lower side of the V-shaped block 7656 and the bottom end of the V-shaped groove milling cutter 759 are at the same horizontal plane, and the bottom surface of the square pressing plate 762 is also at the same horizontal plane when it is completely popped out by the first spring 764. When it is necessary to groove the upper side of the panel, the V-shaped groove milling cutter 759 moves downward. At this time, since the lower side of the square pressing plate 762 is pressed by the panel, the square pressing plate 762 moves upward and compresses the first spring 764. While the square pressing plate 762 moves upward, the second tooth columns 7659 are driven to move upward, thereby driving the two first gears 7652 to rotate clockwise and counterclockwise respectively, and further driving the toothed plate 7651 to move downward, and indirectly driving the V-shaped block 7656 to slide downward. Since the spring force of the second spring 7658 is greater than the friction force between the V-shaped block 7656 and the through groove 7654, the second spring 7658 will not be compressed during the downward movement of the V-shaped block 7656.

[0034] The descending length of the V-shaped block 7656 is equal to the ascending height of the square pressing plate 762, that is, equal to the processing depth of the V-shaped groove. Therefore, when the first electric sliding rail 4 controls the V-shaped groove milling cutter 759 to move and groove in the long side area of the panel, the V-shaped block 7656 can be clamped into the V-shaped groove and will not be difficult to accurately enter the interior of the V-shaped groove due to excessive or insufficient descent. While the V-shaped block 7656 slides, the iron filings in the V-shaped groove are synchronously moved, so that the iron filings falling into the V-shaped groove during grooving are gathered together for centralized cleaning.

[0035] When the V-groove milling cutter 759 is descending to groove, the three V-shaped blocks 7656 above the panel cannot descend, at this time the second spring 7658 above the three V-shaped blocks 7656 is compressed by the toothed plate 7651, and the other V-shaped block 7656 has no panel below, so it moves downward normally.

[0036] When the V-groove milling cutter 759 moves downward to groove, not only can it drive the square pressing plate 762 to rise and compress the spring, thereby increasing the pressure below the square pressing plate 762 and increasing the contact between the square pressing plate 762 and the panel, effectively reducing the situation that iron filings are stuck below the square pressing plate 762 and scratch the panel, but also can drive the two first gears 7652 to rotate clockwise and counterclockwise respectively when the pressing plate rises, thereby driving the toothed plate 7651 to move downward, indirectly driving the V-shaped block 7656 to slide downward and accurately clamping into the V-groove. When the V-groove milling cutter 759 moves horizontally to groove, the square pressing plate 762 and the V-shaped block 7656 respectively drive the iron filings above the panel and in the V-groove to move, thereby gathering and cleaning the iron filings above the panel and in the V-groove.

[0037] In example three, when the long edge area V-groove of the panel is processed, the iron filings in the V-groove are difficult to be completely sucked into the inside of the collection box 73 due to being at the bottom. When the V-shaped block 7656 completely separates from the V-groove of the panel, the iron filings in the V-groove will be moved together until they are separated from the V-groove and fall onto the top of the base 1 or the ground, resulting in that the workers need to clean the fallen iron filings after processing the V-groove of the panel, which increases the subsequent cleaning cost and maintenance workload and reduces the production efficiency. Therefore, the following structure is designed to solve the above technical problems.

[0038] Please refer to Figures 5-7The suction assembly 75 comprises a first guide sliding disc 751 fixedly connected to the outer side of the fixed cylinder 72, the lower side of the first guide sliding disc 751 is provided with a second guide sliding disc 753 fixedly connected to the fixed cylinder 72, the outer sides of the first guide sliding disc 751 and the second guide sliding disc 753 are slidingly connected with a rotating ring 752, the upper side of the rotating ring 752 is provided with a hanging ring arranged in the interior of the collecting box 73, the interior of the rotating ring 752 is provided with a material passing hole 7521, the upper side of the material passing hole 7521 is fixedly connected with a bend pipe 754 and the lower side of the material passing hole 7521 is fixedly connected with a suction pipe 755, the other end of the first rotating shaft 71 is fixedly connected with a drill chuck 758, the interior of the drill chuck 758 is fixedly connected with a V-shaped groove milling cutter 759, the lower inner side of the rotating ring 752 is uniformly fixedly connected with a plurality of first tooth columns 7522, the outer side of the drill chuck 758 is fixedly connected with a second gear 756, one side of the second gear 756 is meshingly connected with a third gear 757, the third gear 757 is bearingly connected with the second guide sliding disc 753, and the third gear 757 is meshingly connected with the first tooth column 7522.

[0039] Specifically, the air pump 74 is used for pumping out the gas in the interior of the collecting box 73, so that the interior of the collecting box 73 becomes a negative pressure state, when the interior of the collecting box 73 becomes the negative pressure state, the suction pipe 755 starts to suck the iron filings above the surface plate in the area of the square pressure plate 762, the iron filings fall into the interior of the collecting box 73 through the suction pipe 755, the material passing hole 7521 and the bend pipe 754 in sequence, and the bend pipe 754 is arranged to prevent the iron filings from re-entering the interior of the material passing hole 7521.

[0040] When the V-shaped groove milling cutter 759 moves downward to groove, since one of the pressing plates 7655 is pressed to the second button 7657, only one second button 7657 is pressed, the second button 7657 will emit a signal to a first button 763 close to it, the first button 763 and the second button 7657 are both spring buttons, the first button 763 receives the signal, the first button 763 will emit a signal to the second hydraulic cylinder 78 when the first motor 62 stops, the first button 763 will emit a signal to the second hydraulic cylinder 78 again when it is pressed, in the process of machining a V-shaped groove, only one of the four second buttons 7657 will emit a signal, when one of the second buttons 7657 emits a signal, the other three second buttons 7657 will not emit a signal, when the next V-shaped groove is machined, it is reset.

[0041] When the V-shaped groove milling cutter 759 moves horizontally to groove, the air pump 74 starts to suck the iron filings above the panel in the area of the square pressing plate 762 into the collecting box 73 by extracting the gas inside the collecting box 73, so that the inside of the collecting box 73 becomes a negative pressure state, and the first motor 62 can not only drive the V-shaped groove milling cutter 759 to groove the panel, but also drive the second gear 756 to rotate while the V-shaped groove milling cutter 759 rotates, so as to drive the third gear 757 to rotate, and then drive the rotating ring 752 to rotate, and the rotating ring 752 drives the suction pipe 755 to rotate quickly while rotating, so as to suck the iron filings around the V-shaped groove milling cutter 759, achieving the effect of uniformly sucking the iron filings.

[0042] When the suction pipe 755 rotates, it will press four first buttons 763 in turn, and when one V-shaped groove processing is completed, the output end of the first motor 62 stops rotating, and the output end of the second hydraulic cylinder 78 extends to control the arc-shaped clamping plate 79 to approach the rotating ring 752. When the first button 763 receiving the signal is pressed, the output end of the second hydraulic cylinder 78 further extends to control the arc-shaped clamping plate 79 to press the outside of the rotating ring 752, forcibly stopping the rotating ring 752 with inertia. At this time, the suction pipe 755 is located at the position of the first button 763 receiving the signal, that is, the position of the V-shaped block 7656 inside the V-shaped groove, and the suction pipe 755 aligns and sucks the iron filings gathered in the V-shaped block 7656 inside the V-shaped groove. Until the V-shaped block 7656 moves out of the V-shaped groove, the air pump 74 is turned off, and the suction pipe 755 stops collecting. At this time, the iron filings in the V-shaped groove are cleaned into the collecting box 73, and the arc-shaped clamping plate 79 controlled by the second hydraulic cylinder 78 is reset to start processing the next V-shaped groove. The method of collecting iron filings in the next V-shaped groove is the same as above, and will not be described in detail here.

[0043] When processing one V-shaped groove, the air pump 74 starts, and the suction pipe 755 starts to suck the iron filings above the panel in the area of the square pressing plate 762. The first motor 62 can not only drive the V-shaped groove milling cutter 759 to groove the panel, but also drive the suction pipe 755 to rotate while the V-shaped groove milling cutter 759 rotates, thereby effectively preventing the suction pipe 755 from staying in one area and causing the suction force in other areas to decrease, achieving the effect of uniformly sucking the iron filings. After the first motor 62 stops, the first button 763, the second button 7657, the stop plate 7655 and the second hydraulic cylinder 78 are linked to make the suction pipe 755 with inertia rotate accurately to the position of the V-shaped block 7656 inside the V-shaped groove, aligning and sucking the iron filings gathered in the V-shaped block 7656 inside the V-shaped groove, thereby speeding up the collection time of the iron filings and improving the collection efficiency of the iron filings and the production efficiency of the honeycomb panel.

[0044] It is to be noted that, in the present text, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0045] Finally, it should be noted that the above-mentioned only constitutes preferred embodiments of the present application and is not intended to limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications, equivalent replacements, improvements and the like of the technical solutions described in the foregoing embodiments can still be made. Any modifications, equivalent replacements, improvements and the like made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A horizontal slotting machine for the production of aluminum honeycomb panels, comprising a base (1), characterized by, The upper side of the base (1) is provided with a roller conveyor (2) for transporting panels, both sides of the roller conveyor (2) are respectively provided with a clamping mechanism (3) for clamping panels, the upper side of the base (1) is respectively fixedly connected with a first electric sliding rail (4) for controlling the movement of the milling cutter in the long edge area of the panel, the sliding end of the first electric sliding rail (4) is fixedly connected with a second electric sliding rail (5) for controlling the movement of the milling cutter in the wide edge area of the panel, the sliding end of the second electric sliding rail (5) is provided with a slotting mechanism (6) for V-grooving the panel, and the lower side of the second electric sliding rail (5) is provided with a iron filings collecting mechanism (7) for collecting iron filings above the panel and in the V-groove. The slotting mechanism (6) comprises a third electric sliding rail (63) fixedly connected to the sliding end of the second electric sliding rail (5), and the sliding end of the third electric sliding rail (63) is fixedly connected with a gearbox (61), and the upper side of the gearbox (61) is fixedly connected with a first motor (62), and the output end of the first motor (62) is fixedly connected with the output end of the gearbox (61).

2. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 1, characterized in that, The clamping mechanism (3) comprises a first hydraulic cylinder (31) fixedly connected to both sides of the roller conveyor (2), and the output end of the first hydraulic cylinder (31) penetrates one side of the roller conveyor (2) and is fixedly connected with a clamping plate (32).

3. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 1, characterized in that, The iron filings collecting mechanism (7) comprises a first rotating shaft (71) fixedly connected to the output end of the gearbox (61), and the lower side of the gearbox (61) is fixedly connected with a fixed cylinder (72), and the first rotating shaft (71) is slidingly connected in the inside of the fixed cylinder (72), and the outside of the fixed cylinder (72) is provided with a collecting box (73) fixedly connected with the gearbox (61).

4. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 3, characterized in that, One side of the collecting box (73) is fixedly connected with an air pump (74), and the input end of the air pump (74) penetrates the collecting box (73), the other side of the collecting box (73) is fixedly connected with a positioning plate (77), the lower side of the positioning plate (77) is fixedly connected with a second hydraulic cylinder (78), the output end of the second hydraulic cylinder (78) is fixedly connected with an arc-shaped clamping plate (79), one side of the arc-shaped clamping plate (79) is provided with a material suction assembly (75), and the lower side of the material suction assembly (75) is provided with a material blocking assembly (76).

5. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 4, characterized in that, The material suction assembly (75) comprises a first guide sliding disc (751) fixedly connected to the outside of the fixed cylinder (72), the lower side of the first guide sliding disc (751) is provided with a second guide sliding disc (753) fixedly connected with the fixed cylinder (72), and the outside of the first guide sliding disc (751) and the second guide sliding disc (753) is slidingly connected with a swivel ring (752), and the upper side of the swivel ring (752) is provided with a hanging ring arranged in the inside of the collecting box (73).

6. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 5, characterized in that, The inside of the swivel ring (752) is provided with a material hole (7521), the upper side of the material hole (7521) is fixedly connected with a bend pipe (754), and the lower side of the material hole (7521) is fixedly connected with a suction pipe (755), the other end of the first rotating shaft (71) is fixedly connected with a drill chuck (758), the inside of the drill chuck (758) is fixedly connected with a V-shaped groove milling cutter (759), and the lower inside of the swivel ring (752) is uniformly fixedly connected with a plurality of first tooth columns (7522).

7. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 6, characterized in that, The outside of the drill chuck (758) is fixedly connected with a second gear (756), one side of the second gear (756) is meshingly connected with a third gear (757), the third gear (757) is bearing-connected with the second guide sliding disc (753), and the third gear (757) is meshingly connected with the first tooth column (7522).

8. The horizontal slotting machine for producing aluminum honeycomb panels according to claim 4, characterized in that, The material blocking assembly (76) comprises a guide sliding square plate (761) fixedly connected to the lower side of the collecting box (73) through a connecting plate, the inside of the guide sliding square plate (761) is provided with a sliding groove, a plurality of first springs (764) are uniformly fixedly connected in the inside of the sliding groove, the lower side of each of the first springs (764) is fixedly connected with a square pressing plate (762), the inside lower side of the square pressing plate (762) is fixedly connected with a square cotton cloth (766), and the inside of the square pressing plate (762) is uniformly provided with four groups of V-shaped groove alignment modules (765), one side of each group of V-shaped groove alignment modules (765) is provided with a first button (763) and the first button (763) is fixedly connected to the inside of the square pressing plate (762).

9. The horizontal slotting machine for producing an aluminum honeycomb panel according to claim 8, wherein The V-shaped groove alignment module (765) comprises two second rotating shafts (7653) rotatably connected to the inside of the guide sliding square plate (761), the other end of each second rotating shaft (7653) is fixedly connected with a first gear (7652), the inside of the square pressing plate (762) is provided with two avoiding grooves, each avoiding groove is provided with a plurality of second tooth columns (7659) on one side, the second tooth columns (7659) are meshingly connected with the first gears (7652), and the middle of the two first gears (7652) is meshingly connected with a toothed plate (7651).

10. The horizontal slotting machine for producing an aluminum honeycomb panel according to claim 9, wherein, The lower side of the toothed plate (7651) is fixedly connected with a second spring (7658), the lower side of the second spring (7658) is fixedly connected with an abutting plate (7655), the two ends of the abutting plate (7655) are spherical surfaces, the lower side of the avoiding groove is provided with a through groove (7654), the inside of the through groove (7654) is provided with a V-shaped block (7656) and the V-shaped block (7656) is fixedly connected with the abutting plate (7655), the lower side of the abutting plate (7655) is provided with a second button (7657) and the second button (7657) is fixedly connected with the through groove (7654).