Angle-adjustable cutting mechanism for aluminum material

By designing an aluminum cutting mechanism with adjustable angles, the problems of coolant splashing, large safety hazards, debris damage to the machine and difficult cutting angle are solved, and a more efficient and safer aluminum cutting process is achieved.

CN120170153AInactive Publication Date: 2025-06-20NANJING JIASHI ALUMINUM CO LTD
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Patent Information

Application Number
CN202510482711.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing aluminum cutting machines have problems such as splashing coolant, high safety risks, debris damage to the machine and difficult cutting angle to adjust.

Method used

A cutting mechanism for angle adjustable aluminum is designed, including multifunctional components, stabilization components, cutting components and positioning components. The coolant will basically not splash out under the barrier of the support plate. The extrusion starter design reduces safety risks, and the angle of the positioning frame can be adjusted to meet different cutting needs.

Benefits of technology

It effectively avoids the splash of coolant, reduces safety risks, avoids debris damaging the cutting machine, and conveniently adjusts the cutting angle, improving cutting efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an angle-adjustable aluminum material cutting mechanism, and relates to the technical field of aluminum material cutting, the angle-adjustable aluminum material cutting mechanism comprises a multifunctional assembly, a stabilizing assembly, a cutting assembly and a positioning assembly; the control panel is installed on the front side of the multifunctional assembly. The number of the stabilizing assemblies is two, and the two stabilizing assemblies are installed at the top of the multifunctional assembly and used for limiting the multifunctional assembly. The cutting assembly is installed at the top of the multifunctional assembly and used for cutting aluminum materials. The positioning assembly is mounted on the cutting assembly, an aluminum material to be cut is placed on the positioning assembly, and the positioning assembly is used for clamping the aluminum material; when the cutting saw blade makes contact with cooling liquid in the multifunctional shell, the cooling liquid is basically not splashed out under blocking of the supporting flat plate; the problem that cooling liquid is prone to splashing under rotation of the cutting saw blade due to the fact that the cutting saw blade is cooled in a cooling liquid spraying mode generally is solved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of aluminum material cutting, and more specifically, particularly relates to a cutting mechanism for angle-adjustable aluminum materials. Background Art

[0002] As a lightweight, corrosion-resistant and highly malleable metal material, aluminum materials are widely used in industrial production; during the processing of aluminum materials, cutting is one of the most basic and important processes.

[0003] The currently used aluminum material cutting machines still have the following problems: 1. Generally, the cutting saw blade is cooled by spraying coolant, resulting in easy splashing of the coolant under the rotation of the cutting saw blade; 2. When the worker's hand is directly below the cutting machine or there are other sundries on the top of the aluminum material, the cutting machine is likely to accidentally injure the worker's hand, posing a safety hazard; at the same time, the sundries on the top of the aluminum material will also damage the cutting machine; 3. Usually, there is a lack of an angle adjustment structure, making it inconvenient for workers to accurately control the cutting angle of the aluminum material. Summary of the Invention

[0004] The embodiments of the present disclosure relate to a cutting mechanism for angle-adjustable aluminum materials, which has a multi-functional component, a stabilizing component, a cutting component, and a positioning component; when the cutting saw blade contacts the coolant in the multi-functional housing, the coolant is basically not splashed under the blockage of the support flat plate; the two extrusion starting frames cannot normally press the two cutting buttons, making the cutting machine unable to start normally, reducing the safety hazard, and at the same time, avoiding damage to the cutting machine by sundries; it is convenient for workers to appropriately adjust the angles of the two positioning frames according to the cutting requirements, facilitating cutting of the aluminum material at different angles; solving the problems that the coolant is easily splashed under the rotation of the cutting saw blade, the cutting machine is likely to accidentally injure the worker's hand, the sundries on the top of the aluminum material will damage the cutting machine, and it is inconvenient for workers to accurately control the cutting angle of the aluminum material.

[0005] The present invention provides a cutting mechanism for angle-adjustable aluminum materials, for cutting aluminum materials; including: a multi-functional component, a stabilizing component, a cutting component, and a positioning component; The control panel is installed on the front side of the multi-functional component; there are two groups of stabilizing components in total, and the two groups of stabilizing components are installed on the top of the multi-functional component, and the two groups of stabilizing components are used to limit the multi-functional component; The cutting component is installed on the top of the multi-functional component, and the cutting component is used to cut aluminum materials; the positioning component is installed on the cutting component, and the aluminum material to be cut is placed on the positioning component, and the positioning component is used to clamp the aluminum material.

[0006] In at least some embodiments, the multifunctional component includes: a multifunctional housing and a circular hollow cylinder; a coolant is provided inside the multifunctional housing; the circular hollow cylinder is slidably mounted on the multifunctional housing, and the circular hollow cylinder is in interference fit with the multifunctional housing, and a sealing ring is provided at the connection between the multifunctional housing and the circular hollow cylinder.

[0007] In at least some embodiments, the multifunctional component further includes: guiding inclined plates and circular scraping rods; there are two guiding inclined plates in total, and the two guiding inclined plates are slidably mounted on the multifunctional housing; two positioning slots are respectively formed at the tops of the two guiding inclined plates, and sealing rings are provided at the connections between the two guiding inclined plates and the multifunctional housing; there are two rows of circular scraping rods in total, and the two rows of circular scraping rods are fixedly mounted at the bottoms of the two guiding inclined plates.

[0008] In at least some embodiments, the stabilizing component includes: a V-shaped mounting bracket and a circular stabilizing rod; the V-shaped mounting bracket is fixedly mounted on the top of the multifunctional housing; the circular stabilizing rod is slidably mounted on the V-shaped mounting bracket and the multifunctional housing, and the bottom of the circular stabilizing rod is provided with a rounded corner, and the bottom end of the circular stabilizing rod is inserted into the corresponding positioning slot.

[0009] In at least some embodiments, the stabilizing component further includes: a force-bearing ring and a spiral spring A; the force-bearing ring is fixedly mounted on the outside of the circular stabilizing rod, and the bottom of the force-bearing ring contacts the multifunctional housing; the spiral spring A is sleeved on the outside of the circular stabilizing rod, and the spiral spring A is located between the V-shaped mounting bracket and the force-bearing ring.

[0010] In at least some embodiments, the cutting component includes: a supporting flat plate, a linear electric cylinder, and a cutting machine; the supporting flat plate is mounted on the top of the multifunctional housing by screws; there are two linear electric cylinders in total, and the two linear electric cylinders are fixedly mounted on the top of the supporting flat plate, and the two linear electric cylinders are also electrically connected to a control panel; the cutting machine is slidably mounted on the output shafts of the two linear electric cylinders, and the cutting machine is also electrically connected to the control panel.

[0011] In at least some embodiments, the cutting component further includes: limiting retaining rings, spiral springs B, and extrusion starting frames; there are four limiting retaining rings in total, and the four limiting retaining rings are fixedly mounted on the output shafts of the two linear electric cylinders, and the two lower limiting retaining rings contact the cutting machine; there are two spiral springs B in total, and the two spiral springs B are sleeved on the output shafts of the two linear electric cylinders, and the two spiral springs B are located between the cutting machine and the two upper limiting retaining rings; there are two extrusion starting frames in total, and the two extrusion starting frames are fixedly mounted on the left and right sides of the cutting machine.

[0012] In at least some embodiments, the cutting assembly further includes: a U-shaped mounting base and a cutting button; there are two U-shaped mounting bases in total, and the two U-shaped mounting bases are fixedly installed inside the two linear electric cylinders; there are two cutting buttons in total, and the two cutting buttons are fixedly installed on the two U-shaped mounting bases; the two cutting buttons and the two extrusion starting frames are located in the same central plane, and the two cutting buttons are also electrically connected to the control panel; when the bottom of the cutting machine contacts the aluminum material, the two extrusion starting frames automatically press the two cutting buttons.

[0013] In at least some embodiments, the positioning assembly includes: a U-shaped movable seat, a U-shaped positioning frame, and a positioning border; the U-shaped movable seat is slidably installed on the support flat plate; there are two U-shaped positioning frames in total, and the two U-shaped positioning frames are fixedly installed on the top of the U-shaped movable seat; there are two positioning borders in total, and the two positioning borders are fixedly installed outside the U-shaped movable seat, and the two positioning borders also contact the support flat plate.

[0014] In at least some embodiments, the positioning assembly further includes: screw A and screw B; there are two screw A in total, and the two screw A are threadedly connected to the two U-shaped positioning frames, and the inner ends of the two screw A contact the aluminum material; there are two screw B in total, and the two screw B are threadedly connected to the two U-shaped positioning frames, and the bottom ends of the two screw B are inserted into the support flat plate.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. When the cutting machine continues to move downward after the aluminum material is cut in the present invention, the lower end of the cutting machine can automatically contact the coolant in the multi-functional housing, realizing automatic cooling of the cutting machine, avoiding the phenomenon of the cutting machine sticking to the knife, and enabling the cutting machine to be cooled once after each cutting of the aluminum material; when the cutting saw blade contacts the coolant in the multi-functional housing, the coolant basically will not splash out under the block of the support flat plate; the setting of the circular hollow cylinder facilitates the staff to appropriately adjust the liquid level of the coolant in the multi-functional housing, which is beneficial to reducing the number of times of adding coolant, enabling the coolant to reach the predetermined height after slight adjustment, and ensuring the cooling effect of the cutting machine; In addition, when the staff pull the two guiding inclined plates outwards after work, the aluminum chips or aluminum powder above the two guiding inclined plates will automatically fall below the two guiding inclined plates under the action of gravity; at the same time, the two rows of circular leveling rods can automatically level the aluminum chips or aluminum powder on the bottom side inside the multi-functional housing; when the staff push the two guiding inclined plates inwards after work, the inner ends of the two guiding inclined plates contact each other, ensuring that the aluminum chips or aluminum powder generated during the previous cutting will not move above the two guiding inclined plates when the cutting machine cools down, making the coolant in the multi-functional housing cleaner and improving the service life of the coolant in the multi-functional housing; the setting of the two circular stabilizing rods has an elastic positioning effect on the two guiding inclined plates, so that the two guiding inclined plates can only slide after being subjected to tensile or thrust forces.

[0016] 2. When the staff retract the output shafts of the two linear electric cylinders through the control panel in the present invention, the cutting machine automatically moves downwards; when the bottom of the cutting machine contacts the aluminum material, the two extrusion starting frames automatically press the two cutting buttons, realizing the automatic start of the cutting machine. In addition, after the output shafts of the two linear electric cylinders are retracted, when the staff's hand is still directly below the cutting machine or there are other sundries on the top of the aluminum material, the staff's hand or the sundries on the top of the aluminum material can support the downward moving cutting machine, so that the cutting machine will not move downwards after contacting the staff's hand or the sundries on the top of the aluminum material. At this time, the two extrusion starting frames cannot normally press the two cutting buttons, making the cutting machine unable to start normally, reducing the safety hazard, and at the same time, avoiding damage to the cutting machine by sundries.

[0017] 3. The setting of the two screw nails A in the present invention has a clamping and positioning effect on the aluminum material, making the aluminum material more stable during cutting; the setting of the two screw nails B facilitates the staff to appropriately adjust the angles of the two positioning frames according to the cutting requirements, facilitating cutting the aluminum material at different angles. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0020] In the drawings: Figure 1 The three-dimensional structure diagram of the present invention is shown; Figure 2 The present invention is shown Figure 1 The rear view structure diagram; Figure 3 The structure diagram of the multi-functional component and the two groups of stabilizing components of the present invention is shown; Figure 4 The present invention is shownFigure 1 Schematic diagram of the horizontal central section Figure 5 show the present invention Figure 4 Schematic diagram of the enlarged structure of the partial area A in Figure 6 Schematic diagram of the structure of the cutting component of the present invention; Figure 7 show the present invention Figure 4 Schematic diagram of the enlarged structure of the partial area B in Figure 8 Schematic diagram of the structure of the positioning component of the present invention; Figure 9 show the present invention Figure 1 Schematic diagram of the longitudinal central section Figure 10 show the present invention Figure 9 Schematic diagram of the enlarged structure of the partial area C in

[0021] List of reference numerals: 100, multi-functional component; 101, multi-functional housing; 102, circular hollow cylinder; 103, guiding inclined plate; 1031, positioning card slot; 104, circular scraping rod; 200, control panel; 300, stabilizing component; 301, V-shaped mounting bracket; 302, circular stabilizing rod; 303, force-receiving ring; 304, helical spring A; 400, cutting component; 401, supporting flat plate; 402, linear electric cylinder; 403, cutting machine; 404, limit retaining ring; 405, helical spring B; 406, extrusion starting frame; 407, U-shaped mounting seat; 408, cutting button; 500, positioning component; 501, U-shaped movable seat; 502, U-shaped positioning frame; 503, positioning border; 504, screw A; 505, screw B; 600, aluminum material. Detailed implementation manners

[0022] In order to make the purpose, scheme and advantages of the technical scheme of the present invention clearer, the technical scheme of the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings of the specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the general meanings in the art. The same reference numerals in the drawings represent the same components.

[0023] Embodiment: Please refer to Figures 1 to 10As shown in the figure: The present invention provides a cutting mechanism for angle-adjustable aluminum materials, which is used to cut aluminum materials 600; it includes: a multi-functional component 100, a stabilizing component 300, a cutting component 400, and a positioning component 500; a control panel 200 is installed on the front side of the multi-functional component 100; there are two sets of stabilizing components 300 in total, and the two sets of stabilizing components 300 are installed on the top of the multi-functional component 100, and the two sets of stabilizing components 300 are used to limit the multi-functional component 100; the cutting component 400 is installed on the top of the multi-functional component 100, and the cutting component 400 is used to cut the aluminum material 600; the positioning component 500 is installed on the cutting component 400, and the aluminum material 600 to be cut is placed on the positioning component 500, and the positioning component 500 is used to clamp the aluminum material 600.

[0024] In the embodiments of the present disclosure, as Figure 3 and Figure 5 shown, the multi-functional component 100 includes: a multi-functional housing 101 and a circular hollow cylinder 102; a coolant is provided inside the multi-functional housing 101; the circular hollow cylinder 102 is slidably installed on the multi-functional housing 101, and the circular hollow cylinder 102 is in interference fit with the multi-functional housing 101, and a sealing ring is provided at the connection between the multi-functional housing 101 and the circular hollow cylinder 102; the multi-functional component 100 further includes: a guiding inclined plate 103 and a circular leveling rod 104; there are two guiding inclined plates 103 in total, and the two guiding inclined plates 103 are slidably installed on the multi-functional housing 101; two positioning slots 1031 are respectively opened at the tops of the two guiding inclined plates 103, and a sealing ring is provided at the connection between the two guiding inclined plates 103 and the multi-functional housing 101; there are two rows of circular leveling rods 104 in total, and the two rows of circular leveling rods 104 are fixedly installed at the bottoms of the two guiding inclined plates 103; The stabilizing component 300 includes: a V-shaped mounting bracket 301 and a circular stabilizing rod 302; the V-shaped mounting bracket 301 is fixedly installed on the top of the multi-functional housing 101; the circular stabilizing rod 302 is slidably installed on the V-shaped mounting bracket 301 and the multi-functional housing 101, and the bottom of the circular stabilizing rod 302 is provided with a rounded corner, and the bottom end of the circular stabilizing rod 302 is inserted into the corresponding positioning slot 1031; the stabilizing component 300 further includes: a force-bearing ring 303 and a helical spring A304; the force-bearing ring 303 is fixedly installed on the outside of the circular stabilizing rod 302, and the bottom of the force-bearing ring 303 contacts the multi-functional housing 101; the helical spring A304 is sleeved on the outside of the circular stabilizing rod 302, and the helical spring A304 is located between the V-shaped mounting bracket 301 and the force-bearing ring 303; Its specific functions are as follows: Since there is coolant inside the multi-functional housing 101, when the aluminum material 600 is cut and the cutting machine 403 continues to move downward, the lower end of the cutting machine 403 can automatically contact the coolant in the multi-functional housing 101, achieving automatic cooling of the cutting machine 403, avoiding the phenomenon of the cutting tool sticking to the cutting machine 403, and enabling the cutting machine 403 to be cooled each time the aluminum material 600 is cut; also, since the support flat plate 401 is installed on the top of the multi-functional housing 101 by screws and there is a through groove for accommodating the cutting saw blade on the support flat plate 401, when the cutting saw blade contacts the coolant in the multi-functional housing 101, the coolant basically will not splash out under the blockage of the support flat plate 401; the setting of the circular hollow cylinder 102 facilitates the staff to appropriately adjust the liquid level of the coolant in the multi-functional housing 101, which is beneficial to reducing the frequency of adding coolant, enabling the coolant to reach the predetermined height after slight adjustment, and ensuring the cooling effect of the cutting machine 403; In addition, since the two guiding inclined plates 103 are slidably installed on the multi-functional housing 101 and two rows of circular scraping rods 104 are fixedly installed at the bottoms of the two guiding inclined plates 103, when the staff pulls the two guiding inclined plates 103 outwards after work, the aluminum chips or aluminum powder above the two guiding inclined plates 103 will automatically fall below the two guiding inclined plates 103 under the action of gravity; at the same time, the two rows of circular scraping rods 104 can automatically scrape the aluminum chips or aluminum powder on the bottom side inside the multi-functional housing 101; when the staff pushes the two guiding inclined plates 103 inwards after work, the inner ends of the two guiding inclined plates 103 contact, ensuring that the aluminum chips or aluminum powder generated during the previous cut will not move above the two guiding inclined plates 103 when the cutting machine 403 is cooled, making the coolant in the multi-functional housing 101 cleaner and improving the service life of the coolant in the multi-functional housing 101; also, since two positioning card slots 1031 are respectively opened at the tops of the two guiding inclined plates 103, and the circular stabilizing rod 302 is slidably installed on the V-shaped mounting frame 301 and the multi-functional housing 101, and the bottom end of the circular stabilizing rod 302 is inserted into the corresponding positioning card slot 1031, an elastic positioning effect is exerted on the two guiding inclined plates 103, enabling the two guiding inclined plates 103 to slide only after being subjected to tensile or thrust forces.

[0025] In the embodiments of the present disclosure, such as Figure 6 and Figure 7As shown in the figure, the cutting assembly 400 includes: a support flat plate 401, a linear electric cylinder 402, and a cutting machine 403; the support flat plate 401 is installed on the top of the multi-functional housing 101 by screws; there are two linear electric cylinders 402 in total, and the two linear electric cylinders 402 are fixedly installed on the top of the support flat plate 401, and the two linear electric cylinders 402 are also electrically connected to the control panel 200; the cutting machine 403 is slidably installed on the output shafts of the two linear electric cylinders 402, and the cutting machine 403 is also electrically connected to the control panel 200; the cutting assembly 400 further includes: a limit retaining ring 404, a spiral spring B 405, and a pressing start frame 406; there are four limit retaining rings 404 in total, and the four limit retaining rings 404 are fixedly installed on the output shafts of the two linear electric cylinders 402, and the two lower limit retaining rings 404 are in contact with the cutting machine 403; there are two spiral springs B 405 in total, and the two spiral springs B 405 are sleeved on the output shafts of the two linear electric cylinders 402, and the two spiral springs B 405 are located between the cutting machine 403 and the two upper limit retaining rings 404; there are two pressing start frames 406 in total, and the two pressing start frames 406 are fixedly installed on the left and right sides of the cutting machine 403; the cutting assembly 400 further includes: a U-shaped mounting seat 407 and a cutting button 408; there are two U-shaped mounting seats 407 in total, and the two U-shaped mounting seats 407 are fixedly installed inside the two linear electric cylinders 402; there are two cutting buttons 408 in total, and the two cutting buttons 408 are fixedly installed on the two U-shaped mounting seats 407; the two cutting buttons 408 and the two pressing start frames 406 are located on the same central plane, and the two cutting buttons 408 are also electrically connected to the control panel 200; when the bottom of the cutting machine 403 contacts the aluminum material 600, the two pressing start frames 406 automatically press the two cutting buttons 408; Its specific function is as follows: Since the two linear electric cylinders 402 are fixedly installed on the top of the support flat plate 401, and the cutting machine 403 is slidably installed on the output shafts of the two linear electric cylinders 402, and the two linear electric cylinders 402 are also electrically connected to the control panel 200, when the staff contracts the output shafts of the two linear electric cylinders 402 through the control panel 200, the cutting machine 403 automatically moves downward; and because the two pressing start frames 406 are fixedly installed on the left and right sides of the cutting machine 403, and the two cutting buttons 408 are fixedly installed on the two U-shaped mounting seats 407, and the two cutting buttons 408 and the two pressing start frames 406 are located on the same central plane, when the bottom of the cutting machine 403 contacts the aluminum material 600, the two pressing start frames 406 automatically press the two cutting buttons 408, realizing the automatic start of the cutting machine 403; In addition, since the two limiting retaining rings 404 below are in contact with the cutting machine 403, and the two helical springs B 405 are sleeved on the output shafts of the two linear electric cylinders 402, and the two helical springs B 405 are located between the cutting machine 403 and the two limiting retaining rings 404 above, when the output shafts of the two linear electric cylinders 402 contract, if the worker's hand is still directly below the cutting machine 403 or there are other sundries on the top of the aluminum material 600, the worker's hand or the sundries on the top of the aluminum material 600 can support the downward-moving cutting machine 403, so that the cutting machine 403 will not move downward after contacting the worker's hand or the sundries on the top of the aluminum material 600. At this time, the two extrusion starting frames 406 cannot normally press the two cutting buttons 408, so that the cutting machine 403 cannot be started normally, reducing the safety hazard. At the same time, it also avoids the sundries from damaging the cutting machine 403.

[0026] In the embodiment of the present disclosure, as Figure 8 and Figure 10 shown, the positioning assembly 500 includes: a U-shaped movable seat 501, a U-shaped positioning frame 502, and a positioning border 503; the U-shaped movable seat 501 is slidably installed on the support flat plate 401; there are two U-shaped positioning frames 502 in total, and the two U-shaped positioning frames 502 are fixedly installed on the top of the U-shaped movable seat 501; there are two positioning borders 503 in total, and the two positioning borders 503 are fixedly installed outside the U-shaped movable seat 501, and the two positioning borders 503 are also in contact with the support flat plate 401; the positioning assembly 500 further includes: a threaded screw A 504 and a threaded screw B 505; there are two threaded screws A 504 in total, and the two threaded screws A 504 are threadedly connected to the two U-shaped positioning frames 502, and the inner ends of the two threaded screws A 504 are in contact with the aluminum material 600; there are two threaded screws B 505 in total, and the two threaded screws B 505 are threadedly connected to the two U-shaped positioning frames 502, and the bottom ends of the two threaded screws B 505 are inserted into the support flat plate 401; Its specific function is: since the two U-shaped positioning frames 502 are fixedly installed on the top of the U-shaped movable seat 501, and the two threaded screws A 504 are threadedly connected to the two U-shaped positioning frames 502, and the inner ends of the two threaded screws A 504 are in contact with the aluminum material 600, it plays a clamping and positioning effect on the aluminum material 600, making the cutting of the aluminum material 600 more stable; and because the U-shaped movable seat 501 is slidably installed on the support flat plate 401, and the two threaded screws B 505 are threadedly connected to the two U-shaped positioning frames 502, and the bottom ends of the two threaded screws B 505 are inserted into the support flat plate 401, it is convenient for the worker to appropriately adjust the angles of the two positioning borders 503 according to the cutting requirements, facilitating the cutting of the aluminum material 600 at different angles.

[0027] The specific usage mode and function of this embodiment: When the present invention is in use, first, the staff installs the multi-functional housing 101 at the cutting area in the workshop through bolts, then fills the multi-functional housing 101 with coolant. After that, the staff appropriately adjusts the angles of the two positioning frames 503 according to the cutting requirements, and then tightens the two threaded nails B505 with a wrench, so that the bottoms of the two threaded nails B505 are inserted into the support flat plate 401, facilitating cutting the aluminum material 600 at different angles. Then, tighten the two threaded nails A504 with a wrench, so that the inner ends of the two threaded nails A504 contact the aluminum material 600, achieving a clamping and positioning effect on the aluminum material 600, making the aluminum material 600 more stable during cutting. When the staff pushes the two guiding inclined plates 103 inward after going to work, the inner ends of the two guiding inclined plates 103 contact each other, ensuring that the aluminum chips or aluminum powder generated during the previous cutting will not move above the two guiding inclined plates 103 when the cutting machine 403 is cooling, making the coolant in the multi-functional housing 101 cleaner and improving the service life of the coolant in the multi-functional housing 101. When performing cutting operations, the staff contracts the output shafts of the two linear electric cylinders 402 through the control panel 200. At this time, the cutting machine 403 automatically moves downward. When the bottom of the cutting machine 403 contacts the aluminum material 600, the two extrusion starting frames 406 automatically press the two cutting buttons 408, realizing the automatic start of the cutting machine 403. When the output shafts of the two linear electric cylinders 402 are contracted and there are other sundries under the cutting machine 403 or on top of the aluminum material 600 where the staff's hand is located, the staff's hand or the sundries on top of the aluminum material 600 can support the downward-moving cutting machine 403, so that the cutting machine 403 will not move downward after contacting the staff's hand or the sundries on top of the aluminum material 600. At this time, the two extrusion starting frames 406 cannot normally press the two cutting buttons 408, making the cutting machine 403 unable to start normally, reducing the safety hazard. At the same time, it also prevents the sundries from damaging the cutting machine 403. When the aluminum material 600 is cut and the cutting machine 403 continues to move downward, the lower end of the cutting machine 403 can automatically contact the coolant in the multi-functional housing 101, realizing the automatic cooling of the cutting machine 403, avoiding the phenomenon of the cutting blade sticking, and enabling the cutting machine 403 to be cooled once after each cutting of the aluminum material 600. When the cutting saw blade contacts the coolant in the multi-functional housing 101, the coolant will basically not splash out under the blockage of the support flat plate 401. The setting of the circular hollow cylinder 102 facilitates the staff to appropriately adjust the liquid level of the coolant in the multi-functional housing 101, which is beneficial to reducing the frequency of adding coolant, enabling the coolant to reach the predetermined height after slight adjustment, and ensuring the cooling effect of the cutting machine 403. When the staff pulls the two guiding inclined plates 103 outward after work, the aluminum chips or aluminum powder above the two guiding inclined plates 103 automatically fall below the two guiding inclined plates 103 under the action of gravity. At the same time, the two rows of circular leveling rods 104 can automatically level the aluminum chips or aluminum powder on the bottom side inside the multi-functional housing 101.The provision of the two circular stabilizing rods 302 has an elastic positioning effect on the two guiding inclined plates 103, enabling the two guiding inclined plates 103 to slide only after being subjected to tensile or thrust forces.;

[0028] In this article, the following points need attention: 1. The accompanying drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure. Other structures can refer to the general design.

[0029] 2. Without conflict, the embodiments of the present disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0030] The above is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should all be covered by the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.

Claims

1. An angle-adjustable aluminum cutting mechanism, used for cutting aluminum (600); comprising: A multifunctional component (100), a stabilizing component (300), a cutting component (400) and a positioning component (500); The control panel (200) is installed on the front side of the multifunctional component (100); characterized in that the stabilizing components (300) are provided in two groups, and the two groups of stabilizing components (300) are installed on the top of the multifunctional component (100), and the two groups of stabilizing components (300) are used to limit the multifunctional component (100); The cutting assembly (400) is installed on the top of the multifunctional assembly (100), and the cutting assembly (400) is used to cut the aluminum material (600); the positioning assembly (500) is installed on the cutting assembly (400), and the aluminum material (600) to be cut is placed on the positioning assembly (500), and the positioning assembly (500) is used to clamp the aluminum material (600).

2. The angle-adjustable aluminum cutting mechanism according to claim 1, characterized in that: The multifunctional component (100) comprises: a multifunctional shell (101) and a circular hollow cylinder (102); a coolant is arranged inside the multifunctional shell (101); the circular hollow cylinder (102) is slidably mounted on the multifunctional shell (101), and the circular hollow cylinder (102) and the multifunctional shell (101) are interference-fitted, and a sealing ring is arranged at the connection between the multifunctional shell (101) and the circular hollow cylinder (102).

3. The angle-adjustable aluminum cutting mechanism according to claim 2, characterized in that: The multifunctional component (100) further comprises: a guide inclined plate (103) and a circular scraping rod (104); two guide inclined plates (103) are provided, and the two guide inclined plates (103) are slidably mounted on the multifunctional housing (101); two positioning slots (1031) are respectively provided on the tops of the two guide inclined plates (103), and a sealing ring is provided at the connection between the two guide inclined plates (103) and the multifunctional housing (101); two rows of circular scraping rods (104) are provided, and the two rows of circular scraping rods (104) are fixedly mounted on the bottoms of the two guide inclined plates (103).

4. The angle-adjustable aluminum material cutting mechanism according to claim 3, characterized in that: The stabilizing assembly (300) comprises: a V-shaped mounting frame (301) and a circular stabilizing rod (302); the V-shaped mounting frame (301) is fixedly mounted on the top of the multifunctional housing (101); the circular stabilizing rod (302) is slidably mounted on the V-shaped mounting frame (301) and the multifunctional housing (101), and the bottom of the circular stabilizing rod (302) is provided with a rounded corner, and the bottom end of the circular stabilizing rod (302) is inserted into a corresponding positioning slot (1031).

5. The angle-adjustable aluminum material cutting mechanism according to claim 4, characterized in that: The stabilizing assembly (300) further comprises: a force-bearing circular ring (303) and a coil spring A (304); the force-bearing circular ring (303) is fixedly mounted on the outside of the circular stabilizing rod (302), and the bottom of the force-bearing circular ring (303) is in contact with the multifunctional housing (101); the coil spring A (304) is sleeved on the outside of the circular stabilizing rod (302), and the coil spring A (304) is located between the V-shaped mounting frame (301) and the force-bearing circular ring (303).

6. The angle-adjustable aluminum material cutting mechanism according to claim 2, characterized in that: The cutting assembly (400) comprises: a supporting plate (401), a linear electric cylinder (402) and a cutting machine (403); the supporting plate (401) is mounted on the top of the multifunctional housing (101) by means of screws; two linear electric cylinders (402) are provided, and the two linear electric cylinders (402) are fixedly mounted on the top of the supporting plate (401), and the two linear electric cylinders (402) are also electrically connected to the control panel (200); the cutting machine (403) is slidably mounted on the output shafts of the two linear electric cylinders (402), and the cutting machine (403) is also electrically connected to the control panel (200).

7. The angle-adjustable aluminum material cutting mechanism according to claim 6, characterized in that: The cutting assembly (400) further comprises: a limit ring (404), a coil spring B (405) and an extrusion starter frame (406); the limit rings (404) are provided in total of four, and the four limit rings (404) are fixedly mounted on the output shafts of the two linear electric cylinders (402), and the two lower limit rings (404) are in contact with the cutting machine (403); the coil springs B (405) are provided in total of two, and the two coil springs B (405) are sleeved on the output shafts of the two linear electric cylinders (402), and the two coil springs B (405) are located between the cutting machine (403) and the two upper limit rings (404); the extrusion starter frames (406) are provided in total of two, and the two extrusion starter frames (406) are fixedly mounted on the left and right sides of the cutting machine (403).

8. The angle-adjustable aluminum material cutting mechanism according to claim 7, characterized in that: The cutting assembly (400) further comprises: a U-shaped mounting seat (407) and a cutting button (408); two U-shaped mounting seats (407) are provided, and the two U-shaped mounting seats (407) are fixedly installed on the inner sides of the two linear electric cylinders (402); two cutting buttons (408) are provided, and the two cutting buttons (408) are fixedly installed on the two U-shaped mounting seats (407); the two cutting buttons (408) and the two extrusion starter frames (406) are located on the same central plane, and the two cutting buttons (408) are also electrically connected to the control panel (200); when the bottom of the cutting machine (403) contacts the aluminum material (600), the two extrusion starter frames (406) automatically press the two cutting buttons (408).

9. The angle-adjustable aluminum material cutting mechanism according to claim 6, characterized in that: The positioning assembly (500) comprises: a U-shaped movable seat (501), a U-shaped positioning frame (502) and a positioning frame (503); the U-shaped movable seat (501) is slidably mounted on the supporting plate (401); two U-shaped positioning frames (502) are provided, and the two U-shaped positioning frames (502) are fixedly mounted on the top of the U-shaped movable seat (501); two positioning frames (503) are provided, and the two positioning frames (503) are fixedly mounted on the outside of the U-shaped movable seat (501), and the two positioning frames (503) are also in contact with the supporting plate (401).

10. The angle-adjustable aluminum material cutting mechanism according to claim 9, characterized in that: The positioning assembly (500) further comprises: a threaded nail A (504) and a threaded nail B (505); two threaded nails A (504) are provided in total, and the two threaded nails A (504) are threadedly connected to the two U-shaped positioning frames (502), and the inner ends of the two threaded nails A (504) are in contact with the aluminum material (600); two threaded nails B (505) are provided in total, and the two threaded nails B (505) are threadedly connected to the two U-shaped positioning frames (502), and the bottom ends of the two threaded nails B (505) are inserted into the supporting plate (401).