Aluminum alloy cutting equipment

By using an annular geared chamber inner sleeve hydraulic cylinder and outer frame in the aluminum alloy cutting equipment, combined with guide wheel base and pneumatic telescopic frame, the problem of inaccurate clamping and positioning of existing equipment for diverse products is solved, achieving precise processing and improved safety.

CN223699512UActive Publication Date: 2025-12-23LANXI HUANYU ALUMINUM CO LTD
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Patent Information

Application Number
CN202520620833.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-12-23
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

Existing aluminum alloy cutting equipment struggles to achieve precise positioning when clamping diverse products, which can easily lead to dangerous accidents during processing.

Method used

The system employs inner cylinders and outer frames distributed on both sides of the annular gear compartment, combined with guide wheel bases, fitting guide wheels, pneumatic telescopic frames, and clamping plates, to achieve adaptive clamping and positioning for different products, and combines with the adjustment cutting mechanism for precise processing.

Benefits of technology

It enables precise processing of diverse products, avoids dangerous accidents during processing, and improves equipment safety and processing accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides aluminum alloy cutting equipment, which relates to the technical field of aluminum alloy processing, and comprises a carrying and cleaning assembly and an adjusting and cutting mechanism, clamping and feeding parts in bolted connection are arranged above the two ends of the carrying and cleaning assembly, and the adjusting and cutting mechanism in bolted connection is arranged on the outer side above the clamping and feeding parts. The adjustable cutting mechanism comprises a parallel frame, a first lead screw, a first sliding seat, a lifting frame, a cross beam groove, a second lead screw, a second sliding seat, a lifting oil cylinder, a motor base, a driving motor, a saw disc and a protective plate. According to the utility model, the inner sleeve oil cylinder and the outer frame are distributed at the two end sides of the annular tooth cabin, so that specific structures of various products can be adaptively clamped and positioned by using the guide wheel base, the fitting guide wheel, the pneumatic telescopic frame and the clamping plate according to the specific structure distribution of the products; in this way, in the clamping and rotating process of the equipment, accurate machining can be effectively achieved, and meanwhile dangerous accidents in the machining process are avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to aluminum alloy processing technical field especially relates to a kind of aluminum alloy cutting equipment. BACKGROUND

[0002] Aluminum processing, with plastic processing method, aluminum billet is processed into material, main method has rolling, extrusion, stretching and forging etc., product is widely used in aviation, building, transportation, electrical, chemical, packaging and commodity industry department.

[0003] The existing aluminum alloy cutting equipment when using, such as application No. CN202221137794.2 discloses a kind of cutting equipment for aluminum alloy processing, including cutting workbench, interval adjusting mechanism, support table, fixed mechanism, cutting mounting rack and cutting mechanism, cutting workbench lower surface is equipped with support leg, interval adjusting mechanism is equipped on cutting workbench side wall, support table includes fixed support table and movable support table, fixed support table is fixedly arranged on cutting workbench, movable support table is equipped on interval adjusting mechanism, support table is hollow structure and is set, support table upper surface is equipped with placement fixed recess, fixed mechanism is equipped on support table;However, the clamping mode of the above-mentioned technology can only achieve accurate clamping effect for limited structure product, it is not convenient for the positioning treatment of diversity product, prone to dangerous accident in equipment processing process, therefore, the utility model provides a kind of aluminum alloy cutting equipment to solve the problems existing in prior art. UTILITY MODEL CONTENT

[0004] For the above problems, the utility model provides an aluminum alloy cutting equipment, which mainly utilizes the inner sleeve oil cylinder and outer frame distributed at both ends of the annular tooth cabin, can adaptively clamp and position the specific structure of various products according to the specific structure distribution of the product using the guide wheel base, the matching guide wheel and the pneumatic telescopic frame and the clamping plate, so that the clamping and rotating process of the equipment can effectively achieve accurate machining while avoiding dangerous accidents during machining.

[0005] To achieve the purpose of the utility model, the utility model realizes the following technical scheme: an aluminum alloy cutting equipment, including carrying cleaning assembly and adjusting cutting mechanism, the both ends of the carrying cleaning assembly are provided with bolted clamping feeding parts above, and the outer side of the upper part of the clamping feeding part is provided with bolted adjusting cutting mechanism.

[0006] The adjusting cutting mechanism comprises a parallel frame, a first screw rod, a first sliding base, a lifting frame, a cross beam groove, a second screw rod, a second sliding base, a lifting oil cylinder, a motor base, a driving motor, a saw disc and a guard plate, the parallel frame is bolted above the outer side of the clamping and feeding component, the first sliding base provided with the lifting frame is threadedly connected to the parallel frame, the cross beam groove is arranged on the inner upper side of the lifting frame, the second sliding base is threadedly connected to the cross beam groove, the lifting oil cylinder is arranged on the inner side of the outer end of the second sliding base, the motor base is arranged on the output end of the lifting oil cylinder, the saw disc is arranged on one side of the motor base and connected to the output end of the driving motor, and the guard plate is arranged on the outer side of the saw disc.

[0007] As a preferred embodiment of the utility model, the middle axis of the saw disc and the middle axis of the guard plate are on the same plane.

[0008] As a preferred embodiment of the utility model, the carrying cleaning assembly comprises a base plate, a hollow groove cabin, a cleaning box, a lower mesh plate, an upper mesh plate, a surrounding shell, a reciprocating screw rod group and a cleaning brush strip, the middle upper part of the base plate is provided with the hollow groove cabin, the middle inner side of the hollow groove cabin is provided with the lower mesh plate, and the upper mesh plate is arranged above the lower mesh plate.

[0009] As a preferred embodiment of the utility model, the lower inner side of the hollow groove cabin is provided with the cleaning box, the outer side of the upper part of the hollow groove cabin is provided with the surrounding shell assembled by bolts, the output end of the surrounding shell is provided with the reciprocating screw rod group, and the output end of the reciprocating screw rod group is provided with the cleaning brush strip connected in a threaded mode.

[0010] As a preferred embodiment of the utility model, the clamping and feeding component comprises an end frame, a hole base, an annular tooth cabin, a driving gear, an inner sleeve oil cylinder, a guide wheel base, a fitting guide wheel, an outer frame, a fixed strip, a pneumatic telescopic frame and a clamping plate, the end frame is bolted above the two ends of the base plate, the upper part of the end frame is provided with the hole base, the inner side of the hole base is provided with the annular tooth cabin, and the input end of the annular tooth cabin is provided with the driving gear.

[0011] As a preferred embodiment of the utility model, the inner end inner side of the annular tooth cabin is provided with the inner sleeve oil cylinder, the output end of the inner sleeve oil cylinder is provided with the guide wheel base, the inner end of the guide wheel base is provided with the fitting guide wheel, the outer end outer side of the annular tooth cabin is provided with the outer frame, the outer end of the outer frame is provided with the fixed strip, the outer side above the fixed strip is provided with the pneumatic telescopic frame, and the output end of the pneumatic telescopic frame is provided with the clamping plate.

[0012] The utility model discloses the beneficial effect is:

[0013] The utility model mainly is with the two end sides of annular tooth cabin distribute with inner cover oil cylinder and outer frame, can according to the specific structure distribution of product use guide wheel base, fit guide wheel and pneumatic telescopic frame and clamping plate carry out adaptive clamping positioning to the specific structure of various products, the clamping of such equipment and the process of swivel can effectively reach the accurate machining while avoiding the dangerous accident of processing. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;

[0015] Figure 2 It is the bottom view three-dimensional structure schematic diagram of the utility model;

[0016] Figure 3 It is the three-dimensional structure schematic diagram of the utility model's carrying cleaning assembly;

[0017] Figure 4 It is the three-dimensional structure schematic diagram of the utility model's clamping feeding part.

[0018] Among them: 1, carrying cleaning assembly;101, base plate;102, empty groove cabin;103, cleaning box;104, lower mesh plate;105, upper mesh plate;106, enclosure;107, reciprocating screw rod group;108, cleaning brush strip;2, clamping feeding part;201, end frame;202, hole base;203, annular tooth cabin;204, driving gear;205, inner cover oil cylinder;206, guide wheel base;207, fit guide wheel;208, outer frame;209, fixed strip;2010, pneumatic telescopic frame;2011, clamping plate;3, adjusting cutting mechanism;301, parallel frame;302, first screw;303, first sliding seat;304, lifting frame;305, crossbeam groove;306, second screw;307, second sliding seat;308, lifting oil cylinder;309, motor base;3010, driving motor;3011, saw disc;3012, guard plate. DETAILED DESCRIPTION

[0019] In order to deepen the understanding of the utility model, the utility model will be further described in the following embodiment, and the embodiment is only used to explain the utility model, and does not constitute the limitation of the protection scope of the utility model.

[0020] According to Figures 1-4 As shown in the figure, the embodiment proposes an aluminum alloy cutting device, including carrying cleaning assembly 1 and adjusting cutting mechanism 3, the upper side of the two ends of carrying cleaning assembly 1 is provided with the clamping feeding part 2 connected by bolts, and the outer side of the upper side of clamping feeding part 2 is provided with the adjusting cutting mechanism 3 connected by bolts;

[0021] The adjusting cutting mechanism 3 comprises a parallel frame 301, a first lead screw 302, a first sliding seat 303, a lifting frame 304, a cross beam groove 305, a second lead screw 306, a second sliding seat 307, a lifting oil cylinder 308, a motor base 309, a driving motor 3010, a saw disc 3011 and a guard plate 3012. The parallel frame 301 is bolted above the outer side of the clamping and feeding component 2. The first sliding seat 303, on which the lifting frame 304 is installed, is threadedly connected to the parallel frame 301 through the first lead screw 302. The cross beam groove 305 is arranged on the inner upper side of the lifting frame 304. The second sliding seat 307 is threadedly connected to the cross beam groove 305 through the second lead screw 306. The lifting oil cylinder 308 is arranged on the inner side of the outer end of the second sliding seat 307. The motor base 309 is arranged on the output end of the lifting oil cylinder 308. The saw disc 3011 is arranged on one side of the motor base 309 and connected to the output end of the driving motor 3010. The guard plate 3012 is arranged on the outer side of the saw disc 3011.

[0022] The central axis of the saw disc 3011 and the central axis of the guard plate 3012 are in the same plane.

[0023] In this embodiment, when cutting is needed, the first lead screw 302 is driven to operate by the output end of the parallel frame 301. The second lead screw 306 is driven to operate by the output end of the cross beam groove 305. The lifting frame 304 is driven to operate to the suitable machining position by the second sliding seat 307. The motor base 309 is driven to operate to the suitable height position by the lifting oil cylinder 308. The saw disc 3011 is driven to operate by the driving motor 3010 to cut and shape the material.

[0024] The cleaning assembly 1 comprises a base plate 101, a hollow groove cabin 102, a cleaning box 103, a lower mesh plate 104, an upper mesh plate 105, a surrounding shell 106, a reciprocating lead screw group 107 and a cleaning brush strip 108. The hollow groove cabin 102 is arranged on the upper middle part of the base plate 101. The lower mesh plate 104 is arranged on the inner middle part of the hollow groove cabin 102. The upper mesh plate 105 is arranged above the lower mesh plate 104.

[0025] In this embodiment, when the cleaning brush strip 108 is driven to operate reciprocally, the material falls through the upper mesh plate 105 to the lower mesh plate 104 and is finally input into the cleaning box 103 arranged on the inner lower side of the hollow groove cabin 102 for storage and treatment.

[0026] The cleaning box 103 is arranged on the inner lower side of the hollow groove cabin 102. The surrounding shell 106 is bolted on the outer upper side of the hollow groove cabin 102. The reciprocating lead screw group 107 is arranged on the output end of the surrounding shell 106. The cleaning brush strip 108 is threadedly connected to the output end of the reciprocating lead screw group 107.

[0027] In the embodiment, during the processing of the device, the output end on the enclosure 106 is used to output power to drive the reciprocating screw rod group 107 to reciprocate inside the two ends of the enclosure 106, so that the cleaning brush strip 108 can effectively reciprocate.

[0028] The clamping and feeding component 2 comprises an end frame 201, a hole base 202, an annular gear cabin 203, a driving gear 204, an inner sleeve oil cylinder 205, a guide wheel base 206, a matching guide wheel 207, an outer frame 208, a fixed strip 209, a pneumatic telescopic frame 2010, and a clamping plate 2011. The end frame 201 is bolted on the upper part of the two ends of the base plate 101. The upper part of the end frame 201 is provided with the hole base 202, and the inner side of the hole base 202 is provided with the annular gear cabin 203. The input end of the annular gear cabin 203 is provided with the driving gear 204.

[0029] In the embodiment, after the material is clamped, the driving gear 204 on the hole base 202 is rotated according to the need to output power. The rotation of the driving gear 204 can drive the annular gear cabin 203 to operate, so that the material can rotate.

[0030] The inner end of the annular gear cabin 203 is provided with the inner sleeve oil cylinder 205, and the output end of the inner sleeve oil cylinder 205 is provided with the guide wheel base 206. The inner end of the guide wheel base 206 is provided with the matching guide wheel 207. The outer end of the annular gear cabin 203 is provided with the outer frame 208, and the outer end of the outer frame 208 is provided with the fixed strip 209. The outer side of the fixed strip 209 is provided with the pneumatic telescopic frame 2010, and the output end of the pneumatic telescopic frame 2010 is provided with the clamping plate 2011.

[0031] In the embodiment, when it is necessary to clamp the tubular material, two sets of annular gear cabins 203 are used to input and carry the material, and the inner sleeve oil cylinder 205 is used to output power to drive the guide wheel base 206 to cooperate with the inner end of the matching guide wheel 207 to clamp the tubular material. When it is necessary to clamp materials of different structures, the pneumatic telescopic frame 2010 on the fixed strip 209 is used to output power to drive the clamping plate 2011 in the inner end of the pneumatic telescopic frame 2010 to clamp the material.

[0032] The working principle of the aluminum alloy cutting device is that when the tubular material needs to be clamped, the material is input and carried by the two sets of ring-shaped tooth cabins 203, and the power is output by the inner sleeve oil cylinder 205 to drive the guide wheel base 206 to cooperate with the inner end of the matching guide wheel 207 to achieve the clamping effect of the tubular material; when the material of different structures needs to be clamped, the power is output by the pneumatic telescopic frame 2010 on the fixed strip 209 to drive the clamping plate 2011 at the inner end of the pneumatic telescopic frame 2010 to achieve the clamping effect of the material; after the material is clamped, the driving gear 204 on the hole base 202 outputs power to rotate, and the rotation of the driving gear 204 can drive the ring-shaped tooth cabin 203 to run, so that the material achieves the effect of rotating operation; when cutting is needed, the output end of the parallel frame 301 is used to drive the first lead screw 302 to run, and the output end of the cross beam groove 305 is used to drive the second lead screw 306 to run, so that the lifting frame 304 cooperates with the second sliding seat 307 to run to the suitable machining position, and the lifting oil cylinder 308 is used to drive the motor base 309 to run to the suitable height position, and the driving motor 3010 is used to drive the saw disc 3011 to cut the material into a desired shape; during the machining of the device, the output end of the surrounding shell 106 is used to drive the reciprocating lead screw group 107 to reciprocate in the inner side of the two ends of the surrounding shell 106, so that the cleaning brush strip 108 can effectively reciprocate; when the cleaning brush strip 108 reciprocates, the material falls through the upper net plate 105 to the lower net plate 104, and finally enters the cleaning box 103 below the inner side of the empty slot cabin 102 for storage and treatment.

[0033] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. An aluminum alloy cutting device, comprising a cleaning assembly (1) and an adjusting cutting mechanism (3), characterized in that: The cleaning assembly (1) is provided with bolted clamping and feeding components (2) above both ends, and the clamping and feeding components (2) are provided with bolted adjustment and cutting mechanisms (3) on the outer side above. The adjusting cutting mechanism (3) includes a parallel frame (301), a first lead screw (302), a first slide (303), a lifting frame (304), a crossbeam groove (305), a second lead screw (306), a second slide (307), a lifting cylinder (308), a motor base (309), a drive motor (3010), a saw blade (3011), and a guard plate (3012). The parallel frame (301) is bolted to the upper outer side of the clamping and feeding component (2). The first lead screw (302) is threadedly connected to the parallel frame (301) to the first lead screw (304) for mounting the lifting frame (304). A sliding block (303) is provided on the inner side of the upper part of the lifting frame (304), and a second sliding block (307) is threadedly connected to the crossbeam groove (305) by a second lead screw (306). A lifting cylinder (308) is provided on the inner side of the outer end of the second sliding block (307), and a motor base (309) is provided at the output end of the lifting cylinder (308). A saw disc (3011) connected to the output end of the drive motor (3010) is provided on one side of the motor base (309), and a guard plate (3012) is provided on the outer side of the saw disc (3011).

2. The aluminum alloy cutting device according to claim 1, characterized in that: The central axis of the saw blade (3011) and the central axis of the guard plate (3012) are on the same plane.

3. The aluminum alloy cutting device according to claim 1, characterized in that: The cleaning assembly (1) includes a base plate (101), an empty slot chamber (102), a cleaning box (103), a lower mesh plate (104), an upper mesh plate (105), a shell (106), a reciprocating screw assembly (107), and a cleaning brush (108). The empty slot chamber (102) is provided above the middle part of the base plate (101), and the lower mesh plate (104) is provided on the inner side of the middle part of the empty slot chamber (102). The upper mesh plate (105) is provided above the lower mesh plate (104).

4. The aluminum alloy cutting device according to claim 3, characterized in that: A cleaning box (103) is provided on the lower inner side of the empty tank (102), and a bolt-assembled enclosure (106) is provided on the upper outer side of the empty tank (102). A reciprocating screw assembly (107) is provided at the output end of the enclosure (106), and a threaded cleaning brush (108) is provided at the output end of the reciprocating screw assembly (107).

5. The aluminum alloy cutting device according to claim 3, characterized in that: The clamping and feeding component (2) includes an end frame (201), a hole base (202), an annular gear chamber (203), a drive gear (204), an inner cylinder (205), a guide wheel base (206), a contact guide wheel (207), an outer frame (208), a fixing strip (209), a pneumatic telescopic frame (2010), and a clamping plate (2011). The end frame (201) is bolted to the upper ends of the base plate (101). The hole base (202) is provided above the end frame (201), and the annular gear chamber (203) is provided on the inner side of the hole base (202). The drive gear (204) is provided at the input end of the annular gear chamber (203).

6. The aluminum alloy cutting device according to claim 5, characterized in that: An inner sleeve cylinder (205) is provided on the inner side of the inner end of the annular gear compartment (203), and a guide wheel base (206) is provided on the output end of the inner sleeve cylinder (205). A fitting guide wheel (207) is provided on the inner end of the guide wheel base (206). An outer frame (208) is provided on the outer side of the outer end of the annular gear compartment (203), and a fixing strip (209) is provided on the outer end of the outer frame (208). A pneumatic telescopic frame (2010) is provided on the outer side above the fixing strip (209), and a clamping plate (2011) is provided on the output end of the pneumatic telescopic frame (2010).

Citation Information

Patent Citations

  • Cut-off equipment for aluminum alloy machining

    CN217121933U