Shaft cutting machine facilitating feeding and discharging

By designing a shaft cutting machine that facilitates loading and unloading, and employing conveyor belt feeding, lead screw clamping, and electromagnet collection of debris, the problems of slow loading, low safety, and low cutting accuracy of existing shaft cutting machines have been solved, thereby improving production efficiency and equipment lifespan.

CN223776640UActive Publication Date: 2026-01-09JIANGSHAN YONGLI LILY STANDARD PARTS CO LTD
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Patent Information

Application Number
CN202423088071.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-14
Publication Date
2026-01-09
Estimated Expiration
2034-12-14

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  • Figure CN223776640U_ABST
    Figure CN223776640U_ABST
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Abstract

The utility model relates to the technical field of shaft cutting machines, and discloses a shaft cutting machine convenient for feeding and discharging, which comprises a main box body, one side of the main box body is sleeved with a connecting rod, and one end of the connecting rod is inserted with a box body cover plate, a hydraulic rod, a cutting blade and a collecting box. The automatic feeding device is reasonable in structure, materials are placed on the feeding assembly by an operator, the driving shaft is driven to rotate through the conveying motor in the first fixing base, the materials are conveyed into equipment through the conveying belt, the situation that the materials cannot be rapidly and conveniently fed is avoided, the production efficiency is reduced, and the labor cost is increased; according to the automatic feeding device, workers are prevented from being dangerous in the feeding process, so that rapid feeding is achieved through the feeding assembly, the production efficiency is improved, the labor cost is reduced, the danger to the workers in the feeding process is reduced, a first motor drives a connecting rod to rotate to open and close a box body cover plate, and the situation that the equipment hurts operators in the working process is avoided; the working efficiency is influenced, and the processing condition of materials is inconvenient to observe.
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Description

Technical Field

[0001] This utility model relates to the field of shaft cutting machine technology, specifically a shaft cutting machine that facilitates loading and unloading. Background Technology

[0002] A shaft cutting machine is a common type of mechanical equipment mainly used for cutting shaft parts. Its structure mainly includes a cutting mechanism, a feeding mechanism, a motor, and a base. The working principle of a shaft cutting machine is that the motor drives the cutting mechanism to rotate, while the feeding mechanism controls the feed of the cutting mechanism, thereby achieving the cutting of shaft parts. Shaft cutting machines are mainly used in industries such as machining, automobile manufacturing, and shipbuilding for cutting various shaft parts, such as bearings, gears, piston rods, and connecting rods.

[0003] However, existing equipment cannot quickly load materials, which reduces production efficiency and increases labor costs. Operators may be injured during loading, and it is difficult to observe the processing of materials by the equipment, making observation inconvenient and unsafe. It cannot quickly cut materials, and the cutting accuracy is low, affecting the quality of the processed materials. Manual cutting is inefficient, and it is impossible to collect and clean up the debris generated during cutting, which reduces the service life of the equipment and results in low work efficiency. Therefore, we propose a new device to solve the above problems. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a shaft cutting machine that facilitates loading and unloading, solving the problems of slow loading, reduced production efficiency, difficulty in observing the processing status of the equipment, low safety (potential injury to operators), low precision in cutting materials (affecting material quality), and inability to clean and collect cutting debris, which reduces the service life of the equipment.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model provides the following technical solution: a shaft cutting machine that facilitates loading and unloading, comprising a main housing, a connecting rod sleeved on one side of the main housing, a housing cover plate inserted at one end of the connecting rod, a first motor inserted on one side of the connecting rod, a loading assembly inserted inside the main housing, a second motor inserted inside the main housing, a first lead screw sleeved at one end of the second motor, a lead screw seat sleeved on the outer surface of the first lead screw, a clamping assembly inserted on the upper surface of the lead screw seat, a cutting assembly inserted into the inner wall of the main housing, an electromagnet and a collecting box inserted sequentially from top to bottom into the inner wall of the main housing, and a discharge pipe inserted inside the main housing.

[0008] Optionally, the feeding assembly includes a first fixed base, a conveyor motor, a drive shaft, a conveyor belt, a driven shaft, and a second fixed base. The conveyor motor is inserted into the inside of the first fixed base, and the drive shaft is inserted into one end of the conveyor motor. The conveyor belt is sleeved on the outer surface of the drive shaft, and the driven shaft is inserted into the inside of the conveyor belt. The second fixed base is sleeved on one end of the driven shaft.

[0009] Optionally, the clamping assembly includes a third fixed base, a clamping motor, a first clamping plate, a second clamping plate, and a second lead screw. The clamping motor is sleeved inside the third fixed base, and a second lead screw is inserted into one end of the clamping motor. A first clamping plate is sleeved on one end of the second lead screw, and a second clamping plate is sleeved on the outer surface of the second lead screw.

[0010] Optionally, the cutting assembly includes a hydraulic rod, a cutting motor, a rotating shaft, and a cutting blade. The cutting motor is inserted into the inside of the hydraulic rod, and a rotating shaft is inserted into one end of the cutting motor. The cutting blade is sleeved on the outer surface of the rotating shaft.

[0011] Optionally, a motor mount is inserted into one side of the main housing, and the motor mount is the same size as the first motor.

[0012] Optionally, a motor mount is inserted into the other side of the main housing, and the motor mount is compatible with the second motor.

[0013] Optionally, the upper surface of the main housing is provided with a discharge hole, which is L-shaped and one end of the discharge hole is adapted to the discharge pipe.

[0014] Optionally, the electromagnet and the collection box are located inside the main box near the cutting assembly, and an observation window is provided on one side of the box cover.

[0015] In summary, the technical effects and advantages of this utility model are as follows:

[0016] 1. This utility model has a reasonable structure. Operators place materials onto the feeding assembly. The transmission motor inside the first fixed seat drives the drive shaft to rotate, causing the driven shaft inside the second fixed seat to also rotate. This allows the conveyor belt to transport the materials into the equipment, preventing the materials from being loaded too quickly and conveniently, thus avoiding reduced production efficiency, increased labor costs, and potential dangers to workers during loading. The feeding assembly enables rapid loading, increasing production efficiency, reducing labor costs, and improving work efficiency while minimizing the risks to workers. The first motor drives the connecting rod to rotate, opening and closing the box cover, preventing injury to operators during operation, improving work efficiency, and facilitating observation of the material processing status. The box cover enhances safety and facilitates observation of the equipment's processing status.

[0017] 2. In this utility model, a second motor on one side of the main housing drives the first lead screw to rotate, causing the lead screw seat to move left and right. The clamping assembly clamps the workpiece. A clamping motor inside the third fixed seat drives the second lead screw to rotate, causing the second clamping plate to move back and forth. The workpiece is clamped by the first and second clamping plates. A hydraulic rod moves up and down, and a cutting motor drives the rotating shaft to rotate, causing the cutting blade to cut the workpiece. This avoids the dangers that may occur when operators use manual cutting tools, preventing injury to operators and waste of materials. Manual cutting may introduce errors, affecting the quality of the processed material. Its application range is limited, and manual cutting has low production efficiency. Therefore, this invention addresses these issues through cutting... The cutting assembly cuts the workpiece, improving production efficiency, enhancing safety and reliability, reducing operator injury, minimizing material waste, and resulting in more precise and less erroneous finished workpieces, thus improving overall quality. By energizing the electromagnet during cutting, it attracts and collects the debris generated. After cutting, the power is disconnected, and the collected debris falls into a collection box, preventing debris from affecting cutting accuracy. Debris that is difficult to collect and can easily clog equipment, reducing its lifespan, is effectively collected by the electromagnet, preserving cutting precision, extending equipment lifespan, and improving work efficiency. The cut workpiece exits through the discharge port and discharge pipe. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is an exploded view of the box cover structure of this utility model;

[0020] Figure 3 This is a schematic diagram of the box cover structure of this utility model;

[0021] Figure 4 This is an exploded view of the lead screw seat structure of this utility model;

[0022] Figure 5 This is an exploded view of the feeding assembly structure of this utility model;

[0023] Figure 6 This is an exploded view of the clamping component structure of this utility model;

[0024] Figure 7 This is an exploded view of the main box structure of this utility model;

[0025] Figure 8 This is a schematic diagram of the cutting component structure of this utility model.

[0026] In the diagram: 1. Main housing; 2. Connecting rod; 3. Housing cover; 4. First motor; 5. Feeding assembly; 501. First fixed seat; 502. Conveyor motor; 503. Drive shaft; 504. Conveyor belt; 505. Driven shaft; 506. Second fixed seat; 6. Second motor; 7. First lead screw; 8. Lead screw seat; 9. Clamping assembly; 901. Third fixed seat; 902. Clamping motor; 903. First clamping plate; 904. Second clamping plate; 905. Second lead screw; 10. Cutting assembly; 1001. Hydraulic rod; 1002. Cutting motor; 1003. Rotating shaft; 1004. Cutting disc; 11. Electromagnet; 12. Collection box; 13. Discharge pipe. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] Example: Reference Figures 1-8 The shaft cutting machine shown includes a main housing 1, a connecting rod 2 sleeved on one side of the main housing 1, a housing cover plate 3 inserted at one end of the connecting rod 2, a first motor 4 inserted at one side of the connecting rod 2, a feeding assembly 5 inserted inside the main housing 1, a second motor 6 inserted inside the main housing 1, a first lead screw 7 sleeved at one end of the second motor 6, a lead screw seat 8 sleeved on the outer surface of the first lead screw 7, a clamping assembly 9 inserted on the upper surface of the lead screw seat 8, a cutting assembly 10 inserted into the inner wall of the main housing 1, an electromagnet 11 and a collection box 12 inserted sequentially from top to bottom into the inner wall of the main housing 1, and a discharge pipe 13 inserted inside the main housing 1.

[0029] As a preferred embodiment of this example, Figures 2 to 5As shown, a connecting rod 2 is sleeved on one side of the main housing 1. There are two symmetrical connecting rods 2. One end of the connecting rod 2 is inserted into the housing cover plate 3. An observation window is opened on one side of the housing cover plate 3. A first motor 4 is inserted into one side of the connecting rod 2. A motor base is inserted into one side of the main housing 1. The motor base is the same size as the first motor 4. A feeding assembly 5 is inserted inside the main housing 1. The feeding assembly 5 includes a first fixed seat 501, a conveyor motor 502, a drive shaft 503, a conveyor belt 504, a driven shaft 505, and a second fixed seat 506. The conveyor motor 502 is inserted inside the first fixed seat 501. The drive shaft 503 is inserted into one end of the conveyor motor 502. The conveyor belt 504 is sleeved on the outer surface of the drive shaft 503. The driven shaft 505 is inserted inside the conveyor belt 504. The second fixed seat 506 is sleeved on one end of the driven shaft 505. During use, the operator... The materials are placed on the feeding assembly 5. The transmission motor 502 inside the first fixed seat 501 drives the drive shaft 503 to rotate, causing the driven shaft 505 inside the second fixed seat 506 to also rotate. This causes the conveyor belt 504 to transport the materials into the equipment, preventing the materials from being loaded too quickly and conveniently, which would reduce production efficiency, increase labor costs, and prevent workers from being endangered during loading. The feeding assembly 5 allows for rapid loading, increases production efficiency, reduces labor costs, improves work efficiency, and reduces the danger to workers during loading. The first motor 4 drives the connecting rod 2 to rotate, opening and closing the box cover 3. This prevents the equipment from causing injury to operators during operation, affecting work efficiency, and making it inconvenient to observe the processing status of the materials. The box cover 3 improves safety and facilitates observation of the equipment's processing status of the materials.

[0030] like Figure 4 and Figures 6 to 8As shown, in this embodiment, a second motor 6 is inserted inside the main housing 1, and a motor mount is inserted on the other side of the main housing 1. The motor mount and the second motor 6 are mutually compatible. A first lead screw 7 is sleeved on one end of the second motor 6, and a lead screw seat 8 is sleeved on the outer surface of the first lead screw 7. A clamping assembly 9 is inserted on the upper surface of the lead screw seat 8. The clamping assembly 9 includes a third fixing seat 901, a clamping motor 902, a first clamping plate 903, a second clamping plate 904, and a second lead screw 905. The clamping motor 902 is sleeved inside the third fixing seat 901. A second lead screw 905 is inserted on one end of the clamping motor 902. A first clamping plate 903 is sleeved on one end of the second lead screw 905, and a second clamping plate 904 is sleeved on the outer surface of the second lead screw 905. A cutting assembly 10 is inserted into the inner wall of the main housing 1. The cutting assembly 10 includes a hydraulic rod 1001, a cutting motor 1002, a rotating shaft 1003, and a cutting blade 1004. The cutting motor 1002 is inserted into the inside of the hydraulic rod 1001, and the rotating shaft 1003 is inserted into one end of the cutting motor 1002. The cutting blade 1004 is sleeved on the outer surface of the rotating shaft 1003. From top to bottom, an electromagnet 11 and a collection box 12 are inserted into the inner wall of the main housing 1. The electromagnet 11 is a device that generates electromagnetic fields when energized. A conductive winding matching its power is wound around the outside of the iron core. This current-carrying coil has magnetism like a magnet. We usually make it into a bar or horseshoe shape to make the iron core easier to magnetize. In addition, in order to make the electromagnet 11 immediately disappear when de-energized... For magnets, we often use soft iron or silicon steel materials that demagnetize quickly. Such electromagnets 11 are magnetic when energized and lose their magnetism when de-energized. Electromagnets 11 and the collecting box 12 are located inside the main body 1, near the inner side of the cutting assembly 10. A discharge pipe 13 is inserted inside the main body 1. A discharge hole, L-shaped, is opened on the upper surface of the main body 1, with one end of the discharge hole matching the discharge pipe 13. During use, the second motor 6 on one side of the main body 1 drives the first lead screw 7 to rotate, causing the lead screw seat 8 to move left and right, clamping the workpiece through the clamping assembly 9. The clamping motor 902 inside the third fixed seat 901 drives the second lead screw 905 to rotate, causing the second clamping plate 904 to move back and forth, through the first… The clamping plate 903 and the second clamping plate 904 clamp the workpiece and move it up and down via the hydraulic rod 1001. The cutting motor 1002 drives the rotating shaft 1003 to rotate, causing the cutting blade 1004 to cut the workpiece. This avoids the dangers that may occur when operators cut the workpiece themselves, preventing injury to operators and waste of materials. Manual cutting can also introduce errors, affecting the quality of the processed workpiece. Furthermore, manual cutting has limited application and low production efficiency. By using the cutting assembly 10 to cut the workpiece, production efficiency is improved, safety and reliability are enhanced, operator injury is reduced, material waste is minimized, and the processed workpiece is more precise with smaller errors, thus improving the quality of the processed workpiece.By energizing the electromagnet 11 during cutting, it attracts the debris generated during the cutting process. After cutting, the power is disconnected, and the attracted debris falls into the collection box 12. This avoids the debris affecting cutting accuracy, as the debris is inconvenient to collect and easily clogs the equipment, reducing its lifespan. The electromagnet 11 effectively collects the debris, preserving cutting accuracy, increasing equipment lifespan, and improving work efficiency. The cut material exits through the discharge port and discharge pipe 13.

[0031] The working principle of this practical application is as follows:

[0032] During operation, the operator places the workpiece onto the feeding assembly 5. The transmission motor 502 inside the first fixed seat 501 drives the drive shaft 503 to rotate, causing the driven shaft 505 inside the second fixed seat 506 to also rotate. This causes the conveyor belt 504 to transport the workpiece into the equipment, preventing the workpiece from being loaded too slowly and conveniently, thus avoiding reduced production efficiency, increased labor costs, and potential dangers to workers during loading. The feeding assembly 5 allows for rapid loading, increasing production efficiency, reducing labor costs, improving work efficiency, and minimizing the dangers to workers during loading. 4. The connecting rod 2 rotates to open and close the box cover 3, preventing injury to operators, reducing work efficiency, and making it difficult to observe the processing of materials during operation. The box cover 3 improves safety and facilitates observation of the processing. The second motor 6 on one side of the main box 1 drives the first lead screw 7 to rotate, causing the lead screw seat 8 to move left and right, clamping the material through the clamping assembly 9. The clamping motor 902 inside the third fixed seat 901 drives the second lead screw 905 to rotate, causing the second clamping plate 904 to move back and forth. The first clamping plate 903 and the second clamping plate... The material is clamped by component 904 and moved up and down by hydraulic rod 1001. The cutting motor 1002 drives the rotating shaft 1003 to rotate, causing the cutting blade 1004 to cut the material. This avoids the dangers, injuries, and material waste that can occur when operators manually cut the material. Manual cutting can also introduce errors, affecting the quality of the processed material and limiting its application. Furthermore, manual cutting is inefficient. By using the cutting component 10 to cut the material, production efficiency is improved, safety and reliability are enhanced, operator injury is reduced, and material waste is minimized. The processed materials are more precise with smaller errors, improving the quality of the processed materials. By energizing the electromagnet 11 during cutting, the electromagnet 11 attracts the debris generated during cutting. After cutting, the power is turned off, and the attracted debris falls into the collection box 12. This avoids the debris generated during cutting affecting the cutting accuracy. The debris is inconvenient to collect and can easily clog the equipment, reducing its service life. By attracting the debris with the electromagnet 11, the debris can be collected better, without affecting the cutting accuracy, increasing the service life of the equipment, and improving work efficiency. The cut materials come out from the discharge pipe 13 through the discharge hole.

[0033] All electrical components mentioned in this article are connected to an external main controller and 220V AC mains power, and the main controller can be a conventional known device such as a computer that can control it.

[0034] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A shaft cutting machine for easy loading and unloading, comprising a main housing (1), characterized in that: A connecting rod (2) is sleeved on one side of the main box (1), a box cover plate (3) is inserted at one end of the connecting rod (2), a first motor (4) is inserted on one side of the connecting rod (2), a feeding assembly (5) is inserted inside the main box (1), a second motor (6) is inserted inside the main box (1), a first lead screw (7) is sleeved at one end of the second motor (6), a lead screw seat (8) is sleeved on the outer surface of the first lead screw (7), a clamping assembly (9) is inserted on the upper surface of the lead screw seat (8), a cutting assembly (10) is inserted on the inner wall of the main box (1), an electromagnet (11) and a collection box (12) are inserted sequentially from top to bottom on the inner wall of the main box (1), and a discharge pipe (13) is inserted inside the main box (1).

2. The shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: The feeding assembly (5) includes a first fixed seat (501), a conveyor motor (502), a drive shaft (503), a conveyor belt (504), a driven shaft (505), and a second fixed seat (506). The conveyor motor (502) is inserted inside the first fixed seat (501). The drive shaft (503) is inserted at one end of the conveyor motor (502). The conveyor belt (504) is sleeved on the outer surface of the drive shaft (503). The driven shaft (505) is inserted inside the conveyor belt (504). The second fixed seat (506) is sleeved at one end of the driven shaft (505).

3. The shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: The clamping assembly (9) includes a third fixed base (901), a clamping motor (902), a first clamping plate (903), a second clamping plate (904), and a second lead screw (905). The clamping motor (902) is sleeved inside the third fixed base (901). The second lead screw (905) is inserted into one end of the clamping motor (902). The first clamping plate (903) is sleeved at one end of the second lead screw (905). The second clamping plate (904) is sleeved on the outer surface of the second lead screw (905).

4. A shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: The cutting assembly (10) includes a hydraulic rod (1001), a cutting motor (1002), a rotating shaft (1003), and a cutting blade (1004). The cutting motor (1002) is inserted into the hydraulic rod (1001), and the rotating shaft (1003) is inserted into one end of the cutting motor (1002). The cutting blade (1004) is sleeved on the outer surface of the rotating shaft (1003).

5. A shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: A motor mount is inserted into one side of the main housing (1), and the motor mount is the same size as the first motor (4).

6. A shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: A motor mount is inserted into the other side of the main housing (1), and the motor mount is compatible with the second motor (6).

7. A shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: The upper surface of the main box (1) is provided with a discharge hole, which is L-shaped and one end of the discharge hole is adapted to the discharge pipe (13).

8. A shaft cutting machine for easy loading and unloading according to claim 1, characterized in that: The electromagnet (11) and the collection box (12) are located inside the main box (1) near the inside of the cutting assembly (10), and an observation window is provided on one side of the box cover (3).