Lateral machining device for motor track
By designing a lateral machining device for motor tracks, the motor tracks are fixed using L-shaped mounting plates and fasteners. Combined with displacement and drive components, the motor tracks are machined efficiently, solving the problem of clamping difficulties in existing milling machines and improving machining efficiency and equipment stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-04-07
AI Technical Summary
Existing milling machines have difficulty effectively clamping the motor track, resulting in low processing efficiency and uneven processing of the motor track, which affects the stability and transmission efficiency of the equipment.
A lateral machining device for motor tracks was designed. The motor track is fixed by an L-shaped mounting plate and fasteners. The lateral installation and movement of the motor track are realized by combining a displacement component and a drive component. Precision machining is performed using a machining motor and a milling cutter.
This technology enables the stable installation and efficient processing of motor rails, improves processing efficiency, ensures the flatness of motor rails, and enhances the transmission stability and power transmission of the equipment.
Smart Images

Figure CN224088036U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lathe equipment technical field especially relates to a motor track lateral processing device. BACKGROUND
[0002] The motor track is an important part for adjusting the length of the triangular belt by moving the motor. Since the track is a casting, the upper plane of which is provided with the motor, the upper plane of the track must be processed by the machine tool to be smooth and flat, so that the motor bolt is not loosened after assembling the motor. At the same time, the triangular belt will be lengthened after running for a period of time, which will reduce the transmission power and easily cause the belt to slip, and even burn the belt in severe cases. After using the motor track, it is not only convenient to adjust the length of the triangular belt, but also does not need to process the long hole of the moving motor on the equipment, which affects the strength of the equipment body. Therefore, the motor track is widely used in the occasion of driving by the triangular belt. The processing and grinding of the motor track need a milling machine, but the general milling machine cannot clamp the motor track firmly, and the processing efficiency is low. Therefore, the technical personnel in the field propose a lateral processing device specially used for the motor track to solve the above problems. SUMMARY
[0003] The utility model aims at providing a motor track lateral processing device to solve the above problems.
[0004] To solve the above technical problems, the utility model adopts the following technical scheme:
[0005] The utility model relates to a motor track lateral processing device, which comprises a workbench and a stand arranged on one side of the workbench, the workbench is connected to a displacement assembly, the displacement assembly is controlled to move through a driving assembly, a plurality of T-shaped grooves are formed in the top surface of the workbench, an L-shaped mounting plate is arranged on the top surface of the workbench, the L-shaped mounting plate is connected to the workbench through a fastening assembly, two symmetrically arranged strip-shaped holes are formed in the vertical surface of the L-shaped mounting plate, fasteners are arranged in the strip-shaped holes, and the motor track is fixed to the L-shaped mounting plate through the fasteners; a lead screw linear module is arranged on the stand, a processing motor is arranged on the sliding plate of the lead screw linear module, a milling cutter is connected to the output end of the processing motor, and the motor track is processed through the milling cutter.
[0006] Further, the displacement assembly comprises a first base and slide rails arranged on the top surface of the first base at both ends, and long strip-shaped sliding blocks are arranged at both ends of the bottom surface of the workbench, the sliding blocks are slidably connected to the slide rails.
[0007] Further, the driving assembly comprises a driving motor and a speed reducer connected with each other, a gear is connected to an output end of the speed reducer, a rack is fixed to a bottom surface of the workbench, the rack is arranged outside the sliding block, and the gear is engaged with the rack.
[0008] Further, the driving motor and the speed reducer are both fixed to the second base.
[0009] Further, the fastening assembly comprises a bolt and a nut, the head of the bolt is arranged in the T-shaped slot, and the other end of the bolt is connected with the nut after penetrating through the through hole formed in the L-shaped mounting plate.
[0010] Further, the fastening member is a bolt and a nut, the head of the bolt is arranged on a side of the vertical surface of the L-shaped mounting plate close to the milling cutter, and the other end of the bolt is connected with the nut after penetrating through the strip-shaped hole.
[0011] Further, a lifting ring is connected to the top end of the sliding plate, a steel wire rope is connected to the lifting ring, the steel wire rope is connected with a counterweight after being guided by a fixed pulley installed on the lead screw linear module and the stand and being arranged behind the stand.
[0012] Compared with the prior art, the motor track is fixed on the L-shaped mounting plate through the fastening member, so that the motor track can be installed on the equipment laterally, the L-shaped mounting plate is fixed on the workbench, and the workbench is controlled to move through the driving assembly and the displacement assembly, thereby facilitating the milling cutter to rapidly process the workpiece and greatly improving the work efficiency.
[0013] The motor track can be fixed on the L-shaped mounting plate through the fastening member, so that the motor track can be installed on the equipment laterally, the L-shaped mounting plate is fixed on the workbench, and the workbench is controlled to move through the driving assembly and the displacement assembly, thereby facilitating the milling cutter to rapidly process the workpiece and greatly improving the work efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0014] The utility model will be further described in connection with the drawings.
[0015] Figure 1 It is main view of motor track lateral processing device of the utility model;
[0016] Figure 2 It is displacement assembly structure schematic view of motor track lateral processing device of the utility model;
[0017] Figure 3 It is side view of L-shaped mounting plate;
[0018] Figure 4 It is counterweight installation side view;
[0019] Explanation of reference numerals in the attached drawings: 1. Workbench; 2. Stand; 3. Lead screw linear module; 31. Slide plate; 4. Machining motor; 5. Milling cutter; 6. T-slot; 7. L-shaped mounting plate; 8. Strip hole; 9. Fastener; 10. First base; 11. Slide rail; 12. Slider; 13. Drive motor; 14. Reducer; 15. Second base; 16. Rack; 17. Lifting ring; 18. Wire rope; 19. Fixed pulley; 20. Counterweight; 21. Gear. Detailed Implementation
[0020] like Figures 1-4 As shown, a motor track lateral processing device includes a worktable 1 and a stand 2 disposed on one side of the worktable 1. The worktable 1 is connected to a displacement assembly, and the displacement assembly is controlled to move by a drive assembly.
[0021] The displacement component includes a first base 10 and slide rails 11 disposed at both ends of the top surface of the first base 10. The bottom surface of the worktable 1 is provided with elongated sliders 12 at both ends, and the sliders 12 are slidably connected to the slide rails 11.
[0022] The drive assembly includes a drive motor 13 and a reducer 14 connected together, both of which are fixed on the second base 15. A gear 21 is connected to the output end of the reducer 14, and a rack 16 is fixed on the bottom surface of the worktable 1. The rack 16 is positioned outside the slider 12, and the gear 21 meshes with the rack 16.
[0023] The top surface of the workbench 1 has several T-shaped grooves 6 and an L-shaped mounting plate 7. The L-shaped mounting plate 7 is connected to the workbench 1 by a fastening assembly, which includes a bolt and a nut. The head of the bolt is placed in the T-shaped groove 6, and the other end of the bolt passes through a through hole in the L-shaped mounting plate 7 and is connected to the nut.
[0024] The L-shaped mounting plate 7 has two symmetrically arranged strip holes 8 on its vertical surface. Fasteners 9 are installed in the strip holes 8, and the motor rail is fixed to the L-shaped mounting plate 7 by the fasteners 9. The fasteners are bolts and nuts. The head of the bolt is placed on the side of the vertical surface of the L-shaped mounting plate 7 near the milling cutter 5, and the other end of the bolt passes through the strip hole 8 and is connected to the nut.
[0025] A lead screw linear module 3 is installed on the upright frame 2. A machining motor 4 is installed on the slide plate 31 of the lead screw linear module 3. A milling cutter 5 is connected to the output end of the machining motor 4. The motor track is machined by the milling cutter 5.
[0026] The top of the slide plate 31 is connected to a lifting ring 17, and a steel wire rope 18 is connected to the lifting ring 17. The steel wire rope 18 is guided by a fixed pulley 19 installed on the lead screw linear module 3 and the upright frame 2, and then placed behind the upright frame 2 and connected to a counterweight 20. The counterweight 20 assists the lead screw linear module 3, making it easier for the lead screw linear module 3 to control the slide plate 31 to rise.
[0027] The operation process of this utility model is as follows:
[0028] In use, select the appropriate T-slot 6 according to the model of the motor rail, then install the L-shaped mounting plate 7 on the worktable 1 using the fastening assembly, and then fix the motor rail to the side of the L-shaped mounting plate 7 using the fastener 9. Adjust the height of the milling cutter 5 using the lead screw linear module 3 so that the height of the milling cutter 5 matches the motor rail, then turn on the machining motor 4 to drive the milling cutter 5 to rotate, and then turn on the drive motor 13, which rotates on the rack 16 through the gear 21, driving the worktable 1 to slide on the slide rail 11, so that the milling cutter 5 can process the motor rail.
[0029] The embodiments described above are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.
Claims
1. A lateral machining device for motor tracks, characterized in that: The system includes a worktable (1) and a stand (2) mounted on one side of the worktable (1). The worktable (1) is connected to a displacement assembly, which is controlled to move by a drive assembly. Several T-shaped slots (6) are provided on the top surface of the worktable (1). An L-shaped mounting plate (7) is provided on the top surface of the worktable (1). The L-shaped mounting plate (7) is connected to the worktable (1) by a fastening assembly. Two symmetrically arranged strip holes (8) are provided on the vertical surface of the L-shaped mounting plate (7). Fasteners (9) are provided in the strip holes (8). The motor track is fixed to the L-shaped mounting plate (7) by the fasteners (9). A lead screw linear module (3) is mounted on the stand (2). A machining motor (4) is mounted on the slide plate (31) of the lead screw linear module (3). A milling cutter (5) is connected to the output end of the machining motor (4). The motor track is machined by the milling cutter (5).
2. The motor track lateral processing device according to claim 1, characterized in that: The displacement component includes a first base (10) and slide rails (11) disposed at both ends of the top surface of the first base (10). The bottom surface of the worktable (1) is provided with long strip-shaped sliders (12) at both ends, and the sliders (12) are slidably connected to the slide rails (11).
3. The motor track lateral processing device according to claim 2, characterized in that: The drive assembly includes a drive motor (13) and a reducer (14) connected together. A gear (21) is connected to the output end of the reducer (14). A rack (16) is fixed on the bottom surface of the worktable (1). The rack (16) is placed outside the slider (12). The gear (21) meshes with the rack (16).
4. The motor track lateral processing device according to claim 3, characterized in that: The drive motor (13) and the reducer (14) are both fixed on the second base (15).
5. The motor track lateral processing device according to claim 1, characterized in that: The fastening assembly includes a bolt and a nut. The head of the bolt is placed in the T-groove (6), and the other end of the bolt passes through a through hole in the L-shaped mounting plate (7) and is connected to the nut.
6. The motor track lateral processing device according to claim 1, characterized in that: The fasteners are bolts and nuts. The head of the bolt is placed on the side of the L-shaped mounting plate (7) near the milling cutter (5), and the other end of the bolt passes through the strip hole (8) and is connected to the nut.
7. The motor track lateral processing device according to claim 1, characterized in that: The top of the slide (31) is connected to a lifting ring (17), and a steel wire rope (18) is connected to the lifting ring (17). The steel wire rope (18) is guided by a fixed pulley (19) installed on the lead screw linear module (3) and the upright (2) and then placed behind the upright (2) and connected to a counterweight (20).