Sleeving equipment for shock absorber packing belt
By designing a shock absorber packing kit, which utilizes servo cylinders and sensors for automatic limit positioning and QR code recognition by a code reader, the problem of low efficiency and error-prone manual packing is solved, achieving automation, high efficiency, and accuracy in shock absorber packing.
Patent Information
- Application Number
- CN202422656038.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-01
AI Technical Summary
In existing technologies, the packaging process for automotive shock absorbers relies on manual pressing and manually inserting the packing straps, resulting in high resource consumption, low efficiency, and a high risk of errors.
Design a shock absorber packing device that uses a servo cylinder and sensors to achieve automatic limiting and fixing, and combines a code reader to identify the QR code to ensure the correct model. The servo cylinder drives the sliding base and limit block to compress and pack the shock absorber.
The process of packaging shock absorbers has been automated, saving manpower, improving efficiency, preventing model errors, and ensuring the accuracy and efficiency of the packaging process.
Smart Images

Figure CN223457210U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to product packaging technical field, specifically a shock absorber packing tape equipment. BACKGROUND
[0002] The automobile shock absorber assembly needs to be compressed to fixed length before boxing, which is convenient for storage and transportation, but the current shock absorber packing method usually adopts manual pressing to a certain length, and then manually aligns and inserts into the packing tape, which consumes a lot of manpower and is low in efficiency and prone to errors. SUMMARY
[0003] The utility model provides a shock absorber packing tape equipment to overcome the deficiency of prior art, which replaces the heavy, inefficient and unreliable manual pressing and alignment of the packing tape labor with a simple method.
[0004] To achieve the above object, a shock absorber packing tape equipment is designed, which comprises a rack and a bottom plate. A bottom plate is arranged inside the rack. A fixed tool and a sensor are arranged above the bottom plate. A code reader adjusting assembly is arranged on one side of the fixed tool above the bottom plate. The fixed tool comprises a servo cylinder, a sliding base, a sliding limit block, a fixed base, a limit block and a knob plunger. The servo cylinder is connected to the bottom plate. The servo cylinder is slidingly connected to the sliding base. The sliding limit block is connected to the top of the sliding base. A fixed base is arranged on one side of the servo cylinder above the bottom plate. The limit block is fixed to the fixed base by inserting the knob plunger.
[0005] The code reader adjusting assembly comprises a code reader guide rail, a code reader moving block and a code reader. The code reader guide rail is fixed to the top of the bottom plate. The code reader moving block is slidingly connected to the top of the code reader guide rail. The code reader is connected to the top of the code reader moving block.
[0006] A pair of safety light curtain devices are arranged on the side of the rack. A touch screen is connected to the other side of the rack. A three-color lamp is arranged above the rack.
[0007] An electric control box is arranged below the bottom plate.
[0008] The servo cylinder is connected to a start-stop button. The start-stop button is installed on one side of the bottom plate.
[0009] The fixed tool is fixed with a shock absorber workpiece.
[0010] The sensor can be a photoelectric sensor.
[0011] Compared with the prior art, the utility model limits and fixes the shock absorber through the tool on both sides, identifies whether the shock absorber is in the correct position through the sensor, judges the two-dimensional code on the shock absorber through the code reader, saves manpower, improves efficiency, and realizes the model error proofing of the process.BRIEF DESCRIPTION OF DRAWINGS BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is the structure schematic diagram of the utility model.
[0013] Figure 2 It is the fixed tool structure schematic diagram of the utility model.
[0014] Referring to Figures 1-2 , 1 is the rack, 2 is the bottom plate, 3 is the electric control box, 4 is the touch screen, 5 is the start-stop button, 6 is the safety light curtain device, 7 is the three-color lamp, 8 is the servo cylinder, 9 is the sliding base, 10 is the sliding limit block, 11 is the fixed base, 12 is the limit block, 13 is the knob plunger, 14 is the sensor, 15 is the code reader, 16 is the code reader moving block, 17 is the code reader guide rail, 18 is the shock absorber workpiece. DETAILED DESCRIPTION
[0015] The utility model will be further described in accordance with the drawings.
[0016] As Figure 1 shown, the rack 1 is internally provided with a bottom plate 2, the fixed tool and the sensor 14 are arranged above the bottom plate 2, the fixed tool above the bottom plate 2 is provided with a code reader adjusting assembly on one side, the fixed tool includes the servo cylinder 8, the sliding base 9, the sliding limit block 10, the fixed base 11, the limit block 12 and the knob plunger 13, the servo cylinder 8 is connected on the bottom plate 2, the servo cylinder 8 is slidably connected with the sliding base 9, the sliding limit block 10 is connected above the sliding base 9, the fixed base 11 is arranged on one side of the servo cylinder 8 above the bottom plate 2, the limit block 12 is fixed on the fixed base 11 by inserting the knob plunger 13, the servo cylinder 8 drives the sliding base 9 to slide back and forth, so that the sliding limit block 10 moves to the appropriate position, the inner sides of the sliding limit block 10 and the limit block 12 are respectively profiled designed to the connecting rod side and the outer cylinder end of the shock absorber 18, the sliding limit block 10 and the limit block 12 are respectively connected on both sides of the shock absorber 18 to realize the fixation of the shock absorber workpiece 18, the knob plunger 13 can be quickly in and out of the fixed base 11 by rotating, and the corresponding limit block 12 can be quickly replaced according to the model of the shock absorber workpiece 18.
[0017] The code reader adjusting assembly includes the code reader guide rail 17, the code reader moving block 16 and the code reader 15, the code reader guide rail 17 is fixed above the bottom plate 2, the code reader moving block 16 is slidably connected above the code reader guide rail 17, and the code reader 15 is connected to the upper end of the code reader moving block 16, the code reader is used to read the two-dimensional code on the shock absorber, judge the model of the shock absorber, and prevent the processing problem caused by the model error.
[0018] A pair of safety light curtain devices 6 are arranged on the side of the rack 1, and the safety light curtain devices 6 play a role in protecting the staff, and when the staff triggers the grating between the safety light curtain devices 6, the electric control box 3 automatically cuts off the power supply, and the electric cylinder does not work.
[0019] The electric control box 3 is arranged below the bottom plate 2, and the other side of the rack 1 is connected with the touch screen 4, the electric control box is programmed by PLC, and the staff can realize man-machine interaction through the touch screen 4, can set initial position, compression distance, back-off distance and other parameters, and can check and export data related to the scanning code information.
[0020] The servo cylinder 8 is connected with the start-stop button 5, the start-stop button 5 is installed on one side of the bottom plate 2, and the start-stop button 5 controls the start and stop of the servo cylinder 8.
[0021] The fixed tool is fixed with the shock absorber workpiece 18.
[0022] The sensor 14 can be a photoelectric sensor, and the photoelectric sensor is used to identify whether the shock absorber is placed in place.
[0023] The specific operation process of the utility model is that the staff selects appropriate limit block 12 and sliding limit block 10 according to the shock absorber workpiece 18, fixes the limit block 12 on the fixed base 11 through the knob plunger 13, and connects the sliding limit block 10 on the servo cylinder 8, the staff sets parameters and calls formula on the touch screen 4 according to the length of the shock absorber workpiece 18 and the length of the packing belt, places the shock absorber workpiece 18 between the limit block 12 and the sliding limit block 10, presses the start-stop button 5, the servo cylinder 8 drives the sliding base 9 to slide to the direction of the shock absorber workpiece 18, the sliding limit block 10 compresses the shock absorber workpiece 18, and the servo cylinder 8 drives the sliding base 9 to slightly move back, at this time, the shock absorber part rebounds and tightens the packing belt, and the shock absorber workpiece 18 is taken out, when the staff's arm completely exits the coverage area of the safety light curtain device 6, the servo cylinder 8 drives the sliding base 9 to reset to the initial position, when the shock absorber needs to be batched into the packing belt, the above process can be repeated to quickly pack, the utilization rate of manpower is high, and it is simple and efficient.
Claims
1. A shock absorber banded sleeve assembly apparatus comprising a frame, a base plate, characterized by: The rack (1) is internally provided with a bottom plate (2), the bottom plate (2) is provided with a fixed tool and a sensor (14) above, the side of the fixed tool above the bottom plate (2) is provided with a code reader adjusting assembly, the fixed tool comprises a servo cylinder (8), a sliding base (9), a sliding limit block (10), a fixed base (11), a limit block (12) and a knob plunger (13), the servo cylinder (8) is connected to the bottom plate (2), the servo cylinder (8) is slidably connected to the sliding base (9), the sliding base (9) is connected to the sliding limit block (10) above, the side of the servo cylinder (8) above the bottom plate (2) is provided with the fixed base (11), and the limit block (12) is fixed to the fixed base (11) by inserting the knob plunger (13).
2. A shock absorber banded sleeve assembly apparatus as defined in claim 1, wherein: The code reader adjusting assembly comprises a code reader guide rail (17), a code reader moving block (16) and a code reader (15), the code reader guide rail (17) is fixed above the bottom plate (2), the code reader guide rail (17) is slidably connected to the code reader moving block (16) above, and the code reader moving block (16) is connected to the code reader (15) at the upper end.
3. A shock absorber banded sleeve assembly apparatus as defined in claim 1, wherein: A pair of safety light curtain devices (6) are arranged on the side edge of the side of the rack (1), the other side of the rack (1) is connected to a touch screen (4), and three-color lamps (7) are arranged above the rack (1).
4. The shock absorber packing tape wrapping apparatus of claim 1 or 3, wherein: The bottom plate (2) is provided with an electric control box (3) below.
5. A shock absorber banding sleeve apparatus as defined in claim 4, wherein: The servo cylinder (8) is connected to a start-stop button (5), and the start-stop button (5) is installed on one side of the bottom plate (2).
6. A shock absorber banding sleeve apparatus as defined in claim 1, wherein: The fixed tool is fixed with a shock absorber workpiece (18).
7. The shock absorber banding kit apparatus of claim 1, wherein: The sensor (14) can be a photoelectric sensor.