Inclined vibration flange conveying belt mechanism
By designing an inclined vibrating sidewall conveyor belt mechanism, using magnets and vibrating rollers to position the curtain, and combining it with an inclined adjustment device, the problem of insufficient curtain conveying accuracy is solved, stability and accuracy are achieved during curtain transportation, and production efficiency is improved.
Patent Information
- Application Number
- CN202423001162.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-05
AI Technical Summary
The existing conveyor belt cannot guarantee the conveying accuracy of the cord, which causes the cord to be easily misaligned during splicing, affecting production progress.
An inclined vibrating sidewall conveyor belt mechanism was designed. By setting up a sidewall device and a vibration mechanism, magnetic attraction and vibrating rollers were used to assist in curtain positioning. The angle between the upper and lower frames was adjusted through the tilt adjustment device to ensure the position stability and accuracy of the curtain during transportation.
The position stability and accuracy of the curtain fabric during transportation are achieved, the need for manual adjustment is reduced, and production efficiency is improved.
Smart Images

Figure CN223457615U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of oblique vibration baffle edge conveyor belt mechanism, belong to the technical field of conveyor belt. BACKGROUND
[0002] Belt layer is an important component between tread and carcass, it is mainly composed of multiple layers of high-strength, high-modulus fiber material (such as steel cord) or fabric cord; after cutting, belt layer is sent to joint machine, and is butt jointed with cord fabric;However, ordinary conveyor belt precision cannot be guaranteed, and the conveyed cord fabric will often be misaligned, resulting in left and right misalignment of joint, which needs to be identified and adjusted manually, seriously affecting production progress. SUMMARY
[0003] According to the deficiencies in the above prior art, the technical problem to be solved by the utility model is to provide a kind of oblique vibration baffle edge conveyor belt mechanism, which can realize the stability of the position of cord fabric during transportation, and improve the conveying precision of cord fabric.
[0004] The oblique vibration baffle edge conveyor belt mechanism, comprising upper rack, lower rack and baffle device, conveyor belt is arranged around the upper rack, the lower rack is hinged to the upper rack on one side, and the lower rack is supported on the other side by multiple sets of oblique adjusting devices on the upper rack;Multiple sets of vibration mechanisms are evenly distributed below the upper rack, and the vibration mechanisms are located below the conveyor belt and in contact with the conveyor belt, which can drive the conveyor belt to vibrate up and down;The baffle device is located on the hinged side of the upper rack and the lower rack, and the baffle device is placed on the side of the conveyor belt along the running direction of the conveyor belt, the baffle device comprises several magnets and rollers, and the roller shaft is perpendicular to the conveying surface of the conveyor belt.
[0005] The technical scheme of the utility model provides an oblique vibration baffle edge conveyor belt mechanism, which can adjust the included angle between the upper rack and the lower rack, and the cord fabric on the conveyor belt always leans on the baffle device under the action of vibration, inclination and magnet when the conveyor belt transports the cord fabric, the roller assists the forward movement of the cord fabric, and the conveying precision of the cord fabric is guaranteed.
[0006] Preferably, the vibration mechanism comprises a vibrating roller, the vibrating roller is rotatably connected to the upper rack, a plurality of polygonal blocks are sleeved on the vibrating roller, and the polygonal blocks are in contact with the conveyor belt;The conveyor belt can drive the polygonal blocks to rotate when running forward, without the need for a power device, so as to realize the rotation of the vibrating roller, the polygonal blocks make the conveyor belt rise and fall, and realize the vibration effect of the conveyor belt;The number of polygonal blocks on each vibrating roller is at least two, to ensure the stability of the vibration effect of the conveyor belt, and make the vibration effect more obvious.
[0007] Preferably, the inclination adjusting device comprises a first connecting block arranged on the upper rack, a second connecting block arranged on the lower rack and an adjusting screw, the adjusting screw penetrates through the second connecting block and is threadedly connected with the second connecting block, the top of the adjusting screw is in contact with the first connecting block to support the first connecting block, and rotating the adjusting screw can lift one side of the upper rack to make the upper rack incline to one side, so that the cord fabric leans on the edge blocking device.
[0008] Preferably, the edge blocking device further comprises an edge blocking support, and the magnets and the rollers are arranged on the edge blocking support.
[0009] Preferably, the inclination and vibration edge blocking conveying belt mechanism further comprises a detection device and a display device arranged corresponding to the conveying belt, the detection device detects the speed and position of the conveying belt, the detection device is electrically connected with the display device, the detection device transmits the detected speed and position signals of the conveying belt to the display device, the display device displays the conveying speed and position of the cord fabric, and the monitoring personnel adjusts the position of the upper rack and the running speed of the conveying belt according to the displayed data to achieve timely reaction and processing.
[0010] Compared with the prior art, the inclination and vibration edge blocking conveying belt mechanism has the following beneficial effects:
[0011] 1. The edge blocking device is arranged, the cord fabric is attracted by the magnets on the edge blocking device when the conveying belt conveys the cord fabric, runs on one side of the conveying belt, the position is kept consistent during running, the structure is simple, the stability of the position in the cord fabric conveying process is realized, and the precision of the cord fabric conveying is improved.
[0012] 2. The vibration mechanism is arranged, the conveying belt is subjected to up-and-down vibration, the vibration effect of the conveying belt is realized, and the cord fabric is closely arranged on the edge blocking device.
[0013] 3. The inclination adjusting device is arranged, the included angle between the upper rack and the lower rack can be freely adjusted, the cord fabric is inclined to one side, and the adjustment of the position of the cord fabric is realized. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a structural schematic view of the utility model;
[0015] Figure 2 is a structural schematic view of the utility model after the conveying belt is removed;
[0016] Figure 3 is a structural schematic view of the vibration mechanism;
[0017] Figure 4 is a partial structural schematic view of the edge blocking device;
[0018] Figure 5 is Figure 1 the partial enlarged view of the A area in Fig.
[0019] Figure: 1, tilt adjustment device; 11, first connecting block; 12, adjusting screw; 13, second connecting block; 2, upper rack; 3, conveying belt; 4, baffle device; 41, baffle support; 42, roller; 43, magnet; 5, lower rack; 6, vibration mechanism; 61, vibration roller; 62, polygonal block. DETAILED DESCRIPTION
[0020] The utility model is further illustrated below in combination with specific embodiments.
[0021] As Figures 1-5 shown, the present embodiment is realized by the following technical solutions: including upper rack 2, lower rack 5 and baffle device 4, the upper rack 2 is around the setting conveying belt 3, the lower rack 5 one side is hinged with the upper rack 2, and the lower rack 5 other side supports the upper rack 2 through multiple sets of tilt adjustment device 1;The upper rack 2 below is evenly distributed with multiple sets of vibration mechanism 6, and the vibration mechanism 6 is located below the conveying belt 3 and contacts with the conveying belt 3, can drive the conveying belt 3 up and down undulating vibration;The baffle device 4 is located in the hinged side of the upper rack 2 and the lower rack 5, and the baffle device 4 is placed in the side of the conveying belt along the running direction of the conveying belt 3, and the baffle device 4 includes several magnets 43 and rollers 42, and the roller shaft is perpendicular to the conveying surface of the conveying belt 3.
[0022] In the embodiment, the vibration mechanism 6 includes vibration roller 61, and the vibration roller 61 is rotationally connected with the upper rack 2, a plurality of polygonal blocks 62 are sleeved on the vibration roller 61, and the polygonal blocks 62 contact the conveying belt 3;When the conveying belt 3 runs forward, the polygonal blocks 62 can be driven to rotate, so that the rotation of the vibration roller 61 is realized without the need to set a power device, and the polygonal blocks 62 make the conveying belt 3 undulate up and down to realize the vibration effect of the conveying belt 3;The number of the polygonal blocks on each vibration roller is at least two to ensure the stability of the conveying belt vibration effect and make the vibration effect more obvious.
[0023] The tilt adjustment device 1 includes the first connecting block 11 placed on the upper rack 2, the second connecting block 13 placed on the lower rack 5 and the adjusting screw 12, the adjusting screw 12 penetrates through the second connecting block 13 and is threadedly connected with the second connecting block, the top of the adjusting screw 12 contacts with the first connecting block 11 to support the first connecting block 11, and the adjusting screw 12 is rotated to lift one side of the upper rack 2, so that the upper rack 2 is inclined to one side to make the cord fabric lean on the baffle device 4. The baffle device 4 further includes the baffle support 41, and the magnets 43 and the rollers 42 are evenly distributed on the baffle support 41.
[0024] The tilt vibration baffle conveying belt mechanism further includes a detection device and a display device arranged corresponding to the conveying belt 3, the detection device detects the speed and position of the conveying belt 3, and the detection device is electrically connected with the display device;
[0025] The use method of the utility model is:
[0026] Through adjusting the angle between the upper rack 2 and the lower rack 5 by adjusting screw rod 12, the conveying belt 3 is adjusted to the appropriate position, when the conveying belt 3 carries the cord fabric, the cord fabric is attracted by the magnet 43 on the baffle support 41, and under the action of the vibrating mechanism 6, the cord fabric runs on the side of the conveying belt 3, ensuring that the position is consistent during running, and the roller 42 assists the cord fabric to move forward. The detection device transmits the speed and position signals of the conveying belt 3 detected to the display device, the display device displays the transportation speed and position of the cord fabric, and the monitoring personnel adjusts the position of the upper rack 2 and the running speed of the conveying belt 3 according to the displayed data, so as to achieve timely reaction and timely treatment.
[0027] Of course, the above content is only the preferred embodiment of the utility model, and cannot be considered as limiting the scope of the embodiment of the utility model. The utility model is also not limited to the above examples, and the equivalent changes and improvements made by the ordinary skilled in the art within the essential scope of the utility model should be attributed to the patent coverage range of the utility model.
Claims
1. An inclined vibrating apron conveyor mechanism, characterized in that, The device comprises an upper frame (2), a lower frame (5) and a side blocking device (4), the conveying belt (3) is arranged around the upper frame (2), one side of the lower frame (5) is hinged to the upper frame (2), and the other side of the lower frame (5) supports the upper frame (2) through a plurality of inclination adjusting devices (1); a plurality of vibration mechanisms (6) are uniformly arranged below the upper frame (2), the vibration mechanisms (6) are located below the conveying belt (3) and are in contact with the conveying belt; the side blocking device (4) is located at the hinged side of the upper frame (2) and the lower frame (5), and is arranged beside the conveying belt (3) along the running direction of the conveying belt (3); the side blocking device (4) comprises a plurality of magnets (43) and rollers (42), and the roller shaft is perpendicular to the conveying surface of the conveying belt (3).
2. The inclined vibratory apron conveyor mechanism of claim 1, wherein, The vibration mechanism (6) comprises a vibrating roller shaft (61), the vibrating roller shaft (61) is rotationally connected to the upper frame (2), a plurality of polygonal blocks (62) are sleeved on the vibrating roller shaft (61), and the polygonal blocks (62) are in contact with the conveying belt (3); the number of the polygonal blocks on each vibrating roller shaft is at least two.
3. The inclined vibratory apron conveyor mechanism of claim 1, wherein, The inclination adjusting device (1) comprises a first connecting block (11) arranged on the upper frame (2), a second connecting block (13) arranged on the lower frame (5) and an adjusting screw (12), the adjusting screw (12) penetrates through the second connecting block (13) and is threadedly connected with the second connecting block, the top of the adjusting screw (12) is in contact with the first connecting block (11) to support the first connecting block.
4. The inclined vibratory apron conveyor mechanism of claim 1, wherein, The side blocking device (4) further comprises a side blocking support (41), and the magnets (43) and the rollers (42) are uniformly arranged on the side blocking support (41).
5. The inclined vibratory apron conveyor mechanism of claim 1, wherein, Further comprising a detection device and a display device arranged corresponding to the conveying belt (3), and the detection device is electrically connected with the display device.