A correction structure and a gear conveying device
By combining a hydraulic drive mechanism and a belt tension adjustment structure, automated belt alignment is achieved, solving the problem of time-consuming and labor-intensive manual alignment in existing technologies and improving alignment efficiency.
Patent Information
- Application Number
- CN202311768129.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-21
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-12-21
AI Technical Summary
The existing conveyor belt alignment requires manual adjustment, which results in high labor intensity and low efficiency.
The system employs a hydraulic drive mechanism to achieve automated belt alignment via a storage tank and inlet pipe. The hydraulic drive mechanism continuously propels the top pin to advance the movable push plate. Combined with the belt tension adjustment mechanism, the tension of the conveyor belt is automatically adjusted to achieve reciprocating tensioning and rebound of the belt.
It achieves automated belt alignment, reduces the need for manual adjustments, and improves alignment efficiency and automation.
Smart Images

Figure CN117755726B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of gear conveying processing, in particular to a deviation rectifying structure and gear conveying device. BACKGROUND
[0002] In the gear conveying process, the belt conveying device is used to automatically convey the ceramic bricks forward. However, the belt in the belt conveying device is driven by the driving drum, the falling point of the material is not in the middle of the belt section, the head, tail, and middle frame are not installed correctly, the belt joint is not perpendicular to the center line of the belt, the tension inside the belt is uneven, the carrier roller is not flexible, and there are materials between the gear and the belt, which will cause the deviation of the belt.
[0003] In the prior art, such as the flat belt driving wheel deviation adjusting mechanism with publication number CN216036852U, the related structures such as the protrusion, threaded hole, adjusting stud, and adjusting block are provided. When the center position of the belt idler wheel deviates, the worker can directly twist the adjusting stud, use the driving action of the adjusting stud to resist the adjusting block against the belt idler wheel, and cooperate with the limiting action of the vertical plate and the limiting block, so that the deviation of the belt idler wheel can be easily rectified.
[0004] However, in the actual use process, the deviation rectification of the belt needs to be manually adjusted by the worker, which increases the labor intensity of the worker and reduces the deviation rectification efficiency.
[0005] Therefore, we propose a deviation rectifying structure and gear conveying device to solve the problem of time-consuming and laborious manual deviation rectification of the existing conveying belt, which can automatically rectify the deviation of the conveying belt. SUMMARY
[0006] The purpose of the present application is to provide a deviation rectifying structure and gear conveying device to solve the problem of time-consuming and laborious manual deviation rectification of the existing conveying belt as mentioned in the background.
[0007] In order to achieve the above object, the present application provides the following technical scheme: A deviation rectifying structure and gear conveying device, comprising a conveying device body, the upper surface of the conveying device body is provided with a conveying belt, the two sides of the conveying belt are provided with side edge seats fixedly installed on the upper surface of the conveying device body, the upper end of the side edge seat is provided with a side edge guide assembly, the inner wall of the two sides of the conveying device body is respectively provided with a reserved groove, the inner wall of the reserved groove is penetrated by a liquid inlet pipe, the output end of the liquid inlet pipe is fixedly connected with a liquid storage tank, the lower end of the liquid storage tank is penetratedly connected with a liquid outlet pipe, the outer part of the liquid outlet pipe is provided with a valve, the output end of the liquid storage tank is provided with a hydraulic drive mechanism, the lower end of the liquid storage tank is provided with a support frame plate fixedly connected with the inner wall of the conveying device body, one end of the upper surface of the support frame plate is fixedly provided with a stabilizing column, the inner side of the stabilizing column is provided with a belt tensioning and adjusting mechanism, and the upper end of the belt tensioning and adjusting mechanism is movably connected with the inner top surface of the conveying belt.
[0008] Preferably, the hydraulic drive mechanism comprises a rotary pump head, the rotary pump head is arranged at the liquid outlet end of the liquid inlet pipe, the outer surface of the rotary pump head is movably connected with the inner wall of one end of the liquid storage tank close to the liquid inlet pipe, the output end of the rotary pump head is penetratedly connected with a liquid storage circular plate, the output end of the liquid storage circular plate is fixedly provided with a liquid spraying elbow pipe, the liquid spraying elbow pipe is provided with six groups, and the discharge ports of the liquid spraying elbow pipes are respectively gathered towards the center.
[0009] Preferably, the inner wall of one end of the liquid storage tank away from the liquid inlet pipe is slidably connected with a force receiving circular plate, the other end of the force receiving circular plate is fixedly provided with a thimble, and the outer surface of the thimble is slidably connected with the inner wall of one end of the liquid storage tank away from the liquid inlet pipe.
[0010] Preferably, the thimble and the force receiving circular plate are integrally cut in a "T" shape structure, one end of the thimble away from the force receiving circular plate is provided with a round head, the outer surface of the round head movably abuts against a movable push plate, the lower end of the movable push plate is provided with a limiting assembly, the limiting assembly comprises a protrusion, the protrusion is provided in two groups and is symmetrically distributed about the vertical center line of the movable push plate, and the lower end outer surface of the protrusion is slidably connected with the inner wall of a sliding groove pre-provided in the upper end inner wall of the support frame plate.
[0011] Preferably, the inner wall of one side of the movable push plate away from the thimble is fixedly installed with a jacking block through bolts, the jacking block is integrally in a right-angled trapezoidal plate structure, one end of the jacking block away from the movable push plate is provided with a round corner, and the lower surface of the jacking block is slidably connected with the upper surface of the support frame plate.
[0012] Preferably, the belt tensioning adjusting mechanism comprises a movable column and a jacking column, the movable column is provided with a plane and an inclined surface at both ends respectively, the outer surface of the inclined surface is in sliding connection with the trapezoidal inclined surface of the pushing block, the plane at the upper end of the movable column is fixedly connected with the lower end of the jacking column, a connecting horizontal plate is additionally fixed at the upper end of the jacking column, and a balance assembly is mounted at both ends of the lower surface of the connecting horizontal plate.
[0013] Preferably, a mounting seat is fixedly mounted at the upper end of the connecting horizontal plate, the mounting seat is in the shape of a "U" plate structure as a whole, a tensioning roller is rotatably connected to the inner side of the upper end of the mounting seat, and the outer surface of the tensioning roller is movably connected with the inner top surface of the conveying belt.
[0014] Preferably, a T-shaped sliding plate is additionally fixed at the side of the jacking column away from the movable pushing plate, the T-shaped sliding plate is in the shape of a "T" plate structure, a limiting assembly is arranged on the outer surface of one end of the T-shaped sliding plate, the limiting assembly comprises a stabilizing column, the lower end of the stabilizing column is fixedly connected with one end of the tensioning roller away from the liquid storage tank, an auxiliary limiting lifting sliding groove is pre-set on the inner wall of the stabilizing column close to the T-shaped sliding plate, the inner surface of the lifting sliding groove is in sliding connection with the outer surface of the T-shaped sliding plate, and an elastic assembly is additionally fixed at the bottom of the inner cavity of the lifting sliding groove.
[0015] Preferably, a hinged arm lever is hinged at the outer surface of the lower end of the stabilizing column on both sides, there are two groups of hinged arm levers, and the hinged arm levers are symmetrically distributed about the vertical center line of the stabilizing column, a collision prevention plate is hinged to the other end of the hinged arm lever, and a buffer collision prevention assembly is arranged on the inner surface of the collision prevention plate.
[0016] Compared with the prior art, the present application has the following beneficial effects:
[0017] The present application provides a deviation correcting structure and a gear conveying device, the side edges of the conveying device body are provided with reserved grooves, the liquid inlet pipe is mounted, the hydraulic mode is adopted to adjust the tensioning force of the conveying belt, the hydraulic drive mechanism arranged in the liquid storage tank is used to continuously push the movable pushing plate by the ejector pin, so that the tensioning degree of the conveying belt is maintained, the trapezoidal inclined surface of the pushing block pushes the movable column and the tensioning roller at the upper end to tightly push and prevent loosening of the belt below, the reciprocating tightening and rebounding of the deviated belt can be realized, the problem that the existing conveying belt is manually corrected and time-consuming and laborious is solved, and the conveying belt can be automatically corrected. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The figure is a structural schematic diagram of the present application;
[0019] Figure 2 The figure is a side view of the present application;
[0020] Figure 3The three-dimensional structural schematic diagram of the hydraulic driving mechanism of the application;
[0021] Figure 4 The partial three-dimensional sectional structural schematic diagram of the hydraulic driving mechanism of the application;
[0022] Figure 5 The sectional structural schematic diagram of the support frame plate of the application;
[0023] Figure 6 The three-dimensional structural schematic diagram of the belt tensioning and adjusting mechanism of the application;
[0024] Figure 7 The connecting structural schematic diagram of the anti-collision plate and the stabilizing column of the application;
[0025] Figure 8 The connecting structural schematic diagram of the hinged arm rod and the anti-collision plate of the application;
[0026] Figure 9 The sectional structural schematic diagram of the hinged arm rod of the application; Figure 8 The enlarged structural schematic diagram of A of the application.
[0027] In the figure: 1, conveying device body; 2, conveying belt; 3, side edge seat; 4, side edge guide assembly; 5, reserved groove; 6, liquid inlet pipe; 61, rotary pump head; 62, liquid storage circular plate; 63, liquid spraying elbow; 7, support frame plate; 8, liquid storage tank; 81, liquid discharge pipe; 9, thimble; 91, force receiving circular plate; 10, movable push plate; 101, protruding block; 102, sliding groove; 11, pushing block; 12, rounded corner; 13, movable column; 14, jacking column; 15, connecting cross plate; 151, guide support column; 152, return spring; 16, mounting seat; 17, tensioning roller; 18, T-shaped sliding plate; 181, lifting sliding groove; 182, elastic pushing plate; 183, curved elastic wire; 19, stabilizing column; 20, hinged arm rod; 21, anti-collision plate; 211, central reinforcing column; 212, arc-shaped top piece; 213, memory elastic plate. Embodiment
[0028] In order to make the purpose, technical scheme of the application clear and complete, and the advantages more clear and obvious, the embodiments of the application are further described in detail below with reference to the drawings. It should be understood that the specific embodiments described here are part of the embodiments of the application, not all the embodiments, and are only used to explain the embodiments of the application, and do not limit the embodiments of the application. All other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the application.
[0029] In the description of the application, it should be noted that the terms "center", "middle", "upper", "lower", "left", "right", "inner", "outer", "top", "bottom", "side", "vertical", "horizontal" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application. In addition, the terms "one", "first", "second", "third", "fourth", "fifth", "sixth" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0030] In the description of the application, it should be noted that unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
[0031] For the purpose of simplicity and illustration, the principles of the embodiments are mainly described by referring to examples. In the following description, many specific details are presented to provide a thorough understanding of the embodiments. However, it is obvious that these embodiments can not be limited to these specific details in practice for those skilled in the art. In some examples, well-known methods and structures are not described in detail to avoid unnecessarily complicating these embodiments. In addition, all embodiments can be used in combination with each other. Embodiments
[0032] Please refer to Figures 1 to 9The application provides a technical scheme: a deviation rectifying structure and a gear conveying device, which comprises a conveying device body 1, the upper surface of the conveying device body 1 is provided with a conveying belt 2, the two sides of the conveying belt 2 are provided with side edge seats 3 fixedly installed on the upper surface of the conveying device body 1, the upper end of each side edge seat 3 is provided with a side edge guiding assembly 4, a reserved groove 5 is reserved on the inner wall of each side of the conveying device body 1, a liquid inlet pipe 6 is penetrated through the inner wall of the reserved groove 5, the output end of the liquid inlet pipe 6 is fixedly connected with a liquid storage tank 8, the lower end of the liquid storage tank 8 is connected with a liquid outlet pipe 81 in a penetrating mode, the outer part of the liquid outlet pipe 81 is provided with a valve, the output end of the liquid storage tank 8 is provided with a hydraulic driving mechanism, the lower end of the liquid storage tank 8 is provided with a support frame plate 7 fixedly connected with the inner wall of the conveying device body 1, one end of the upper surface of the support frame plate 7 is fixedly provided with a stabilizing column 19, the inner side of the stabilizing column 19 is provided with a belt tensioning adjusting mechanism, and the upper end of the belt tensioning adjusting mechanism is movably in contact with the inner top surface of the conveying belt 2. The reserved groove 5 is arranged on the side of the conveying device body 1, the installation of the liquid inlet pipe 6 is realized, the hydraulic mode is adopted to realize the adjustment of the tensioning force of the conveying belt 2, the hydraulic driving mechanism arranged in the liquid storage tank 8 is used to continuously push the movable push plate 10 by the push pin 9, the tensioning degree of the conveying belt 2 is maintained, the trapezoidal inclined surface of the push block 11 pushes the movable column 13 and the tensioning roller 17 at the upper end to tightly push and prevent loosening of the lower part of the belt, the reciprocating tensioning and rebound of the deviated belt can be realized, the problem that the existing conveying belt is manually deviated and time-consuming and laborious can be solved, and the conveying belt can be automatically deviated. Embodiment
[0033] Refer to the attached Figures 1 to 9 On the basis of the first embodiment, the hydraulic driving mechanism is added in the embodiment:
[0034] The hydraulic driving mechanism comprises a rotating pump head 61, which is arranged at the liquid outlet end of the liquid inlet pipe 6, the outer surface of the rotating pump head 61 is rotationally connected with the inner wall of one end of the liquid storage tank 8 close to the liquid inlet pipe 6, the output end of the rotating pump head 61 is connected with a liquid storage circular plate 62 in a penetrating manner, the output end of the liquid storage circular plate 62 is fixedly provided with a liquid injection elbow pipe 63, the liquid injection elbow pipe 63 is provided with six groups, and the discharge ports of the liquid injection elbow pipes 63 are respectively gathered towards the center, the inner wall of one end of the liquid storage tank 8 away from the liquid inlet pipe 6 is slidably connected with a force receiving circular plate 91, the other end of the force receiving circular plate 91 is fixedly provided with a thimble 9, the outer surface of the thimble 9 is slidably connected with the inner wall of one end of the liquid storage tank 8 away from the liquid inlet pipe 6, the thimble 9 and the force receiving circular plate 91 are integrally cut in a 'T' shape structure, one end of the thimble 9 away from the force receiving circular plate 91 is provided with a round head, the outer surface of the round head is movably abutted with a movable push plate 10, the lower end of the movable push plate 10 is provided with a limiting assembly, the limiting assembly comprises two groups of protrusions 101 which are symmetrically distributed about the vertical center line of the movable push plate 10, the lower end outer surfaces of the protrusions 101 are respectively slidably connected with the inner walls of the pre-set sliding grooves 102 of the upper end inner walls of the support frame plates 7, the inner wall on one side of the movable push plate 10 away from the thimble 9 is fixedly installed with a jacking block 11 through bolts, the jacking block 11 is integrally in a right-angled trapezoidal plate shape structure, one end of the jacking block 11 away from the movable push plate 10 is provided with a round corner 12, and the lower surface of the jacking block 11 is slidably connected with the upper surface of the support frame plate 7.
[0035] At this time, the output end of the liquid inlet pipe 6 is connected with the liquid inlet end of the liquid storage tank 8 in a penetrating manner, when the gear is normally conveyed above the conveying belt 2, the conveying belt 2 is always in a pre-set taut force value, when the belt deviates, the liquid oil is injected from the liquid inlet port of the liquid inlet pipe 6, at this time, the rotating pump head 61 is rotated under the impact of the liquid oil, the liquid oil is stored in the liquid storage circular plate 62, and is sprayed through the multiple groups of liquid injection elbow pipes 63, under the action of the spraying, the rotating pump head 61 drives the liquid storage circular plate 62 to rotate as a whole, so that the liquid oil can top and impact the force receiving circular plate 91, at this time, the thimble 9 is pushed outwards under the impact force of the force receiving circular plate 91, and applies an outward pushing force to the movable push plate 10, so as to convert manual adjustment into liquid driven, and the degree of automation is high, at this time, if it is needed to relax the belt, the liquid oil can be discharged through the liquid discharge pipe 81, the two groups of protrusions 101 which are parallelly distributed and are arranged at the lower end of the movable push plate 10 are arranged to keep the movable push plate 10 stable while moving horizontally in the sliding groove 102, so as to avoid tilting, and further solve the problem that the existing conveying belt adopts manual deviation correction, which is time-consuming and laborious, and the conveying belt can be automatically corrected. Embodiment
[0036] Refer to the drawings Figures 1 to 9 On the basis of the second embodiment, the belt tensioning adjusting mechanism is added in this embodiment.
[0037] The belt tensioning adjusting mechanism comprises a movable column 13 and a jacking column 14, both ends of the movable column 13 are respectively provided with a plane and an inclined surface, the outer surface of the inclined surface is in sliding connection with the trapezoidal inclined surface of the pushing block 11, the plane at the upper end of the movable column 13 is in fixed connection with the lower end of the jacking column 14, the upper end of the jacking column 14 is additionally provided with a connecting transverse plate 15, the lower surface of the connecting transverse plate 15 is provided with a balance assembly at both ends, the upper end of the connecting transverse plate 15 is additionally provided with a mounting seat 16, the mounting seat 16 is in the form of a whole "U" shaped plate structure, the upper end of the mounting seat 16 is rotatably connected with a tensioning roller 17, the outer surface of the tensioning roller 17 is movably connected with the inner top surface of the conveying belt 2, the side of the jacking column 14 away from the movable push plate 10 is additionally provided with a T-shaped slide plate 18, the T-shaped slide plate 18 is in the form of a "T" shaped plate structure, the outer surface of one end of the T-shaped slide plate 18 is provided with a limiting assembly, the limiting assembly comprises a stabilizing column 19, the lower end of the stabilizing column 19 is fixedly connected with one end of the tensioning roller 17 away from the liquid storage tank 8, an auxiliary limiting lifting slide groove 181 is pre-set on the inner wall of the stabilizing column 19 close to the T-shaped slide plate 18, the inner surface of the lifting slide groove 181 is in sliding connection with the outer surface of the T-shaped slide plate 18, the inner cavity bottom surface of the lifting slide groove 181 is additionally provided with an elastic assembly, the lower end of the stabilizing column 19 is respectively hingedly provided with a hinged arm rod 20 at both sides of the outer surface, the hinged arm rod 20 is provided with two groups, and the hinged arm rod 20 is symmetrically distributed about the vertical middle line of the stabilizing column 19, the other end of the hinged arm rod 20 is hingedly provided with a collision prevention plate 21, the inner surface of the collision prevention plate 21 is provided with a buffer collision prevention assembly;
[0038] When the movable push plate 10 is pushed by the ejector pin 9, the pushing block 11 and the round corner 12 move towards the side close to the stabilizing column 19, at this time, the inclined surface below the movable column 13 is in adaptive sliding connection with the inclined surface above the pushing block 11, so as to realize the jacking of the jacking column 14 by the movable column 13, and at this time, the T-shaped slide plate 18 connected with one side of the jacking column 14 vertically slides on the inner wall of the lifting slide groove 181, so as to realize the stable limiting of the tensioning roller 17, and further solve the problem that the existing conveying belt adopts a manual deviation correcting mode which is time-consuming and laborious, and the conveying belt can be automatically corrected. Embodiment
[0039] Refer to the attached Figures 1 to 9 On the basis of the third embodiment, the balance assembly is additionally provided in the embodiment:
[0040] The balance assembly comprises a guide support column 151, the upper end of the guide support column 151 is fixedly connected with the lower surface of the connecting transverse plate 15, the lower end of the guide support column 151 is fixedly connected with the upper surface of the support frame plate 7, the lower end of the guide support column 151 is slidably sleeved with a reset spring 152, the guide support column 151 and the reset spring 152 are both provided with two groups, and the guide support column 151 and the reset spring 152 are symmetrically distributed about the central axis of the connecting transverse plate 15;
[0041] At this time, the connecting horizontal plate 15 drives the mounting seat 16 and the tensioning roller 17 to abut against the inner surface of the belt, so that the conveying belt 2 is taut, and at this time, the connecting horizontal plate 15 is lifted, the guide pillar 151 is stretched, and the reset spring 152 is stretched and deformed, the guide pillar 151 and the reset spring 152 are symmetrically arranged at the lower end of the connecting horizontal plate 15, so as to ensure the balance during the lifting of the tensioning roller 17, and further solve the problem that the existing conveying belt is manually corrected, which is time-consuming and laborious, and the conveying belt can be automatically corrected. Embodiment
[0042] Refer to the attached Figures 1 to 9 On the basis of embodiment three, the elastic assembly is added in the embodiment:
[0043] The elastic assembly comprises an elastic pushing plate 182, the upper end of the elastic pushing plate 182 is fixedly connected with the lower surface of the T-shaped sliding plate 18, the inner surface of the elastic pushing plate 182 is connected with a curved elastic wire 183, the curved elastic wire 183 is provided in two groups, and the curved elastic wire 183 is mirror image distributed about the central axis of the elastic pushing plate 182;
[0044] The elastic assembly is arranged at the lower end of the T-shaped sliding plate 18 and the inner cavity bottom surface of the lifting sliding groove 181, when the T-shaped sliding plate 18 moves up and down, the elastic pushing plate 182 is stretched and compressed, and at this time, the curved elastic wire 183 also produces a certain deformation, so that the acceleration rebound after the T-shaped sliding plate 18 is lowered can be realized, the conveying belt 2 can be quickly corrected under the action of one tensioning, and the problem that the existing conveying belt is manually corrected, which is time-consuming and laborious, can be further solved, and the conveying belt can be automatically corrected. Embodiment
[0045] Refer to the attached Figures 1 to 9 On the basis of embodiment four, the buffer anti-collision assembly is added in the embodiment:
[0046] The buffer anti-collision assembly comprises a central reinforcing column 211, the two ends of the central reinforcing column 211 are fixedly connected with the inner wall of the anti-collision plate 21, arc-shaped top sheets 212 and memory elastic plates 213 are arranged on the two sides of the central reinforcing column 211 respectively, and the arc-shaped top sheets 212 and the memory elastic plates 213 are symmetrically distributed about the central reinforcing column 211 respectively;
[0047] When the rounded corner 12 is impacted by the side edge pushing force to the surface of the anti-collision plate 21, the central reinforcing column 211, the arc-shaped top sheet 212 and the memory elastic plate 213 inside the anti-collision plate 21 are deformed, so that the reverse elastic force generated weakens the impact shaking outside the anti-collision plate 21, avoids the stable column 19 from shaking due to the impact, and reduces the wear of the end of the rounded corner 12, thereby realizing the stability of the tensioning roller 17 in the tensioning adjustment of the conveying belt 2, and further solving the problem of time-consuming and laborious manual deviation correction of the conveying belt. Embodiment
[0048] A deviation correction structure and a method for using a gear conveying device, comprising the following steps:
[0049] Firstly, the liquid inlet pipe 6 is installed by being arranged in the side edge of the conveying device body 1, and the hydraulic mode is used to adjust the tensioning force of the conveying belt 2. At this time, the output end of the liquid inlet pipe 6 is connected with the liquid inlet end of the liquid storage tank 8. When the gear normally conveys above the conveying belt 2, the conveying belt 2 is always in a preset tensioning force value. When the belt deviates, the liquid oil is injected through the liquid inlet port of the liquid inlet pipe 6. At this time, the rotary pump head 61 is impacted and rotated by the liquid oil. The liquid oil is stored in the inside of the liquid storage circular plate 62 and is sprayed through the plurality of groups of liquid spraying elbow pipes 63. Under the action of the liquid spraying, the rotary pump head 61 drives the liquid storage circular plate 62 to rotate as a whole, so that the liquid oil can impact the force receiving circular plate 91. At this time, the plunger 9 is impacted by the force receiving circular plate 91 and is pushed outwards. An outward pushing force is applied to the movable push plate 10. In addition, when the movable push plate 10 is pushed by the plunger 9, the push block 11 and the rounded corner 12 move to the side close to the stable column 19. At this time, the inclined surface below the movable column 13 is adapted to slide with the inclined surface above the push block 11, so that the movable column 13 lifts the jacking column 14. At this time, the T-shaped sliding plate 18 connected to one side of the jacking column 14 vertically slides on the inner wall of the lifting sliding groove 181, so that the stable limiting of the tensioning roller 17 is realized. The manual adjustment is converted into liquid-driven driving, and the degree of automation is high. At this time, if the belt needs to be relaxed, the liquid oil can be discharged through the liquid discharge pipe 81.
[0050] Although the above describes the specific embodiments of the present application in order to enable those skilled in the art to understand the present application, the present application is not limited to the scope of the specific embodiments. For those skilled in the art, as long as various changes are within the spirit and scope of the present application defined and determined by the appended claims, all application creations utilizing the concept of the present application are within the protection scope of the present application.
Claims
1. A correction structure, comprising a conveying device body (1), characterized in that: The upper surface of the conveying device body (1) is provided with a conveyor belt (2), and the two sides of the conveyor belt (2) are provided with side seats (3) fixedly installed on the upper surface of the conveying device body (1). The upper end of the side seat (3) is provided with a side guide assembly (4). The inner walls of the two sides of the conveying device body (1) are respectively provided with reserved grooves (5). The inner wall of the reserved groove (5) is penetrated by a liquid inlet pipe (6). The output end of the liquid inlet pipe (6) is fixedly connected to a liquid storage tank (8). The lower end of the liquid storage tank (8) A drain pipe (81) is connected through the liquid storage tank (8). A valve is provided on the outside of the drain pipe (81). A hydraulic drive mechanism is provided at the output end of the liquid storage tank (8). A support frame plate (7) is fixedly connected to the inner wall of the conveying device body (1) at the lower end of the liquid storage tank (8). A stabilizing column (19) is fixedly added to one end of the upper surface of the support frame plate (7). A belt tension adjustment mechanism is provided on the inner side of the stabilizing column (19). The upper end of the belt tension adjustment mechanism is movably abutted against the inner top surface of the conveyor belt (2). The hydraulic drive mechanism includes a rotary pump head (61), which is located at the outlet end of the inlet pipe (6). The outer surface of the rotary pump head (61) is rotatably connected to the inner wall of the storage tank (8) near the inlet pipe (6). The output end of the rotary pump head (61) is connected to a storage disc (62). The output end of the storage disc (62) is fixedly provided with a spray bend (63). There are six sets of spray bends (63), and the outlet ports of the spray bends (63) converge toward the center. The belt tension adjustment mechanism includes a movable column (13) and a lifting column (14). The movable column (13) has a plane and a chamfer at its two ends respectively. The outer surface of the chamfer is slidably connected to the trapezoidal chamfer of the push block (11). The plane at the upper end of the movable column (13) is fixedly connected to the lower end of the lifting column (14). A connecting horizontal plate (15) is fixedly added to the upper end of the lifting column (14). Balance components are installed at both ends of the lower surface of the connecting horizontal plate (15).
2. The correction structure according to claim 1, characterized in that: A force-bearing circular plate (91) is slidably connected to the inner wall of the end of the liquid storage tank (8) away from the liquid inlet pipe (6). A pin (9) is fixedly added to the other end of the force-bearing circular plate (91). The outer surface of the pin (9) is slidably connected to the inner wall of the end of the liquid storage tank (8) away from the liquid inlet pipe (6).
3. The correction structure according to claim 2, characterized in that: The ejector pin (9) and the force-bearing circular plate (91) have a "T" shaped cross-section. The ejector pin (9) has a round head at one end away from the force-bearing circular plate (91). The outer surface of the round head is movably abutted against the movable push plate (10). The lower end of the movable push plate (10) is provided with a limiting component. The limiting component includes a protrusion (101). The protrusion (101) is set in two sets and symmetrically distributed about the vertical center line of the movable push plate (10). The lower outer surface of the protrusion (101) is slidably connected to the inner wall of the groove (102) preset on the upper inner wall of the support frame plate (7).
4. The correction structure according to claim 3, characterized in that: A push block (11) is fixedly installed on the inner wall of the movable push plate (10) away from the ejector pin (9) by bolts. The push block (11) is a right-angled trapezoidal plate structure. The end of the push block (11) away from the movable push plate (10) is provided with a rounded corner (12). The lower surface of the push block (11) is slidably connected to the upper surface of the support frame plate (7).
5. The correction structure according to claim 1, characterized in that: The upper end of the connecting horizontal plate (15) is fixedly installed with a mounting base (16). The mounting base (16) is in the shape of a "U" plate. The upper inner side of the mounting base (16) is rotatably connected with a tension roller (17), and the outer surface of the tension roller (17) is movably connected to the inner top surface of the conveyor belt (2).
6. The correction structure according to claim 5, characterized in that: A T-shaped sliding plate (18) is fixedly added to the side of the lifting column (14) away from the movable push plate (10). The T-shaped sliding plate (18) has a "T"-shaped plate structure. A limiting component is provided on the outer surface of one end of the T-shaped sliding plate (18). The limiting component includes a stabilizing column (19). The lower end of the stabilizing column (19) is fixedly connected to the end of the tension roller (17) away from the liquid storage tank (8). An auxiliary limiting lifting groove (181) is preset on the inner wall of the stabilizing column (19) near the T-shaped sliding plate (18). The inner surface of the lifting groove (181) is slidably connected to the outer surface of the T-shaped sliding plate (18). An elastic component is fixedly added to the bottom surface of the inner cavity of the lifting groove (181).
7. The correction structure according to claim 6, characterized in that: The lower end of the stabilizing column (19) is hinged to the outer surfaces of both sides with hinged arms (20). There are two sets of hinged arms (20), and the hinged arms (20) are symmetrically distributed about the vertical center line of the stabilizing column (19). The other end of the hinged arm (20) is hinged to a crash plate (21), and the inner surface of the crash plate (21) is provided with a buffer crash component.
8. A gear conveying device, characterized in that: Includes the correction structure described in any one of claims 1-7.
Citation Information
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Deviation rectifying and adjusting mechanism for flat belt transmission wheel
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Automatic belt deviation corrector
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