Tire side rubber deviation rectifying device
By combining a two-stage correction mechanism and a detection mechanism, the problem of large correction error in the tire sidewall rubber material was solved, achieving high-precision automatic correction and improving the degree of automation and work efficiency.
Patent Information
- Application Number
- CN202520035486.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing tire sidewall rubber correction mechanisms have large correction errors and require manual operation, making it difficult to achieve high-precision automatic correction.
The system employs a combination of a two-stage correction mechanism and a detection mechanism, including a first correction mechanism and a second correction mechanism. The detection mechanism detects the deviation in the position of the rubber material and automatically adjusts the position of the rubber material to achieve two-stage correction and improve the correction accuracy.
It improves the accuracy of correction, reduces manual intervention, increases the degree of automation, and enhances work efficiency.
Smart Images

Figure CN223592060U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of tire processing, and particularly relates to a tire side rubber rectifying device. BACKGROUND
[0002] The tire side rubber in the engineering tire needs to be accurately centered before being attached, and a rectifying mechanism is usually used. The traditional rectifying mechanism usually uses a mechanical structure rectifying and manual adjustment mode, the rectifying error is too large, and manual operation is required, and the demand for high-precision automatic rectifying mechanism is increasingly strong. UTILITY MODEL CONTENT
[0003] The main purpose of the utility model is to provide a tire side rubber rectifying device to solve the problem of large rectifying error in the prior art.
[0004] In order to achieve the above purpose, according to one aspect of the utility model, a tire side rubber rectifying device is provided, which comprises a base, a plurality of first rectifying mechanisms, a plurality of second rectifying mechanisms and a detection mechanism for detecting the position of the rubber, the first rectifying mechanism is connected with the base to adjust the position of the rubber, and the first rectifying mechanisms are arranged along the first direction; the second rectifying mechanism is connected with the base to adjust the position of the rubber again, the second rectifying mechanisms are arranged along the first direction, and the first direction and the conveying direction of the rubber form an included angle; the detection mechanism is connected with the base, and the first rectifying mechanism, the second rectifying mechanism and the detection mechanism are sequentially arranged along the conveying direction of the rubber.
[0005] Further, the first rectifying mechanism and / or the second rectifying mechanism comprises a driving member, and the driving member is located on one side of the first rectifying mechanism or one side of the second rectifying mechanism.
[0006] Further, the first rectifying mechanism comprises a mounting seat, a first conveying roller, a plurality of first rectifying rollers and a first driving assembly, the first conveying roller is rotatably connected with the mounting seat and is used for conveying the rubber; the first rectifying roller is connected with the mounting seat and is movably arranged along the axial direction of the first conveying roller, the first rectifying rollers are arranged in pairs, the pairs of first rectifying rollers are arranged at intervals along the axial direction of the first conveying roller and form a conveying area for conveying the rubber; the first driving assembly is drivingly connected with at least one of the pairs of first rectifying rollers and drives the first rectifying rollers to move along the axial direction of the first conveying roller to change the size or position of the conveying area.
[0007] Further, the first conveying roller is a plurality of, and at least part of the first conveying rollers are arranged at intervals along the conveying direction of the rubber, and the pairs of first rectifying rollers are arranged in the intervals between the first conveying rollers.
[0008] Further, the first deviation correction mechanism is movably arranged relative to the base, and the sidewall rubber deviation correction device further comprises a first deviation correction adjusting assembly connected with the base and drivingly connected with the first deviation correction mechanism, the first deviation correction adjusting assembly driving the first deviation correction mechanism to move along the first direction to adjust the distance between the first deviation correction mechanisms.
[0009] Further, the second deviation correction mechanism comprises a second deviation correction roller and a second driving assembly for conveying and adjusting the rubber material, the second deviation correction roller is rotatably connected with the base and movably arranged relative to the base along an axial direction; the second driving assembly is drivingly connected with the second deviation correction roller and drives the second deviation correction roller to move along the axial direction to adjust the position of the rubber material, and the second driving assemblies of two second deviation correction mechanisms arranged in an axial direction are located at one end of the second deviation correction rollers away from each other.
[0010] Further, the sidewall rubber deviation correction device further comprises a rubber material lifting roller and a rubber material lifting driving member, the rubber material lifting roller is movably connected with the base and rotatably arranged along the rotation axis of the second deviation correction roller, and has a lifting position higher than the second deviation correction roller and a avoiding position lower than the second deviation correction roller; the rubber material lifting driving member is drivingly connected with the rubber material lifting roller and drives the rubber material lifting roller to rotate along the rotation axis of the second deviation correction roller between the avoiding position and the lifting position.
[0011] Further, the length of the rubber material lifting roller is greater than the length of the second deviation correction roller, and the rubber material lifting roller is located at the circumferential side of at least two second deviation correction rollers.
[0012] Further, the detection mechanism comprises a detection switch, a scale and a detection adjusting assembly, the detection switch is electrically connected with the second deviation correction mechanism, and the second deviation correction mechanism controls the deviation correction action according to the detection result of the detection switch; the scale is connected with the base and extends along the first direction, and is used for indicating the position of the detection switch; the detection adjusting assembly is drivingly connected with the detection switch, and the detection adjusting assembly can drive the detection switch to move along the first direction to change the detection position of the detection switch.
[0013] Further, the detection mechanism comprises a plurality of detection mechanisms, each detection mechanism is arranged along the first direction, and the detection switches of adjacent detection mechanisms are arranged in a staggered manner along the conveying direction of the rubber material, so that at least part of the detection switches can overlap.
[0014] The technical scheme of the utility model sets up first deviation rectifying mechanism and second deviation rectifying mechanism to form two-stage deviation rectifying mechanism, thereby improving deviation rectifying precision, and sets up detection mechanism to detect position of rubber material, thereby further improving deviation rectifying precision, specifically, first deviation rectifying mechanism preliminarily adjusts position of rubber material, and then along with conveying of rubber material, rubber material passes through detection mechanism, if detection mechanism detects that position of rubber material still has deviation, second deviation rectifying mechanism is started to rectify again, thereby improving deviation rectifying precision, and manual participation is not needed, thereby improving automation degree of side rubber material deviation rectifying device, and work efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] The drawings accompanying the specification of this application form a part thereof, serve to provide further understanding of the application, and together with the description of the application, serve to explain the application. In the drawings:
[0016] Figure 1 A structure schematic view of a side rubber material deviation rectifying device of the utility model is shown;
[0017] Figure 2 A structure schematic view of a first deviation rectifying structure and a first deviation rectifying adjusting assembly is shown;
[0018] Figure 3 A structure schematic view of a second deviation rectifying mechanism, a material picking roller and a material picking driving piece is shown;
[0019] Figure 4 A structure schematic view of a detection mechanism is shown.
[0020] Among them, the above-mentioned drawings include the following signs:
[0021] 10, base; 20, first deviation rectifying mechanism; 21, mounting seat; 22, first conveying roller; 23, first deviation rectifying roller; 24, first driving assembly; 30, second deviation rectifying mechanism; 31, second deviation rectifying roller; 32, second driving assembly; 40, detection mechanism; 41, detection switch; 42, scale; 43, detection adjusting assembly; 50, first deviation rectifying adjusting assembly; 60, material picking roller; 70, material picking driving piece. DETAILED DESCRIPTION
[0022] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The utility model will be described in detail below with reference to the drawings and in combination with embodiments.
[0023] It should be noted that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as generally understood by those skilled in the art to which the present application belongs.
[0024] In the utility model, in the case that no opposite statement is made, the orientation words such as ''up, down, top, bottom'' used are usually in the direction shown in the drawing, or in the vertical, perpendicular or gravity direction of the components themselves; similarly, for the convenience of understanding and description, ''inner, outer'' refers to the inner and outer of the contour of each component itself, but the above orientation words are not used to limit the utility model.
[0025] In order to solve the problem of large deviation correction error in the prior art, the utility model provides a kind of sidewall rubber deviation correction device.
[0026] As Figures 1 to 4 Shown, a kind of sidewall rubber deviation correction device includes base 10, a plurality of first deviation correction mechanism 20, a plurality of second deviation correction mechanism 30 and for detecting the position of rubber detection mechanism 40, first deviation correction mechanism 20 is connected with base 10, to adjust the position of rubber, first deviation correction mechanism 20 between along the first direction arrangement;Second deviation correction mechanism 30 is connected with base 10, to adjust the position of rubber again, second deviation correction mechanism 30 between along the first direction arrangement, the included angle between first direction and the conveying direction of rubber;Detection mechanism 40 is connected with base 10, along the conveying direction of rubber, first deviation correction mechanism 20, second deviation correction mechanism 30, detection mechanism 40 are sequentially arranged.
[0027] The embodiment is by being provided with first deviation correction mechanism 20 and second deviation correction mechanism 30 two-stage deviation correction mechanism, to improve the deviation correction accuracy, and be provided with detection mechanism 40 and detect the position of rubber, to further improve the deviation correction accuracy, specifically, first deviation correction mechanism 20 is preliminarily adjusted to the position of rubber, and then along with the conveying of rubber, rubber passes through detection mechanism 40, if detection mechanism 40 detects that the position of rubber still has deviation, start second deviation correction mechanism 30 deviation correction again, to improve the deviation correction accuracy, and do not need manual operation, improve the degree of automation of sidewall rubber deviation correction device, it is favorable to improve work efficiency.
[0028] It should be noted that the first direction refers to the direction perpendicular to the conveying direction of rubber, that is, the width direction of rubber, i.e. Figure 1 The direction from the lower left to the upper right in The embodiment is described by taking that first deviation correction mechanism 20 and second deviation correction mechanism 30 are both provided with two as an example, which can convey two rubbers at the same time and can independently correct the position of each rubber.Of course, according to production needs, first deviation correction mechanism 20 and second deviation correction mechanism 30 can also be provided with three or more, which does not affect the deviation correction effect.
[0029] In the embodiment, the first deviation rectifying mechanism 20 and / or the second deviation rectifying mechanism 30 comprises a driving member, which is located on the side away from each other between the first deviation rectifying mechanisms 20 or on the side away from each other between the second deviation rectifying mechanisms 30. The first deviation rectifying mechanism 20 and the second deviation rectifying mechanism 30 of the embodiment both comprise a driving member, and two of the first deviation rectifying mechanism 20 and the second deviation rectifying mechanism 30 are provided, the driving member of the first deviation rectifying mechanism 20 is arranged on the side away from each other between the two first deviation rectifying mechanisms 20, and the driving member of the second deviation rectifying mechanism 30 is arranged on the side away from each other between the two second deviation rectifying mechanisms 30, so that the distance between the two first deviation rectifying mechanisms 20 and the distance between the two second deviation rectifying mechanisms 30 can be shortened, and the sidewall rubber deviation rectifying device can provide smaller spacing for the rubber in the width direction of the rubber, so that the distance between the two rubbers conveyed on the two first deviation rectifying mechanisms 20 can be reduced, and the distance between the two rubbers conveyed on the two second deviation rectifying mechanisms 30 can also be reduced, thereby enabling small-size rubbers to also be rectified by the sidewall rubber deviation rectifying device of the embodiment, and maximizing the compatibility of automatic deviation rectification of small-size rubbers, thereby solving the predicament that small-size rubbers are difficult to realize automatic deviation rectification.
[0030] As Figure 2As shown, in this embodiment, the first correction mechanism 20 includes a mounting base 21, a first conveying roller 22, a plurality of first correction rollers 23, and a first drive assembly 24. The first conveying roller 22 is rotatably connected to the mounting base 21 and is used to convey adhesive material. The first correction rollers 23 are connected to the mounting base 21 and are movably arranged along the axial direction of the first conveying roller 22. The first correction rollers 23 are arranged in pairs, and the pairs of first correction rollers 23 are spaced apart along the axial direction of the first conveying roller 22 to form a conveying area for conveying adhesive material. The first drive assembly 24 is drivenly connected to at least one of the pairs of first correction rollers 23 and drives the first correction roller 23 to move along the axial direction of the first conveying roller 22 to change the size or position of the conveying area. Specifically, in this embodiment, the mounting base 21 has a U-shaped structure with three sequentially connected sides, two of which are arranged opposite each other to provide space for conveying and correcting the adhesive material. The first conveying roller 22 is disposed inside the mounting base 21 and is a cylindrical rod with its length direction perpendicular to the conveying direction of the adhesive material. The two ends of the first conveying roller 22 are rotatably connected to the two opposite sides of the mounting base 21, thus providing support and guidance for the adhesive material, facilitating its conveying. The first correcting roller 23 is cylindrical, with its length direction along the conveying direction of the adhesive material. The adhesive material is disposed between two first correcting rollers 23, i.e., a pair of first correcting rollers 23. The first drive assembly 24 includes a rotating handle, a rotating lead screw, and a positioning slider. The two ends of the rotating lead screw are movably connected to the two opposite sides of the mounting base 21. A positioning slider is sleeved on a rotating lead screw, parallel to the length direction of the first conveying roller 22. Both the rotating lead screw and the positioning slider are located inside the mounting base 21. The positioning slider is connected to the first correcting roller 23. A rotating handle is located outside the mounting base 21 and passes through the side of the mounting base 21, connecting to the rotating lead screw. The rotating handle is located on the side of the rotating lead screw away from the rubber material. In other words, the rotating handle is located on the side of the mounting base 21 of the two first correcting mechanisms 20 that is far from each other, avoiding the rotating handle occupying the space between the two first correcting mechanisms 20, thereby reducing the distance of the rubber material between the two first correcting mechanisms 20, so as to realize the correction of more specifications of rubber material. Thus, when the first drive assembly 24 drives the first correcting roller 23 to move along the width direction of the rubber material, the rotating handle rotates, causing the rotating lead screw to rotate, thereby causing the positioning slider to move along the length direction of the first conveying roller 22. This changes the position of the conveying area of the rubber material, pushing the rubber material to move along its width direction, thereby correcting the position of the rubber material.
[0031] In the embodiment, the first conveying rollers 22 are multiple, and at least part of the first conveying rollers 22 are arranged at intervals along the conveying direction of the rubber material, and a pair of first deviation correcting rollers 23 are arranged in the interval between each first conveying roller 22. Specifically, the mounting seat 21 of the embodiment has a certain height, and multiple first conveying rollers 22 are arranged along the height direction of the mounting seat 21 to facilitate the stable conveying of the rubber material, and two are arranged in the embodiment, and multiple first conveying rollers 22 are also arranged along the length direction of the first deviation correcting rollers 23, and two are also arranged in the embodiment, to provide guidance and support for the first deviation correcting rollers 23. In this way, the first conveying rollers 22 are arranged in two rows and two columns inside the mounting seat 21; along the height direction of the mounting seat 21, the first deviation correcting rollers 23 are arranged in three rows, above and below the first conveying rollers 22 respectively, and a pair of first deviation correcting rollers 23 are arranged between two adjacent first conveying rollers 22 along the height direction of the mounting seat 21, one of the pair of first deviation correcting rollers 23 is arranged at the edge of the mounting seat 21, that is, at one end of the first conveying roller 22, and the other is connected with the first driving assembly 24 and can move along the length direction of the first conveying roller 22, so as to change the conveying area of the rubber material.
[0032] In the embodiment, the first deviation correcting mechanism 20 is movably arranged relative to the base 10, and the sidewall rubber material deviation correcting device further comprises a first deviation correcting adjusting assembly 50, which is connected with the base 10 and drivingly connected with the first deviation correcting mechanism 20. The first deviation correcting adjusting assembly 50 drives the first deviation correcting mechanism 20 to move along the first direction to adjust the distance between the first deviation correcting mechanisms 20. Specifically, the structure of the first deviation correcting adjusting assembly 50 is similar to that of the first driving assembly 24, and it is also arranged on the side away from each other of the two first deviation correcting mechanisms 20. The difference is that the first driving assembly 24 drives the positioning sliding block to drive the first deviation correcting roller 23 to move, while the first deviation correcting adjusting assembly 50 drives the first deviation correcting mechanism 20 to move along the width direction of the rubber material, so that when the adjustment stroke of the first driving assembly 24 is insufficient, the position of the first deviation correcting mechanism 20 can be adjusted as a whole, so as to adjust the position of the rubber material.
[0033] As Figure 3As shown, in the embodiment, the second deviation rectifying mechanism 30 comprises a second deviation rectifying roller 31 and a second driving assembly 32, the second deviation rectifying roller 31 is rotatably connected with the base 10 and is axially movably arranged relative to the base 10, the second driving assembly 32 is drivingly connected with the second deviation rectifying roller 31 and drives the second deviation rectifying roller 31 to axially move to drive the rubber material to adjust position, the second driving assemblies 32 of two second deviation rectifying mechanisms 30 axially adjacent to each other are located at one end of the second deviation rectifying roller 31 away from each other. Specifically, the second deviation rectifying roller 31 is arranged as a cylindrical rod, and the length direction thereof is perpendicular to the conveying direction of the rubber material, the second deviation rectifying roller 31 of the embodiment is arranged as two and coaxially arranged, the two second deviation rectifying rollers 31 are connected through a bearing to enable independent rotation of the two second deviation rectifying rollers 31. The second driving assembly 32 is arranged on the second deviation rectifying roller 31, and the two second driving assemblies 32 are symmetrically arranged, the second driving assembly 32 is arranged on the circumferential side of the second deviation rectifying roller 31 to avoid interference with the axial movement of the second deviation rectifying roller 31, so that the second driving assembly 32 drives the second deviation rectifying roller 31 to move along the width direction of the rubber material, thereby realizing deviation rectification of the rubber material, the two second deviation rectifying rollers 31 are independently driven to be able to simultaneously realize deviation rectification of the rubber material on both sides without affecting each other. Alternatively, the second driving assembly 32 of the embodiment is arranged as an electric cylinder to improve rectification accuracy, of course, the second driving assembly 32 can also be arranged as a pneumatic cylinder, a servo motor, etc., which can drive the second deviation rectifying roller 31 to axially move and meet the accuracy requirement.
[0034] As Figure 3As shown, in the present embodiment, the sidewall rubber rectifying device further comprises a rubber picking roller 60 and a rubber picking driving member 70. The rubber picking roller 60 is movably connected with the base 10, rotatably arranged around the rotation axis of the second rectifying roller 31, and has a position lower than the second rectifying roller 31 and a position higher than the second rectifying roller 31. The rubber picking driving member 70 is drivingly connected with the rubber picking roller 60, and drives the rubber picking roller 60 to rotate around the rotation axis of the second rectifying roller 31 between the position lower than the second rectifying roller 31 and the position higher than the second rectifying roller 31. The rubber picking roller 60 in the present embodiment is arranged as a long cylindrical mechanism, and the length direction of the rubber picking roller 60 is consistent with the length direction of the second rectifying roller 31. The rubber picking driving member 70 is arranged at one end of the rubber picking roller 60. When the rubber picking driving member 70 drives the rubber picking roller 60 to rotate, and the height of the rubber picking roller 60 is higher than the second rectifying roller 31, the rubber picking roller 60 picks up the rubber, and the rubber leaves the surface of the second rectifying roller 31, so that the axial movement of the second rectifying roller 31 does not change the position of the rubber. At this time, the second driving assembly 32 drives the second rectifying roller 31 to move axially to any position within the stroke range of the second driving assembly 32. In this way, when the position deviation of the rubber is greater than the stroke of the second driving assembly 32, the rubber picking roller 60 can pick up the rubber, so that the second driving assembly 32 can be reset without affecting the rubber, such as returning the electric cylinder to zero, thereby improving the rectifying range of the second rectifying mechanism 30. When the second driving assembly 32 normally rectifies the rubber, the rubber picking roller 60 is lower than the second rectifying roller 31, so that the rubber is located on the surface of the second rectifying roller 31, so that when the second rectifying roller 31 moves axially, it can drive the rubber to move, thereby rectifying the position of the rubber.
[0035] In the present embodiment, the length of the rubber picking roller 60 is greater than the length of the second rectifying roller 31, and the rubber picking roller 60 is located at the circumferential side of at least two second rectifying rollers 31, so as to ensure that when the rubber picking roller 60 picks up the rubber, the rubber can leave the surface of the second rectifying roller 31, so that the second driving assembly 32 can be reset without affecting the rubber. Specifically, the length of the rubber picking roller 60 in the present embodiment is located at the circumferential side of two second rectifying rollers 31, and the two ends of the rubber picking roller 60 are flush with the two ends of the two second rectifying rollers 31 away from each other, so as to facilitate the rubber picking roller 60 to pick up the rubber.
[0036] As Figure 4As shown, in the embodiment, the detection mechanism 40 comprises a detection switch 41, a scale 42 and a detection adjustment assembly 43. The detection switch 41 is electrically connected with the second deviation rectifying mechanism 30, and the second deviation rectifying mechanism 30 controls the deviation rectifying action according to the detection result of the detection switch 41. The scale 42 is connected with the base 10 and extends along the first direction, and the scale 42 is used to indicate the position of the detection switch 41. The detection adjustment assembly 43 is drivingly connected with the detection switch 41, and the detection adjustment assembly 43 can drive the detection switch 41 to move along the first direction to change the detection position of the detection switch 41. Specifically, the detection mechanism 40 is arranged on the side of the second deviation rectifying mechanism 30 away from the first deviation rectifying mechanism 20, that is, the rubber material passes through the first deviation rectifying mechanism 20, then passes through the second deviation rectifying mechanism 30, and then passes through the detection switch 41. The length direction of the scale 42 is consistent with the width direction of the rubber material, and the length range of the scale 42 is greater than the moving range of the rubber material along the width direction. The detection switch 41 is arranged above the scale 42 and can move along the length direction of the scale 42 to detect the position of the rubber material. In this way, after the rubber material is rectified by the first deviation rectifying mechanism 20, the detection adjustment assembly 43 drives the detection switch 41 to move along the width direction of the rubber material, so that the detection switch 41 can detect the edge position of the rubber material, the position of the rubber material is indicated by the scale 42, and is fed back to the second deviation rectifying mechanism 30, and the position of the rubber material is rectified again by the second deviation rectifying mechanism 30.
[0037] In the embodiment, the detection mechanism 40 is multiple, each detection mechanism 40 is arranged along the first direction, and is adapted to the arrangement of the two first deviation rectifying mechanisms 20 and the two second deviation rectifying mechanisms 30. Two detection mechanisms 40 are arranged in the embodiment. Considering that the detection switch 41 occupies a certain space along the conveying direction of the rubber material, in order to avoid interference between the two detection switches 41, the detection switches 41 of the adjacent detection mechanisms 40 are arranged in a staggered manner along the conveying direction of the rubber material, so that at least part of the detection switches 41 can overlap. In this way, when the width of the rubber material is small and the distance between the rubber materials on both sides is close, the detection switches 41 on both sides can be staggered and matched with the edges of the rubber materials on both sides to realize the simultaneous detection of the positions of the rubber materials on both sides. The scale 42 does not move relative to the base, and can be arranged to cover one of the widths of the rubber materials on both sides, or one can be arranged in the width range of the rubber materials on both sides.
[0038] The main process sequence of the sidewall rubber rectification device of the embodiment is as follows: firstly, the rubbers on both sides enter into two first rectification mechanisms 20 through guide opening devices, the rubbers are limited in the conveying area under the action of the first rectification rollers 23 by adjusting the first driving assemblies 24, the rubbers on both sides are centered and approximately meet the positions in the width direction of the rubbers by adjusting the first rectification adjusting assemblies 50, the detection switches 41 are adjusted to specified positions by adjusting the detection adjusting assembly 43, when the detection switches 41 detect the position deviation of the rubbers during the working process, the second rectification rollers 31 move a certain distance along the first direction under the action of the second driving assemblies 32, so that the rectification effect is achieved, when the stroke of the second driving assemblies 32 reaches the limit, the rubbers are picked up by the picking rollers 60 under the action of the material adjusting driving members, at this time, the second driving assemblies 32 reset, that is, the electric cylinders return to zero points, the picking rollers 60 fall down, and the rectification production is continued.
[0039] It should be noted that the plurality in the above embodiment means at least two.
[0040] From the above description, it can be seen that the above-mentioned embodiments of the utility model realize the following technical effects:
[0041] 1. The problem of large rectification error in the prior art is solved;
[0042] 2. The first rectification mechanism and the second rectification mechanism are arranged to form a two-stage rectification mechanism, so as to improve the rectification accuracy, and the detection mechanism is arranged to detect the position of the rubber, so as to further improve the rectification accuracy;
[0043] 3. Manual operation is not required, the automation degree of the sidewall rubber rectification device is improved, and the work efficiency is improved.
[0044] Obviously, the above-described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor should belong to the protection scope of the utility model.
[0045] It should be noted that the terms used herein are only for describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form unless the context clearly indicates otherwise, and it should also be understood that when the terms "comprise" and / or "include" are used in the specification, there is a feature, step, work, device, component and / or combination thereof.
[0046] It should be noted that the terms "first", "second", and the like in the description and in the claims of the present application and in the above-described drawings are used only for distinguishing between similar objects and do not necessarily have to describe a specific sequential or chronological order. It is to be understood that the data so distinguished can be interchanged, under appropriate circumstances, such that the embodiments of the present application described herein can be practiced in other than the illustrated or described order.
[0047] The preferred embodiments of the present application have been described above with the specific details. Obviously, the present application can be carried out without the specific details. It is to be understood that the above-described embodiments are only used to illustrate the present application, and the present application can be modified and changed in various ways by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A sidewall compound deviation rectifying device, characterized by, include: Base (10); Multiple first correction mechanisms (20) are connected to the base (10) to adjust the position of the adhesive material, and the first correction mechanisms (20) are arranged in a first direction. Multiple second correction mechanisms (30) are connected to the base (10) to readjust the position of the adhesive material. The second correction mechanisms (30) are arranged along a first direction, which forms an angle with the conveying direction of the adhesive material. The detection mechanism (40) for detecting the position of the rubber material is connected to the base (10). Along the conveying direction of the rubber material, the first correction mechanism (20), the second correction mechanism (30), and the detection mechanism (40) are arranged in sequence.
2. The sidewall compound correction device of claim 1, wherein, The first correction mechanism (20) and / or the second correction mechanism (30) include a drive member located on the side of the first correction mechanism (20) that is far apart from each other or on the side of the second correction mechanism (30) that is far apart from each other.
3. The sidewall compound deviation correcting device according to claim 1, wherein The first correction mechanism (20) includes: Mounting bracket (21); The first conveying roller (22) is rotatably connected to the mounting base (21) and is used to convey the adhesive material; Multiple first correction rollers (23) are connected to the mounting base (21) and are movably arranged along the axial direction of the first conveying roller (22). The first correction rollers (23) are arranged in pairs. The pairs of first correction rollers (23) are spaced apart along the axial direction of the first conveying roller (22) and form a conveying area for conveying the rubber material. A first drive assembly (24) is driven to at least one of a pair of first correction rollers (23) and drives the first correction rollers (23) to move axially along the first conveying roller (22) to change the size or position of the conveying area.
4. The sidewall compound deviation correcting device according to claim 3, wherein There are multiple first conveying rollers (22), and at least some of the first conveying rollers (22) are arranged at intervals along the conveying direction of the rubber material. A pair of first correction rollers (23) are provided in the interval between each first conveying roller (22).
5. The sidewall compound correction device of claim 1, wherein The first correction mechanism (20) is movably disposed relative to the base (10). The tire sidewall rubber correction device also includes a first correction adjustment component (50). The first correction adjustment component (50) is connected to the base (10) and driven to the first correction mechanism (20). The first correction adjustment component (50) drives the first correction mechanism (20) to move along the first direction to adjust the distance between the first correction mechanisms (20).
6. The sidewall compound correction device of claim 1, wherein The second correction mechanism (30) includes: The second correction roller (31) is used for conveying and adjusting the rubber material. The second correction roller (31) is rotatably connected to the base (10) and is axially movable relative to the base (10). A second driving assembly (32) is in driving connection with the second deviation rectifying roller (31) and drives the second deviation rectifying roller (31) to move axially to drive the rubber material to adjust the position, and the second driving assemblies (32) of two second deviation rectifying mechanisms (30) axially adjacent to each other are located at one end of the second deviation rectifying roller (31) away from each other.
7. The sidewall compound deviation correcting device according to claim 6, wherein The sidewall rubber material deviation rectifying device further comprises: A material picking roller (60) is movably connected with the base (10), rotatably arranged around the rotation axis of the second deviation rectifying roller (31), and has a position lower than the second deviation rectifying roller (31) and a position higher than the second deviation rectifying roller (31); A material picking driving member (70) is in driving connection with the material picking roller (60) and drives the material picking roller (60) to rotate around the rotation axis of the second deviation rectifying roller (31) between the position lower than the second deviation rectifying roller (31) and the position higher than the second deviation rectifying roller (31).
8. The sidewall compound deviation correcting device according to claim 7, wherein The length of the material picking roller (60) is greater than the length of the second deviation rectifying roller (31), and the material picking roller (60) is located at the circumferential side of at least two second deviation rectifying rollers (31).
9. The sidewall compound correction device of claim 1, wherein, The detection mechanism (40) comprises: A detection switch (41) is in electrical connection with the second deviation rectifying mechanism (30), and the second deviation rectifying mechanism (30) controls the deviation rectifying action according to the detection result of the detection switch (41); A scale (42) is connected with the base (10) and extends along the first direction, and is used to indicate the position of the detection switch (41); A detection adjusting assembly (43) is in driving connection with the detection switch (41), and the detection adjusting assembly (43) can drive the detection switch (41) to move along the first direction to change the detection position of the detection switch (41).
10. The sidewall compound correction device of claim 9, wherein, There are a plurality of detection mechanisms (40), each of which is arranged along the first direction, and the detection switches (41) of adjacent detection mechanisms (40) are arranged in a staggered manner along the conveying direction of the rubber material, so that at least part of the detection switches (41) can overlap.