Glue rolling and brushing machine for skeleton wheel core
By designing an adhesive roller brush machine for the skeleton wheel core, the adhesive roller assembly rotates in a vertical plane to apply adhesive, and combined with the drive mechanism to drive the skeleton wheel core to rotate, the problems of adhesive application accuracy and uniformity are solved, achieving efficient and precise adhesive application results.
Patent Information
- Application Number
- CN202423138522.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-18
AI Technical Summary
In the existing technology, it is difficult to control the precision and uniformity of the adhesive coating on the outer circumference of the skeleton wheel core. The manual operation is labor-intensive, the adhesive coating efficiency is low, and it is difficult to guarantee the bonding strength.
Design a glue roller brush machine for skeleton wheel cores. The glue application roller assembly rotates in a vertical plane to apply glue, and the drive mechanism drives the skeleton wheel core to rotate, achieving precise and uniform glue application and reducing the amount of manual labor required.
It significantly improves the accuracy and uniformity of applying adhesive to the outer circumference of the skeleton wheel core, reduces the amount of manual labor, saves adhesive, and improves the adhesive application efficiency.
Smart Images

Figure CN223669526U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of gluing device, concretely relates to a glue roller brush machine for skeleton wheel core. BACKGROUND
[0002] The caster is widely used in the technical field of medical instrument, industrial instrument, furniture and the like because of its light operation and flexible steering characteristics. The caster is mainly composed of a skeleton wheel core and a wheel body assembled on the outer circumferential surface of the skeleton wheel core. The wheel body of the solid caster is glued and fixed on the outer circumferential surface of the skeleton wheel core. The processing procedure of the solid caster is as follows: the skeleton wheel core is punched; glue is coated on the outer circumferential surface of the skeleton wheel core; the skeleton wheel core coated with glue is externally glued with the solid wheel body. At present, when the glue is coated on the outer circumferential surface of the skeleton wheel core, the manual brushing method is mostly used, that is, the brush body is used to dip the glue and brush on the outer circumferential surface of the skeleton wheel core. The problem of this manual glue coating method on the outer circumferential surface of the skeleton wheel core is that the glue coating precision and uniformity of the outer circumferential surface of the skeleton wheel core are difficult to control, the manual operation labor is large, and the glue coating efficiency is low, thereby seriously restricting the processing progress of the solid caster and making it difficult to ensure the bonding firmness of the wheel body on the outer circumferential surface of the skeleton wheel core. Therefore, the utility model provides a glue roller brush machine for skeleton wheel core to solve the above technical problems. SUMMARY
[0003] The utility model aims at overcoming the defects in the prior art, providing a glue roller brush machine for skeleton wheel core, when using, the skeleton wheel core is sleeved and clamped and fixed on the clamping joint of the chuck, the glue in the glue storage hopper is poured to a certain depth above the glue coating roller assembly, the working button is started, then the glue coating roller assembly is rotated in the vertical plane driven by the motor one, the driving mechanism drives the skeleton wheel core to rotate in the vertical plane through the clamping disc, the glue coating roller assembly brushes the carried glue on the outer circumferential surface of the skeleton wheel core in the rotating process, which significantly improves the precision and uniformity of brushing glue on the outer circumferential surface of the skeleton wheel core relative to the manual glue coating method on the outer circumferential surface of the skeleton wheel core, simultaneously helps to greatly reduce the manual work amount, saves glue, and significantly improves the glue coating efficiency of the skeleton wheel core; the overall structure design is simple, the preparation, application and implementation feasibility are high, and the utility model has strong practicality.
[0004] In order to achieve the above object, the technical scheme of the utility model is a kind of glue roller brush machine for skeleton wheel core, including main box, the top left end of the main box is equipped with control box, and the top right end is equipped with glue storage hopper, the right side plate of the control box is fixed with chuck corresponding to the upper side of glue storage hopper, the right side of the chuck is equipped with the joint for clamping skeleton wheel core, the inside of the control box is equipped with driving mechanism for driving chuck to rotate in vertical plane direction, the upper port of the glue storage hopper is equipped with glue roller assembly corresponding with chuck, the top right end of the main box is further equipped with motor one for driving glue roller assembly to rotate in vertical plane direction.
[0005] The utility model discloses a kind of glue roller brush machines for skeleton wheel core, when use, skeleton wheel core is clamped and fixed on the joint of chuck, glue is poured into glue storage hopper inside to the certain depth of glue roller assembly, start work button, then motor one drives glue roller assembly to rotate in vertical plane, driving mechanism drives skeleton wheel core to rotate in vertical plane by chuck, glue roller assembly carries the glue that is brushed on the outer circumferential surface of skeleton wheel core in the process of rotation, relative to the mode of manually glue on the outer circumferential surface of skeleton wheel core, the precision and uniformity of the glue that is brushed on the outer circumferential surface of skeleton wheel core are significantly improved, while it helps to greatly reduce the workload of manual participation, save glue, also significantly improve the glue efficiency of skeleton wheel core;Overall structure design is simple, preparation, application implementation feasibility is high, and practicality is strong.
[0006] Preferably, the glue roller assembly includes a rotating shaft, the rotating shaft is sleeved and fixed with a glue roller, the outer circumferential surface of the glue roller is provided with an annular groove matched with the outer circumferential surface of the skeleton wheel core, the left and right side walls of the glue storage hopper are respectively fixed with an installation seat at the upper end, the left and right ends of the rotating shaft are respectively rotatably installed in a corresponding installation seat, and the left or right end of the rotating shaft penetrates through the corresponding installation seat and is in transmission connection with the output shaft of the motor one. The structure of the glue roller assembly is ingenious and reasonable, the outer circumferential surface of the glue roller is provided with an annular groove matched with the outer circumferential surface of the skeleton wheel core, so that the glue carried by the outer circumferential surface of the glue roller can be accurately and efficiently distributed on the outer circumferential surface of the skeleton wheel core during the glue work, which helps to improve the glue work efficiency of the glue roller brush machine.
[0007] Further preferably, the installation seat has an installation slot with an opening facing upward and inside the glue storage hopper, the left and right ends of the rotating shaft are respectively inserted into the installation slot in the corresponding installation seat, and the left or right end of the rotating shaft is connected with the output shaft of the motor one through a shaft coupling. The left and right ends of the rotating shaft are rotatably installed on the upper end of the corresponding left and right side walls of the glue storage hopper through the installation seat, which ensures the convenience of installing the glue roller assembly on the upper port of the glue storage hopper.
[0008] Further preferred technical solutions also have, the shaft is further sleeved and connected with a plurality of glue blocking plates which are located at the left and right sides of the glue roller. When the glue roller rotates to coat the outer circumferential surface of the skeleton wheel core, the glue blocking plates located at the left and right sides of the glue roller can block the glue splashed on the shaft and drop into the glue storage hopper, thereby effectively preventing the glue from flowing along the shaft to the outside of the glue storage hopper, and helping to save glue.
[0009] Further preferred technical solutions also have a lifting assembly, the lifting assembly includes a fixed plate, a movable plate, a plurality of guide rods and a cylinder, the fixed plate is fixedly installed at the top right end of the main box body, the movable plate is located above the fixed plate, the top corner of the fixed plate and the top right end of the main box body are fixedly provided with a vertical guide sleeve penetrating both, the top corner of the movable plate is fixedly provided with a downwardly extending guide rod, the guide rods are in one-to-one correspondence and slide through the corresponding guide sleeves, the lower end surface of the fixed plate is fixedly provided with a cylinder extending into the main box body, the piston rod of the cylinder slidably penetrates the fixed plate and is fixedly arranged on the lower end surface of the movable plate, and the glue storage hopper and the motor are both fixedly arranged on the upper end surface of the movable plate. The lifting assembly can flexibly adjust the height of the glue roller assembly and the glue storage hopper according to the size of the skeleton wheel core to be coated, further improving the flexible applicability of the glue roller brush machine.
[0010] Further preferred technical solutions also have that the right end of the upper end surface of the movable plate is fixedly provided with an L-shaped support seat, and the motor one is fixedly installed on the upper end of the vertical plate of the L-shaped support seat. The motor one is fixedly installed on the movable plate through the L-shaped support seat, and the installation or disassembly mode is simple, ensuring efficient maintenance.
[0011] Further preferred technical solutions also have that the right side plate of the control box is further fixedly provided with a support frame located in the control box, the support frame is fixedly provided with a motor two, the output shaft of the motor two is fixedly provided with a driving wheel, the left end of the central shaft of the chuck slidably penetrates the right side plate of the control box and is fixedly provided with a driven wheel, the driving wheel and the driven wheel are tensioned with a transmission belt, and the motor two, the driving wheel, the driven wheel and the transmission belt constitute the driving mechanism. The driving mechanism has a clever and reasonable structure design, which ensures that the glue roller brush machine of the utility model can be smoothly prepared and implemented.
[0012] Further preferred technical solutions also have, the front side plate outside of the operating box is fixed with a plurality of operating elements and parameter setting screen. Through the operating element, the glue application process can be flexibly controlled, and through the parameter setting screen, the glue application cycle length, the forward and reverse rotation number of the glue roller and chuck and the like can be flexibly set according to the size of the skeleton wheel core to be coated with glue, so that the use flexibility of the glue roller brush machine of the utility model is ensured.
[0013] Further preferred technical solutions also have, the rear side edge of the glue storage hopper is provided with a glue injection nozzle. The glue injection nozzle on the glue storage hopper improves the convenience when the glue is injected into the glue storage hopper, and effectively prevents the glue from dripping during the glue injection process.
[0014] Further preferred technical solutions also have, the bottom of the main box body is fixed with a plurality of rollers, and the rollers are provided with adjustable height stop supporting feet. The bottom of the main box body is provided with the rollers, so that the glue roller brush machine of the utility model can be flexibly pushed to a suitable position, after being pushed to a specified position, the main box body is lifted by the stop supporting feet to stop the rollers, so that the stability during the glue rolling and brushing on the outer circumferential surface of the skeleton wheel core is ensured.
[0015] The utility model has the advantages and beneficial effects that:
[0016] 1. The glue roller brush machine for the skeleton wheel core, when in use, the skeleton wheel core is sleeved and clamped and fixed on the clamping joint of the chuck, the glue storage hopper is poured with glue of a certain depth that covers the glue roller assembly, the work button is started, the glue roller assembly is rotated in the vertical plane by the motor, the driving mechanism drives the skeleton wheel core to rotate in the vertical plane through the clamping disc, the glue carried by the glue roller assembly is brushed on the outer circumferential surface of the skeleton wheel core during the rotation process, the precision and uniformity of the glue brushing on the outer circumferential surface of the skeleton wheel core are significantly improved relative to the manual glue brushing mode on the outer circumferential surface of the skeleton wheel core, the manual work amount is greatly reduced, the glue is saved, and the glue application efficiency of the skeleton wheel core is significantly improved; the overall structure design is simple, the preparation and application implementation feasibility is high, and the practicability is strong.
[0017] 2. The glue roller assembly structure design is ingenious and reasonable, the outer circumferential surface of the glue roller is provided with an annular groove matched with the outer circumferential surface of the skeleton wheel core, so that the glue carried by the outer circumferential surface of the glue roller can be accurately and efficiently distributed on the outer circumferential surface of the skeleton wheel core during the glue application work, and the glue application work efficiency of the glue roller brush machine of the utility model is improved.
[0018] 3. The shaft is further sleeved and fixed with a plurality of glue blocking plates that are located at the left and right sides of the glue roller. When the glue roller rotates to apply glue to the outer circumferential surface of the skeleton wheel core, the glue blocking plates located at the left and right sides of the glue roller can block the glue splashed on the shaft and drop into the glue storage hopper, effectively avoiding the glue from flowing along the shaft to the outside of the glue storage hopper, and saving the glue.
[0019] 4、The lifting assembly can make the glue roller assembly and the glue storage hopper be flexibly adjusted to the adaptive height according to the size of the skeleton wheel core to be coated with glue, and further improves the flexible applicability of the glue rolling brush machine.
[0020] 5、The glue coating process can be flexibly controlled through the control element, and the glue coating cycle length, the forward and reverse rotation number of the glue roller and the chuck and the like can be flexibly set through the parameter setting screen according to the size of the skeleton wheel core to be coated with glue, so that the use flexibility of the glue rolling brush machine is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a right front side perspective view of the glue rolling brush machine for the skeleton wheel core of the utility model;
[0022] Figure 2 is a left front side perspective view of the glue rolling brush machine for the skeleton wheel core of the utility model (part of the control box side plate and the main box body front side plate is hidden);
[0023] Figure 3 is an assembly relationship diagram of the chuck and the driving mechanism;
[0024] Figure 4 is an assembly relationship diagram of the glue storage hopper, the glue roller assembly and the motor one on the lifting assembly;
[0025] Figure 5 is an assembly relationship diagram of the glue roller assembly and the motor one;
[0026] Figure 6 is a use state perspective view of the glue rolling brush machine for the skeleton wheel core of the utility model.
[0027] In the drawing: 1, main box body; 2, control box; 3, chuck; 4, driving mechanism; 5, glue storage hopper; 6, glue roller assembly; 7, motor one; 8, lifting assembly; 9, skeleton wheel core; 1-1, roller; 1-2, stop supporting foot; 2-1, front side plate; 2-2, control element; 2-3, parameter setting screen; 2-4, right side plate; 2-5, supporting frame; 3-1, clamping joint; 4-1, motor two; 4-2, driving wheel; 4-3, driven wheel; 4-4, transmission belt; 5-1, glue injection nozzle; 6-1, rotating shaft; 6-2, mounting seat; 6-2a, mounting groove; 6-3, glue roller; 6-3a, annular groove; 6-4, glue blocking plate; 6-5, shaft coupling; 7-1, L-shaped supporting seat; 8-1, fixed plate; 8-2, movable plate; 8-3, guide rod; 8-4, air cylinder; 8-5, guide sleeve. DETAILED DESCRIPTION
[0028] The specific embodiments of the utility model are further described below in combination with the drawings and examples. The following examples are only used to more clearly illustrate the technical scheme of the utility model, and cannot be used to limit the protection scope of the utility model.
[0029] Embodiments
[0030] As Figures 1-5 shown, the utility model is a kind of glue roller brush machine for skeleton wheel core, including main box body 1, the top left end of main box body 1 is equipped with control box 2, and the top right end is equipped with glue storage hopper 5, the right side plate 2-4 of control box 2 is fixed with chuck 3 corresponding to the upper side of glue storage hopper 5, the right side of chuck 3 is equipped with the clamping joint 3-1 for clamping skeleton wheel core 9, the inside of control box 2 is equipped with driving mechanism 4 for driving chuck 3 to rotate in vertical plane direction, the upper port of glue storage hopper 5 is equipped with glue roller assembly 6 matched with chuck 3, and the top right end of main box body 1 is also equipped with motor one 7 for driving glue roller assembly 6 to rotate in vertical plane direction.
[0031] Preferably, the glue roller assembly 6 includes a shaft 6-1, the shaft 6-1 is sleeved and fixed with a glue roller 6-3, the outer circumferential surface of the glue roller 6-3 is provided with an annular groove 6-3a matched with the outer circumferential surface of the skeleton wheel core 9, the left and right side walls of the glue storage hopper 5 are respectively fixed with an installation seat 6-2 at the upper end, the left and right ends of the shaft 6-1 are respectively rotatably installed on a corresponding installation seat 6-2, and the left or right end of the shaft 6-1 passes through the corresponding installation seat 6-2 and is drivingly connected with the output shaft of the motor one 7.
[0032] Further preferably, the installation seat 6-2 has an installation groove 6-2a with an opening facing upward and the inside of the glue storage hopper 5, the left and right ends of the shaft 6-1 are respectively inserted into the installation groove 6-2a on the corresponding installation seat 6-2, and the left or right end of the shaft 6-1 is connected with the output shaft of the motor one 7 through a shaft coupling 6-5.
[0033] Further preferably, the shaft 6-1 is also sleeved and fixed with a plurality of glue blocking plates 6-4 spaced apart on the left and right sides of the glue roller 6-3.
[0034] Preferably, the lifting assembly 8 further comprises a fixed plate 8-1, a movable plate 8-2, a plurality of guide rods 8-3 and a pneumatic cylinder 8-4, the fixed plate 8-1 is fixedly installed at the top right end of the main box body 1, the movable plate 8-2 is located above the fixed plate 8-1, the top corner of the fixed plate 8-1 and the top right end of the main box body 1 are fixedly provided with a guide sleeve 8-5 vertically penetrating both, the top corner of the movable plate 8-2 is fixedly provided with a downwardly extending guide rod 8-3, the guide rod 8-3 is slidably connected to the corresponding guide sleeve 8-5, the lower end surface of the fixed plate 8-1 is fixedly provided with a pneumatic cylinder 8-4 extending into the main box body 1, the piston rod of the pneumatic cylinder 8-4 is movably connected to the lower end surface of the movable plate 8-2, and the glue storage hopper 5 and the motor 7 are fixedly arranged on the upper end surface of the movable plate 8-2.
[0035] Further preferably, the upper end surface of the movable plate 8-2 is fixedly provided with an L-shaped support seat 7-1, and the motor 7 is fixedly installed on the upper end of the vertical plate of the L-shaped support seat 7-1.
[0036] Preferably, the right side plate 2-4 of the control box 2 is further fixedly provided with a support frame 2-5 located in the control box 2, the support frame 2-5 is fixedly provided with a motor 4-1, the output shaft of the motor 4-1 is fixedly provided with a driving wheel 4-2, the left end of the central shaft of the chuck 3 is movably connected to the right side plate 2-4 of the control box 2 and is fixedly provided with a driven wheel 4-3, the driving wheel 4-2 and the driven wheel 4-3 are tensioned by a transmission belt 4-4, and the motor 4-1, the driving wheel 4-2, the driven wheel 4-3 and the transmission belt 4-4 constitute the driving mechanism 4.
[0037] Further preferably, the front side plate 2-1 of the control box 2 is fixedly provided with a plurality of control elements 2-2 and a parameter setting screen 2-3 on the outer surface. The plurality of control elements 2-2 include a start switch, an emergency stop switch, a running indicator, a power indicator and the like.
[0038] Further preferably, the rear side edge of the glue storage hopper 5 is provided with a glue injection nozzle 5-1.
[0039] Further preferably, the bottom of the main box body 1 is fixedly provided with a plurality of rollers 1-1, and the rollers 1-1 are provided with height-adjustable stop supporting legs 1-2.
[0040] The use principle of the glue roller brush machine for the skeleton wheel core is as follows:
[0041] Step 1: Determine the outer circumferential dimensions of the skeleton wheel core 9 to be coated with glue, and adjust the stroke of the cylinder 8-4 to extend the piston rod to the preset position so that the outer circumferential surface of the glue skeleton wheel core 9, which is fitted and clamped on the clamping head 3-1 of the chuck 3, can effectively fit with the inner wall of the annular groove 6-3a of the glue coating roller 6-3 during the glue coating operation.
[0042] Step 2: Turn on the power switch and set the working time for each coating cycle, as well as the number of forward and reverse rotations and the pause time of the chuck 3 and coating roller 6-3 through the parameter setting screen 2-3;
[0043] Step 3: Pour glue into the glue storage hopper 5, and make the glue level cover 1 / 4 of the glue application roller 6-3;
[0044] Step 4: As Figure 6 As shown, the skeleton wheel core 9 to be coated with glue is fitted and clamped onto the clamping joint 3-1 on the chuck 3. Then, the start switch on the front side plate 2-1 of the control box 2 is pressed, and the piston rod of the cylinder 8-4 begins to extend, causing the glue-applying roller 6-3 to reach the set height. At this time, the outer circumferential surface of the skeleton wheel core 9 fits against the inner wall of the annular groove 6-3a on the outer circumferential surface of the glue-applying roller 6-3. At the same time, the motor 2 4-1 drives the skeleton wheel core 9 to rotate through the chuck 3, and the motor 1 7 drives the glue-applying roller 6-3 to rotate. The skeleton wheel core 9 and the glue-applying roller 6-3 rotate relative to each other within the set working cycle so that the glue is evenly and accurately coated on the outer circumferential surface of the skeleton wheel core 9.
[0045] Step 5: After the set working time is reached, the piston rod of cylinder 8-4 resets, and the glue-applying roller 6-3 falls with the movable plate 8-2 to separate the skeleton wheel core 9 from the glue-applying roller 6-3. At the same time, motor 1 7 and motor 2 4-1 stop rotating, and the glue-applied skeleton wheel core 9 is removed, completing one glue-applying cycle.
[0046] This utility model discloses a glue roller brush machine for a skeleton wheel core. In use, the skeleton wheel core is fitted and secured to the clamping joint of a chuck. Glue is poured into the glue storage hopper to a depth exceeding the glue application roller assembly. Upon activation, the motor drives the glue application roller assembly to rotate in a vertical plane, and the drive mechanism, via the clamping plate, drives the skeleton wheel core to rotate in the vertical plane. During rotation, the glue application roller assembly applies the carried glue to the outer circumferential surface of the skeleton wheel core. Compared to manual glue application, this significantly improves the accuracy and uniformity of glue application on the outer circumferential surface of the skeleton wheel core. It also greatly reduces manual labor, saves glue, and significantly improves the glue application efficiency of the skeleton wheel core. The overall structure is simple in design, highly feasible in preparation and application, and highly practical.
[0047] The above merely is the preferred implementation manner of the present application, and it should be noted that, for the ordinary skilled in the art, without departing from the technical principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should also be considered as the protection scope of the present application.
Claims
1. A glue roller for a skeleton wheel core, characterized in that, The main housing (1) includes a control box (2) at the top left end and a glue storage hopper (5) at the top right end. A chuck (3) corresponding to the glue storage hopper (5) is fixed on the right side plate (2-4) of the control box (2). A chuck (3) is located above the glue storage hopper (5). A chuck connector (3-1) for engaging the skeleton wheel core (9) is provided on the right side of the chuck (3). A drive mechanism (4) for driving the chuck (3) to rotate in the vertical plane is provided inside the control box (2). A glue coating roller assembly (6) corresponding to the chuck (3) is provided at the upper port of the glue storage hopper (5). A motor (7) for driving the glue coating roller assembly (6) to rotate in the vertical plane is also provided at the top right end of the main housing (1).
2. The glue roller brush machine for the skeleton wheel core as described in claim 1, characterized in that, The glue-applying roller assembly (6) includes a rotating shaft (6-1), on which a glue-applying roller (6-3) is sleeved and fixed. The outer circumferential surface of the glue-applying roller (6-3) is provided with an annular groove (6-3a) that is adapted to the outer circumferential surface of the skeleton wheel core (9). The upper ends of the left and right side walls of the glue storage hopper (5) are respectively fixed with a mounting seat (6-2). The left and right ends of the rotating shaft (6-1) are respectively rotatably mounted on a corresponding mounting seat (6-2), and the left or right end of the rotating shaft (6-1) passes through the corresponding mounting seat (6-2) and is connected to the output shaft of the motor (7) for transmission.
3. The glue roller brush machine for the skeleton wheel core as described in claim 2, characterized in that, The mounting base (6-2) has an mounting groove (6-2a) with an opening facing upward and inside the glue storage hopper (5). The left and right ends of the rotating shaft (6-1) are respectively inserted into the mounting groove (6-2a) on the corresponding mounting base (6-2), and the left or right end of the rotating shaft (6-1) is connected to the output shaft of the motor (7) through a coupling (6-5).
4. The glue roller brush machine for the skeleton wheel core as described in claim 3, characterized in that, The rotating shaft (6-1) is also fitted with several baffles (6-4) spaced apart on the left and right sides of the coating roller (6-3).
5. The glue roller brush machine for the skeleton wheel core as described in claim 1, characterized in that, It also includes a lifting assembly (8), which includes a fixed plate (8-1), a movable plate (8-2), several guide rods (8-3), and a cylinder (8-4). The fixed plate (8-1) is fixedly installed at the top right end of the main housing (1), and the movable plate (8-2) is located above the fixed plate (8-1). The top corner of the fixed plate (8-1) and the top right end of the main housing (1) are fixed with guide sleeves (8-5) that penetrate vertically through them. The movable plate (8-2) has... A guide rod (8-3) extending downward is fixed at the top corner. The guide rod (8-3) slides through the corresponding guide sleeve (8-5) one by one. A cylinder (8-4) extending into the main box (1) is fixed on the lower end face of the fixed plate (8-1). The piston rod of the cylinder (8-4) moves through the fixed plate (8-1) and is fixed on the lower end face of the movable plate (8-2). The glue storage hopper (5) and the motor (7) are both fixed on the upper end face of the movable plate (8-2).
6. The glue roller brush machine for the skeleton wheel core as described in claim 5, characterized in that, An L-shaped support base (7-1) is fixedly provided on the right end of the upper surface of the movable plate (8-2), and the motor (7) is fixedly installed on the upper end of the vertical plate of the L-shaped support base (7-1).
7. The glue roller brush machine for a skeleton wheel core as described in claim 1, characterized in that, The right side plate (2-4) of the control box (2) is also fixedly provided with a support frame (2-5) located inside the control box (2). The support frame (2-5) is fixedly provided with a second motor (4-1). The output shaft of the second motor (4-1) is fixedly provided with a drive wheel (4-2). The left end of the central shaft of the chuck (3) moves through the right side plate (2-4) of the control box (2) and is fixedly provided with a driven wheel (4-3). A transmission belt (4-4) is tensioned between the drive wheel (4-2) and the driven wheel (4-3). The second motor (4-1), the drive wheel (4-2), the driven wheel (4-3) and the transmission belt (4-4) constitute the drive mechanism (4).
8. The glue roller brush machine for a skeleton wheel core as described in any one of claims 1 to 7, characterized in that, Several control elements (2-2) and parameter setting screen (2-3) are fixed on the outer side of the front panel (2-1) of the control box (2).
9. The glue roller brush machine for a skeleton wheel core as described in claim 8, characterized in that, The rear edge of the glue storage hopper (5) is provided with a glue injection nozzle (5-1).
10. The glue roller brush machine for a skeleton wheel core as described in claim 9, characterized in that, The bottom of the main housing (1) is fixed with several rollers (1-1), and the rollers (1-1) have adjustable height stop support feet (1-2).