Tire unloading roller way structure of tire vulcanizing machine

By designing an inclined slide and active roller structure in the tire vulcanizing machine, combined with the wear-resistant layer and drive system, the stability of the tire during the transfer process is solved, and the stability of the tire during the transfer process is realized. A new tire production equipment is designed, specifically applied to the tire vulcanizing machine unloading roller structure.

CN223687389UActive Publication Date: 2025-12-19JIANGSU SHENGLIN SCI & TECH CO LTD
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Patent Information

Application Number
CN202422836133.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-12-19
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

When tires are unloaded from the vulcanizing machine after vulcanization, they are prone to jumping or bouncing due to falling, which can lead to unstable transportation and pose a safety hazard.

Method used

A first slide rail with an inclined side of the conveyor belt and a horizontal second slide rail are designed. The second slide rail is equipped with multiple active rollers, and the conveying of the tire is controlled by a drive component. A wear-resistant layer is provided on the driven rollers to increase friction and control the falling speed.

Benefits of technology

It improves the stability of the tires during transportation, reduces the probability of them falling to the ground, avoids tire jumping and bouncing, and ensures a safe and smooth transportation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a tire unloading roller bed structure of a tire vulcanizer, which belongs to the technical field of tire production and comprises a first slide way obliquely arranged on the side edge of a conveyor belt, a second slide way is horizontally arranged on the side edge of one end, far away from the conveyor belt, of the first slide way, and a plurality of driving rollers are arranged on the second slide way and connected with an external driving part; according to the tire transfer trolley, the probability that tires fall on the ground in the transfer process can be reduced, and therefore the stability of the tires in the transfer process is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to tire production equipment technical field, concretely relates to tire vulcanizing machine tire unloading roller way structure. BACKGROUND

[0002] Tire vulcanizing machine is the key equipment in tire manufacturing process, and its main function is to vulcanize the tire in high temperature and high pressure conditions, so that it obtains the required physical properties and dimensional stability. In the operation process of tire vulcanizing machine, the tire unloading roller way plays a vital role, which is responsible for smoothly unloading the vulcanized tire from the vulcanizing machine and conveying it to the subsequent process for further processing.

[0003] In the prior art, the tire is generally taken out from the vulcanizing machine by a mechanical hand after vulcanization, and then the tire is dropped on the inclined tire unloading slide by the mechanical hand. The tire may bounce up again and then fall off the tire unloading slide during the falling process, and the tire will fall at a high speed from the tire unloading slide to the conveying belt under the action of its own weight. There is a certain slope between the tire unloading slide and the conveying belt, and the tire may stand up or bounce up when falling on the conveying belt, as shown in the accompanying drawings. Figure 1 SUMMARY

[0004] Therefore, the tire vulcanizing machine tire unloading roller way structure can reduce the probability of tire falling to the ground during transfer, thereby increasing the stability of tire transfer.

[0005] To solve the above technical problems, the tire vulcanizing machine tire unloading roller way structure comprises a first slide obliquely arranged at the side edge of a conveying belt, a second slide horizontally arranged at the side edge of the end of the first slide away from the conveying belt, the top end of the first slide and the second slide being located on the same horizontal line, a plurality of driving rollers arranged on the second slide, and an external driving member connected with the plurality of driving rollers, the driving rollers being capable of conveying the tire.

[0006] The second slide comprises a second support capable of providing support for the plurality of driving rollers, a support seat arranged on the outer side wall of the second support, a rotating rod arranged on the support seat through a bearing, the rotating rod being capable of rotating on the support seat, a driving motor arranged on the support seat, one end of the driving motor being connected with the end of the rotating rod, the driving motor being capable of driving the rotating rod to rotate, a first pulley arranged on the rotating rod, the rotating rod being capable of rotating together with the first pulley, a second pulley arranged corresponding to the first pulley at the end of each driving roller, the second pulley being capable of rotating together with the driving roller, each two adjacent second pulleys being connected through a belt, the plurality of second pulleys being capable of rotating synchronously, and the second pulley at the end being further connected with the first pulley through a belt, the first pulley being capable of driving the second pulley to rotate together.

[0007] ​The first slide is provided with a plurality of driven rollers which can rotate on the first slide, and each driven roller is externally provided with a wear-resistant layer which can increase the friction between the tire and the driven roller.

[0008] The wear-resistant layer is a bristle layer which can slow down the falling speed of the tire.

[0009] Each driven roller is connected with an external driving member, and the falling speed of the tire can be slowed down through the driven roller.

[0010] Each driven roller is externally provided with a third pulley which can rotate with the driven roller, and each two adjacent third pulleys are connected through a belt, and the plurality of third pulleys can rotate synchronously, and the most end third pulley is connected with the second pulley closest to the first slide on the second support through a belt, and the second pulley can drive the third pulley to rotate.

[0011] Compared with the prior art, the application has at least one of the following beneficial technical effects:

[0012] 1. When the mechanical hand drops the tire on the second slide, the bottom of the tire can be in uniform contact with the second slide, and compared with directly falling on the inclined tire unloading slide, the force on the bottom of the tire is more uniform, thereby avoiding the probability of the tire jumping.

[0013] 2. The driven roller on the inclined first slide is provided with a wear-resistant layer, so that the tire can avoid slipping with the driven roller when falling on the first slide and quickly sliding downward, and the rotation of the driven roller can be controlled through the external driving member, thereby indirectly controlling the falling speed of the tire, so that the tire can be avoided from standing on the conveyor belt or bouncing off the conveyor belt when falling on the ground. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a structural schematic view of the prior art of the utility model;

[0015] Figure 2 It is a structural schematic view of the tire vulcanizing machine tire unloading roller structure of the utility model;

[0016] Figure 3 It is a structural schematic view of the tire vulcanizing machine tire unloading roller structure of the utility model; Figure 2 It is a structural schematic view of the tire vulcanizing machine tire unloading roller structure of the utility model.

[0017] EXPLANATION OF REFERENCE NUMERALS:

[0018] 100, first slide; 101, second pulley; 102, driven roller; 103, wear-resistant layer; 104, third pulley;

[0019] 200, second slide; 201, driving roller; 202, second support; 203, support seat; 204, rotating rod; 205, driving motor; 206, first belt pulley. DETAILED DESCRIPTION

[0020] To make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the following will combine the drawings of the embodiments of the present application to clearly and completely describe the technical solutions of the embodiments of the present application. Figures 2-3 It is obvious that the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art belong to the scope of protection of the present application.

[0021] As shown in Figure 2 , 3 , the first slide 100 is obliquely arranged at the side of the conveying belt, and the tire can fall on the conveying belt along the oblique angle when located on the first slide 100. The first slide 100 is further horizontally provided with a second slide 200 at the side of the end away from the conveying belt. The second slide 200 is provided with a plurality of driving rollers 201. The plurality of driving rollers 201 are connected with an external driving member, and the plurality of driving rollers 201 can be driven to rotate by the external driving member.

[0022] After the tire is vulcanized, the tire is moved to above the second slide 200 by a mechanical hand or a clamping mechanism, and then the tire is dropped on the second slide 200. When the tire falls, the bottom of the tire can uniformly fall on the second slide 200. Then, the plurality of driving rollers 201 are indirectly driven to rotate by the external driving member. The rotation of the plurality of driving rollers 201 can drive the tire to slide to the first slide 100. The tire can fall on the conveying belt through the first slide 100 and move to the next process.

[0023] As shown in Figure 2 , 3 ,

[0024] The second slide 200 comprises a second support 202, a plurality of driving rollers 201 are arranged in a linear array on the second support 202 in the embodiment, and can rotate on the second support 202, a supporting seat 203 is arranged on the outer wall of the second support 202, the supporting seat 203 is arranged in an inverted T-shaped structure on the second support 202, a rotating rod 204 is arranged on the supporting seat 203 through a bearing, the rotating rod 204 can rotate on the supporting seat 203, a driving motor 205 is further arranged on the supporting seat 203, one end of the driving motor 205 is connected with the end of the rotating rod 204, the driving motor 205 can drive the rotating rod 204 to rotate on the supporting seat 203, a first belt pulley 206 is coaxially arranged on the end of the rotating rod 204 away from the driving motor 205, the rotating rod 204 and the first belt pulley 206 can rotate together, a second belt pulley 101 is coaxially arranged on the end of each driving roller 201 close to the supporting frame corresponding to the first belt pulley 206, the second belt pulley 101 can rotate synchronously with the driving roller 201, every two adjacent second belt pulleys 101 are connected through a belt transmission, that is, the plurality of second belt pulleys 101 can rotate synchronously, and the second belt pulley 101 closest to the driving motor 205 is further connected with the first belt pulley 206 through a belt, the first belt pulley 206 can drive the second belt pulley 101 to rotate;

[0025] That is, the driving motor 205 is controlled to work, the output shaft of the driving motor 205 can indirectly drive the first belt pulley 206 to rotate, the first belt pulley 206 can indirectly drive the plurality of second belt pulleys 101 to rotate synchronously, and the plurality of second belt pulleys 101 can drive the plurality of driving rollers 201 to rotate synchronously, and the plurality of driving rollers 201 can convey the tire to the first slide 100.

[0026] As shown in Figure 2 , 3 ,

[0027] In the embodiment, the first slide 100 comprises a first support, a plurality of driven rollers 102 are arranged on the first support in a linear array, and the driven rollers 102 can rotate on the first support, a wear-resistant layer 103 is arranged on the outer surface of each driven roller 102, the wear-resistant layer 103 can increase the friction between the driven roller 102 and the tire, so that the tire can not slip with the driven roller 102 when falling on the first slide 100, and can quickly slide down, and the wear-resistant layer 103 is arranged as a bristle layer in the embodiment, so that the falling speed of the tire on the first slide 100 can be slowed down.

[0028] As shown in Figure 2 , 3 ,

[0029] Each driven roller 102 is connected with an external driving element, that is, by controlling the rotating speed of the driven roller 102, the falling speed of the tire on the first slide 100 can be indirectly controlled, further avoiding high-speed falling on the conveying belt.

[0030] As shown in Figure 2 , 3 ,

[0031] Each driven roller 102 is coaxially provided with a third pulley 104 at one end close to the second pulley 101, the driven roller can rotate together with the third pulley 104, each two adjacent third pulleys 104 are connected through a belt, and the plurality of third pulleys 104 can synchronously rotate through the belt, and the third pulley 104 closest to the second slide 200 is connected with the second pulley 101 closest to the first slide 100 on the second support 202 through a belt, so that the second pulley 101 and the third pulley 104 can synchronously rotate, and then the driving roller and the driven roller can synchronously rotate.

[0032] In addition, it should be further pointed out that, in the description of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting" should be understood in a broad sense, 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 between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0033] The above is the preferred embodiment of the present application, it should be pointed out that, for those skilled in the art, without departing from the principle of the present application, a number of improvements and refinements can be made, these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. Tyre vulcanisation machine tyre unloading rollerway structure comprising a first chute (100) inclined to the side of the conveyor belt, characterised in that: The first slide (100) is horizontally provided with a second slide (200) away from one end side of the conveying belt, and the second slide (200) is provided with a plurality of driving rollers (201), and the plurality of driving rollers (201) are connected with an external driving member.

2. The tire curing press tire removal roller bed structure of claim 1 wherein: The second slide (200) comprises a second support (202), the outer side wall of the second support (202) is provided with a supporting seat (203), the supporting seat (203) is provided with a rotating rod (204) through a bearing, the supporting seat (203) is further provided with a driving motor (205), one end of the driving motor (205) is connected with the end of the rotating rod (204), the rotating rod (204) is further provided with a first belt pulley (206), a second belt pulley (101) is arranged at the end of each driving roller (201) corresponding to the first belt pulley (206), every two adjacent second belt pulleys (101) are connected through a belt transmission, and the most end second belt pulley (101) is further connected with the first belt pulley (206) through a belt.

3. The tire press unloading roller bed structure according to claim 1 or 2, characterized in that: The first slide (100) is provided with a plurality of driven rollers (102), and the outer surface of each driven roller (102) is provided with a wear-resistant layer (103).

4. The tire press unloading roller bed structure of claim 3, wherein: The wear-resistant layer (103) is a brush layer.

5. The tire press unloading roller bed structure of claim 3, wherein: Each driven roller (102) is connected with an external driving member.

6. The tire press unloading roller bed structure of claim 4, wherein: The outer side of each driven roller (102) is provided with a third belt pulley (104), every two adjacent third belt pulleys (104) are connected through a belt, and the most end third belt pulley (104) is connected with the second belt pulley (101) closest to the first slide (100) on the second support (202) through a belt.