Rubber joint auxiliary machine for rubber belt production

By designing an auxiliary machine for rubber seam production, the problems of raw belt breakage and poor winding of cured belt were solved, the vulcanization quality of raw belt was improved and the winding stability of cured belt was enhanced, making the equipment easier to operate and improving its practicality.

CN116214788BActive Publication Date: 2026-01-30QINGDAO GUANGNENG RUBBERS & PLASTICS CHEM CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202111477513.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-06
Publication Date
2026-01-30
Estimated Expiration
2041-12-06

AI Technical Summary

Technical Problem

Existing auxiliary machines for rubber seam production are prone to causing raw rubber to break when pulling raw rubber, and the winding effect of the cured rubber is poor, which affects the vulcanization quality and the difficulty of unwinding the cured rubber.

Method used

A rubber seam auxiliary machine for rubber belt production was designed, including a seam traction mechanism, a raw belt traction mechanism, a cured belt winding mechanism, and a vulcanizing mechanism. The machine reduces the tension of the raw belt by winding the carrier belt, adjusts the height of the winding roller using a telescopic cylinder, increases friction by setting a pneumatic cylinder to drive the pressure roller to rise and fall, and uses embossing components for embossing.

Benefits of technology

It effectively reduces raw strip breakage, improves raw strip vulcanization quality, ensures the stability of cooked strip winding, facilitates cooked strip unwinding, and improves the economic practicality of the equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure HDA0003393962550000011
    Figure HDA0003393962550000011
  • Figure HDA0003393962550000021
    Figure HDA0003393962550000021
  • Figure HDA0003393962550000031
    Figure HDA0003393962550000031
Patent Text Reader

Abstract

This invention discloses a rubber seam auxiliary machine for rubber belt production, comprising a first base, a second base, support columns, a raw belt operating platform, and a raw belt winding mechanism. A seam traction mechanism is disposed on the upper end of the first base. The second base is located directly to the right of the first base. Several first idler roller frames are disposed on the upper left side of the second base. A first lifting seat is installed on the upper right side of the second base. A raw belt traction mechanism is disposed on the upper end of the first lifting seat. A second idler roller frame is installed on the left end of the first lifting seat. A carrier belt winding mechanism is disposed on the right end of the first lifting seat. Four support columns are disposed, all located directly to the right of the second base. A vulcanization mechanism is jointly installed on the upper end of the four support columns. This rubber seam auxiliary machine for rubber belt production reduces the probability of raw belt breakage, thereby improving the vulcanization quality of the raw belt. It also features high traction stability, good winding effect, and strong economic practicality.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of rubber belt production technology, and in particular to a rubber joint auxiliary machine for rubber belt production. Background Technology

[0002] Conveyor belts are the main components of belt conveyors, primarily used for large-scale continuous transportation in sectors such as coal, mining, metallurgy, chemicals, construction, and transportation. The transported materials include lumps, powders, pastes, and packaged goods. From a microscopic perspective, conveyor belts mainly consist of three parts: the skeleton material, the cover layer, and the base material. The cover layer is the key component determining its performance and application. Based on the raw materials used in the cover layer, the conveyor belt industry can be divided into two main categories: heavy-duty conveyor belts and light-duty conveyor belts. The former uses rubber (including natural and synthetic rubber) as the main raw material, hence also called rubber conveyor belts, and its application is concentrated in heavy industry and infrastructure construction. The latter mainly uses polymer materials and is primarily used in light industries such as food and electronics.

[0003] Existing auxiliary machines for rubber jointing in rubber belt production have the following drawbacks: 1. When pulling raw rubber to the vulcanizing equipment, most existing auxiliary machines for rubber jointing in rubber belt production directly pull the initially bonded raw rubber, which easily leads to raw rubber breakage and affects the subsequent vulcanization quality; 2. The winding effect of the cured rubber in existing auxiliary machines for rubber jointing in rubber belt production is not good. Because the height of the cured rubber winding roller remains unchanged in the existing technology, as the thickness of the cured rubber increases, the angle between the cured rubber and the winding roller gradually decreases, causing the cured rubber near the winding roller to become increasingly tight, and even damaged, and it is also difficult to remove the cured rubber roll. Therefore, we propose an auxiliary machine for rubber jointing in rubber belt production. Summary of the Invention

[0004] The main objective of this invention is to provide a rubber joint auxiliary machine for rubber belt production, which can effectively solve the problems in the background art.

[0005] To achieve the above objectives, the technical solution adopted by the present invention is as follows:

[0006] A rubber seam auxiliary machine for rubber belt production includes a first base, a second base, support columns, a cured belt operating platform, and a cured belt winding mechanism. A seam traction mechanism is installed on the upper end of the first base. The second base is located directly to the right of the first base. Several first idler roller frames are installed on the upper left side of the second base. A first lifting seat is installed on the upper right side of the second base. A raw belt traction mechanism is installed on the upper end of the first lifting seat. A second idler roller frame is installed on the left end of the first lifting seat. A carrier belt winding mechanism is installed on the right end of the first lifting seat. Four support columns are provided, all located directly to the right of the second base. A vulcanizing mechanism is installed on the upper end of the four support columns. The cured belt operating platform is located directly to the right of the support columns. A second lifting seat is installed on the upper left side of the cured belt operating platform. A third idler roller frame is installed on the upper end of the second lifting seat. The cured belt winding mechanism is located directly to the right of the cured belt operating platform. The first, second, and third idler roller frames have identical structures. The seam traction mechanism and the raw belt traction mechanism have identical structures.

[0007] Preferably, the seam traction mechanism includes a base plate, and two base plates are provided. Both base plates are fixedly connected to the upper end of the first base. Two mounting columns are installed on the upper end of the base plates. Limiting plates are installed on the ends of the two mounting columns that are close to each other. A top plate is installed on the upper end of the two mounting columns. A pneumatic cylinder is installed on the upper end of the top plate. The output end of the pneumatic cylinder passes through the top plate and is fixedly installed with a first bearing seat. The left and right ends of the first bearing seat are slidably connected to the two limiting plates, respectively. A pressure roller is movably connected between the two first bearing seats through a bearing. A traction motor is installed on the upper end of the front base plate, and a fixing block is installed on the upper end of the rear base plate. A traction roller is installed on the output end of the traction motor. The rear end of the traction roller is movably connected to the fixing block. The traction roller is located directly below the pressure roller.

[0008] Preferably, the first idler frame includes a second bearing seat, and two second bearing seats are provided. The lower ends of the two second bearing seats are fixedly connected to the upper end of the second base, and the two second bearing seats are movably connected to the idler through a bearing.

[0009] Preferably, the carrier tape winding mechanism includes a mounting frame, the left end of which is fixedly connected to the right end of the first heightening seat, and a first winding motor is mounted on the rear end of the mounting frame. The output end of the first winding motor passes through the mounting frame and is fixedly mounted with a first winding roller.

[0010] Preferably, the vulcanizing mechanism includes a housing, with the four corners of the lower end of the housing fixedly connected to the upper ends of four support columns respectively. A feed inlet is opened at the left end of the housing, and a feed roller is movably connected to the front and rear walls of the feed inlet. A discharge outlet is opened at the right end of the housing, and a discharge roller is movably connected to the front and rear walls of the discharge outlet. A hydraulic cylinder is installed at the upper end of the housing, and an upper heating plate is fixedly installed at the output end of the hydraulic cylinder through the upper wall of the housing. A lower heating plate is fixedly installed on the front and rear walls of the inner cavity of the housing. The upper heating plate is located directly above the lower heating plate, and the upper surface of the lower heating plate is flush with the upper part of the outer surface of the feed roller. An embossing component is provided on the right side of the inner cavity of the housing.

[0011] Preferably, the embossing component includes gears and an embossing motor. There are two gears, which are symmetrically distributed vertically and mesh with each other. The front end of the lower gear is movably connected to the front wall of the inner cavity of the outer casing via a rotating shaft. Embossing rollers are fixedly installed at the rear ends of both gears. The rear ends of both embossing rollers are movably connected to the rear wall of the inner cavity of the outer casing via rotating shafts. The rear end of the embossing motor is fixedly connected to the front end of the outer casing. The output end of the embossing motor passes through the front wall of the outer casing and is fixedly connected to the upper gear.

[0012] Preferably, the tape winding mechanism includes a third base, a rotary cylinder is mounted on the upper end of the third base, a U-shaped mounting rod is mounted on the output end of the rotary cylinder, the front and rear ends of the U-shaped mounting rod are movably connected to connecting plates via rotating shafts, a U-shaped mounting frame is fixedly mounted between the two connecting plates, a movable plate is movably connected to the front left end of the U-shaped mounting frame, two telescopic cylinders are movably mounted on the left end of the U-shaped mounting rod via ball shafts, the output ends of the two telescopic cylinders are movably connected to the rear lower end of the U-shaped mounting frame and the lower end of the movable plate, respectively, a second winding motor is mounted on the rear end of the U-shaped mounting frame, the output end of the second winding motor passes through the rear of the U-shaped mounting frame and is mounted on a second winding roller, the front end of the second winding roller is movably engaged with the rear end of the movable plate.

[0013] Preferably, the seam traction mechanism is higher than the raw tape traction mechanism, and the second base is flush with the ripe tape operating platform.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] 1. In this invention, by setting a carrier belt to pull the green belt, the probability of green belt breakage is reduced and the vulcanization quality of the green belt is improved. When pulling the green belt, the green belt that has been initially bonded is first stacked on top of the carrier belt. The carrier belt is then wound up by the carrier belt winding mechanism, so that the carrier belt carries the green belt into the vulcanization mechanism, reducing the tensile force on the green belt. Finally, the carrier belt is recycled for reuse.

[0016] 2. In this invention, a pre-wound strip winding mechanism is set up to wind up the pre-wound strip. As the thickness of the pre-wound strip increases, the output end of the telescopic cylinder extends and drives the U-shaped mounting frame to rotate upward, thereby increasing the height of the second winding roller. This maintains a constant angle between the pre-wound strip and the pre-wound strip roll, preventing the pre-wound strip from becoming tighter and tighter. After winding is completed, a rotary cylinder is set up to rotate the U-shaped mounting frame ninety degrees, making it easier for the operator to pick up the pre-wound strip roll.

[0017] 3. In this invention, by setting a joint traction mechanism and a raw tape traction mechanism to jointly traction the raw tape, and by setting a pneumatic cylinder to drive the pressure roller to rise and fall, the pressure roller presses the raw tape, increasing the friction between the raw tape and the traction roller, and improving the stability of traction;

[0018] 4. In this invention, the embossing process is completed on the vulcanized strip by setting an embossing component, and two embossing rollers are driven by two gears to rotate synchronously relative to each other, so as to pull the vulcanized strip while embossing, thereby improving the economic practicality of the device. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of a rubber joint auxiliary machine for rubber belt production according to the present invention;

[0020] Figure 2 This is a diagram illustrating the usage effect of a rubber joint auxiliary machine for rubber belt production according to the present invention.

[0021] Figure 3 This is a schematic diagram of the overall structure of the joint traction mechanism of a rubber joint auxiliary machine for rubber belt production according to the present invention.

[0022] Figure 4 This is a schematic diagram of the overall structure of the first idler roller frame of a rubber joint auxiliary machine for rubber belt production according to the present invention;

[0023] Figure 5 This is a schematic diagram of the overall structure of the carrier tape winding mechanism of a rubber joint auxiliary machine for rubber tape production according to the present invention.

[0024] Figure 6 This is a schematic diagram of the overall structure of the vulcanization mechanism of a rubber joint auxiliary machine for rubber belt production according to the present invention.

[0025] Figure 7 This is a schematic diagram of the overall structure of the embossing component of a rubber joint auxiliary machine for rubber belt production according to the present invention;

[0026] Figure 8 This is a schematic diagram of the overall structure of the rubber strip winding mechanism of a rubber joint auxiliary machine for rubber strip production according to the present invention.

[0027] In the diagram: 1. First base; 2. Seam traction mechanism; 3. Second base; 4. First idler frame; 5. First heightening seat; 6. Raw tape traction mechanism; 7. Second idler frame; 8. Carrier tape winding mechanism; 9. Support column; 10. Vulcanizing mechanism; 11. Finished tape operating platform; 12. Second heightening seat; 13. Third idler frame; 14. Finished tape winding mechanism; 15. Carrier tape; 16. Raw tape; 17. Finished tape; 21. Base plate; 22. Mounting column; 23. Limiting plate; 24. Top plate; 25. Pneumatic cylinder; 26. First bearing seat; 27. Pressure roller; 28. Traction motor; 29. ​​Traction roller; 30. Fixed... 31. Fixed block; 32. Second bearing seat; 43. Idler roller; 44. Mounting frame; 45. First take-up motor; 46. First take-up roller; 57. Housing; 58. Feed inlet; 59. Feed outlet; 50. Feed outlet; 51. Exit roller; 52. Hydraulic cylinder; 53. Upper heating plate; 54. Lower heating plate; 65. Embossing component; 66. Embossing motor; 67. Embossing roller; 68. Gear; 79. Third base; 70. Rotary cylinder; 71. U-shaped mounting rod; 72. Connecting plate; 73. U-shaped mounting frame; 74. Telescopic cylinder; 75. Second take-up motor; 76. Second take-up roller; 77. Movable plate. Detailed Implementation

[0028] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0029] In the description of this invention, it should be noted that the terms "upper," "lower," "inner," "outer," "front end," "rear end," "both ends," "one end," and "the other end," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0030] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0031] like Figure 1-8As shown, a rubber seam auxiliary machine for rubber belt production includes a first base 1, a second base 3, a support column 9, a raw belt operating platform 11, and a raw belt winding mechanism 14. A seam traction mechanism 2 is installed on the upper end of the first base 1. The second base 3 is located directly to the right of the first base 1. Several first roller frames 4 are installed on the upper left side of the second base 3. A first lifting seat 5 is installed on the upper right side of the second base 3. A raw belt traction mechanism 6 is installed on the upper end of the first lifting seat 5. A second roller frame 7 is installed on the left end of the first lifting seat 5. A carrier belt winding mechanism is installed on the right end of the first lifting seat 5. The winding mechanism 8 has four support columns 9, all of which are located to the right of the second base 3. The vulcanizing mechanism 10 is installed on the upper end of the four support columns 9. The molten strip operating platform 11 is located to the right of the support columns 9. The upper left part of the molten strip operating platform 11 is equipped with a second lifting seat 12. The upper end of the second lifting seat 12 is equipped with a third idler frame 13. The molten strip winding mechanism 14 is located to the right of the molten strip operating platform 11. The first idler frame 4, the second idler frame 7 and the third idler frame 13 have the same structure. The seam traction mechanism 2 and the raw strip traction mechanism 6 have the same structure.

[0032] The seam traction mechanism 2 includes a base plate 21, of which two base plates 21 are provided. Both base plates 21 are fixedly connected to the upper end of the first base 1. Two mounting columns 22 are installed on the upper end of the base plates 21. Limiting plates 23 are installed on the ends of the two mounting columns 22 that are close to each other. A top plate 24 is installed on the upper end of the two mounting columns 22. A pneumatic cylinder 25 is installed on the upper end of the top plate 24. The output end of the pneumatic cylinder 25 passes through the top plate 24 and is fixedly installed with a first bearing seat 26. The left and right ends of the first bearing seat 26 are slidably connected to the two limiting plates 23, respectively. A pressure roller 27 is movably connected between the two first bearing seats 26 through a bearing. A traction motor 28 is installed on the upper end of the front base plate 21, and a fixing block 30 is installed on the upper end of the rear base plate 21. A traction roller 29 is installed at the output end of the traction motor 28. The rear end of the traction roller 29 is movably connected to the fixing block 30. The traction roller 29 is located directly below the pressure roller 27. The traction roller 29 is driven to rotate by the output end of the traction motor 28. The traction roller 29 drives the raw belt and the carrier belt to move. The pressure roller 27 is raised and lowered by the pneumatic cylinder 25, which presses the raw belt and increases the friction between the raw belt and the traction roller 29. The pressure roller 27 can only be raised and lowered in the vertical direction by the limit plate 23.

[0033] The first idler frame 4 includes a second bearing seat 31. There are two second bearing seats 31. The lower ends of the two second bearing seats 31 are fixedly connected to the upper end of the second base 3. The two second bearing seats 31 are connected to the idler 32 through a bearing. The outer surface of the idler 32 is provided with a rubber layer to increase the friction between the idler 32 and the material.

[0034] The carrier tape winding mechanism 8 includes a mounting frame 41. The left end of the mounting frame 41 is fixedly connected to the right end of the first heightening seat 5. A first winding motor 42 is installed at the rear end of the mounting frame 41. The output end of the first winding motor 42 passes through the mounting frame 41 and is fixedly installed with a first winding roller 43. The first winding motor 42 drives the first winding roller 43 to rotate, and the rotating first winding roller 43 winds up the carrier tape 15.

[0035] The vulcanizing mechanism 10 includes a housing 51. The four corners of the lower end of the housing 51 are fixedly connected to the upper ends of four support columns 9. A feed inlet 52 is opened at the left end of the housing 51. A feed roller 53 is movably connected to the front and rear walls of the feed inlet 52. A discharge outlet 54 is opened at the right end of the housing 51. A discharge roller 55 is movably connected to the front and rear walls of the discharge outlet 54. A hydraulic cylinder 56 is installed at the upper end of the housing 51. The output end of the hydraulic cylinder 56 passes through the upper wall of the housing 51 and is fixedly installed with an upper heating plate 57. The front wall and rear wall of the inner cavity of the housing 51... A lower heating plate 58 is fixedly installed together, and an upper heating plate 57 is located directly above the lower heating plate 58. The upper end face of the lower heating plate 58 is flush with the upper part of the outer surface of the feed roller 53. An embossing component 59 is provided on the right side of the inner cavity of the outer shell 51. The upper heating plate 57 is driven to descend by the hydraulic cylinder 56 until the green strip 16 is squeezed between the upper heating plate 57 and the lower heating plate 58. Under high temperature and extrusion conditions, the rubber molecules in the green strip cross-link, and its structure changes from a linear structure to a network structure, thus connecting together.

[0036] The embossing component 59 includes a gear 63 and an embossing motor 61. There are two gears 63, which are symmetrically distributed vertically and mesh with each other. The front end of the lower gear 63 is movably connected to the front wall of the inner cavity of the outer casing 51 via a rotating shaft. Embossing rollers 62 are fixedly installed at the rear ends of both gears 63. The rear ends of both embossing rollers 62 are movably connected to the rear wall of the inner cavity of the outer casing 51 via rotating shafts. The rear end of the embossing motor 61 is fixedly connected to the front end of the outer casing 51. The output end of the embossing motor 61 passes through the front wall of the outer casing 51 and is fixedly connected to the upper gear 63. The embossing motor 61 drives the upper gear 63 to rotate, and the upper gear 63 synchronously drives the lower gear 63 to rotate in the opposite direction. The two gears 63 drive the two embossing rollers 62 to rotate synchronously in opposite directions, thereby completing the embossing process and traction of the embossed strip.

[0037] The tape winding mechanism 14 includes a third base 71. A rotary cylinder 72 is mounted on the upper end of the third base 71. A U-shaped mounting rod 73 is mounted on the output end of the rotary cylinder 72. The front and rear ends of the U-shaped mounting rod 73 are movably connected to connecting plates 74 via rotating shafts. A U-shaped mounting frame 75 is fixedly mounted between the two connecting plates 74. A movable plate 79 is movably connected to the front left end of the U-shaped mounting frame 75. Two telescopic cylinders 76 are movably mounted on the left end of the U-shaped mounting rod 73 via ball joints. The output ends of the two telescopic cylinders 76 are movably connected to the rear lower end of the U-shaped mounting frame 75 and the lower end of the movable plate 79, respectively. A second take-up motor 77 is installed at the rear end of the mounting frame 75. The output end of the second take-up motor 77 passes through the rear of the U-shaped mounting frame 75 and is equipped with a second take-up roller 78. The front end of the second take-up roller 78 is movably engaged with the rear end of the movable plate 79. The height of the second take-up roller 78 is adjusted by setting a telescopic cylinder 76 so that the angle between the cooked strip and the finished cooked strip roll is a certain value. After the winding is completed, the U-shaped mounting frame 75 is rotated 90 degrees by setting a rotary cylinder 72 so that the cooked strip roll faces outward. Then the movable plate 79 is rotated so that the movable plate 79 is disengaged from the second take-up roller 78, making it easier for the operator to pick up the cooked strip roll.

[0038] The seam traction mechanism 2 is higher than the raw tape traction mechanism 6 to limit the height, so that the raw tape is kept in a taut state. The second base 3 is flush with the cooked tape operating platform 11, which is used for cooling the cooked tape.

[0039] It should be noted that this invention is an auxiliary machine for rubber seam production. During use, the raw rubber 16 is first preliminarily spliced ​​and bonded, then the raw rubber 16 is overlapped with the carrier belt 15. The traction motor 28 in the seam traction mechanism 2 drives the traction roller 29 to rotate, which in turn moves the carrier belt 15 and the raw rubber 16. Simultaneously, the pneumatic cylinder 25 drives the pressure roller 27 to descend until it contacts the raw rubber 16, increasing the friction between the raw rubber 16 and the traction roller 29 and improving traction stability. A first idler roller frame 4 holds the carrier belt 15 and the raw rubber 16, and then... The raw strip 16 enters the raw strip traction mechanism 6 via the second idler roller frame 7. The raw strip traction mechanism 6 has the same structure as the seam traction mechanism 2. The raw strip traction mechanism 6 further pulls the carrier belt 15 and the raw strip 16. At this time, the first winding motor 42 in the carrier belt winding mechanism 8 drives the first winding roller 43 to rotate. The rotating first winding roller 43 winds up the carrier belt 15, which also separates the carrier belt 15 from the raw strip 16. The raw strip 16 enters the vulcanizing mechanism 10 alone. In the vulcanizing mechanism 10, the upper heating plate 57 is lowered by the hydraulic cylinder 56, pressing the raw strip 16 against the upper end face of the lower heating plate 58, so that the raw strip 16 is subjected to high temperature and extrusion. Under certain conditions, the rubber molecules undergo cross-linking, transforming their linear structure into a network-like three-dimensional structure, thus connecting together to form the embossed strip 17. The embossing motor 61 drives the upper gear 63 to rotate, which in turn drives the lower gear 63 to rotate in the opposite direction. These two gears 63 then drive the two embossing rollers 62 to rotate synchronously in opposite directions, completing the embossing process and traction of the embossed strip 17. The embossed strip 17 then enters the embossed strip operating platform 11 via the third idler roller frame 13. On the embossed strip operating platform 11, the embossed strip 17 undergoes cooling and inspection, and finally passes through the embossed strip winding mechanism 14. The pre-wound strip 17 is wound up. The second winding motor 77 drives the second winding roller 78 to rotate. The rotating second winding roller 78 continuously winds up the pre-wound strip 17. At the same time, the height of the second winding roller 78 is adjusted by the output end of the telescopic cylinder 76 so that the angle between the pre-wound strip 17 and the pre-wound strip roll is a constant value, so as to avoid the pre-wound strip from becoming tighter and tighter. After the pre-wound strip 17 is wound up, the U-shaped mounting bracket 75 is rotated 90 degrees by the rotating cylinder 72 so that the pre-wound strip roll faces outward. Then the movable plate 79 is rotated so that the movable plate 79 is disengaged from the second winding roller 78, so that the operator can easily pick up the pre-wound strip roll.

[0040] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A rubber joint auxiliary machine for rubber belt production, comprising a first base (1), a second base (3), a supporting column (9), a cooked belt operation platform (11) and a cooked belt winding mechanism (14), characterized in that: The upper end of the first base (1) is provided with a joint traction mechanism (2), the second base (3) is located in the right of the first base (1), the upper end of the left part of the second base (3) is provided with a plurality of first roller frames (4), the upper end of the right part of the second base (3) is provided with a first heightening seat (5), the upper end of the first heightening seat (5) is provided with a green belt traction mechanism (6), the left end of the first heightening seat (5) is provided with a second roller frame (7), the right end of the first heightening seat (5) is provided with a loaded belt winding mechanism (8), the supporting column (9) is provided with four, the four supporting columns (9) are located in the right of the second base (3), the upper ends of the four supporting columns (9) are commonly provided with a vulcanization mechanism (10), the cured belt operation platform (11) is located in the right of the supporting column (9), the upper end of the left part of the cured belt operation platform (11) is provided with a second heightening seat (12), the upper end of the second heightening seat (12) is provided with a third roller frame (13), the cured belt winding mechanism (14) is located in the right of the cured belt operation platform (11), the first roller frame (4), the second roller frame (7) and the third roller frame (13) are the same structure, the joint traction mechanism (2) and the green belt traction mechanism (6) are the same structure; The joint traction mechanism (2) comprises a bottom plate (21), the bottom plate (21) is provided with two, the two bottom plates (21) are all fixedly connected with the upper end of the first base (1), the upper end of the bottom plate (21) is provided with two mounting columns (22), the ends of the two mounting columns (22) close to each other are all provided with a limiting plate (23), the upper ends of the two mounting columns (22) are commonly provided with a top plate (24), the upper end of the top plate (24) is provided with a pneumatic cylinder (25), the output end of the pneumatic cylinder (25) penetrates through the top plate (24) and is fixedly provided with a first bearing seat (26), the left end and the right end of the first bearing seat (26) are respectively slidably connected with the two limiting plates (23), the two first bearing seats (26) are commonly connected with a compression roller (27) through a bearing in a movable mode, the upper end of the front bottom plate (21) is provided with a traction motor (28), the upper end of the rear bottom plate (21) is provided with a fixed block (30), the output end of the traction motor (28) is provided with a traction roller (29), the rear end of the traction roller (29) is movably connected with the fixed block (30), and the traction roller (29) is located below the compression roller (27). The vulcanizing mechanism (10) comprises a shell (51), the lower end of the shell (51) is fixedly connected with the upper end of four supporting columns (9) respectively, a feeding port (52) is opened in the left end of the shell (51), the front wall and the rear wall of the feeding port (52) are movably connected with feeding rollers (53), a discharging port (54) is opened in the right end of the shell (51), the front wall and the rear wall of the discharging port (54) are movably connected with discharging rollers (55), a hydraulic cylinder (56) is installed on the upper end of the shell (51), the output end of the hydraulic cylinder (56) penetrates the upper wall of the shell (51) and is fixedly installed with an upper heating plate (57), the front inner wall and the rear inner wall of the shell (51) are fixedly installed with a lower heating plate (58), the upper heating plate (57) is located directly above the lower heating plate (58), the upper end surface of the lower heating plate (58) is flush with the upper part of the outer surface of the feeding roller (53), and the right part of the inner cavity of the shell (51) is provided with a embossing component (59).

2. The rubber joint auxiliary machine for rubber belt production according to claim 1, characterized in that: The first roller bracket (4) comprises a second bearing seat (31), two second bearing seats (31) are arranged, and the lower ends of the two second bearing seats (31) are fixedly connected with the upper end of the second base (3); and a roller (32) is movably connected between the two second bearing seats (31) through a bearing.

3. The rubber joint auxiliary machine for rubber belt production according to claim 2, characterized in that: The carrier tape winding mechanism (8) comprises a mounting frame (41), the left end of the mounting frame (41) is fixedly connected with the right end of the first heightening seat (5), and a first winding motor (42) is installed at the rear end of the mounting frame (41); and the output end of the first winding motor (42) penetrates the mounting frame (41) and is fixedly installed with a first winding roller (43).

4. The rubber joint auxiliary machine for rubber belt production according to claim 3, characterized in that: The embossing component (59) comprises a gear (63) and an embossing motor (61), two gears (63) are arranged, the two gears (63) are symmetrically distributed above and below and are movably connected with each other, the front end of the lower gear (63) is movably connected with the front inner wall of the shell (51) through a rotating shaft, the rear end of each of the two gears (63) is fixedly installed with an embossing roller (62), the rear end of each of the two embossing rollers (62) is movably connected with the rear inner wall of the shell (51) through a rotating shaft, the rear end of the embossing motor (61) is fixedly connected with the front end of the shell (51), and the output end of the embossing motor (61) penetrates the front wall of the shell (51) and is fixedly connected with the upper gear (63).

5. The rubber joint auxiliary machine for rubber belt production according to claim 4, characterized in that: The cooked tape winding mechanism (14) comprises a third base (71), a rotary air cylinder (72) is installed at the upper end of the third base (71), a U-shaped mounting rod (73) is installed at the output end of the rotary air cylinder (72), a connecting plate (74) is movably connected to the front end and the rear end of the U-shaped mounting rod (73) through a rotating shaft, a U-shaped mounting frame (75) is fixedly installed between the two connecting plates (74), a movable plate (79) is movably connected to the left end front portion of the U-shaped mounting frame (75), two telescopic air cylinders (76) are movably installed at the left end of the U-shaped mounting rod (73) through a ball shaft, the output ends of the two telescopic air cylinders (76) are movably connected with the lower rear portion of the U-shaped mounting frame (75) and the lower end of the movable plate (79) respectively, a second winding motor (77) is installed at the rear end of the U-shaped mounting frame (75), the output end of the second winding motor (77) penetrates through the rear portion of the U-shaped mounting frame (75) and is installed with a second winding roller (78), and the front end of the second winding roller (78) is movably clamped with the rear end of the movable plate (79).

6. The rubber joint auxiliary machine for rubber belt production according to claim 5, characterized in that: The seam traction mechanism (2) is higher than the raw tape traction mechanism (6), and the second base (3) is flush with the cooked tape operation platform (11).

Citation Information

Patent Citations

  • Rubber track one-time vulcanization molding technology

    CN104385505A

  • Method for mfg. endless rubber belt

    CN1121865A