Production equipment and method of modified asphalt waterproof roll with tire

By introducing compaction components and side-position components into the modified asphalt tire-resistant coil production equipment, and spraying water mist with the bladder ring for cooling and dust removal, the problem of untimely cooling after tightening of the roller is solved, and the uniformity and quality of the coil are improved.

CN120461675APending Publication Date: 2025-08-12NINGXIA NINGDONG HUASHENG ENERGY SAVING & ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202510767774.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

During the production process of existing modified asphalt waterproof rolls, the failure to cool in time after the press roller is tightened, resulting in changes in the characteristics of the modified asphalt, which affects the clinging between the dressing and the roll, and impurities are easily mixed with the side walls of the roll, affecting the quality.

Method used

A modified asphalt tire-resistant coil production equipment is designed, including compaction components and side-position components, and the bladder ring sprays water mist for auxiliary cooling and dust removal to ensure uniform compaction and cooling of the coil.

Benefits of technology

The uniform compaction of the surface of the coil is achieved, the clinging between the dressing and the coil is improved, impurity pollution is reduced, and the quality and uniformity of the waterproof coil is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of waterproof roll production, in particular to production equipment and method for a modified asphalt waterproof roll with a tire, the production equipment comprises an equipment body, a side frame is fixedly mounted at the top end of a bottom frame, a compaction assembly is connected to the side, close to the bottom frame, of the side frame, and a side position assembly is arranged at the side end of the compaction assembly; and the side position assembly is used for limiting the side end of the waterproof coiled material when the waterproof coiled material is rolled and compacted, and the side position assembly can further conduct auxiliary cooling and side wall dust removal on the waterproof coiled material when the compacting assembly is started. While the compaction assembly rotates for compaction, the side assembly can be driven to rotate along with the compaction assembly, through rotation of the side assembly, water mist spraying can be conducted on a coiled material at the compaction position, the effect of assisting in dressing cooling is achieved, the situation that dressing laying is not uniform due to dressing circulation is reduced, and meanwhile the dressing laying efficiency is improved. Sprayed water mist can cool the first pressing roller and the second pressing roller, and all-directional cooling of the coiled material is achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of waterproof coiled material production, in particular to a production device and method for a modified asphalt tire waterproof coiled material. Background Art

[0002] Modified asphalt waterproof membrane is a waterproof membrane made of polyester felt, glass fiber felt or glass fiber reinforced polyester felt as the base, modified asphalt as the coating material, and the surface is covered with isolation material;

[0003] When manufacturing modified asphalt waterproofing membranes, it is necessary to select suitable base materials, such as polyester felt, fiberglass felt, etc., and pre-treat them. Then, high-quality petroleum asphalt is heated and various modifiers are added. It is then fully stirred to form a uniform modified asphalt mixture. The pre-treated base is then passed through an impregnation device to allow it to fully absorb the modified asphalt, achieving a close bond between the base and the modified asphalt. After that, the modified asphalt is coated on the upper and lower surfaces of the membrane, and covered with isolation materials such as polyethylene film, sand or aluminum foil. During this process, the membrane is squeezed by rollers to ensure a close fit between the layers of material. Finally, the formed membrane is cooled and reeled.

[0004] In the existing production process of modified asphalt tire waterproof membrane, the cooling step is usually implemented uniformly after the membrane is tightened by the pressure roller and the entire roll is pressed. When the temperature of the waterproof membrane production environment is high, the pressure roller is not cooled in time after tightening, and the properties of the modified asphalt are easily changed, resulting in increased fluidity, thereby affecting the adhesion between the dressing and the membrane. In addition, during the production process of the membrane, fine impurities are easily mixed into the side wall of the dressing. The presence of impurities can easily destroy the uniformity and purity of the dressing, weaken the adhesion between the dressing and the membrane, and further damage the quality of the waterproof membrane. In view of this, we propose a production device and method for modified asphalt tire waterproof membrane. Summary of the Invention

[0005] The object of the present invention is to provide a production device and method for modified asphalt tire waterproof membrane to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned objectives, one of the objectives of the present invention is to provide a production device for modified asphalt tire waterproofing membrane, comprising a device body, the device body comprising a base frame and two winding rollers, the two winding rollers being respectively mounted on the top of both sides of the base frame for winding the waterproofing membrane at the side ends, a side frame being fixedly mounted on the top of the base frame, and the side frame being located in the middle of the base frame, and a compacting assembly for compacting and laminating the waterproofing membrane is connected to the side of the side frame close to the base frame;

[0007] The side end of the compacting assembly is sleeved with a side assembly, and the side assembly is used to limit the side end of the waterproof roll when the waterproof roll is rolled and compacted;

[0008] The compaction assembly includes a pressure roller group installed on the side of the side frame close to the base frame, and a transmission group is installed on the end of the pressure roller group away from the side frame. When the compaction assembly is working, the transmission group drives the side assembly to assist in cooling the waterproof membrane and remove dust from the side wall.

[0009] As a further improvement of the present technical solution, the pressure roller group includes a first pressure roller and a second pressure roller, and a connecting shaft is installed inside the first pressure roller and the second pressure roller. One side of the two connecting shafts is movably inserted into the inside of the side frame, and a pressure bin is formed between the first pressure roller and the second pressure roller.

[0010] As a further improvement of the present technical solution, the transmission group includes an upper belt pulley and a lower belt pulley, and the upper belt pulley and the lower belt pulley are respectively connected to the side of the two connecting shafts away from the side frame. The upper belt pulley and the lower belt pulley are connected through a conveyor belt body, and the rotating shaft of the lower belt pulley is coaxially connected to the motor, and the motor is installed on the surface of the base frame through a support frame.

[0011] As a further improvement of the present technical solution, the side assembly includes four capsule rings, which are respectively sleeved on the two ends of the first pressure roller and the second pressure roller. A water mist cavity is formed inside the four capsule rings. A plurality of extrusion holes are opened on the side of the four capsule rings close to the pressure bin. A filling cover is installed on the surface of the four capsule rings, and a limiting fixing plate is fixed on both sides of the first pressure roller and the second pressure roller.

[0012] As a further improvement of the present technical solution, sealing pages are installed inside the multiple extrusion holes, and the sealing pages are composed of a shell and a fitting. The shell is used to seal the extrusion holes. The shell is a hollow structure, and the fitting is located inside the shell, and the middle part of the fitting is in a separated state, which is used to assist water mist in spraying out of the cavity.

[0013] As a further improvement of this technical solution, the inner walls of the four capsule rings are all rough, which is used to improve the installation and fixing effect of the capsule rings, and the outer walls of the four capsule rings are all smooth, which can improve the extrusion effect between the two capsule rings.

[0014] As a further improvement of the present technical solution, the first pressing roller and the second pressing roller are made of the same material and have the same size.

[0015] The second object of the present invention is to provide a production method for operating the modified asphalt tire waterproof membrane described above, comprising the following steps:

[0016] S1. First, determine the thickness of the waterproof membrane that needs to be compacted, adjust the height of the compaction chamber, determine the width of the waterproof membrane, and adjust the positions of the four rings to ensure that the waterproof membrane can slide between the two horizontally installed rings.

[0017] S2. Subsequently, the filling caps on the surface of the capsule rings are opened, and water mist is delivered to the interior of the four capsule rings. When the interior of the water mist cavity is saturated, the delivery is stopped, and the filling caps are then sealed and installed on the surface of the capsule rings. At this time, the space between the upper and lower adjacent capsule rings is in a state of maximum compression;

[0018] S3. When the bladder ring is filled with material, water mist can support the inside of the bladder ring, causing the bladder ring to expand. Combined with the anti-slip wall laid on the inner wall of the bladder ring, the supporting effect of the bladder ring is improved;

[0019] S4, then start the motor to drive one of the lower belt pulleys connected to the motor coaxially to rotate, and use the conveyor belt body to drive the upper belt pulley to rotate accordingly, and then make the first pressure roller and the second pressure roller rotate at the same speed and in the same direction;

[0020] S5. At this time, the coiled material that needs to be compacted passes through the pressing bin. As the coiled material slides inside the pressing bin, the dressing is compacted. After the coiled material is compacted to a certain size, the compacted side is wrapped around the surface of one of the winding rollers to achieve automatic winding and compaction of the coiled material.

[0021] S6. When the first pressing roller and the second pressing roller rotate, the capsule rings on their sides are squeezed, and the water mist inside the capsule rings will be sprayed out from the inside of the extrusion holes. The water mist can assist in cooling the dressing, achieving a cooling effect during the pressing process.

[0022] Compared with the prior art, the present invention has the following beneficial effects:

[0023] 1. In the production equipment and method of modified asphalt tire waterproof membrane, the waterproof membrane can be rolled up and compacted by a compaction assembly arranged in the middle of the base frame, so that the dressing obtains a relatively uniform pressure distribution on the surface of the membrane, further flattens the dressing, improves the smoothness and flatness of the membrane surface, and facilitates subsequent use;

[0024] 2. In the production equipment and method of modified asphalt tire waterproof membrane, side components provided at both ends of the compaction component can block the side ends of the compaction bin, so that the waterproof membrane can be limited at the end during the rolling compaction process, reducing the significant deviation or bending of the waterproof membrane during the rolling process, thereby improving the compaction effect of the waterproof membrane dressing;

[0025] 3. In the production equipment and method of modified asphalt tire waterproofing membrane, while the compacting assembly rotates and compacts, it can drive the side assembly to rotate accordingly. Through the rotation of the side assembly, water mist can be sprayed on the membrane at the compacted position. The water mist can achieve the effect of auxiliary cooling of the dressing, reducing the situation where the dressing circulation causes uneven laying of the dressing. At the same time, the sprayed water mist can also cool the first and second pressing rollers to achieve all-round cooling of the membrane;

[0026] 4. In the production equipment and method of the modified asphalt tire waterproof membrane, water mist is sprayed by rotating the side component, and the side wall of the waterproof membrane can be blown and cleaned, reducing product defects and quality problems caused by side contamination. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0028] Figure 2 It is a side structural diagram of the pressing roller assembly of the present invention;

[0029] Figure 3 This is a schematic diagram of the cross-sectional structure of the chassis of the present invention;

[0030] Figure 4 This is a schematic diagram of the cutaway structure of the capsule ring of the present invention;

[0031] Figure 5 Schematic diagram of the capsule ring monomer structure of the present invention;

[0032] Figure 6 For the present invention Figure 5 Schematic diagram of the structure at A;

[0033] Figure 7 This is a schematic diagram of the installation structure of the pressure roller group of the present invention.

[0034] The meaning of each number in the figure is:

[0035] 1. Equipment body; 11. Base frame; 12. Winding roller; 13. Side frame;

[0036] 2. Compacting assembly; 21. Transmission group; 211. Upper pulley; 212. Lower pulley; 213. Conveyor belt body; 22. Pressing roller group; 221. Connecting shaft; 222. First pressing roller; 223. Second pressing roller; 224. Pressing bin;

[0037] 3. Side assembly; 31. Positioning plate; 32. Capsule ring; 33. Water mist chamber; 34. Extrusion hole; 35. Filling cap;

[0038] 4. Sealing page; 41. Shell; 42. Laminating part;

[0039] 5. Anti-slip wall. DETAILED DESCRIPTION

[0040] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0041] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0042] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature identified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "plurality" means two or more, unless otherwise specifically defined.

[0043] Example 1

[0044] See also Figure 1-Figure 3 As shown, the present embodiment aims to provide a production device for modified asphalt tire waterproofing membrane, comprising a device body 1, the device body 1 comprising a base frame 11 and two winding rollers 12, the two winding rollers 12 being mounted on the top of both sides of the base frame 11, respectively, for winding the waterproofing membrane at the side ends, a side frame 13 being fixedly mounted on the top of the base frame 11, and the side frame 13 being located in the middle of the base frame 11, and a compacting assembly 2 for compacting and laminating the waterproofing membrane is connected to the side of the side frame 13 close to the base frame 11;

[0045] The side end of the compaction component 2 is sleeved with a side component 3, which is used to limit the side end of the waterproof roll when the waterproof roll is rolled and compacted. The side component 3 can also assist in cooling the waterproof roll and removing dust from the side wall when the compaction component 2 is started.

[0046] The compacting assembly 2 includes a pressure roller group 22 mounted on the side of the side frame 13 near the base frame 11. A transmission group 21 is mounted on the end of the pressure roller group 22 away from the side frame 13. The pressure roller group 22 includes a first pressure roller 222 and a second pressure roller 223. A connecting shaft 221 is mounted inside each of the first pressure roller 222 and the second pressure roller 223. One side of each connecting shaft 221 is movably inserted into the side frame 13, forming a pressure chamber 224 between the first pressure roller 222 and the second pressure roller 223. As can be seen from the above structure, the connecting shaft 221 mounted in the middle of the first pressure roller 222 and the second pressure roller 223 is movably inserted into the side frame 13, forming a pressure chamber 224 between the first pressure roller 222 and the second pressure roller 223. The height of the pressure chamber 224 can be adjusted by adjusting the position of the connecting shaft 221 inserted into the side frame 13, thereby compacting the dressing of coils of different thicknesses.

[0047] Since the equipment body 1 has high adaptability and can be adapted to compacting coils of different thicknesses, the specific structure of the transmission group 21 is disclosed based on the above structure. The transmission group 21 includes an upper belt pulley 211 and a lower belt pulley 212. The upper belt pulley 211 and the lower belt pulley 212 are respectively connected to the side of the two connecting shafts 221 away from the side frame 13. The upper belt pulley 211 and the lower belt pulley 212 are connected through the conveyor belt body 213. The rotating shaft of the lower belt pulley 212 is coaxially connected to the motor, and the motor is installed on the surface of the base frame 11 through the support frame. Figure 7 The ends of the first pressing roller 222 and the second pressing roller 223 away from the side frame 13 are respectively connected to the upper belt pulley 211 and the lower belt pulley 212. Due to the different thicknesses of the waterproof membrane, when the positions of the first pressing roller 222 and the second pressing roller 223 are finely adjusted up and down, the conveyor belt body 213 connected between the upper belt pulley 211 and the lower belt pulley 212 can be driven to stretch. Since the thickness of the waterproof membrane does not change too much (the thickness of the modified asphalt waterproof membrane is generally 3mm, 4mm, 5mm), the stretching range of the conveyor belt body 213 will not be too large, and the transmission condition of the conveyor belt body 213 will not be affected.

[0048] When the first pressure roller 222 and the second pressure roller 223 need to be started, the motor coaxially connected to the lower belt pulley 212 is turned on to drive the lower belt pulley 212 and the second pressure roller 223 connected to its end to rotate, and the conveyor belt body 213 is tensioned on the upper belt pulley 211 and the lower belt pulley 212. Friction is generated between the upper belt pulley 211, the lower belt pulley 212 and the conveyor belt body 213. When the lower belt pulley 212 rotates, the conveyor belt body 213 is driven to move by the friction force. Due to the continuity of the conveyor belt body 213, the conveyor belt body 213 transmits the motion to the upper belt pulley 211, thereby driving the upper belt pulley 211 to rotate, achieving the effect of synchronous and same-direction rotation of the first pressure roller 222 and the second pressure roller 223;

[0049] With the above structure, even when the first pressure roller 222 and the second pressure roller 223 are fine-tuned, the starting effect of the first pressure roller 222 and the second pressure roller 223 will not be affected, and the first pressure roller 222 and the second pressure roller 223 can rotate in the same direction and at the same speed, which is more accurate and energy-saving compared to separate transmission.

[0050] Next, the specific structure of the side assembly 3 is disclosed. The side assembly 3 includes four capsule rings 32, which are respectively sleeved on both ends of the first pressure roller 222 and the second pressure roller 223. The four capsule rings 32 are each formed with a water mist cavity 33 inside. The four capsule rings 32 are each provided with a plurality of extrusion holes 34 on the side close to the pressure chamber 224. The surface of the four capsule rings 32 is installed with a stuffing cover 35. The first pressure roller 222 and the second pressure roller 223 are fixedly installed with a limited fixed plate 31 on both sides. Figure 4 In combination with the above structure, it can be seen that the two transversely mounted bladder rings 32 can be adjusted in position according to the width of the waterproof membrane to achieve the effect of limiting the side ends of the waterproof membrane. By opening the filling cover 35 and injecting water mist into the water mist chamber 33, the bladder rings 32 made of elastic material (such as rubber) can be expanded. During the filling process, the bladder rings 32 also achieve the effect of expanding and reinforcing the position.

[0051] Since the upper and lower adjacent bladder rings 32 are in the most closely fitted state after being filled with water mist, when the pressing roller group 22 is started, the two bladder rings 32 rotate and squeeze, so that the water mist in the water mist chamber 33 is sprayed out from the squeezing hole 34. The squeezing and spraying will form a certain gas pressure, which can achieve the effect of blowing and cleaning the side ends of the coil;

[0052] The sprayed water mist is sprinkled on the surface of the coil, which can assist in cooling the coil and improve the adhesion between the dressing and the coil. Since multiple extrusion holes 34 are opened on the side end of the capsule ring 32, the water mist sprayed from the extrusion holes 34 that are far away from the coil can fall on the surfaces of the first pressing roller 222 and the second pressing roller 223, cooling the first pressing roller 222 and the second pressing roller 223, so that the middle part of the coil can also be cooled during the pressing process. Among them, the first pressing roller 222 and the second pressing roller 223 are made of metal materials with strong heat transfer performance (such as aluminum), and the surfaces of the first pressing roller 222 and the second pressing roller 223 are relatively smooth.

[0053] The water mist sprayed from the inside of the extrusion hole 34 is fine and has relatively high durability. After the water mist is used up, the device body 1 is paused and the filling cover 35 is opened to refill the water mist.

[0054] Taking into account that the extrusion hole 34 needs to be sealed when the capsule ring 32 adds water mist, the adjacent capsule ring 32 will be driven to extrude and spray only when the pressure roller group 22 is started. In view of this, in order to assist in sealing the extrusion hole 34 and reduce the situation where water mist is randomly spilled, a sealing page 4 is installed inside the multiple extrusion holes 34. The sealing page 4 is composed of a shell 41 and a fitting 42. The shell 41 is used to seal the extrusion hole 34. The shell 41 is a hollow structure. The fitting 42 is located inside the shell 41, and the middle part of the fitting 42 is in a separated state, which is used to assist the water mist to spray out of the cavity.

[0055] Improvements include: Figure 6 A sealing page 4 is sealed and installed inside each extrusion hole 34 to achieve the effect of sealing the extrusion hole 34. The sealing page 4 is a hollow structure, and a plurality of fittings 42 are installed inside it. The fittings 42 are two tightly fitting rubber materials. When the capsule ring 32 is not squeezed by external force, the fittings 42 can achieve the effect of sealing the sealing page 4. When the capsule ring 32 is squeezed by external force, the fittings 42 are compressed and deformed, so that the water mist inside the water mist chamber 33 can flow out from the gap between the fittings 42, thereby achieving the effect of spraying and cooling the coiled material.

[0056] Since the capsule ring 32 is movably connected to the side ends of the first pressing roller 222 and the second pressing roller 223, the capsule ring 32 can be slid to adjust the spacing when used for coils of different widths. Therefore, in order to further improve the installation stability of the capsule ring 32 and not affect the squeezing and spraying of water mist by the two adjacent capsule rings 32 above and below, the inner walls of the four capsule rings 32 are all roughened to improve the installation and fixing effect of the capsule ring 32, and the outer walls of the four capsule rings 32 are all smooth to improve the squeezing effect between the two capsule rings 32. Therefore, combined with Figure 5 As shown, the inner wall of the capsule ring 32 is rough, which can increase the friction between the capsule ring 32 and the first pressure roller 222 or the second pressure roller 223, thereby improving the installation stability of the capsule ring 32, while the outer wall of the capsule ring 32 is relatively smooth, which reduces the surface sticking when two adjacent capsule rings 32 are squeezed, affecting the water output of the extrusion hole 34.

[0057] Example 2

[0058] This embodiment, based on the content provided in Example 1, aims to provide a method for producing a modified asphalt tire waterproof membrane. The specific steps are as follows:

[0059] S1. First, determine the thickness of the waterproof membrane to be compacted, adjust the height of the compression chamber 224, determine the width of the waterproof membrane, and adjust the positions of the four bladder rings 32 to ensure that the waterproof membrane can slide between the two transversely installed bladder rings 32;

[0060] S2. Subsequently, the filling caps 35 on the surfaces of the capsule rings 32 are opened, and water mist is delivered to the interiors of the four capsule rings 32. When the interior of the water mist chamber 33 is saturated, the delivery is stopped, and the filling caps 35 are then sealed and installed on the surfaces of the capsule rings 32. At this time, the space between the upper and lower adjacent capsule rings 32 is in a state of maximum squeezing;

[0061] S3. While the capsule ring 32 is being filled, the water mist can support the interior of the capsule ring 32, causing the capsule ring 32 to expand. This, combined with the anti-slip wall 5 laid on the inner wall of the capsule ring 32, can enhance the supporting effect of the capsule ring 32.

[0062] S4. Then, the motor is started to rotate one of the lower belt pulleys 212 coaxially connected to the motor. The upper belt pulley 211 is driven to rotate by the conveyor belt body 213, and the first pressing roller 222 and the second pressing roller 223 are rotated at the same speed and in the same direction.

[0063] S5. At this time, the coiled material to be compacted passes through the pressing bin 224. As the coiled material slides inside the pressing bin 224, the dressing is compacted. After the coiled material is compacted to a certain size, the compacted side is wound around the surface of one of the winding rollers 12 to achieve automatic winding and compaction of the coiled material.

[0064] S6. When the first pressing roller 222 and the second pressing roller 223 rotate, the capsule ring 32 on its side is squeezed, and the water mist inside the capsule ring 32 will be sprayed out from the inside of the extrusion hole 34. The water mist can assist in cooling the dressing, achieving the effect of simultaneous cooling during the pressing process.

[0065] The above shows and describes 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 above embodiments and descriptions are merely preferred examples of the present invention and are not intended to limit the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A production device for modified asphalt tire waterproofing membrane, comprising a device body (1), wherein the device body (1) comprises a base frame (11) and two winding rollers (12), wherein the two winding rollers (12) are respectively mounted on the top of both sides of the base frame (11) and are used for winding the waterproofing membrane at the side ends, and wherein: A side frame (13) is fixedly mounted on the top of the base frame (11), and the side frame (13) is located in the middle of the base frame (11); a compacting assembly (2) for compacting and laminating the waterproof roll is connected to a side of the side frame (13) close to the base frame (11); The side end of the compacting component (2) is sleeved with a side component (3), and the side component (3) is used to limit the side end of the waterproof coiled material when the waterproof coiled material is rolled up and compacted; The compacting assembly (2) comprises a pressure roller group (22) installed on a side of the side frame (13) close to the bottom frame (11); a transmission group (21) is installed on one end of the pressure roller group (22) away from the side frame (13); and when the compacting assembly (2) is working, the transmission group (21) drives the side assembly (3) to perform auxiliary cooling on the waterproof coiled material and dust removal on the side wall.

2. The production equipment of modified asphalt tire waterproof membrane according to claim 1, characterized in that: The pressing roller group (22) includes a first pressing roller (222) and a second pressing roller (223), wherein a connecting shaft (221) is installed inside the first pressing roller (222) and the second pressing roller (223), and one side of the two connecting shafts (221) is movably inserted into the inside of the side frame (13), and a pressing chamber (224) is formed between the first pressing roller (222) and the second pressing roller (223).

3. The production equipment of modified asphalt tire waterproof membrane according to claim 1, characterized in that: The transmission group (21) includes an upper belt pulley (211) and a lower belt pulley (212), wherein the upper belt pulley (211) and the lower belt pulley (212) are respectively connected to the side of two connecting shafts (221) away from the side frame (13), and the upper belt pulley (211) and the lower belt pulley (212) are connected through a conveyor belt body (213), and the rotating shaft of the lower belt pulley (212) is coaxially connected to the motor, and the motor is installed on the surface of the base frame (11) through a support frame.

4. The production equipment of modified asphalt tire waterproof membrane according to claim 2, characterized in that: The side assembly (3) includes four capsule rings (32), which are respectively sleeved on the two ends of the first pressure roller (222) and the second pressure roller (223), and the interiors of the four capsule rings (32) are each formed with a water mist cavity (33). The four capsule rings (32) are each provided with a plurality of extrusion holes (34) on one side close to the pressure bin (224), and the surfaces of the four capsule rings (32) are each installed with a stuffing cover (35), and both sides of the first pressure roller (222) and the second pressure roller (223) are fixedly installed with a limiting fixed disk (31).

5. The production equipment of modified asphalt tire waterproofing membrane according to claim 4, characterized in that: A sealing page (4) is installed inside each of the plurality of extrusion holes (34), and the sealing page (4) extends out of the surface of the capsule ring (32). The sealing page (4) is composed of a shell (41) and a fitting (42). The shell (41) is used to seal the extrusion hole (34). The shell (41) is a hollow structure. The fitting (42) is located inside the shell (41), and the middle part of the fitting (42) is in a separated state, which is used to assist the water mist in spraying out of the cavity.

6. The production equipment of modified asphalt tire waterproofing membrane according to claim 5, characterized in that: The inner walls of the four capsule rings (32) are all in a rough state, which is used to improve the installation and fixing effect of the capsule rings (32); the outer walls of the four capsule rings (32) are all in a smooth state, which can improve the squeezing effect between the two capsule rings (32).

7. The production equipment of modified asphalt tire waterproofing membrane according to claim 2, characterized in that: The first pressing roller (222) and the second pressing roller (223) are made of the same material and have the same size.

8. A method for producing the modified asphalt tire waterproofing membrane according to claim 6, characterized in that: The method comprises the following steps: S1. First, determine the thickness of the waterproof roll that needs to be compacted, adjust the height of the pressing chamber (224), then determine the width of the waterproof roll, and adjust the positions of the four bladder rings (32) to ensure that the waterproof roll can slide between the two bladder rings (32) installed laterally; S2. Subsequently, the filling cap (35) on the surface of the capsule ring (32) is opened, and water mist is transported to the interior of the four capsule rings (32). When the interior of the water mist cavity (33) is saturated, the transport is stopped, and then the filling cap (35) is sealed and installed on the surface of the capsule ring (32). At this time, the space between the upper and lower adjacent capsule rings (32) is in a maximum squeeze state; S3. When the bladder ring (32) is filled with material, the water mist can support the inside of the bladder ring (32), and the bladder ring (32) expands. Combined with the anti-slip wall (5) laid on the inner wall of the bladder ring (32), the supporting effect of the bladder ring (32) is enhanced; S4, then starting the motor to drive the transmission group (21) coaxially connected to the motor to rotate, and then causing the first pressing roller (222) and the second pressing roller (223) to rotate at the same speed and in the same direction; S5. At this time, the coiled material that needs to be compacted passes through the pressing bin (224). When the coiled material slides inside the pressing bin (224), the dressing compaction effect of the coiled material is achieved. After the coiled material dressing is compacted to a certain size, the compacted side is wound around the surface of one of the winding rollers (12), thereby achieving automatic winding and compaction of the coiled material. S6. When the first pressing roller (222) and the second pressing roller (223) rotate, the capsule ring (32) on the side thereof is squeezed, and the water mist inside the capsule ring (32) is sprayed out from the inside of the squeezing hole (34). The water mist can assist in cooling the dressing, thereby achieving a cooling effect during the pressing process.