Tire base cloth drying box

By circulating heat transfer oil within a serpentine water pipe and utilizing fins for heat dissipation, the high energy consumption problem of existing drying equipment is solved, achieving low-energy, high-efficiency, and safe drying of tire base fabric.

CN223769217UActive Publication Date: 2026-01-06SHANGHAI YUANSHENG WATERPROOF ENG CO LTD +1
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Patent Information

Application Number
CN202423229929.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-01-06
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In the existing production process of waterproof membranes, the drying oven consumes a lot of energy, so there is a need for a drying equipment with lower energy consumption.

Method used

Heat is transferred through a serpentine water pipe using heat transfer oil, and the base fabric is dried by finned heat dissipation. The heat transfer oil circulates inside the serpentine water pipe, and a protective net prevents personnel and the base fabric from coming into contact with the serpentine water pipe.

Benefits of technology

This technology enables low-energy drying of tire base fabric, reduces heat loss, and improves drying efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223769217U_ABST
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Abstract

The utility model discloses a tire base cloth drying box which comprises a bottom frame and an oil outlet pipe, the top of the bottom frame is connected with lower rotating rollers at equal intervals through bolt bearings, the top, located between the lower rotating rollers, of the bottom frame is provided with a drying assembly, and the drying assembly comprises a box body fixed to the top of the bottom frame at equal intervals through bolts. An upper rotating roller is mounted in the box body through a bearing; a snakelike water pipe is installed in the box body through an installation frame, fins are welded to the outer side of the snakelike water pipe at equal intervals, an oil inlet assembly is arranged on one side of the box body, and the oil inlet assembly comprises an oil inlet pipe installed on one side of the box body through an installation frame; high-temperature heat conduction oil flows into the snakelike water pipe through the oil inlet pipe and flows back into the heat supply equipment through the oil outlet pipe, when the high-temperature heat conduction oil flows in the snakelike water pipe, heat of the high-temperature heat conduction oil is dissipated out through the fins, tire base cloth wound on the outer sides of the lower rotating roller and the upper rotating roller is dried, and energy consumption is low.
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Description

Technical Field

[0001] This utility model relates to the field of waterproof membrane production technology, specifically to a drying box for a base fabric. Background Technology

[0002] Waterproof membranes are mainly used in building walls, roofs, tunnels, highways, landfills, etc., to resist external rainwater and groundwater seepage. They are flexible building materials that can be rolled up and serve as a leak-proof connection between the foundation and the building. They are the first line of defense for waterproofing the entire project and play a vital role in the overall project.

[0003] Currently, in the production process of waterproof membrane, drying boxes are used to dry the base fabric. Existing drying boxes use electric heating or heat generated by fuel combustion for drying, which consumes a lot of energy. Therefore, a base fabric drying box is proposed, in which heat transfer oil flows into the serpentine water pipe through the oil inlet pipe, and the heat is dissipated through the fins to dry the base fabric wrapped around the outer side of the lower rotating roller and the upper rotating roller, which consumes less energy. Utility Model Content

[0004] To address the problems in the existing technology, this utility model provides a tire base fabric drying box. Heat transfer oil flows into the serpentine water pipe through the oil inlet pipe, and heat is dissipated through the fins to dry the tire base fabric wrapped around the outer side of the lower rotating roller and the upper rotating roller. The energy consumption is low.

[0005] The technical solution adopted by this utility model to solve its technical problem is a tire base fabric drying box, including a base frame and an oil outlet pipe. The bottom of the base frame is connected to the lower rotating rollers at equal intervals by bolts and bearings. A drying assembly is set on the top of the base frame between the lower rotating rollers. The drying assembly includes a box body fixed to the top of the base frame at equal intervals by bolts. An upper rotating roller is installed inside the box body by bearings.

[0006] The cabinet is equipped with a serpentine water pipe installed inside by a mounting bracket. Fins are welded at equal intervals on the outer side of the serpentine water pipe. An oil inlet assembly is provided on one side of the cabinet. The oil inlet assembly includes an oil inlet pipe installed on one side of the cabinet by a mounting bracket.

[0007] By adopting the above technical solution, high-temperature heat transfer oil flows through the oil inlet pipe into the serpentine water pipe to dry the tire base fabric that moves on the outside of the lower rotating roller and the upper rotating roller.

[0008] Specifically, the oil inlet end of the serpentine water pipe located on the outside of the tank is connected to a first connecting pipe via a threaded groove. The bottom end of the first connecting pipe is connected to the top of the oil inlet pipe via a pipe joint. A thermometer is connected to the top of the first connecting pipe via a threaded groove.

[0009] Specifically, an insulation sleeve is provided on the outside of the oil inlet pipe, and a first valve is connected to one end of the oil inlet pipe through a threaded groove.

[0010] Specifically, an oil outlet pipe is installed on one side of the base frame via a mounting bracket, and a second valve is connected to one end of the oil outlet pipe via a threaded groove.

[0011] Specifically, the oil outlet end of the serpentine water pipe located on the outside of the tank is connected to a second connecting pipe via a threaded groove, and the bottom end of the second connecting pipe is connected to the top of the oil outlet pipe via a pipe joint.

[0012] Specifically, the box body is fitted with protective netting inside both sides of the serpentine water pipe by bolts.

[0013] The beneficial effects of this utility model are as follows: In the tire base fabric drying box described in this utility model, when the high-temperature heat-conducting oil flows inside the serpentine water pipe, its heat is dissipated through the fins. The tire base fabric wrapped around the outer side of the lower and upper rotating rollers is dried through a protective net. The protective net prevents the tire base fabric or personnel from coming into contact with the serpentine water pipe. In the tire base fabric drying box described in this utility model, the high-temperature heat-conducting oil flows into the oil inlet pipe, then through the first connecting pipe into the serpentine water pipe. The high-temperature heat-conducting oil in the serpentine water pipe flows through the second connecting pipe into the oil outlet pipe and then back into the heating equipment, allowing the heat-conducting oil to circulate within the serpentine water pipe. The insulation sleeve covering both the inner and outer sides of the oil inlet pipe reduces heat loss within the oil inlet pipe. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the drying component structure of this utility model;

[0017] Figure 3 This is a schematic diagram of the oil inlet assembly structure of this utility model;

[0018] In the diagram: 1. Base frame; 2. Lower rotating roller; 3. Drying assembly; 301. Box body; 302. Snake-shaped water pipe; 303. Fins; 304. Protective net; 4. Upper rotating roller; 5. Oil inlet assembly; 501. Oil inlet pipe; 502. First connecting pipe; 503. Thermometer; 504. Insulation sleeve; 505. First valve; 6. Oil outlet pipe; 7. Second valve; 8. Second connecting pipe. Detailed Implementation

[0019] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0020] The heat transfer oil flows through the oil inlet pipe into the serpentine water pipe, and the heat is dissipated through the fins, drying the base fabric wound around the outer side of the lower and upper rotating rollers. This process has low energy consumption. Figure 1-3 As shown, the present invention provides a tire base fabric drying box, which includes a base frame 1 and an oil outlet pipe 6. The bottom of the base frame 1 is connected to the lower rotating rollers 2 at equal intervals by bolts and bearings. A drying assembly 3 is provided on the top of the base frame 1 between the lower rotating rollers 2. The drying assembly 3 includes a box body 301 fixed to the top of the base frame 1 at equal intervals by bolts. An upper rotating roller 4 is installed inside the box body 301 by bearings.

[0021] Inside the housing 301, a serpentine water pipe 302 is installed via a mounting bracket. Fins 303 are welded at equal intervals on the outer side of the serpentine water pipe 302. An oil inlet assembly 5 is provided on one side of the housing 301. The oil inlet assembly 5 includes an oil inlet pipe 501 installed on one side of the housing 301 via a mounting bracket.

[0022] During use, high-temperature heat transfer oil flows through the oil inlet pipe 501 into the serpentine water pipe 302 to dry the tire base fabric that moves on the outside of the lower rotating roller 2 and the upper rotating roller 4.

[0023] For example, such as Figure 3 As shown, the present invention also includes a first connecting pipe 502 connected to the oil inlet end of the serpentine water pipe 302 located outside the housing 301 via a threaded groove. The bottom end of the first connecting pipe 502 is connected to the top of the oil inlet pipe 501 via a pipe joint. A thermometer 503 is connected to the top of the first connecting pipe 502 via a threaded groove.

[0024] During use, the heat transfer oil in the oil inlet pipe 501 flows into the first connecting pipe 502 and into the serpentine water pipe 302. The temperature gauge 503 can detect and display the temperature of the heat transfer oil in the temperature gauge 503.

[0025] For example, such as Figure 3 As shown, the present invention also includes an insulation sleeve 504 fitted on the outside of the oil inlet pipe 501, and a first valve 505 connected to one end of the oil inlet pipe 501 through a threaded groove.

[0026] When in use, the insulation jacket 504 can reduce the heat loss in the oil inlet pipe 501, and the first valve 505 can be opened to allow the heat transfer oil to flow into the oil inlet pipe 501.

[0027] For example, such as Figure 1 As shown, the present invention also includes an oil outlet pipe 6 mounted on one side of the base frame 1 via a mounting bracket, and a second valve 7 connected to one end of the oil outlet pipe 6 via a threaded groove.

[0028] When in use, open the second valve 7 to allow the heat transfer oil in the oil outlet pipe 6 to flow back into the heating equipment.

[0029] For example, such as Figure 1 , Figure 2 As shown, the present invention also includes a second connecting pipe 8 connected to the oil outlet end of the serpentine water pipe 302 located outside the box 301 via a threaded groove, and the bottom end of the second connecting pipe 8 is connected to the top of the oil outlet pipe 6 via a pipe joint.

[0030] During use, the heat transfer oil in the serpentine water pipe 302 flows to the oil outlet pipe 6 through the second connecting pipe 8.

[0031] For example, such as Figure 1 As shown, the present invention also includes a protective net 304 fixed inside the box body 301 on both sides of the serpentine water pipe 302 by bolts.

[0032] When in use, the protective net 304 is designed to prevent the base fabric or personnel from coming into contact with the serpentine water pipe 302.

[0033] In use, personnel use pipes to connect the first valve 505 and the second valve 7 to the oil outlet and oil inlet of the heating equipment, and wrap one end of the base cloth around the outside of the lower rotating roller 2 and the upper rotating roller 4 in sequence so that the base cloth can move.

[0034] Open the first valve 505 and the second valve 7. The high-temperature heat transfer oil flows into the oil inlet pipe 501 through the first valve 505, and then into the serpentine water pipe 302 through the first connecting pipe 502. The high-temperature heat transfer oil in the serpentine water pipe 302 flows into the oil outlet pipe 6 through the second connecting pipe 8, and then flows back into the heating equipment through the second valve 7, so that the heat transfer oil can circulate in the serpentine water pipe 302.

[0035] When the high-temperature heat transfer oil flows inside the serpentine water pipe 302, its heat is dissipated through the fins 303 and dried by the protective net 304 on the tire base cloth wrapped around the lower rotating roller 2 and the upper rotating roller 4. The protective net 304 can prevent the tire base cloth or personnel from coming into contact with the serpentine water pipe 302.

[0036] The insulation jacket 504 is fitted inside and outside the oil inlet pipe 501 to reduce heat loss in the oil inlet pipe 501. The temperature gauge 503 can detect and display the temperature of the heat transfer oil flowing in the first connecting pipe 502 for easy viewing by personnel.

[0037] In the description of this utility model, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the utility model product is in use, or the orientation or positional relationship commonly understood by those skilled in the art. They are only used to facilitate the description of this utility model and simplify the description, and are not intended to indicate or imply that the device or component 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 utility model.

[0038] 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 technical features indicated. In this utility model, unless otherwise expressly specified and limited, the terms "installation," "setting," "connection," "fixing," and "screw-on," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection.

[0039] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape, and principle of the present utility model should be covered within the scope of protection of the present utility model.

Claims

1. A tire base fabric drying oven characterized by, Including the chassis (1) and oil pipe (6), the chassis (1) top is connected with the lower rotating roller (2) by bolt bearing equidistantly, the chassis (1) is located between the lower rotating roller (2) top and is provided with drying assembly (3), the drying assembly (3) includes the box (301) fixed on the chassis (1) top by bolt equidistantly, the box (301) is internally provided with the upper rotating roller (4) by bearing installation; The box (301) is internally provided with the serpentine water pipe (302) by mounting bracket, the serpentine water pipe (302) is equidistantly welded with fin (303) outside, one side of the box (301) is provided with oil inlet assembly (5), the oil inlet assembly (5) includes the oil inlet pipe (501) installed on one side of the box (301) by mounting bracket.

2. The tire cord drying oven of claim 1, wherein The oil inlet end of the serpentine water pipe (302) outside the box (301) is connected with the first connecting pipe (502) through the thread groove, the bottom end of the first connecting pipe (502) is connected with the top of the oil inlet pipe (501) through the pipe joint, the top of the first connecting pipe (502) is connected with the temperature table (503) through the thread groove.

3. The tire cord drying oven of claim 1, wherein The oil inlet pipe (501) is provided with the heat preservation sleeve (504) outside, one end of the oil inlet pipe (501) is connected with the first valve (505) through the thread groove.

4. The tire cord drying oven of claim 1, wherein One side of the chassis (1) is provided with the oil outlet pipe (6) by mounting bracket, one end of the oil outlet pipe (6) is connected with the second valve (7) through the thread groove.

5. The tire cord drying oven of claim 1, wherein The oil outlet end of the serpentine water pipe (302) outside the box (301) is connected with the second connecting pipe (8) through the thread groove, the bottom end of the second connecting pipe (8) is connected with the top of the oil outlet pipe (6) through the pipe joint.

6. The tire cord drying oven of claim 1, wherein The box (301) is internally provided with the protective net (304) by bolt fixed on both sides of the serpentine water pipe (302).