Tire heat-bonding component cooling system

CN224702357UActive Publication Date: 2026-09-01TRIANGLE TIRE
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Patent Information

Application Number
CN202521781914.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-21
Publication Date
2026-09-01
Estimated Expiration
2035-08-21

AI Technical Summary

Technical Problem

传统橡胶轮胎行业热帖工序中半成品的制冷方式均为空调制冷,现有空调制冷方式存在设备故障率高,受环境温度影响大等缺陷;导致热帖半成品搭接不良,存在质量隐患和废次品增多,产能减少等问题

Benefits of technology

[0005] The beneficial effects of this utility model are that it has a simple and reasonable structure, is easy to install, has high practicality and operability, effectively controls process temperature, reduces equipment failure rate and improves the quality of semi-finished tires, and saves enterprise production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to a refrigeration system for tire heat-bonding components, belonging to the field of tire manufacturing equipment. It includes an air-cooled chamber, with a water-cooled fan installed outside the chamber. A fan duct above the water-cooled fan connects to the fan at one end and to the chamber at the other through a window. The water inlet of the water-cooled fan is connected to a cooling water pipe. A support column is installed outside the water-cooled fan, with one end connected to the chamber and the other fixed to the ground. A controller is fixed to the support column, and a temperature sensor is installed on the inner wall of the chamber and connected to the controller via a cable. The controller is also connected to the water-cooled fan via a cable. A branch pipe connects to the water inlet of the water-cooled fan at one end and to the main pipe at the other through a water pipe tee. The main pipe terminates at a valve on the main pipe, and the branch pipe valve is installed on the branch pipe. This utility model can effectively control the process temperature, reduce equipment failure rates, improve the quality of semi-finished tires, and save production costs for enterprises.
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Description

Technical Field

[0001] This utility model relates to the field of tire production equipment, and more specifically to a refrigeration system for tire heat-bonding components. Background Technology

[0002] As is well known, refrigeration equipment is a crucial piece of equipment widely used in the production of semi-finished and finished products in the rubber tire industry. With the rapid development of modern industrial enterprises, factors such as temperature and humidity significantly impact the quality and output of semi-finished and finished products. Traditionally, air conditioning is used for cooling semi-finished products in the heat-bonding process of the rubber tire industry. However, existing air conditioning refrigeration methods suffer from drawbacks such as high equipment failure rates and significant susceptibility to ambient temperature fluctuations. This leads to poor overlap of the heat-bonded semi-finished products, resulting in potential quality issues, increased defective products, and reduced production capacity. Summary of the Invention

[0003] To overcome the shortcomings of existing technologies, this utility model provides a cooling system for tire heat-bonding components, which effectively controls the process temperature and improves the quality of semi-finished tire products.

[0004] The technical solution adopted by this utility model to solve its technical problem is as follows: a tire heat-adhesive bonding component cooling system, which is provided with an air-cooled chamber. The system is characterized by a water-cooled fan installed outside the air-cooled chamber; a fan pipe above the water-cooled fan is connected at one end to the water-cooled fan and at the other end to the air-cooled chamber through a window; the water-cooled fan inlet is connected to a cooling water pipe; a support column is installed outside the water-cooled fan, with one end connected to the air-cooled chamber and the other end fixed to the ground; a controller is fixed to the support column; a temperature sensor is installed on the inner wall of the air-cooled chamber and connected to the controller via a cable; the controller is connected to the water-cooled fan via a cable; one end of a branch pipe is connected to the water-cooled fan inlet, and the other end is connected to the main pipe via a water pipe tee; the end of the main pipe is connected to the main pipe valve; and the branch pipe valve is installed on the branch pipe.

[0005] The beneficial effects of this utility model are that it has a simple and reasonable structure, is easy to install, has high practicality and operability, effectively controls process temperature, reduces equipment failure rate and improves the quality of semi-finished tires, and saves enterprise production costs. Attached Figure Description

[0006] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0007] Figure 1 This is a schematic diagram of the structure of the present invention.

[0008] In the diagram: 1. Fan system, 2. Temperature control system, 3. Cooling water circulation system, 1-1. Air-cooled chamber, 1-2. Water-cooled fan, 1-3. Fan piping, 1-4. Air-cooled chamber window, 1-5. Water-cooled fan inlet, 2-1. Support column, 2-2. Controller, 2-3. Temperature sensor, 3-1. Branch piping, 3-2. Branch piping valve, 3-3. Water pipe tee, 3-4. Main pipe, 3-5. Main pipe valve. Detailed Implementation

[0009] As shown in the figure, this utility model includes a fan system 1, a temperature control system 2, and a cooling water circulation system 3.

[0010] The fan system 1 includes an air-cooled chamber 1-1, a water-cooled fan 1-2, a fan duct 1-3, an air-cooled chamber window 1-4, and a water-cooled fan inlet 1-5. The water-cooled fan 1-2 is installed outside the air-cooled chamber 1-1. One end of the fan duct 1-3 above the water-cooled fan 1-2 is connected to the water-cooled fan 1-2, and the other end is connected to the air-cooled chamber 1-1 through the air-cooled chamber window 1-4. The water-cooled fan inlet 1-5 is connected to the cooling water duct.

[0011] The temperature control system 2 includes a support column 2-1, a controller 2-2, and a temperature sensor 2-3. The support column 2-1 is installed on the outside of the water-cooled fan 1-2, with one end connected to the air-cooled chamber 1-1 and the other end fixed to the ground. The controller 2-2 is fixed on the support column 2-1. The temperature sensor 2-3 is installed on the inner wall of the air-cooled chamber 1-1 and is connected to the controller 2-2 via a cable. The controller 2-2 is connected to the water-cooled fan 1-2 via a cable.

[0012] The cooling water circulation system 3 includes a branch pipe 3-1, a branch pipe valve 3-2, a water pipe tee 3-3, a main pipe 3-4, and a main pipe valve 3-5. One end of the branch pipe 3-1 is connected to the water inlet 1-5 of the water-cooled fan, and the other end is connected to the main pipe 3-4 through the water pipe tee 3-3. The main pipe 3-4 is connected to the main pipe valve 3-5 at its end, and the branch pipe valve 3-2 is installed on the branch pipe 3-1.

[0013] The semi-finished heat-bonded parts are produced in a dual-station manner, meaning that the two sets of fan system 1, temperature control system 2, and cooling water circulation system 3 mentioned above are symmetrically distributed.

[0014] A water-cooled fan is installed on the outside of the air-cooled room used for manufacturing heat-bonded parts. The water-cooled fan is connected to the cooling water system. The temperature sensor in the temperature control system measures the actual temperature of the air-cooled room and compares it with the temperature set by the controller to control the on / off of the water-cooled fan, so as to meet the temperature requirements of the heat-bonded parts.

Claims

1. A refrigeration system for tire heat-bonding components, comprising an air-cooled chamber, characterized in that, The water-cooled fan is installed outside the air-cooled room. One end of the fan duct above the water-cooled fan is connected to the water-cooled fan, and the other end is connected to the air-cooled room through the air-cooled room window. The water-cooled fan inlet is connected to the cooling water duct. The support column is installed outside the water-cooled fan, with one end connected to the air-cooled room and the other end fixed to the ground. The controller is fixed to the support column, and the temperature sensor is installed on the inner wall of the air-cooled room and connected to the controller via a cable. The controller is connected to the water-cooled fan via a cable. One end of the branch pipe is connected to the water-cooled fan inlet, and the other end is connected to the main pipe via a water pipe tee. The end of the main pipe is connected to the main pipe valve, and the branch pipe valve is installed on the branch pipe.