Tire heating tank with real-time temperature measurement function

By setting up multiple temperature measuring probes and partition mechanisms in the heating tank, combined with PLC modules and fixed components, the problems of inaccurate temperature measurement and inconvenient probe replacement in existing heating tanks are solved, and the effects of real-time temperature measurement and convenient replacement are achieved.

CN223419875UActive Publication Date: 2025-10-10SHANDONG ATLAS INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422766351.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-10-10
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The existing temperature measurement method of the heating tank is single and easy to damage, resulting in large errors in the measurement results and difficulty in conveniently replacing the temperature measurement probe, which is not conducive to product stability and production control.

Method used

Design multiple temperature probes and partition mechanisms, use PLC modules for data processing and display, and combine fixing and lifting components to achieve convenient replacement of temperature probes and avoid temperature leakage.

Benefits of technology

The accuracy of multi-point temperature measurement and convenient replacement are achieved, ensuring the stability of temperature detection in the heating tank and production continuity, and avoiding the risk of temperature drop.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a tire heating tank with a real-time temperature measuring function, which relates to the technical field of temperature measuring devices and comprises a tank body, a plurality of second reading display screens, a connecting insertion rod, a temperature measuring probe and a first reading display screen. The outer side of the temperature measuring probe is provided with a partition mechanism used for separating the temperature measuring probe from the inner cavity of the tank body, and the connecting insertion rod is provided with a fixing mechanism used for limiting and fixing the connecting insertion rod. By means of the partition mechanism, the situation that the temperature of the inner cavity of the tank body is reduced due to air leakage can be effectively avoided in the process of replacing the temperature measuring probe, meanwhile, the partition mechanism is matched with the fixing mechanism, the inner cavity of the tank body and the temperature measuring probe can be separated, locking and fixing of the connecting insertion rod can be relieved, and the temperature measuring probe can be replaced conveniently. Therefore, the purpose of conveniently replacing the temperature measuring probe under the condition that the use of the tank body is not influenced can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of temperature measuring devices, in particular to a tire heating tank with a real-time temperature measuring function. Background Art

[0002] During the tire production process, tires need to be heated in heating tanks. The reasons and functions for tire heating include ensuring correct heat treatment, vulcanization and curing of materials through temperature control; uniform heating to improve tire quality; accelerating the tire production cycle and improving tire production efficiency; and compared with traditional methods, electric heating with heating tape has energy-saving effects.

[0003] During the use of the existing heating tank, the existing technical solutions generally adopt a temperature measurement method with only one temperature measuring probe to measure the temperature. If the temperature measurement method of the single temperature measuring probe is damaged, the measurement result will be incorrect, which not only affects the product stability and the process operation control of the subsequent process, but also cannot be discovered and corrected in time. Moreover, when replacing the temperature measuring probe, it is difficult to replace the temperature measuring probe conveniently without affecting the use of the heating tank. Based on this, a tire heating tank with a real-time temperature measurement function is now provided, which can eliminate the disadvantages of the existing device. Utility Model Content

[0004] The purpose of the utility model is to provide a tire heating tank with a real-time temperature measurement function to solve the problems in the background technology.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A tire heating tank with a real-time temperature measurement function comprises a tank body, a plurality of second display screens being equidistantly arranged laterally above the tank body, the bottom ends of the plurality of second display screens being fixedly connected to a connecting rod, the connecting rod penetrating an inner cavity of the tank body, a temperature measuring probe being mounted on the bottom end of the connecting rod, the temperature measuring probe being located in the inner cavity of the tank body, a first display screen being mounted on an outer wall of the tank body, the first display screen being located below one end of the plurality of second display screens, and a partition mechanism being disposed on the outer side of the temperature measuring probe for separating the temperature measuring probe from the inner cavity of the tank body;

[0007] The partition mechanism includes: a fixed sleeve arranged outside the temperature measuring probe, the fixed sleeve is located inside the tank body, and the fixed sleeve is fixedly connected to the inner wall of the tank body;

[0008] The connecting rod is provided with a fixing mechanism for limiting and fixing the connecting rod.

[0009] On the basis of the above technical solutions, the present invention also provides the following optional technical solutions:

[0010] In an optional solution: the partition mechanism further includes: a blocking component disposed below the fixed sleeve, the blocking component being used to automatically block the port of the fixed sleeve;

[0011] The blocking assembly includes: a sealing baffle disposed below the fixed sleeve, the top of the sealing baffle being fixedly connected to a sealing plug plate;

[0012] The fixed sleeve is provided with a lifting assembly, and the lifting assembly is used to push the sealing baffle to move up and down.

[0013] In an optional solution: the lifting assembly includes: a connecting pressure ring arranged above the fixed sleeve, the connecting pressure ring is located on the outside of the connecting plug rod, the connecting pressure ring is slidably connected to the tank body, the bottom end of the connecting pressure ring is integrally formed with a lifting pressure cylinder, the lifting pressure cylinder is located on the inside of the fixed sleeve, the lifting pressure cylinder is slidably connected to the fixed sleeve, the bottom end of the lifting pressure cylinder is circumferentially equidistantly fixedly connected with a plurality of connecting push rods, the plurality of connecting push rods all penetrate to the outside of the bottom end of the fixed sleeve, the plurality of connecting push rods are all slidably connected to the fixed sleeve, the plurality of connecting push rods are all fixedly connected to the sealing baffle, and the plurality of connecting push rods are all located on the outside of the sealing plug plate;

[0014] The connecting push rod is provided with a first reset component, and the first reset component is used to push the lifting and lowering pressure cylinder to slide and reset.

[0015] In an optional solution: the first reset component is a first spring sleeved on the outer wall of the connecting push rod, one end of the first spring contacts the inner wall of the fixed sleeve, and the other end of the first spring contacts the outer wall of the lifting and lowering cylinder.

[0016] In an optional solution: the fixing mechanism includes: a docking assembly arranged on the outside of the connecting rod, the docking assembly is used for accurately docking the connecting rod with the tank body;

[0017] The docking assembly includes: two docking plug plates symmetrically fixedly connected to the outer wall of the connecting rod, the outer walls of the bottom ends of the two docking plug plates are both square platform-shaped, and a docking slot for the docking plug plates to slide is provided at the connection position between the tank body and the docking plug plates;

[0018] A positioning assembly is provided at one end of the docking plug board away from the connecting rod, and the positioning assembly is used to engage and position the docking plug board.

[0019] In an optional solution: the positioning assembly includes: a connecting baffle provided at one end of the docking plug-in plate away from the connecting plug rod, one end of the connecting baffle being fixedly connected to a positioning block, the positioning block passing through the interior of the docking plug-in plate, the end of the connecting baffle away from the positioning block being fixedly connected to a guide slide bar, one end of the connecting baffle being fixedly connected to a movable slider, the movable slider being located on one side of the positioning block, the movable slider, the connecting baffle, and the guide slide bar being all slidably connected to the tank body;

[0020] The guide slide bar is provided with a second reset component, and the second reset component is used to push the connecting baffle to slide and reset.

[0021] In an optional solution, the second reset component is a second spring sleeved on the outer wall of the guide slide rod, one end of the second spring contacts the outer wall of the connecting baffle, and the other end of the second spring contacts the inner wall of the tank body;

[0022] A moving assembly is provided on the outer side of the connecting rod, and the moving assembly is used to clamp and fix the moving slider and squeeze the connecting pressure ring to move.

[0023] In an optional solution: the moving assembly includes: a connecting push plate arranged on the outside of the connecting plug rod, the connecting push plate is located inside the tank body, the connecting push plate contacts the upper surface of the moving slider, the bottom end of the connecting push plate is fixedly connected to a lifting push rod, the lifting push rod passes through the tank body and contacts the outer wall of the connecting pressure ring, the connecting push plate and the lifting push rod are both slidably connected to the tank body, the bottom end of the connecting push plate is symmetrically fixedly connected to two positioning plug rods, the two positioning plug rods are symmetrically arranged on the outside of the lifting push rod, and the positioning plug rod passes through to the outside of the bottom end of the moving slider;

[0024] The connecting push plate is provided with a locking assembly, and the locking assembly is used to squeeze and lock the connecting push plate.

[0025] In an optional solution: the locking assembly is a bolt arranged on the outside of the connecting rod, the bolt is located on the outside of the tank body, the bolt passes through the inside of the tank body, the bolt is threadedly connected to the tank body, and the bolt contacts the outer wall of the connecting push plate.

[0026] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0027] 1. The utility model uses a partition mechanism to effectively prevent the temperature of the inner cavity of the tank from cooling down due to air leakage during the replacement of the temperature measuring probe. At the same time, the partition mechanism cooperates with the fixing mechanism to separate the inner cavity of the tank from the temperature measuring probe while releasing the locking fixation of the connecting rod, thereby achieving the purpose of convenient replacement of the temperature measuring probe without affecting the use of the tank.

[0028] 2、The utility model discloses a fixed mechanism can conveniently and clasp the positioning of connecting plug rod, and conveniently and dismount the temperature measuring probe through the lifting and plugging of connecting plug rod. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 It is the structure schematic drawing of the utility model.

[0030] Figure 2 It is the tank body section structure schematic drawing of the utility model.

[0031] Figure 3 It is the tank body internal structure schematic drawing in an embodiment of the utility model.

[0032] Figure 4 It is the explosion structure schematic drawing of partition mechanism and fixed mechanism in an embodiment of the utility model.

[0033] Figure 5 It is the connecting plug rod and butt joint plugboard connecting structure schematic drawing in an embodiment of the utility model.

[0034] Figure 6 It is the tank body internal structure schematic drawing in an embodiment of the utility model. Figure 2 It is the local amplification structure schematic drawing of A in the tank body internal structure of the utility model.

[0035] Figure 7 It is the local amplification structure schematic drawing of B in the tank body internal structure of the utility model. Figure 4

[0036] Reference signs annotation: 1, tank body;201, lifting pressure cylinder;202, fixed sleeve;203, sealing baffle;204, sealing plugboard;205, connecting push rod;206, first spring;207, connecting pressure ring;301, bolt;302, connecting push plate;303, moving sliding block;304, lifting push rod;305, connecting baffle;306, guide sliding rod;307, positioning clamping block;308, positioning plug rod;309, butt joint plugboard;3010, second spring;4, first number display screen;5, connecting plug rod;6, second number display screen;7, temperature measuring probe. DETAILED DESCRIPTION

[0037] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the following is further detailed to the utility model with the drawings and embodiment.

[0038] In an embodiment, as Figures 1-7 ​As shown, a tire heating tank with a real-time temperature measurement function includes a tank body 1. A plurality of second digital display screens 6 are arranged equidistantly above the tank body 1. The bottom ends of the plurality of second digital display screens 6 are fixedly connected to a connecting rod 5. The outer wall of the connecting rod 5 is provided with a sealing rubber ring in contact with the inner wall of the tank body 1. The sealing rubber ring can fill the gap between the connecting rod 5 and the tank body 1 to prevent the mutual flow of air inside and outside the tank body 1. The connecting rod 5 passes through the inner cavity of the tank body 1. The bottom end of the connecting rod 5 is installed with a temperature measuring probe 7. The temperature probe 7 is located in the inner cavity of the tank body 1, the second display screen 6 is electrically connected to the temperature probe 7 through a wire, and the multiple PLC second display screens 6 are electrically connected to the PLC module assembly through a wire. The outer wall of the tank body 1 is installed with a first display screen 4, and the first display screen 4 is located below one end of the multiple second display screens 6. The PLC module assembly is electrically connected to the first display screen 4 and the alarm through a wire. A partition mechanism for separating the temperature probe 7 from the inner cavity of the tank body 1 is provided on the outside of the temperature probe 7;

[0039] The partition mechanism includes: a fixed sleeve 202 arranged outside the temperature measuring probe 7, the fixed sleeve 202 is located inside the tank body 1, and the fixed sleeve 202 is fixedly connected to the inner wall of the tank body 1;

[0040] The connecting rod 5 is provided with a fixing mechanism for limiting and fixing the connecting rod 5;

[0041] In this embodiment, when in use, the temperature in the inner cavity of the tank body 1 can be detected in real time by the temperature measuring probe 7, and the detected data is transmitted to the second digital display screen 6 through the wire for display. At the same time, the multiple second digital display screens 6 transmit the data detected by the temperature measuring probe 7 to the PLC module assembly through the wire. At this time, the PLC module assembly calculates the data and takes the average of the two measured values ​​with the smallest difference as the final measurement result. Thereafter, the PLC module assembly transmits the final measurement result to the first digital display screen 4 through the wire for display. In this way, the first digital display screen 4 can compare the measurement results of the multiple second digital display screens 6 in real time through the final measurement result, thereby effectively avoiding the situation where the measurement result is incorrect;

[0042] When the measurement results of the plurality of second display screens 6 are compared through the first display screen 4, if it is found through the comparison that the temperature probes 7 on one or more second display screens 6 are faulty and cannot be used normally and need to be replaced, the PLC module assembly transmits a signal to the alarm through the wire, thereby activating the alarm to warn the staff, so as to prompt the staff to replace the faulty temperature probe 7. At this time, the staff can isolate the fixed sleeve 202 from the inner cavity of the tank body 1 through the mutual cooperation of the fixing mechanism and the partition mechanism, and release the clamping fixation of the connecting rod 5;

[0043] Then, the second digital display screen 6 is pulled up vertically. At this time, the connecting rod 5 is driven by the second digital display screen 6 to drive the temperature measuring probe 7 to move synchronously until the connecting rod 5 is driven by the second digital display screen 6 to drive the temperature measuring probe 7 and the tank body 1 to separate from each other, so that the temperature measuring probe 7 can be easily disassembled. At this time, the partition mechanism effectively prevents the temperature measuring probe 7 from cooling down due to air leakage in the process of disassembly.

[0044] Then, the above operation is reversed, so that the new temperature measuring probe 7 can be conveniently installed through the fixing mechanism, and the gap between the connecting rod 5 and the tank body 1 can be filled by the sealing rubber ring, so that the temperature of the inner cavity at different positions of the tank body 1 can continue to be detected in real time, thereby achieving the purpose of convenient replacement of the temperature measuring probe 7 without affecting the use of the tank body 1;

[0045] In one embodiment, Figures 2-7 As shown, the partition mechanism further includes: a blocking component disposed below the fixed sleeve 202, the blocking component being used to automatically block the port of the fixed sleeve 202;

[0046] The sealing assembly includes: a sealing baffle 203 disposed below the fixed sleeve 202, with a sealing insert 204 fixedly connected to the top of the sealing baffle 203. The upper surface of the sealing insert 204 is truncated cone-shaped. The bottom end of the fixed sleeve 202 is provided with an opening that matches the outer wall of the sealing insert 204. The mutual cooperation between the truncated cone-shaped outer wall and the opening allows the sealing insert 204 to fit tightly with the inner wall of the opening of the fixed sleeve 202, so that the sealing insert 204 can automatically seal the opening of the fixed sleeve 202;

[0047] The fixed sleeve 202 is provided with a lifting assembly, which is used to push the sealing baffle 203 to move up and down;

[0048] In one embodiment, Figures 2-7As shown, the lifting assembly includes: a connecting pressure ring 207 arranged above the fixed sleeve 202, the connecting pressure ring 207 is located on the outside of the connecting rod 5, the connecting pressure ring 207 is slidably connected to the tank body 1, the bottom end of the connecting pressure ring 207 is integrally formed with a lifting and lowering pressure cylinder 201, the lifting and lowering pressure cylinder 201 is located on the inside of the fixed sleeve 202, the lifting and lowering pressure cylinder 201 is slidably connected to the fixed sleeve 202, and the bottom end of the lifting and lowering pressure cylinder 201 is equidistantly fixedly connected to a plurality of connecting push rods 205 in the circumferential direction, and the plurality of connecting push rods 205 are all connected. Passing through the outside of the bottom end of the fixed sleeve 202, multiple connecting push rods 205 are all slidably connected to the fixed sleeve 202, and multiple connecting push rods 205 are all fixedly connected to the sealing baffle 203. Multiple connecting push rods 205 are all located on the outside of the sealing insert 204. Through the multiple connecting push rods 205, the sealing baffle 203 can drive the sealing insert 204 to move synchronously during the lifting and displacement process of the lifting and pressure cylinder 201. At the same time, the lifting and pressure cylinder 201 can slide along the inner wall of the tank body 1 through the connecting pressure ring 207.

[0049] The connecting push rod 205 is provided with a first reset component, which is used to push the lifting and lowering cylinder 201 to slide and reset.

[0050] In one embodiment, Figures 4-7 As shown, the first reset component is a first spring 206 sleeved on the outer wall of the connecting push rod 205, one end of the first spring 206 contacts the inner wall of the fixed sleeve 202, and the other end of the first spring 206 contacts the outer wall of the lifting and lowering cylinder 201.

[0051] In one embodiment, Figures 1-6 As shown, the fixing mechanism includes: a docking assembly arranged on the outside of the connecting rod 5, the docking assembly is used for accurately docking the connecting rod 5 with the tank body 1;

[0052] The docking assembly includes: two docking plates 309 symmetrically fixedly connected to the outer wall of the connecting rod 5, the bottom outer walls of the two docking plates 309 are both square platform-shaped, and a docking slot for the docking plates 309 to slide is provided at the connection position between the tank body 1 and the docking plates 309. Through the mutual cooperation between the square platform-shaped outer walls and the docking slots, the docking plates 309 can be accurately inserted into the inner wall of the tank body 1 under the drive of the connecting rod 5. At the same time, the docking plates 309 can limit the sliding of the connecting rod 5 inside the tank body 1;

[0053] A positioning assembly is provided at one end of the docking plug plate 309 away from the connecting rod 5, and the positioning assembly is used to engage and position the docking plug plate 309;

[0054] In one embodiment, Figures 2-6As shown, the positioning assembly comprises: a connecting baffle 305 arranged at the end of the docking plug 309 away from the connecting plug 5, one end of the connecting baffle 305 is fixedly connected with a positioning clamping block 307, the positioning clamping block 307 penetrates into the inside of the docking plug 309, the outer wall of the end of the positioning clamping block 307 away from the connecting baffle 305 is hemispherical, the docking plug 309 is provided with a positioning slot at the position where the docking plug 309 and the positioning clamping block 307 meet, the positioning slot is matched with the outer wall of the positioning clamping block 307, one end of the connecting baffle 305 is fixedly connected with a guide sliding rod 306, one end of the connecting baffle 305 is fixedly connected with a moving sliding block 303, the moving sliding block 303 is located on one side of the positioning clamping block 307, the moving sliding block 303, the connecting baffle 305 and the guide sliding rod 306 are slidingly connected with the tank body 1, through the cooperation of the hemispherical outer wall and the positioning slot, the positioning clamping block 307 can be pushed to move through the extrusion of the outer wall of the positioning clamping block 307 during the lifting movement of the docking plug 309;

[0055] The guide sliding rod 306 is provided with a second reset assembly, and the second reset assembly is used for slidingly resetting the connecting baffle 305;

[0056] In one embodiment, as shown in the figure, Figures 2-6 The second reset assembly is a second spring 3010 sleeved on the outer wall of the guide sliding rod 306, one end of the second spring 3010 is in contact with the outer wall of the connecting baffle 305, and the other end of the second spring 3010 is in contact with the inner wall of the tank body 1;

[0057] The outer side of the connecting plug 5 is provided with a moving assembly, and the moving assembly is used for clamping and fixing the moving sliding block 303 and extruding the connecting compression ring 207 to displace;

[0058] In one embodiment, as shown in the figure, Figures 2-6 The moving assembly comprises: a connecting push plate 302 arranged on the outer side of the connecting plug 5, the connecting push plate 302 is located in the inside of the tank body 1, the connecting push plate 302 is in contact with the upper surface of the moving sliding block 303, the bottom end of the connecting push plate 302 is fixedly connected with a lifting push rod 304, the lifting push rod 304 penetrates the tank body 1 and is in contact with the outer wall of the connecting compression ring 207, the connecting push plate 302 and the lifting push rod 304 are slidingly connected with the tank body 1, the bottom end of the connecting push plate 302 is fixedly connected with two positioning plug rods 308, the two positioning plug rods 308 are symmetrically arranged on the outer side of the lifting push rod 304, the bottom end of the outer wall of the two positioning plug rods 308 is hemispherical, the positioning plug rod 308 penetrates to the bottom end of the outside of the moving sliding block 303, through the hemispherical outer wall, the positioning plug rod 308 can be accurately inserted into the inside of the moving sliding block 303 and slide to the bottom end of the outside of the moving sliding block 303 along the inner wall of the moving sliding block 303;

[0059] The connecting push plate 302 is provided with a locking assembly, which is used to squeeze and lock the connecting push plate 302;

[0060] In one embodiment, Figures 1-6 As shown, the locking assembly is a bolt 301 arranged on the outside of the connecting rod 5. The bolt 301 is located on the outside of the tank body 1. The bolt 301 penetrates into the interior of the tank body 1. The bolt 301 is threadedly connected to the tank body 1. The bolt 301 contacts the outer wall of the connecting push plate 302. Through the threaded connection between the bolt 301 and the tank body 1, the bolt 301 can squeeze the connecting push plate 302 to move along the inner wall of the tank body 1 during the rotation process, and when the bolt 301 stops rotating, the connecting push plate 302 can be positioned and locked to prevent the connecting push plate 302 from automatically resetting under the push of the connecting pressure ring 207 through the lifting push rod 304.

[0061] The above embodiment discloses a tire heating tank with a real-time temperature measurement function, wherein, when in use, the temperature in the inner cavity of the tank body 1 can be detected in real time by the temperature measuring probe 7, and the detected data is transmitted to the second digital display screen 6 via a wire for display. At the same time, multiple second digital display screens 6 transmit the data detected by the temperature measuring probe 7 to the PLC module assembly via a wire. At this time, the PLC module assembly calculates the data and takes the average of the two measured values ​​with the smallest difference as the final measurement result. The PLC module assembly then transmits the final measurement result to the first digital display screen 4 via a wire for display. In this way, the first digital display screen 4 can compare the measurement results of multiple second digital display screens 6 in real time based on the final measurement result, thereby effectively avoiding the occurrence of incorrect measurement results.

[0062] When the measurement results of the plurality of second display screens 6 are compared through the first display screen 4, if it is found through the comparison that one or more temperature probes 7 on the second display screens 6 are faulty and cannot be used normally and need to be replaced, the PLC module assembly transmits a signal to the alarm through the wire, thereby activating the alarm to warn the staff, so as to prompt the staff to replace the faulty temperature probe 7. At this time, the staff rotates the bolt 301 upward by the tool, and at the same time, the first spring 206 pushes the lifting cylinder 201 to slide along the inner wall of the fixed sleeve 202 by rebounding. At this time, the sealing baffle 203 drives the sealing plug plate 204 to move synchronously under the drive of the lifting cylinder 201 through the plurality of connecting push rods 205. At the same time, the lifting push rod 304 pushes the connecting push plate 302 to slide along the inner wall of the tank body 1 through the connecting pressure ring 207 under the drive of the lifting cylinder 201. At this time, the connecting push plate 302 is always in contact with the lower surface of the bolt 301, so that the connecting push plate 302 can be synchronously displaced with the movement of the bolt 301.

[0063] During this process, the positioning rod 308 is driven by the connecting push plate 302 to slide along the inner wall of the movable slider 303. When the sealing plate 204 is pushed by the sealing baffle 203, it passes through the opening of the fixed sleeve 202 and reaches the interior of the fixed sleeve 202. At this time, the sealing baffle 203 is tightly fitted with the lower surface of the fixed sleeve 202, thereby blocking the port of the fixed sleeve 202. At the same time, the positioning rod 308 is driven by the connecting push plate 302 to separate from the movable slider 303, thereby isolating the fixed sleeve 202 from the inner cavity of the tank body 1 and releasing the clamping fixation of the movable slider 303.

[0064] Then, the second digital display screen 6 is pulled up vertically. At this time, the connecting rod 5 drives the docking plate 309 to move synchronously along the inner wall of the tank body 1 under the drive of the second digital display screen 6, and the temperature measuring probe 7 moves synchronously under the drive of the connecting rod 5. At the same time, the positioning block 307 moves under the extrusion of the docking plate 309. At this time, the connecting baffle 305, pushed by the positioning block 307, drives the moving slider 303 and the guide slide bar 306 to move synchronously along the inner wall of the tank body 1 respectively. At the same time, the connecting baffle 305 is retracted by moving and squeezing the second spring 3010. When the positioning block 307 and the outer wall of the docking plug plate 309 are separated from each other, the second spring 3010 pushes the connecting baffle 305 to reset by rebounding. Then, the connecting rod 5 drives the docking plug plate 309 and the temperature measuring probe 7 to separate from the tank body 1 under the drive of the second digital display screen 6, so that the temperature measuring probe 7 can be easily disassembled. At this time, the sealing baffle 203 and the sealing plug plate 204 block the opening of the fixed sleeve 202, effectively preventing the temperature of the inner cavity of the tank body 1 from cooling due to air leakage during the disassembly process of the temperature measuring probe 7;

[0065] Then, the above operation is reversed to conveniently install a new temperature probe 7. By lifting and plugging the connecting rod 5, the temperature probe 7 can be conveniently loaded and unloaded. At the same time, the gap between the connecting rod 5 and the tank body 1 can be filled by the sealing rubber ring to avoid the mutual flow of air inside and outside the tank body 1. In this way, the temperature of the inner cavity at different positions of the tank body 1 can continue to be detected in real time, thereby achieving the purpose of conveniently replacing the temperature probe 7 without affecting the use of the tank body 1.

[0066] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.

Claims

1. A tire heating tank with a real-time temperature measurement function, comprising a tank body (1), a plurality of second display screens (6) are arranged horizontally and equidistantly above the tank body (1), the bottom ends of the plurality of second display screens (6) are fixedly connected with a connecting rod (5), the connecting rod (5) passes through the inner cavity of the tank body (1), a temperature measuring probe (7) is installed at the bottom end of the connecting rod (5), the temperature measuring probe (7) is located in the inner cavity of the tank body (1), a first display screen (4) is installed on the outer wall of the tank body (1), the first display screen (4) is located below one end of the plurality of second display screens (6), and the invention is characterized in that: A partition mechanism for separating the temperature measuring probe (7) from the inner cavity of the tank body (1) is provided on the outer side of the temperature measuring probe (7); The partition mechanism comprises: a fixed sleeve (202) arranged outside the temperature measuring probe (7), the fixed sleeve (202) being located inside the tank body (1), and the fixed sleeve (202) being fixedly connected to the inner wall of the tank body (1); The connecting rod (5) is provided with a fixing mechanism for limiting and fixing the connecting rod (5).

2. The tire heating tank with real-time temperature measurement function according to claim 1, characterized in that: The partition mechanism further comprises: a blocking component arranged below the fixed sleeve (202), the blocking component being used to automatically block the port of the fixed sleeve (202); The blocking assembly comprises: a sealing baffle (203) arranged below the fixed sleeve (202), the top end of the sealing baffle (203) being fixedly connected to a sealing plug plate (204); The fixed sleeve (202) is provided with a lifting assembly, and the lifting assembly is used to push the sealing baffle (203) to move up and down.

3. The tire heating tank with real-time temperature measurement function according to claim 2, characterized in that: The lifting assembly comprises: a connecting pressure ring (207) arranged above the fixed sleeve (202), the connecting pressure ring (207) being located on the outside of the connecting rod (5), the connecting pressure ring (207) being slidably connected to the tank body (1), a lifting and lowering pressure cylinder (201) being integrally formed at the bottom end of the connecting pressure ring (207), the lifting and lowering pressure cylinder (201) being located on the inside of the fixed sleeve (202), the lifting and lowering pressure cylinder (201) being slidably connected to the fixed sleeve (202), and the lifting and lowering pressure cylinder (201) being integrally formed with the bottom end of the connecting pressure ring (207). The bottom end of the lifting and lowering cylinder (201) is fixedly connected with a plurality of connecting push rods (205) at equal intervals in the circumferential direction. The plurality of connecting push rods (205) all penetrate the outside of the bottom end of the fixed sleeve (202). The plurality of connecting push rods (205) are slidably connected to the fixed sleeve (202). The plurality of connecting push rods (205) are fixedly connected to the sealing baffle (203). The plurality of connecting push rods (205) are located on the outside of the sealing plug plate (204); The connecting push rod (205) is provided with a first reset component, and the first reset component is used to push the lifting and lowering cylinder (201) to slide and reset.

4. The tire heating tank with real-time temperature measurement function according to claim 3, characterized in that: The first reset component is a first spring (206) sleeved on the outer wall of the connecting push rod (205), one end of the first spring (206) contacts the inner wall of the fixed sleeve (202), and the other end of the first spring (206) contacts the outer wall of the lifting and lowering cylinder (201).

5. The tire heating tank with real-time temperature measurement function according to claim 1, characterized in that: The fixing mechanism comprises: a docking assembly arranged outside the connecting rod (5), the docking assembly being used for accurately docking the connecting rod (5) with the tank body (1); The docking assembly comprises: two docking plug plates (309) symmetrically fixedly connected to the outer wall of the connecting plug rod (5); the outer walls of the bottom ends of the two docking plug plates (309) are both in the shape of a square platform; and a docking slot for the docking plug plates (309) to slide is provided at the joint position between the tank body (1) and the docking plug plates (309); A positioning assembly is provided at one end of the docking plug plate (309) away from the connecting plug rod (5), and the positioning assembly is used to engage and position the docking plug plate (309).

6. The tire heating tank with real-time temperature measurement function according to claim 5, characterized in that: The positioning assembly comprises: a connecting baffle (305) arranged at one end of the docking plug plate (309) away from the connecting plug rod (5); one end of the connecting baffle (305) is fixedly connected to a positioning block (307); the positioning block (307) penetrates into the interior of the docking plug plate (309); one end of the connecting baffle (305) away from the positioning block (307) is fixedly connected to a guide slide bar (306); one end of the connecting baffle (305) is fixedly connected to a moving slider (303); the moving slider (303) is located on one side of the positioning block (307); the moving slider (303), the connecting baffle (305) and the guide slide bar (306) are all slidably connected to the tank body (1); The guide slide bar (306) is provided with a second reset component, and the second reset component is used to push the connecting baffle (305) to slide and reset.

7. The tire heating tank with real-time temperature measurement function according to claim 6, characterized in that: The second reset component is a second spring (3010) sleeved on the outer wall of the guide slide (306), one end of the second spring (3010) contacts the outer wall of the connecting baffle (305), and the other end of the second spring (3010) contacts the inner wall of the tank body (1); A moving assembly is provided on the outside of the connecting rod (5), and the moving assembly is used to engage and fix the moving slider (303) and squeeze the connecting pressure ring (207) to move.

8. The tire heating tank with real-time temperature measurement function according to claim 7, characterized in that: The moving assembly includes: a connecting push plate (302) arranged on the outside of the connecting plug rod (5), the connecting push plate (302) is located inside the tank body (1), the connecting push plate (302) is in contact with the upper surface of the moving slider (303), the bottom end of the connecting push plate (302) is fixedly connected with a lifting push rod (304), the lifting push rod (304) passes through the tank body (1) and contacts the outer wall of the connecting pressure ring (207), the connecting push plate (302) and the lifting push rod (304) are both slidably connected to the tank body (1), the bottom end of the connecting push plate (302) is symmetrically fixedly connected with two positioning plug rods (308), the two positioning plug rods (308) are symmetrically arranged on the outside of the lifting push rod (304), and the positioning plug rod (308) passes through the outside of the bottom end of the moving slider (303); A locking assembly is provided on the connecting push plate (302), and the locking assembly is used to squeeze and lock the connecting push plate (302).

9. The tire heating tank with real-time temperature measurement function according to claim 8, characterized in that: The locking assembly is a bolt (301) arranged on the outside of the connecting rod (5), the bolt (301) is located on the outside of the tank body (1), the bolt (301) penetrates into the interior of the tank body (1), the bolt (301) is threadedly connected to the tank body (1), and the bolt (301) contacts the outer wall of the connecting push plate (302).