Furnace body temperature auxiliary control mechanism

By combining a fan and heat dissipation fin structure for rapid cooling with a convenient sealing strip design, the problem of delayed furnace temperature control is solved, enabling rapid temperature adjustment and simplified seal replacement, thus improving the efficiency and practicality of furnace temperature control.

CN224108658UActive Publication Date: 2026-04-10SHANXI TAIXIANG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANXI TAIXIANG TECH CO LTD
Filing Date
2025-05-15
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing auxiliary temperature control mechanism for the furnace body takes a long time to start up or switch temperatures, resulting in poor continuity of the production process and affecting production efficiency.

Method used

It employs a fan and heat sink structure for rapid heat dissipation, combined with a removable sealing strip design to achieve rapid temperature control and convenient replacement.

Benefits of technology

It improves the efficiency and practicality of furnace temperature control, ensures that the equipment can quickly reach the target temperature, simplifies the process of replacing sealing strips, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of temperature control mechanisms, and discloses a furnace body temperature auxiliary control mechanism which comprises a furnace body, a shell is arranged on the outer wall of the furnace body, a heat dissipation assembly is arranged on the outer wall of the furnace body, a plurality of fans are fixedly connected in the shell, a plurality of sealing assemblies are arranged in the furnace body, and the heat dissipation assembly is arranged on the outer wall of the furnace body. The heat dissipation assembly comprises a plurality of first heat dissipation fins and a plurality of second heat dissipation fins, the bottom of each first heat dissipation fin is fixedly connected to the top of the furnace body, the bottom of each second heat dissipation fin is fixedly connected to the top of the furnace body, and the first heat dissipation fins are arranged in the shell in a parallel array mode. According to the auxiliary control mechanism for the temperature of the furnace body, when the temperature of the furnace body is too high, the fan starts to move to extract heat absorbed by the heat dissipation fins, so that the effect of rapidly controlling the temperature of the furnace body to a required value is achieved, the problem that time is needed to control the temperature of the furnace body is solved, and the high efficiency of the auxiliary control mechanism for the temperature of the furnace body is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to temperature control mechanism field especially relates to a furnace body temperature auxiliary control mechanism. BACKGROUND

[0002] Temperature control mechanism is the device or system that adjusts and maintains the temperature of specific space or object in the set range with the help of temperature sensor, controller and execution element, uses furnace body temperature auxiliary control mechanism, can improve temperature control precision, controls furnace temperature fluctuation in narrower range, fits high accuracy process demand, can enhance temperature uniformity, through multipoint monitoring and pertinence adjustment, ensures that the temperature of each place in the furnace is consistent, improves product quality, can also improve system reliability and stability, intervenes in maintaining temperature stability at critical moment, responds to sudden change, can more adapt to complex process demand, realizes various temperature curves with main control mechanism, and can save energy and reduce consumption, optimizes heating and heat dissipation, avoids energy waste, reduces cost, achieves the purpose of energy saving and emission reduction.

[0003] Temperature control mechanism is the device or system that adjusts and maintains the temperature of specific space or object in the set range with the help of temperature sensor, controller and execution element, uses furnace body temperature auxiliary control mechanism, can improve temperature control precision, controls furnace temperature fluctuation in narrower range, fits high accuracy process demand, can enhance temperature uniformity, through multipoint monitoring and pertinence adjustment, ensures that the temperature of each place in the furnace is consistent, improves product quality, can also improve system reliability and stability, intervenes in maintaining temperature stability at critical moment, responds to sudden change, can more adapt to complex process demand, realizes various temperature curves with main control mechanism, and can save energy and reduce consumption, optimizes heating and heat dissipation, avoids energy waste, reduces cost, achieves the purpose of energy saving and emission reduction.

[0004] In industrial production, furnace body temperature auxiliary control mechanism plays a key role, however, in the actual use process, it exposes a significant short board, although the mechanism can regulate and control the furnace body temperature, but cannot effectively solve the problem of time-consuming heating, whenever the equipment starts or needs to switch to new working temperature, it often takes quite a long time to accurately regulate the temperature inside the furnace body to the required level, this temperature rising time delay greatly influences the coherence of the overall production process, makes the equipment unable to quickly put into effective operation, and further reduces the efficiency of the furnace body temperature auxiliary control mechanism that should have high efficiency, becomes a bottleneck of the improvement of production efficiency. UTILITY MODEL CONTENTS

[0005] In order to make up for the above shortcomings, the utility model provides a furnace body temperature auxiliary control mechanism, which aims at improving the problem that a certain time is needed to control the temperature inside the furnace body to the required temperature during equipment use.

[0006] In order to achieve the above object, the utility model discloses the following technical scheme: a furnace body temperature auxiliary control mechanism, including the furnace body, the furnace body outer wall is provided with the shell, the furnace body outer wall is provided with the heat dissipation subassembly, a plurality of fans are fixedly connected in the shell, a plurality of sealing assemblies are arranged in the furnace body,

[0007] The heat dissipation assembly includes a plurality of heat dissipation fins one and a plurality of heat dissipation fins two, the bottom of each heat dissipation fin one is fixedly connected to the top of the furnace body, the bottom of each heat dissipation fin two is fixedly connected to the top of the furnace body, the heat dissipation fins one are arranged in parallel array in the shell, and the heat dissipation fins two are arranged in parallel array in the shell.

[0008] Further description of the above technical scheme:

[0009] Each sealing assembly includes a shaft, a furnace door and a handle, the outer wall of each shaft is rotatably connected to the inside of the furnace body, one end of each furnace door is fixedly connected to the outer wall of the shaft, and one side of each handle is fixedly connected to one side of the furnace door.

[0010] Further description of the above technical scheme:

[0011] One side of one of the furnace doors is fixedly connected with a plurality of connecting blocks one, and one side of each connecting block one is fixedly connected with a limiting block one.

[0012] Further description of the above technical scheme:

[0013] One side of one of the furnace doors is fixedly connected with a plurality of connecting blocks one, and one side of each connecting block one is fixedly connected with a limiting block one.

[0014] Further description of the above technical scheme:

[0015] Each of the furnace doors is fixedly connected with a plurality of connecting blocks two on the top and the bottom, and each of the connecting blocks two is fixedly connected with a limiting block two on the bottom or the top.

[0016] Further description of the above technical scheme:

[0017] Each of the furnace doors is fixedly connected with a plurality of connecting blocks two on the top and the bottom, and each of the connecting blocks two is fixedly connected with a limiting block two on the bottom or the top.

[0018] Further description of the above technical scheme:

[0019] The limiting blocks one are arranged in symmetrical array on one side of the furnace door, and the outer wall of each limiting block one is slidably connected in the sliding groove one.

[0020] Further description of the above technical scheme:

[0021] The connecting blocks two are symmetrically arranged on the top and bottom of the furnace door, and the outer wall of each connecting block two is slidably connected to the inside of the sliding groove two.

[0022] The utility model has the advantages of the following:

[0023] 1、 the utility model discloses in, when the temperature in the furnace body is too high, the fan in the shell will start to move, and the heat absorbed by the heat dissipation fin one and the heat dissipation fin two is quickly extracted from the shell, and then the temperature of the furnace body is reduced, so that the furnace body temperature can be controlled to the required value during the use of the equipment, and the problem that the temperature in the furnace body needs to be controlled to the required temperature during the use of the equipment is avoided, so that the efficiency of the furnace body temperature auxiliary control mechanism is improved.

[0024] 2、 the utility model discloses, first hold the handle and pull outwards, so that the furnace door is opened to expose the sealing strip one and the sealing strip two, then hold the sealing strip two and pull outwards, so that the limiting block two is separated from the deepest part of the sliding groove two, and the sealing strip two is removed, then hold the sealing strip one and lift upwards, so that the limiting block one is separated from the deepest part of the sliding groove one, and the sealing strip one is removed, so that the sealing strip can be easily removed and replaced during the use of the equipment, and the problem that the sealing ring needs to be removed and replaced through complex operation during the use of the equipment is avoided, so that the practicality of the furnace body temperature auxiliary control mechanism is improved. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 A perspective view of a furnace body temperature auxiliary control mechanism is provided for the utility model;

[0026] Figure 2 A shell internal structure schematic view of a furnace body temperature auxiliary control mechanism is provided for the utility model;

[0027] Figure 3 A Figure 2 partial enlarged structure schematic view of A in the middle;

[0028] Figure 4 A furnace door structure schematic view of a furnace body temperature auxiliary control mechanism is provided for the utility model;

[0029] Figure 5 A Figure 4 partial enlarged structure schematic view of B in the middle;

[0030] Figure 6 A Figure 4 partial enlarged structure schematic view of C in the middle.

[0031] LEGEND:

[0032] 1, furnace body; 2, heat dissipation fin one; 3, heat dissipation fin two; 4, shell; 5, fan; 6, rotating shaft; 7, furnace door; 8, handle; 9, connecting block one; 10, limiting block one; 11, sealing strip one; 12, sliding groove one; 13, connecting block two; 14, limiting block two; 15, sealing strip two; 16, sliding groove two. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0034] Referring to Figures 1-3 An embodiment provided by the utility model: a furnace body temperature auxiliary control mechanism, including furnace body 1, the outer wall of furnace body 1 is provided with shell 4, for keeping the temperature of internal furnace body 1, the outer wall of furnace body 1 is provided with heat dissipation assembly, for exporting the temperature of furnace body 1, shell 4 is fixedly connected with multiple fans 5 in the inside, for extracting the heat in the inside of furnace body 1, furnace body 1 is provided with multiple sealing assemblies in the inside, for sealing furnace body 1;

[0035] Heat dissipation assembly includes multiple heat dissipation fin one 2 and multiple heat dissipation fin two 3, the bottom of each heat dissipation fin one 2 is fixedly connected in the top of furnace body 1, for exporting the heat in the inside of furnace body 1, the bottom of each heat dissipation fin two 3 is fixedly connected in the top of furnace body 1, for exporting the heat in the inside of furnace body 1, heat dissipation fin one 2 is arranged in parallel array in the inside of shell 4, heat dissipation fin two 3 is arranged in parallel array in the inside of shell 4, each sealing assembly includes rotating shaft 6, furnace door 7 and handle 8, the outer wall of each rotating shaft 6 is rotatably connected in the inside of furnace body 1, for providing mechanical support for the rotation of furnace door 7, one end of each furnace door 7 is fixedly connected in the outer wall of rotating shaft 6, for closing furnace body 1, one side of each handle 8 is fixedly connected in one side of furnace door 7, for pulling furnace door 7.

[0036] Specifically, when the temperature in the inside of furnace body 1 is too high, the fan 5 in the inside of shell 4 responds rapidly, at this time, the heat dissipation fin one 2 and heat dissipation fin two 3 closely fitted in the outer wall of furnace body 1, by virtue of the large-area metal material, absorb a large amount of heat emitted by furnace body 1, the strong suction of fan 5 rapidly extracts the heat absorbed by heat dissipation fin one 2 and heat dissipation fin two 3 from the inside of shell 4, and is discharged to the external environment through a specific air duct, in this way, the temperature of furnace body 1 gradually reduces, and is finally controlled to the value required for production, to ensure that furnace body 1 always operates stably under suitable temperature conditions.

[0037] Referring to Figures 4-6One of the furnace door 7 side fixedly connected with a plurality of connecting block a 9, for connecting the limiting block a 10, each connecting block a 9 side is fixedly connected with limiting block a 10, limit the movement of sealing strip a 11, one of the furnace door 7 side slidingly connected with sealing strip a 11, for closing the gap between the two furnace door 7, sealing strip a 11 side is provided with a plurality of sliding groove a 12, for containing limiting block a 10, each furnace door 7 top and bottom are fixedly connected with a plurality of connecting block b 13, for connecting limiting block b 14, each connecting block b 13 bottom or top is fixedly connected with limiting block b 14, limit the movement of sealing strip b 15, each furnace door 7 top and bottom are slidingly connected with sealing strip b 15, for sealing the gap between the furnace door 7 and the furnace body 1, each sealing strip b 15 outer wall is provided with a plurality of sliding groove b 16, for containing limiting block b 14, limiting block a 10 between the symmetrical array arrangement in the furnace door 7 side, each limiting block a 10 outer wall is slidingly connected in the sliding groove a 12 inside, connecting block b 13 between the symmetrical array arrangement in the furnace door 7 top and bottom, each connecting block b 13 outer wall is slidingly connected in the sliding groove b 16 inside.

[0038] Specifically, when the sealing of the furnace body 1 is found to be reduced, the sealing strip a 11 and the sealing strip b 15 need to be replaced, first, the operator holds the handle 8 on the furnace door 7, then the operator pulls the handle 8 outward to open the furnace door 7, so that the sealing strip a 11 and the sealing strip b 15 are exposed, at this time, the operator stretches out his hand to hold the sealing strip b 15, then pulls it outward, with the force, the limiting block b 14 originally embedded in the deepest part of the sliding groove b 16 is gradually loosened and smoothly comes out from the deepest part of the sliding groove b 16, at this time, the sealing strip b 15 is successfully removed, then the operator stretches out his hand to hold the sealing strip a 11 again, then slightly lifts it with force, in this process, the limiting block a 10 originally stuck in the deepest part of the sliding groove a 12 is slowly separated, until it is completely separated from the deepest part of the sliding groove a 12, the sealing strip a 11 is also smoothly removed, then the operator picks up the new sealing strip a 11 and aligns it with the position of the sliding groove a 12, gently presses it down, so that the limiting block a 10 slowly embeds into the sliding groove a 12, until it is installed stably, then the operator picks up the new sealing strip b 15 and installs it in place by the same operation, so that the limiting block b 14 completely embeds into the deepest part of the sliding groove b 16, in this way, the replacement of the sealing strip a 11 and the sealing strip b 15 is successfully completed, ensuring that the furnace body 1 has good sealing performance again.

[0039] Working principle: in the process of using the furnace body temperature auxiliary control mechanism, when the temperature inside the furnace body 1 is too high, the fan 5 inside the shell 4 will start to move, the heat absorbed by the heat dissipation fin one 2 and the heat dissipation fin two 3 is quickly extracted from the inside of the shell 4, and then the temperature of the furnace body 1 is reduced, so that the temperature of the furnace body 1 is controlled to the required value, when the sealing strip one 11 and the sealing strip two 15 need to be replaced, first hold the handle 8 and pull it outwards, so that the furnace door 7 is opened to expose the sealing strip one 11 and the sealing strip two 15, then hold the sealing strip two 15 and pull it outwards, so that the limiting block two 14 is separated from the deepest part of the sliding groove two 16, and the sealing strip two 15 is removed, then hold the sealing strip one 11 and pull it up, so that the limiting block one 10 is separated from the deepest part of the sliding groove one 12, and the sealing strip one 11 is removed, then install the new sealing strip one 11 back, and then install the new sealing strip two 15 back, so as to complete the replacement of the sealing strip one 11 and the sealing strip two 15.

[0040] Finally, it should be pointed out that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A furnace temperature auxiliary control mechanism comprising a furnace (1), characterized by: The outer wall of the furnace body (1) is provided with an outer shell (4), the outer wall of the furnace body (1) is provided with a heat dissipation assembly, a plurality of fans (5) are fixedly connected inside the outer shell (4), and the inside of the furnace body (1) is provided with a plurality of sealing assemblies; The heat dissipation assembly comprises a plurality of heat dissipation fins one (2) and a plurality of heat dissipation fins two (3), the bottom of each heat dissipation fin one (2) is fixedly connected to the top of the furnace body (1), the bottom of each heat dissipation fin two (3) is fixedly connected to the top of the furnace body (1), the heat dissipation fins one (2) are arranged in parallel array inside the outer shell (4), and the heat dissipation fins two (3) are arranged in parallel array inside the outer shell (4).

2. A furnace temperature auxiliary control mechanism according to claim 1, characterized by: Each sealing assembly comprises a rotating shaft (6), a furnace door (7) and a handle (8), the outer wall of each rotating shaft (6) is rotatably connected in the furnace body (1), one end of each furnace door (7) is fixedly connected to the outer wall of the rotating shaft (6), and one side of each handle (8) is fixedly connected to one side of the furnace door (7).

3. A furnace temperature auxiliary control mechanism according to claim 2, wherein: One side of one of the furnace doors (7) is fixedly connected with a plurality of connecting blocks one (9), and one side of each connecting block one (9) is fixedly connected with a limiting block one (10).

4. A furnace temperature auxiliary control mechanism according to claim 2, wherein: One side of one of the furnace doors (7) is slidably connected with a sealing strip one (11), and a plurality of sliding grooves one (12) are formed in one side of the sealing strip one (11).

5. A furnace temperature auxiliary control mechanism according to claim 2, wherein: The top and bottom of each furnace door (7) are fixedly connected with a plurality of connecting blocks two (13), and the bottom or top of each connecting block two (13) is fixedly connected with a limiting block two (14).

6. A furnace temperature auxiliary control mechanism according to claim 2, wherein: The top and bottom of each furnace door (7) are slidably connected with a sealing strip two (15), and a plurality of sliding grooves two (16) are formed in the outer wall of each sealing strip two (15).

7. A furnace temperature auxiliary control mechanism according to claim 3, wherein: The limiting blocks one (10) are arranged in symmetrical array on one side of the furnace door (7), and the outer wall of each limiting block one (10) is slidably connected in the sliding groove one (12).

8. A furnace temperature auxiliary control mechanism according to claim 5, wherein: The connecting blocks two (13) are arranged in symmetrical array on the top and bottom of the furnace door (7), and the outer wall of each connecting block two (13) is slidably connected in the sliding groove two (16).