Temperature control device

By designing a temperature control device in the tea shaking machine, combining the temperature control components and position adjustment mechanism, and using a combustion furnace to adjust the air inlet temperature, the problem that traditional heating methods cannot take into account both cost and temperature control accuracy, achieving a low-cost and high-precision temperature control effect.

CN223219877UActive Publication Date: 2025-08-15WUYISHAN YIYIN XIAOCHOU TEA CO LTD
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Patent Information

Application Number
CN202422582523.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-15
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The heating method of traditional tea greening machines cannot take into account both cost and temperature control accuracy, and the electric heating energy consumption is high, while the charcoal heating temperature is not easy to control.

Method used

Design a temperature control device, including temperature control components, position adjustment mechanism and combustion furnace, and realizes precise temperature control by monitoring the air inlet temperature and adjusting the distance between the combustion furnace and the air inlet, and uses charcoal combustion to reduce costs.

Benefits of technology

It achieves precise temperature control effect while reducing production costs, and improves the temperature control accuracy of the tea baking process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223219877U_ABST
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Abstract

The utility model discloses a temperature control device which is arranged opposite to an air inlet of a green leaf rocking machine and comprises a temperature control assembly, a position adjusting mechanism and a combustion furnace, a detection end of the temperature control assembly is arranged at an air inlet of the green leaf rocking machine, and the temperature control assembly is electrically connected with the position adjusting mechanism; the combustion furnace is arranged at the movable end of the position adjusting mechanism, so that the combustion furnace is gradually close to or far away from the air inlet of the green leaf rocking machine. According to the temperature control device, the heat supply cost can be considered, and accurate temperature control can be achieved.
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Description

Technical Field

[0001] The utility model relates to the field of tea baking equipment, in particular to a temperature control device. Background Art

[0002] Traditional tea-shaking machines typically use an external heat source to heat the interior of the machine. The main heating methods include electric heating and charcoal heating. While electric heating offers precise temperature control, it consumes more energy, increasing production costs. Charcoal heating, on the other hand, is less expensive but can be difficult to control. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide a temperature control device to overcome the defect that the existing heating mode of the shaking machine cannot take into account both cost and temperature control accuracy.

[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is:

[0005] A temperature control device is arranged opposite to the air inlet of the shaking machine, and includes a temperature control component, a position adjustment mechanism and a combustion furnace;

[0006] The detection end of the temperature control component is arranged at the air inlet of the shaking machine, and the temperature control component is electrically connected to the position adjustment mechanism;

[0007] The combustion furnace is arranged at the movable end of the position adjustment mechanism so that the combustion furnace gradually approaches or gradually moves away from the air inlet of the shaking machine.

[0008] Furthermore, the position adjustment mechanism includes a base, a linear drive assembly and a supporting member;

[0009] The combustion furnace is arranged on the supporting member;

[0010] The supporting member is in transmission connection with the movable end of the linear drive assembly, and the supporting member is slidably arranged on the top of the base.

[0011] Furthermore, the position adjustment mechanism also includes an ash tray; the base includes a bracket and a shell; an ash discharge channel is provided in the shell; in the vertical direction, the two sides of the shell are interconnected; a receiving cavity connected to the ash discharge channel is formed between the bracket and the shell, and the ash tray can be slidably arranged in the receiving cavity, and the ash tray is used to collect ash generated after combustion in the combustion furnace.

[0012] Furthermore, in the vertical direction, the projection area of the ash discharge channel is located on the ash collecting tray.

[0013] Furthermore, the linear drive assembly includes a driving member, a rotating member and a transmission member;

[0014] In the moving direction of the combustion furnace, the driving member and the rotating member are respectively arranged at two ends of the base;

[0015] The transmission member is sleeved outside the output end of the driving member and outside the rotating member, and the transmission member is transmission-connected to the supporting member.

[0016] Furthermore, a limit sensing component is provided in the base;

[0017] A limiting member is provided at the bottom of the supporting member;

[0018] The limit sensing component includes a first sensing end and a second sensing end;

[0019] In the moving direction of the combustion furnace, the first sensing end and the second sensing end are arranged opposite to each other, and the limiting member can move back and forth between the first sensing end and the second sensing end.

[0020] Furthermore, the limit sensing assembly includes a first contact switch and a second contact switch;

[0021] The first sensing end is located on the first contact switch, and the second sensing end is located on the second contact switch.

[0022] Furthermore, a sliding member is provided on one side of the supporting member facing the base;

[0023] The supporting member is pressed against the top of the base through the sliding member.

[0024] Furthermore, at least four sliding members are provided, and at least one sliding member is provided on an edge portion of the supporting member and the combustion furnace that are parallel to each other in their moving directions.

[0025] Furthermore, a sprocket is provided at the output end of the driving member, and the transmission member is a tank chain.

[0026] The beneficial effects of the present invention are: by setting a temperature control component for monitoring the temperature of the air inlet of the shaking machine, and by cooperating with the position adjustment mechanism and the combustion furnace, the distance between the combustion furnace and the air inlet of the shaking machine can be controlled according to the temperature of the air inlet of the shaking machine, thereby realizing temperature control, and the combustion furnace is used to burn fuel, and the production cost is lower than that of electric heating. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a schematic structural diagram of the temperature control device of the present utility model;

[0028] Figure 2 This is a cross-sectional view of the temperature control device of the present invention;

[0029] Figure 3 It is a bottom view of the temperature control device in the utility model.

[0030] Description of labels:

[0031] 1. Temperature control components;

[0032] 2. Position adjustment mechanism; 21. Base; 211. Bracket; 212. Housing; 2121. Ash discharge channel; 213. Accommodating chamber; 22. Linear drive assembly; 221. Driving member; 222. Rotating member; 223. Transmission member; 23. Support member; 231. Limiting member; 2311. Limiting plate; 24. Ash collection tray; 25. Limit sensing assembly; 251. First contact switch; 252. Second contact switch; 26. Sliding member;

[0033] 3. Combustion furnace. DETAILED DESCRIPTION

[0034] In order to explain the technical content, achieved objectives and effects of the present invention in detail, the following description is given in conjunction with the embodiments and the accompanying drawings.

[0035] Please refer to Figure 1-Figure 3 A temperature control device is provided. The temperature control device is positioned opposite the air inlet of a charcoal shaker and includes a temperature control assembly 1, a position adjustment mechanism 2, and a combustion furnace 3. The detection end of the temperature control assembly 1 is positioned at the air inlet of the charcoal shaker and is electrically connected to the position adjustment mechanism 2. The combustion furnace 3 is positioned at the movable end of the position adjustment mechanism 2 so that the combustion furnace 3 gradually moves closer to or further away from the air inlet of the charcoal shaker. The combustion furnace 3 is used to burn charcoal.

[0036] It can be understood that by setting up a temperature control component 1 for monitoring the temperature of the air inlet of the shaking machine, and through the cooperation of the position adjustment mechanism 2 and the combustion furnace 3, the distance between the combustion furnace 3 and the air inlet of the shaking machine can be controlled according to the temperature of the air inlet of the shaking machine, thereby achieving temperature control, and the combustion furnace 3 is used to burn fuel, and the production cost is lower than that of electric heating.

[0037] In some embodiments, the position adjustment mechanism 2 includes a base 21, a linear drive assembly 22, and a support member 23; the combustion furnace 3 is disposed on the support member 23; the support member 23 is transmission-connected to the movable end of the linear drive assembly 22, and the support member 23 is slidably disposed on the top of the base 21. Specifically, the temperature control assembly 1 includes a control panel and a temperature sensor, the temperature sensor is disposed at the detection end of the temperature control assembly 1, the temperature sensor is disposed in the air inlet of the green tea shaking machine, and the control panel is disposed on one side of the base 21. The linear drive assembly 22 is provided to drive the support member 23 to move relative to the base 21, thereby controlling the temperature of the combustion furnace 3 and the air inlet of the green tea shaking machine.

[0038] In some embodiments, the position adjustment mechanism 2 also includes an ash collecting tray 24; the base 21 includes a bracket 211 and a shell 212; the shell 212 has an ash discharge channel 2121; in the vertical direction, the two sides of the shell 212 are interconnected; a receiving cavity 213 connected to the ash discharge channel 2121 is formed between the bracket 211 and the shell 212, and the ash collecting tray 24 can be slidably arranged in the receiving cavity 213, and the ash collecting tray 24 is used to collect ash generated after combustion in the combustion furnace 3.

[0039] In some embodiments, in the vertical direction, the projection area of the ash discharge channel 2121 is located on the ash collecting tray 24. Since the combustion furnace 3 will move back and forth in the area formed by the ash discharge channel 2121, the projection area of the ash discharge channel 2121 is located on the ash collecting tray 24, which can ensure that the ashes produced by combustion fall onto the ash collecting tray 24 to facilitate the handling of the ashes.

[0040] In some embodiments, the linear drive assembly 22 includes a driving member 221, a rotating member 222, and a transmission member 223. In the direction of movement of the combustion furnace 3, the driving member 221 and the rotating member 222 are respectively disposed at opposite ends of the base 21. The transmission member 223 is sleeved outside the output end of the driving member 221 and outside the rotating member 222, and is in driving connection with the supporting member 23. Preferably, the driving member 221 includes a servo motor and a sprocket, the sprocket being disposed at the output end of the driving member 221. The transmission member 223 is a tank chain, and the rotating member 222 is also a sprocket.

[0041] In some embodiments, a limit sensing component 25 is provided in the base 21; a limit member is provided at the bottom of the supporting member 23; the limit sensing component 25 includes a first sensing end and a second sensing end; in the moving direction of the combustion furnace 3, the first sensing end and the second sensing end are arranged opposite to each other, and the limit member can move back and forth between the first sensing end and the second sensing end.

[0042] In some embodiments, the limit sensing assembly 25 includes a first contact switch 251 and a second contact switch 252; the first sensing end is located on the first contact switch 251, and the second sensing end is located on the second contact switch 252. The first contact switch 251 and the second contact switch 252 are provided to sense the position of the support member 23, thereby controlling the movement of the driving member 221 and ensuring that the air inlet temperature of the tea-shaking machine reaches the set temperature.

[0043] In some embodiments, a sliding member 26 is provided on the side of the support member 23 facing the base 21; the support member 23 is pressed against the top of the base 21 via the sliding member 26. The provision of the sliding member 26 is used to reduce the friction between the support member 23 and the base 21 and improve the smoothness of the movement of the support member 23.

[0044] In some embodiments, at least four sliding members 26 are provided, and at least one sliding member 26 is provided on the side of the support member 23 where the movement direction of the combustion furnace 3 is parallel to each other. Preferably, two sliding members 26 are provided on each of the two sides where the movement direction of the support member 23 is parallel to each other to ensure the stability of the support member 23.

[0045] The first embodiment of the present invention is:

[0046] A temperature control device is arranged opposite to the air inlet of a green tea shaking machine, and includes a temperature control component 1, a position adjustment mechanism 2 and a combustion furnace 3; the detection end of the temperature control component 1 is arranged at the air inlet of the green tea shaking machine, and the temperature control component 1 is electrically connected to the position adjustment mechanism 2; the combustion furnace 3 is arranged at the movable end of the position adjustment mechanism 2, so that the combustion furnace 3 gradually approaches or gradually moves away from the air inlet of the green tea shaking machine.

[0047] In this embodiment, the position adjustment mechanism 2 includes a base 21, a linear drive assembly 22, and a support member 23. The combustion furnace 3 is mounted on the support member 23. The support member 23 is in driving connection with the movable end of the linear drive assembly 22 and is slidably mounted on the top of the base 21. Specifically, the temperature control assembly 1 includes a control panel and a temperature sensor. The temperature sensor is mounted at the detection end of the temperature control assembly 1 and is located within the air inlet of the shaking machine. The control panel is mounted on one side of the base 21.

[0048] In this embodiment, the position adjustment mechanism 2 also includes an ash collection tray 24. The base 21 includes a bracket 211 and a housing 212. The housing 212 defines an ash discharge passage 2121. Vertically, the two sides of the housing 212 communicate with each other. A receiving cavity 213, which communicates with the ash discharge passage 2121, is formed between the bracket 211 and the housing 212. The ash collection tray 24 is slidably disposed within the receiving cavity 213. Accordingly, the bottom of the support member 23 is provided with multiple ash discharge ports, allowing ash produced during the coal combustion process to fall into the ash collection tray 24.

[0049] In this embodiment, in the vertical direction, the projection area of the ash discharge channel 2121 is located on the ash collecting tray 24 .

[0050] In this embodiment, the linear drive assembly 22 includes a driving member 221, a rotating member 222, and a transmission member 223. In the direction of movement of the combustion furnace 3, the driving member 221 and the rotating member 222 are respectively disposed at opposite ends of the base 21. The transmission member 223 is sleeved outside the output end of the driving member 221 and outside the rotating member 222, and is in driving connection with the supporting member 23. Preferably, the driving member 221 includes a servo motor and a sprocket, which is disposed at the output end of the driving member 221. The transmission member 223 is a tank chain, and the rotating member 222 is also a sprocket.

[0051] In this embodiment, a limit sensing assembly 25 is disposed within the base 21; a limit member 231 is disposed at the bottom of the support member 23; the limit member 231 is in transmission connection with the transmission member 223; the limit sensing assembly 25 includes a first sensing end and a second sensing end; the first sensing end and the second sensing end are disposed opposite each other in the direction of movement of the combustion furnace 3; the limit member 231 has a limit plate 2311 that can reciprocate between the first and second sensing ends. The limit sensing assembly 25 includes a first contact switch 251 and a second contact switch 252; the first sensing end is located on the first contact switch 251, and the second sensing end is located on the second contact switch 252.

[0052] In this embodiment, a sliding member 26 is provided on the side of the support member 23 facing the base 21; the support member 23 is pressed against the top of the base 21 via the sliding member 26. Preferably, two sliding members 26 are provided on each of the two sides of the support member 23 that are parallel to the moving direction of the combustion furnace 3.

[0053] In this embodiment, the combustion furnace 3 is a cylindrical structure that is interconnected at the top and bottom, and a plurality of air inlets are opened on the side wall of the combustion furnace 3.

[0054] The working principle of this utility model is:

[0055] According to the temperature detected by the temperature sensor, the control panel determines whether the measured temperature meets the preset temperature. If not, the position of the combustion furnace 3 is adjusted according to the difference between the measured temperature and the preset temperature.

[0056] Specifically, when the measured temperature is higher than the preset temperature, the linear drive component 22 starts, driving the supporting member 23 to move a distance away from the air inlet of the shaking machine. When the measured temperature is lower than the preset temperature, the linear drive component 22 starts, driving the supporting member 23 to move a distance toward the air inlet of the shaking machine. If the measured temperature is equal to the preset temperature, the supporting member 23 remains stationary at this position.

[0057] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent transformation made using the contents of the description and drawings of the present invention, or directly or indirectly applied in the relevant technical field, is also included in the patent protection scope of the present invention.

Claims

1. A temperature control device, which is arranged opposite to the air inlet of a tea-shaking machine, characterized in that: It includes a temperature control component, a position adjustment mechanism and a combustion furnace; The detection end of the temperature control component is arranged at the air inlet of the shaking machine, and the temperature control component is electrically connected to the position adjustment mechanism; The combustion furnace is arranged at the movable end of the position adjustment mechanism so that the combustion furnace gradually approaches or gradually moves away from the air inlet of the shaking machine.

2. A temperature control device according to claim 1, characterized in that: The position adjustment mechanism includes a base, a linear drive assembly and a supporting member; The combustion furnace is arranged on the supporting member; The supporting member is in transmission connection with the movable end of the linear drive assembly, and the supporting member is slidably arranged on the top of the base.

3. A temperature control device according to claim 2, characterized in that: The position adjustment mechanism also includes an ash collecting tray; The base includes a bracket and a shell; The shell is provided with an ash discharge channel; In the vertical direction, the two sides of the shell are interconnected; A receiving cavity communicated with the ash discharge channel is formed between the bracket and the shell. The ash collecting tray is slidably disposed in the receiving cavity. The ash collecting tray is used to collect ash generated after combustion in the combustion furnace.

4. A temperature control device according to claim 3, characterized in that: In the vertical direction, the projection area of the ash discharge channel is located on the ash collecting tray.

5. A temperature control device according to claim 2, characterized in that: The linear drive assembly includes a driving member, a rotating member and a transmission member; In the moving direction of the combustion furnace, the driving member and the rotating member are respectively arranged at two ends of the base; The transmission member is sleeved outside the output end of the driving member and outside the rotating member, and the transmission member is transmission-connected to the supporting member.

6. A temperature control device according to claim 2, characterized in that: A limit sensing component is provided in the base; A limiting member is provided at the bottom of the supporting member; The limit sensing component includes a first sensing end and a second sensing end; In the moving direction of the combustion furnace, the first sensing end and the second sensing end are arranged opposite to each other, and the limiting member can move back and forth between the first sensing end and the second sensing end.

7. A temperature control device according to claim 6, characterized in that: The limit sensing assembly includes a first contact switch and a second contact switch; The first sensing end is located on the first contact switch, and the second sensing end is located on the second contact switch.

8. A temperature control device according to claim 2, characterized in that: A sliding member is provided on one side of the supporting member facing the base; The supporting member is pressed against the top of the base through the sliding member.

9. A temperature control device according to claim 8, characterized in that: At least four sliding members are provided, and at least one sliding member is provided on the side of the supporting member and the combustion furnace where the moving directions are parallel to each other.

10. The temperature control device according to claim 5, characterized in that: The output end of the driving member is provided with a sprocket, and the transmission member is a tank chain.