A smoker

By using a detachable fuel tank design and a high-pressure ignition system, the problem of fuel residue accumulation in traditional smoke generators is solved, enabling convenient maintenance and efficient ignition, and improving the service life of the equipment and the quality of the smoke.

CN224268165UActive Publication Date: 2026-05-26万里华
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
万里华
Filing Date
2025-04-18
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The fuel compartment of traditional beverage smokers cannot be disassembled, leading to the accumulation of residue, which affects hygiene and service life, and the cost of repair or replacement is high.

Method used

A detachable fuel tank connection method is designed, which enables convenient disassembly and installation of the fuel tank through a locking mechanism. Combined with the high-voltage generator ignition system and flow guiding device, it ensures ignition efficiency and uniform smoke distribution.

Benefits of technology

It enables convenient cleaning and maintenance of the fuel tank, extends equipment life, reduces maintenance costs, and improves ignition efficiency and smoke quality.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224268165U_ABST
    Figure CN224268165U_ABST
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Abstract

This utility model provides a smoker, including a main body and a fuel tank, which are detachably connected. The main body has an installation channel, and the fuel tank is installed in the installation channel and detachably connected by a locking mechanism. The locking mechanism has a switchable locking state and a releasing state. When the locking mechanism is in the locking state, it keeps the fuel tank connected to the main body. When the locking mechanism is switched to the releasing state, it disconnects the fuel tank from the main body.
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Description

Technical Field

[0001] This utility model relates to the field of smokers, and in particular to a beverage smoker. Background Technology

[0002] A beverage smoker is a device that imparts a unique flavor to beverages through smoke. Its core structure typically includes a main body (containing a combustion control module) and a fuel chamber (for holding the smoke-generating materials). In traditional designs, the main body and the smoke chamber are connected as a single unit or a fixed, non-removable connection. However, long-term use has revealed that residual tar, ash, and organic matter easily adhere to the inner walls of the smoke chamber. Because it cannot be disassembled, cleaning tools struggle to reach the corners, creating unsanitary areas. Long-term accumulation can lead to odors or microbial contamination, affecting beverage safety and smoke quality. Furthermore, if the smoke chamber becomes clogged or damaged, the entire machine needs repair or replacement, significantly increasing user costs.

[0003] Therefore, it is necessary to propose a brand-new smoke generator that allows the fuel tank to be easily disassembled for cleaning, maintenance, or fuel replacement, reducing the accumulation of residues caused by long-term use and thus extending the service life of the equipment. Utility Model Content

[0004] In order to overcome the shortcomings of the prior art, this utility model provides a smoker that allows the fuel chamber to be easily disassembled for cleaning, maintenance or fuel replacement, reducing the accumulation of residues caused by long-term use and thus extending the service life of the equipment.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] This utility model provides a smoker, including a main body and a fuel tank, which are detachably connected. The main body has an installation channel, and the fuel tank is installed in the installation channel and detachably connected by a locking mechanism. The locking mechanism has a switchable locking state and a releasing state. When the locking mechanism is in the locking state, it keeps the fuel tank connected to the main body. When the locking mechanism is switched to the releasing state, it disconnects the fuel tank from the main body.

[0007] As an improvement of this utility model, the locking mechanism includes at least one first locking member, the first locking member including a first locking block, and at least one snap-fit ​​strip provided on the outer side wall of the fuel tank. When the locking mechanism is in the locked state, the first locking block is connected to the snap-fit ​​strip, so that the main body is connected to the fuel tank; when the locking mechanism is switched to the released state, the first locking block is disconnected from the snap-fit ​​strip, so that the main body is disconnected from the fuel tank.

[0008] As an improvement of this utility model, the first locking member further includes a first pressing block linked with the first locking block, and a first resetting member connected to the first pressing block. Pressing the first pressing block moves the first locking block, causing the first locking block to move and separate the first locking block from the snap-fit ​​strip. Releasing the first pressing block resets the first pressing block and the first locking block under the action of the first resetting member, causing the first locking block to snap into the snap-fit ​​strip. At least one first mounting hole is provided on the side wall of the main body, and the first pressing part passes through the first mounting hole and extends to the outside of the main body.

[0009] As an improvement of this utility model, the locking mechanism includes at least one second locking member, which is located below and opposite to the first locking member. The second locking member includes a second locking block. When the locking mechanism is in the locked state, the second locking block is connected to the snap-fit ​​strip, connecting the main body to the fuel tank. When the locking mechanism is switched to the released state, the second locking block is disconnected from the snap-fit ​​strip, disconnecting the main body from the fuel tank. The first locking member includes a first limiting part, which limits the movement distance of the second locking block. The second locking member includes a second limiting part, which limits the movement distance of the first locking block. A third mounting hole and a fourth mounting hole are provided on the side wall of the mounting channel. The first locking block passes through the third mounting hole and extends into the mounting channel to clamp the snap-fit ​​strip. The second locking block passes through the fourth mounting hole and extends into the mounting channel to clamp the snap-fit ​​strip.

[0010] As an improvement of this utility model, the second locking member further includes a second pressing block that is linked with the second locking block, and a second resetting member connected to the second pressing block. When the second pressing block is pressed, the second pressing block drives the second locking block to move, so that the second locking block separates from the snap-fit ​​strip. When the second pressing block is released, the second pressing block and the second locking block are reset under the action of the second resetting member, so that the second locking block snaps into the snap-fit ​​strip. At least one second mounting hole is provided on the side wall of the main body, and the second pressing part passes through the second mounting hole and extends to the outside of the main body.

[0011] As an improvement of this utility model, the main body includes a base and a cover on the base. The base and the cover form a receiving cavity. The installation channel communicates with the receiving cavity. An ignition device, a power supply device, and a circuit board are installed in the receiving cavity. The ignition device, the power supply device, and the circuit board are electrically connected. The ignition device includes a high-voltage generator and a discharge electrode electrically connected to the power supply device. The high-voltage generator and the discharge electrode are electrically connected. When the ignition device is powered on, the high-voltage generator receives high-voltage electricity, causing the discharge electrode to discharge and generate an electric arc to ignite the fuel in the fuel tank. The ignition device also includes a flow guiding device electrically connected to the power supply device to disperse the smoke generated by the fuel combustion outward. The base has a boss, and the installation channel is located in the boss. The boss has a first opening, and the fuel tank has a second opening. The discharge electrode passes through the second opening and the first opening in sequence and extends into the fuel tank to ignite the fuel in the fuel tank. A first adhesive strip is also provided between the fuel tank and the installation channel.

[0012] As an improvement of this utility model, the fuel tank includes a combustion chamber and a smoke chamber connected to the combustion chamber. The bottom of the combustion chamber has several through holes to connect the combustion chamber and the smoke chamber. The smoke chamber is provided with several smoke outlet holes in the circumferential direction to allow smoke to flow out. After the fuel is burned, the smoke generated enters the smoke chamber through the through holes and flows out from the smoke outlet holes. The combustion chamber is also covered with an end cover, and a second opening is provided on the end cover.

[0013] As an improvement of this utility model, the cover has a top wall and a first side wall extending downward from the edge of the top wall. A first fitting part is provided on the first side wall. The base has a bottom wall and a second side wall extending upward from the edge of the bottom wall. A second fitting part is provided on the second side wall. The first side wall is fitted onto the second side wall, and the first fitting part is connected to the second fitting part, so that the cover is connected to the base. An operation panel is provided on the top wall. The operation panel is electrically connected to the circuit board. The operation panel is provided with a switch button, a time control button, and a function start button. The operation panel is also provided with a display screen for displaying working time.

[0014] As an improvement of this utility model, a sleeve is provided on the outer side wall of the main body. The sleeve is detachably connected to the outer side wall of the main body. A first protrusion is provided at the top edge of the cover and a second protrusion is provided at the bottom edge of the base. Both ends of the sleeve are provided with snap-fit ​​grooves, which snap-fit ​​with the first protrusion and the second protrusion respectively, so that the sleeve is detachably connected to the outer side wall of the main body.

[0015] As an improvement of this utility model, the base is provided with a mounting groove, and a light-emitting element is provided in the mounting groove. The light-emitting element is electrically connected to the power supply device. The light-emitting element is an LED light strip, which is set in the mounting groove. The base is a light-transmitting base. A light source switch button is also provided on the side wall of the main body. The light source switch button is electrically connected to the power supply device. A charging port for connecting to an external power source for charging is also provided on the side wall of the main body. The charging port is electrically connected to the power supply device.

[0016] The beneficial effects of this utility model are as follows: A smoke generator includes a main body and a fuel tank, which are detachably connected. The main body has an installation channel, and the fuel tank is installed in the installation channel and detachably connected via a locking mechanism. The locking mechanism has a switchable locking state and a releasing state. When the locking mechanism is in the locking state, it keeps the fuel tank connected to the main body; when the locking mechanism is switched to the releasing state, it disconnects the fuel tank from the main body. This allows users to easily disassemble the fuel tank for cleaning, maintenance, or fuel replacement, reducing the accumulation of residues due to long-term use and thus extending the equipment's service life. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the following description of the embodiments will be briefly introduced. The drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0021] Figure 3 yes Figure 2 Enlarged structural diagram at point A;

[0022] Figure 4 yes Figure 2 Enlarged structural diagram at point B;

[0023] Figure 5 This is a schematic diagram of the locking mechanism;

[0024] Figure 6 This is a structural diagram of the fuel tank;

[0025] Figure 7 This is a schematic diagram of the main body's exploded structure;

[0026] Figure 8 This is a schematic diagram of the mounting structure of the light-emitting component;

[0027] Figure 9 yes Figure 2 A magnified structural diagram at point C. Detailed Implementation

[0028] refer to Figures 1 to 9 The present invention discloses a smoker 100, which is described in reference to... Figure 1 The system includes a main body 1000 and a fuel tank 2000, which are detachably connected. The main body 1000 has an installation channel 1001, within which the fuel tank 2000 is installed and detachably connected via a locking mechanism 3000. The locking mechanism 3000 has switchable locking and releasing states. When locked, the locking mechanism 3000 keeps the fuel tank 2000 connected to the main body 1000; when switched to the releasing state, it disconnects the fuel tank 2000 from the main body 1000. Because the fuel tank 2000 is embedded within the installation channel 1001 of the main body 1000 and connected via the locking mechanism 3000, users can easily remove the fuel tank 2000 for cleaning, maintenance, or fuel replacement. This design significantly reduces maintenance time and minimizes residue accumulation due to long-term use, thereby extending the equipment's lifespan.

[0029] In this embodiment, refer to Figures 2-5 The locking mechanism 3000 includes at least one first locking member 3001, which includes a first locking block 3101. The outer wall of the fuel tank 2000 is provided with at least one snap-fit ​​strip 2001. When the locking mechanism 3000 is in the locked state, the first locking block 3101 is connected to the snap-fit ​​strip 2001, so that the main body 1000 is connected to the fuel tank 2000. When the locking mechanism 3000 is switched to the released state, the first locking block 3101 is disconnected from the snap-fit ​​strip 2001, so that the main body 1000 is disconnected from the fuel tank 2000. With the above structure, when the user needs to disassemble, clean or replace the fuel tank 2000, he only needs to switch the locking mechanism 3000 from the locked state to the released state to quickly disconnect the connection between the first locking block 3101 and the snap-fit ​​strip 2001, and easily separate the fuel tank 2000 from the main body 1000. This makes the installation and disassembly operation both intuitive and convenient, thereby shortening maintenance time and improving overall operation efficiency.

[0030] In this embodiment, the first locking member 3001 further includes a first pressing block 3102 linked with the first locking block 3101, and a first reset member 3103 connected to the first pressing block 3102. When the first pressing block 3102 is pressed, the first pressing block 3102 moves, causing the first locking block 3101 to move, so that the first locking block 3101 separates from the snap-fit ​​strip 2001. When the first pressing block 3102 is released, the first pressing block 3102 and the first locking block 3101 are reset under the action of the first reset member 3103, so that the first locking block 3101 snaps into the snap-fit ​​strip 2001. With the above structure, the user only needs to press the first pressing block 3102 lightly to move the first locking block 3101, thereby quickly separating the first locking block 3101 from the snap-fit ​​strip 2001 of the fuel tank 2000, realizing the rapid disassembly of the fuel tank 2000. After the user releases the pressing block, the function of the first reset member 3103 will cause the first pressing block 3102 and the first locking block 3101 to automatically reset, thereby causing the first locking block 3101 to re-engage with the snap-fit ​​strip 2001, completing the locking of the fuel tank 2000.

[0031] In this embodiment, at least one first mounting hole 1002 is provided on the side wall of the main body 1000, and a first pressing part passes through the first mounting hole 1002 and extends to the outside of the main body 1000. The first pressing part is exposed on the main body 1000, allowing the user to easily and directly press it without opening or disassembling other protective components. This allows the user to control the disassembly or locking of the fuel tank 2000 simply by using an external button, thereby greatly simplifying the operation steps and improving the efficiency of use.

[0032] In this embodiment, the locking mechanism 3000 includes at least one second locking member 3002. The second locking member 3002 is located below and opposite to the first locking member 3001. The second locking member 3002 includes a second locking block 3201. When the locking mechanism 3000 is in the locked state, the second locking block 3201 is connected to the snap-fit ​​strip 2001, connecting the main body 1000 to the fuel tank 2000. When the locking mechanism 3000 switches to the released state, the second locking block 3201 is disconnected from the snap-fit ​​strip 2001, disconnecting the main body 1000 from the fuel tank 2000. Adding the second locking member 3002 to the first locking member 3001 further enhances the fixing strength between the fuel tank 2000 and the main body 1000, ensuring that the fuel tank 2000 remains stable and does not easily fall off during equipment operation, vibration, or external impact.

[0033] In this embodiment, the second locking member 3002 further includes a second pressing block 3202 linked to the second locking block 3201, and a second reset member 3203 connected to the second pressing block 3202. Pressing the second pressing block 3202 causes the second locking block 3201 to move, separating the second locking block 3201 from the locking strip 2001. Releasing the second pressing block 3202 resets both the second pressing block 3202 and the second locking block 3201 under the action of the second reset member 3203, causing the second locking block 3201 to engage with the locking strip 2001. With the above structure, the user only needs to press the second pressing block 3202 to move the second locking block 3201, thereby quickly releasing the connection with the locking strip 2001. When the pressing block is released, the second reset member 3203 will automatically reset the second locking block 3201 back to its original position, ensuring that it re-engages. This makes the operation intuitive and convenient for users, while ensuring the accuracy of actions during the unlocking and locking process, and avoiding connection abnormalities caused by human error.

[0034] In this embodiment, at least one second mounting hole 1003 is provided on the side wall of the main body 1000, and the second pressing part passes through the second mounting hole 1003 and extends to the outside of the main body 1000. Preferably, the first mounting hole 1002 and the second mounting hole 1003 are arranged opposite to each other. The second pressing part is exposed outside the main body 1000, allowing the user to easily and directly press it without opening or disassembling other protective components. This allows the user to control the disassembly or locking of the fuel tank 2000 simply by using an external button, thereby greatly simplifying the operation steps and improving the efficiency of use.

[0035] In this embodiment, refer to Figure 5 The first locking member 3001 includes a first limiting part 3104, which limits the movement distance of the second locking block 3201. The second locking member 3002 includes a second limiting part 3204, which also limits the movement distance of the first locking block 3101. This structure ensures that the first locking block 3101 and the second locking block 3201 remain within a preset working range during release and reset, preventing deviation from the ideal position due to excessive movement, thereby ensuring the accuracy and stability of the locking state.

[0036] In this embodiment, a third mounting hole 1004 and a fourth mounting hole 1005 are provided on the side wall of the mounting channel 1001. The first locking block 3101 passes through the third mounting hole 1004 and extends into the mounting channel 1001 to lock the snap-fit ​​strip 2001. The second locking block 3201 passes through the fourth mounting hole 1005 and extends into the mounting channel 1001 to lock the snap-fit ​​strip 2001.

[0037] In this embodiment, refer to Figure 7The main body 1000 includes a base 1006 and a cover 1007 covering the base 1006. The base 1006 and the cover 1007 surround to form a receiving cavity 1008. The installation channel 1001 communicates with the receiving cavity 1008. An ignition device 1301, a power supply device 1302, and a circuit board 1303 are provided in the receiving cavity 1008. The ignition device 1301, the power supply device 1302, and the circuit board 1303 are electrically connected. The ignition device 1301 includes a high-voltage generator 1304 electrically connected to the power supply device 1302 and a discharge electrode 1305. The high-voltage generator 1304 is electrically connected to the discharge electrode 1305. When the ignition device 1301 is energized, the high-voltage generator 1304 receives high-voltage electricity, causing the discharge electrode 1305 to discharge and generate an electric arc to ignite the fuel in the fuel tank 2000. An arc discharge system is constructed by using a high-voltage generator 1304 and a discharge electrode 1305. By receiving a stable arc formed after receiving high-voltage electricity, the fuel can be ignited quickly and effectively. Furthermore, the arc ignition method has a fast response, a concentrated combustion range, and sufficient ignition energy, overcoming the problems of delay or incomplete ignition in traditional ignition methods, thereby improving overall operating efficiency and safety.

[0038] In this embodiment, the main body 1000 is a cylindrical body to better fit the cup rim. However, it is worth noting that the main body 1000 can also be a conical body, a rectangular body, or a polygonal body.

[0039] In this embodiment, the ignition device 1301 further includes a flow guiding device 1306, which is electrically connected to the power supply device 1302 to disperse the smoke generated by fuel combustion. By setting the flow guiding device 1306, the smoke generated by combustion is driven along a predetermined path to the smoke outlet 2006, thereby preventing smoke from lingering in the combustion chamber and effectively reducing the accumulation of combustion exhaust gas.

[0040] In this embodiment, the base 1006 has a boss 1101, the mounting channel 1001 is located inside the boss 1101, the boss 1101 has a first opening 1102, the fuel tank 2000 has a second opening 2002, the discharge electrode 1305 passes through the second opening 2002 and the first opening 1102 in sequence, and extends outward into the fuel tank 2000 to ignite the fuel in the fuel tank 2000. Through the above structure, the ignition device 1301 achieves high precision and stability, while making the entire device structure more compact. A first adhesive strip 2008 is also provided between the fuel tank 2000 and the mounting channel 1001, which can make the fuel tank 2000 more securely connected to the mounting channel 1001.

[0041] In this embodiment, refer to Figure 6The fuel chamber 2000 includes a combustion chamber 2003 and a smoke chamber 2004 communicating with the combustion chamber 2003. The bottom of the combustion chamber 2003 has several through holes 2005, connecting the combustion chamber 2003 to the smoke chamber 2004. The smoke chamber 2004 has several smoke outlet holes 2006 circumferentially arranged to allow smoke to flow out. After fuel combustion, the generated smoke enters the smoke chamber 2004 through the through holes 2005 and flows outward through the smoke outlet holes 2006. An end cover 2007 is also provided on the combustion chamber 2002, and a second opening 2002 is provided on the end cover 2007. By separating the combustion chamber 2003 and the smoke chamber 2004 and connecting them with through holes 2005, not only can the smoke be effectively guided to exit along a predetermined path, making the smoke distribution more uniform, but it can also effectively prevent excessively high temperatures inside the combustion chamber 2003 from being directly transferred to the outside, protecting other components of the equipment and improving overall safety and energy efficiency.

[0042] Preferably, the end cap 2007 and the combustion chamber 2002 are connected by threads, allowing users to easily and quickly disassemble and install the end cap 2007 and the combustion chamber 2002. This facilitates the addition of fuel to the combustion chamber 2002. At the same time, the threaded connection provides a good sealing effect, effectively preventing the high-temperature smoke in the combustion chamber 2003 from leaking through the connection. This ensures that the smoke can flow out evenly from the smoke outlet 2006 along a predetermined path, improving the energy efficiency of the equipment and avoiding potential safety hazards caused by smoke leakage.

[0043] Preferably, the bottom of the fuel tank 2000 is horizontal, so that the fuel tank 2000 can be placed horizontally on a table after being detached from the main body 1000.

[0044] In this embodiment, the cover 1007 has a top wall 1201 and a first side wall 1202 extending downward from the edge of the top wall 1201. A first fitting portion 1203 is provided on the first side wall 1202. The base 1006 has a bottom wall 1103 and a second side wall 1104 extending upward from the edge of the bottom wall 1103. A second fitting portion 1105 is provided on the second side wall 1104. The first side wall 1202 is fitted onto the second side wall 1104, and the first fitting portion 1203 is connected to the second fitting portion 1105, thus connecting the cover 1007 and the base 1006. This structure ensures precise alignment and a secure connection between the cover 1007 and the base 1006 after assembly, effectively resisting vibration and external interference during use and maintaining the stability of the internal components.

[0045] As a preferred option, refer to Figure 8An operation panel 1204 is provided on the top wall 1201. The operation panel 1204 is electrically connected to the circuit board 1303. The operation panel 1204 is provided with a power switch 1205, a time control button 1206, and a function start button 1207. The operation panel 1204 is also provided with a display screen 1208 for displaying the working time. This structure reduces user confusion and misoperation during use, and significantly improves the interactive experience. Preferably, the operation panel 1204 is connected to the top wall 1201 by screws.

[0046] In this embodiment, refer to Figure 2 , Figure 3 as well as Figure 9 A sleeve 1009 is provided on the outer side wall of the main body 1000, and the sleeve 1009 is detachably connected to the outer side wall of the main body 1000. Specifically, the top edge of the cover 1007 has a first protrusion 1209, the bottom edge of the base 1006 has a second protrusion 1106, and both ends of the sleeve 1009 are provided with snap-fit ​​grooves 1010, which snap-fit ​​with the first protrusion 1209 and the second protrusion 1106 respectively, so that the sleeve 1009 is detachably connected to the outer side wall of the main body 1000. With the above structure, users can replace or adjust the sleeve 1009 individually as needed without affecting the layout of other internal components. Furthermore, the first protrusion 1209 and the second protrusion 1106 engage with the snap-fit ​​groove 1010, achieving a reliable connection between the sleeve 1009 and the main body 1000. Additionally, the first protrusion 1209 and the second protrusion 1106 effectively prevent liquid from entering the fumigator 100 during use and damaging the equipment. When the sleeve needs to be replaced, the user needs to disassemble the control panel 1204 and then disassemble the sleeve 1009. Users can freely replace the sleeve 1009 with different materials or surface finishes depending on the application. The sleeve 1009 can be an aluminum alloy sleeve, a silicone sleeve, a stainless steel sleeve, or a plastic sleeve.

[0047] In this embodiment, refer to Figure 8 The base 1006 has a mounting groove 1107, within which a light-emitting element 1108 is installed. The light-emitting element 1108 is electrically connected to a power supply device 1302. The light-emitting element 1108 is an LED light strip, which is housed within the mounting groove 1107. The base 1006 is a light-transmitting base. A light source switch button 1109 is also located on the side wall of the main body 1000, and is electrically connected to the power supply device 1302. The LED light strip, housed within the mounting groove 1107, evenly distributes its light through the light-transmitting base 1006, enhancing the overall visual appeal of the device. A charging port 1011, electrically connected to the power supply device 1302, is also located on the side wall of the main body 1000 for connecting to an external power source.

[0048] In a preferred embodiment, the mounting groove 1107 is located at the bottom of the base 1006, and the mounting groove 1107 is an annular mounting groove. The light-emitting element 1108 is disposed within the mounting groove 1107, providing uniform illumination in all directions. During use, the user can stably place the smoker 100 on the edge of a cocktail glass or other beverage container. After the device is activated, the smoke permeates into the liquid, significantly enhancing the beverage's complexity through molecular-level flavor fusion. At the same time, the light-emitting element 1108 at the bottom of the base simultaneously turns on, its light penetrating the transparent glass to form a dynamic light effect. This visualizes the smoke infiltration process and creates a highly technological visual atmosphere, achieving a dual optimization from flavor modulation to sensory experience.

[0049] The above description provides one or more embodiments in conjunction with specific content, but it is not intended that the specific implementation of this utility model is limited to these descriptions. Any methods or structures that are similar to or identical to those of this utility model, or any technical deductions or substitutions made based on the concept of this utility model, should be considered within the scope of protection of this utility model.

Claims

1. A smoker (100) characterized by, It includes a main body (1000) and a fuel tank (2000), wherein the main body (1000) and the fuel tank (2000) are detachably connected; The main body (1000) has an installation channel (1001), the fuel tank (2000) is installed in the installation channel (1001) and is detachably connected by a locking mechanism (3000); The locking mechanism (3000) has a switchable locking state and a release state. When the locking mechanism (3000) is in the locking state, the locking mechanism (3000) keeps the fuel tank (2000) connected to the main body (1000). When the locking mechanism (3000) switches to the release state, the locking mechanism (3000) disconnects the fuel tank (2000) from the main body (1000).

2. The smoker (100) of claim 1, wherein, The locking mechanism (3000) includes at least one first locking member (3001), the first locking member (3001) includes a first locking block (3101), and the outer side wall of the fuel tank (2000) is provided with at least one snap-fit ​​strip (2001). When the locking mechanism (3000) is in the locked state, the first locking block (3101) is connected to the snap-fit ​​strip (2001), so that the main body (1000) is connected to the fuel tank (2000); when the locking mechanism (3000) is switched to the released state, the first locking block (3101) is disconnected from the snap-fit ​​strip (2001), so that the main body (1000) is disconnected from the fuel tank (2000).

3. The smoker (100) of claim 2, wherein, The first locking member (3001) further includes a first pressing block (3102) linked with the first locking block (3101), and a first resetting member (3103) connected to the first pressing block (3102). Pressing the first pressing block (3102) causes the first pressing block (3102) to move, thereby moving the first locking block (3101) and separating the first locking block (3101) from the snap-fit ​​strip (2001); releasing the first pressing block... (3102) The first pressing block (3102) and the first locking block (3101) are reset under the action of the first reset member (3103), so that the first locking block (3101) is engaged with the snap-fit ​​strip (2001). At least one first mounting hole (1002) is provided on the side wall of the main body (1000). The first pressing block (3102) passes through the first mounting hole (1002) and extends to the outside of the main body (1000).

4. The smoker (100) of claim 2, wherein, The locking mechanism (3000) includes at least one second locking member (3002), which is located below and opposite to the first locking member (3001). The second locking member (3002) includes a second locking block (3201). When the locking mechanism (3000) is in the locked state, the second locking block (3201) is connected to the snap-fit ​​strip (2001), connecting the main body (1000) to the fuel tank (2000). When the locking mechanism (3000) switches to the released state, the second locking block (3201) is disconnected from the snap-fit ​​strip (2001), disconnecting the main body (1000) from the fuel tank (2000), and the first locking member (3001)... The device includes a first limiting part (3104) for limiting the movement distance of the second locking block (3201). The second locking member (3002) includes a second limiting part (3204) for limiting the movement distance of the first locking block (3101). The side wall of the mounting channel (1001) is provided with a third mounting hole (1004) and a fourth mounting hole (1005). The first locking block (3101) passes through the third mounting hole (1004) and extends into the mounting channel (1001) to clamp the snap-fit ​​strip (2001). The second locking block (3201) passes through the fourth mounting hole (1005) and extends into the mounting channel (1001) to clamp the snap-fit ​​strip (2001).

5. The smoker (100) according to claim 4, characterized in that, The second locking member (3002) further includes a second pressing block (3202) linked with the second locking block (3201), and a second reset member (3203) connected to the second pressing block (3202). When the second pressing block (3202) is pressed, the second pressing block (3202) drives the second locking block (3201) to move, so that the second locking block (3201) is separated from the snap-fit ​​strip (2001). When the second pressing block (3202) is released, the second pressing block (3202) and the second locking block (3201) are reset under the action of the second reset member (3203), so that the second locking block (3201) snaps into the snap-fit ​​strip (2001). At least one second mounting hole (1003) is provided on the side wall of the main body (1000). The second pressing block (3202) passes through the second mounting hole (1003) and extends to the outside of the main body (1000).

6. The smoker (100) of claim 1, wherein, The main body (1000) includes a base (1006) and a cover (1007) covering the base (1006). The base (1006) and the cover (1007) surround to form a receiving cavity (1008). The mounting channel (1001) communicates with the receiving cavity (1008). An ignition device (1301), a power supply device (1302), and a circuit board (1303) are disposed in the receiving cavity (1008). (1301) The power supply device (1302) and the circuit board (1303) are electrically connected. The ignition device (1301) includes a high-voltage generator (1304) and a discharge electrode (1305) electrically connected to the power supply device (1302). The high-voltage generator (1304) and the discharge electrode (1305) are electrically connected. When the ignition device (1301) is energized, the high-voltage generator (1304) receives high-voltage electricity, causing the discharge electrode to discharge. The discharge electrode (1305) discharges to generate an electric arc to ignite the fuel in the fuel tank (2000). The ignition device (1301) also includes a flow guiding device (1306), which is electrically connected to the power supply device (1302) to disperse the smoke generated by fuel combustion. The base (1006) has a boss (1101), and the mounting channel (1001) is located inside the boss (1101). The fuel tank (2000) has a first opening (1102) on the fuel tank (2001) and a second opening (2002) on the fuel tank (2000). The discharge electrode (1305) passes through the second opening (2002) and the first opening (1102) in sequence and extends into the fuel tank (2000) to ignite the fuel in the fuel tank (2000). A first adhesive strip (2008) is also provided between the fuel tank (2000) and the installation channel (1001).

7. The smoker (100) of claim 1, wherein, The fuel chamber (2000) includes a combustion chamber (2003) and a smoke chamber (2004) communicating with the combustion chamber (2003). The bottom of the combustion chamber (2003) has several through holes (2005) to communicate with the smoke chamber (2004). The smoke chamber (2004) is provided with several smoke outlet holes (2006) circumferentially to allow smoke to flow out. After the fuel is burned, the smoke generated enters the smoke chamber (2004) through the through holes (2005) and flows outward from the smoke outlet holes (2006). The combustion chamber (2003) is also covered with an end cap (2007).

8. The smoker (100) of claim 6, wherein, The cover (1007) has a top wall (1201) and a first side wall (1202) extending downward from the edge of the top wall (1201). A first fitting portion (1203) is provided on the first side wall (1202). The base (1006) has a bottom wall (1103) and a second side wall (1104) extending upward from the edge of the bottom wall (1103). A second fitting portion (1105) is provided on the second side wall (1104). The first side wall (1202) is fitted onto the second side wall (1104), and the first fitting portion (1205) is fitted onto the second side wall (1104). The fitting part (1203) is connected to the second fitting part (1105), so that the cover (1007) is connected to the base (1006). An operation panel (1204) is provided on the top wall (1201). The operation panel (1204) is electrically connected to the circuit board (1303). The operation panel (1204) is provided with a switch button (1205), a time control button (1206) and a function start button (1207). The operation panel (1204) is also provided with a display screen (1208) for displaying working time.

9. The smoker (100) of claim 6, wherein, A sleeve (1009) is provided on the outer side wall of the main body (1000). The sleeve (1009) is detachably connected to the outer side wall of the main body (1000). The top edge of the cover (1007) has a first protrusion (1209), and the bottom edge of the base (1006) has a second protrusion (1106). Both ends of the sleeve (1009) are provided with snap-fit ​​grooves (1010). The snap-fit ​​grooves (1010) snap into the first protrusion (1209) and the second protrusion (1106) respectively, so that the sleeve (1009) is detachably connected to the outer side wall of the main body (1000).

10. The smoker (100) of claim 6, wherein, The base (1006) is provided with a mounting groove (1107), and a light-emitting element (1108) is provided in the mounting groove (1107). The light-emitting element (1108) is electrically connected to the power supply device (1302). The light-emitting element (1108) is an LED light strip, which is located in the mounting groove (1107). The base (1006) is a light-transmitting base (1006). A light source switch button (1109) is also provided on the side wall of the main body (1000). The light source switch button (1109) is electrically connected to the power supply device (1302). A charging port (1011) for connecting to an external power source for charging is also provided on the side wall of the main body (1000). The charging port (1011) is electrically connected to the power supply device (1302).