Portable goose roasting, hanging, airing and drying integrated tool

CN224734615UActive Publication Date: 2026-09-11ZHONGSHAN YOUSHAN CATERING MANAGEMENT CO LTD
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Patent Information

Application Number
CN202522230660.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-09-11
Estimated Expiration
2035-10-22

AI Technical Summary

Technical Problem

针对现有技术的不足,本实用新型提供了便捷式烧鹅挂晾风干一体化工具,解决了目前行业内使用的烧鹅挂晾风干工具多数工具采用固定挂钩结构,烧鹅悬挂后无法移动,热风仅能覆盖烧鹅朝向风口的一侧,背风面因遮挡易出现风干不充分,导致表皮干湿不均的问题

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Abstract

The utility model relates to goose roasting hanging air drying technical field and disclose portable goose roasting hanging air drying integration tool, including air drying jar, the inner wall of air drying jar is equipped with round groove, hang air drying subassembly, hang air drying subassembly sets up on air drying jar, hang air drying subassembly includes drive motor, drive motor fixed mounting is on the upper surface of air drying jar, and the output of drive motor is fixedly connected with drive shaft, and the lower end rotation of drive shaft is rotatory and penetrates into the inside of air drying jar, and the lower end of drive shaft is fixedly connected with round rotary plate, and round rotary plate is rotatably connected with round groove, and round rotary plate always keeps stable in the rotation process, and will not appear deviation or shake, and the hook drives goose roasting to form the compound motion of revolution and rotation, and goose roasting can pass through the different areas in jar in turn in revolution process, and every surface of goose roasting can fully contact hot air in rotation process, avoid because partial obstruction leads to air drying uneven, ensure that goose roasting skin dryness is consistent.
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Description

Technical Field

[0001] This utility model relates to the field of roast goose hanging and air drying technology, specifically a convenient integrated tool for roast goose hanging and air drying. Background Technology

[0002] In the roast goose processing industry, hanging and air-drying is a crucial process. Hot air must be evenly blown across the surface of the goose to dry and tighten the skin (forming the basis for a crispy texture) while removing excess internal moisture and extending shelf life. Currently, most hanging and air-drying tools used in the industry employ a fixed hook structure, preventing the goose from moving once hung. Hot air can only cover the side of the goose facing the wind, leaving the leeward side undried and prone to uneven drying. This results in uneven skin moisture (some areas are damp and prone to bacterial growth, while others are excessively dry and cracked), severely impacting the quality of the roast goose. Utility Model Content

[0003] Technical problems to be solved To address the shortcomings of existing technologies, this utility model provides a convenient integrated tool for hanging and air-drying roasted geese. It solves the problem that most roasted goose hanging and air-drying tools currently used in the industry adopt a fixed hook structure, which prevents the roasted goose from moving after it is hung. The hot air can only cover the side of the roasted goose facing the wind, and the leeward side is easily blocked, resulting in insufficient air drying and uneven skin drying.

[0004] (II) Technical Solution To achieve the above objectives, this utility model provides the following technical solution: a convenient integrated tool for hanging and air-drying roasted goose, including an air-drying can, the inner wall of which is provided with a circular groove, a hanging and air-drying component, the hanging and air-drying component being disposed on the air-drying can, the hanging and air-drying component including a drive motor, the drive motor being fixedly installed on the upper surface of the air-drying can; The output end of the drive motor is fixedly connected to a drive shaft, the lower end of the drive shaft rotates through the interior of the air-drying tank, and the lower end of the drive shaft is fixedly connected to a circular rotating plate, which is rotatably connected to a circular groove. The upper surface of the circular rotating plate is fixedly connected to two servo motor mounting boxes, which are arranged in a front-to-back configuration. A rotating rod is fixedly installed inside each of the two servo motor mounting boxes.

[0005] Preferably, the lower ends of the two rotating rods respectively rotatably penetrate through the lower surface of the corresponding servo motor mounting box, and both rotatably penetrate through the lower surface of the circular rotating plate; Each of the two circular rotating plates is fixedly equipped with two sets of hooks arranged vertically and vertically.

[0006] Preferably, a set of hooks consists of four hooks arranged in a cross shape.

[0007] Preferably, a concave mounting bracket is fixedly connected to the upper surface of the drying can, and a hot air blower mounting box is fixedly connected to the upper surface of the concave mounting bracket. An air inlet pipe is provided on the hot air blower mounting box, and a hot air blower is fixedly installed inside the hot air blower mounting box.

[0008] Preferably, the air outlet of the hot air blower is fixedly connected to an air supply pipe, and the rear end of the air supply pipe extends through the rear surface of the hot air blower mounting box. The gas supply pipe is fixedly connected to an annular pipe that communicates with the inside of the hot air blower at one end outside the hot air blower mounting box. The drying tank is located inside the annular pipe and is fixedly connected to the annular pipe.

[0009] Preferably, the lower surface of the annular tube is fixedly connected to a plurality of mounting tubes arranged in an array, and each of the mounting tubes is fixedly connected to a rectangular discharge box communicating with its interior on the side facing the drying tank. Among them, multiple rectangular discharge boxes all penetrate through the interior of the air-drying tank.

[0010] Preferably, L-shaped mounting brackets are fixedly connected to both the front and rear surfaces of the drying jar, and universal wheels with self-locking function are fixedly connected to the lower surfaces of both L-shaped mounting brackets.

[0011] Preferably, the lower surface of the drying tank is fixedly connected to a waste oil discharge pipe that communicates with its interior, the waste oil discharge pipe is equipped with a switch valve, and a switch door is provided on the left side of the drying tank.

[0012] Preferably, the circular rotating plate can be replaced with a circular rotating plate with balls on the outer wall. An annular ball groove is opened on the outer wall of the rotating plate, and φ3mm stainless steel balls are built in it, while retaining the fixed connection with the drive shaft and the sliding fit of the circular groove.

[0013] (III) Beneficial Effects Compared with the prior art, this utility model provides a convenient integrated tool for hanging and air-drying roasted geese, which has the following beneficial effects: The circular rotating plate remains stable throughout its rotation, without any shifting or wobbling. Two servo motor mounting boxes fixed to its surface, along with the internal servo motors and rotating rod, move synchronously around the drive shaft, i.e., revolve. This lays the foundation for even drying of the roast goose. Activating the servo motors inside the two mounting boxes causes the rotating rod to rotate. The lower end of the rotating rod passes through the servo motor mounting box and the circular rotating plate. Two sets of hooks fixed to its outer wall rotate synchronously with the rotating rod, i.e., spin. Thus, the hooks cause the roast goose to undergo a combined revolving and spinning motion. During the revolving motion, the roast goose passes through different areas within the container, while during the spinning motion, each side of the roast goose is fully exposed to hot air, preventing uneven drying due to localized obstruction and ensuring consistent dryness of the skin. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of the convenient integrated tool for hanging and air-drying roasted geese according to this utility model; Figure 2 This is a schematic diagram of the waste oil discharge pipe of this utility model; Figure 3 This is a schematic diagram of the rotating rod of this utility model; Figure 4 This is a schematic diagram of the circular groove of this utility model; Figure 5 This is a schematic diagram of the replaceable circular rotating plate of this utility model.

[0015] In the diagram: 1. Drying tank; 2. Drive motor; 3. Concave mounting bracket; 4. Hot air blower mounting box; 5. Air supply pipe; 6. Servo motor mounting box; 7. Ring pipe; 8. L-shaped mounting bracket; 9. Mounting pipe; 10. Waste oil discharge pipe; 11. Hook; 12. Circular rotating plate; 13. Rotating rod; 14. Rectangular discharge box; 15. Drive shaft; 16. Circular groove. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0017] Please see Figure 1-5 This utility model provides a new technical solution: a convenient integrated tool for hanging and drying roasted geese, including a hanging and drying component. The hanging and drying component includes a drive motor 2, which is fixedly installed on the upper surface of the drying tank 1. The output end is fixedly connected to a drive shaft 15, which provides power for the revolution of the circular rotating plate 12, driving the hanging roasted geese to move around the axis of the drying tank and cover different areas inside the tank.

[0018] The upper end of the drive shaft 15 is fixedly connected to the output end of the drive motor 2, and the lower end rotates through the inside of the air-drying tank 1 and is fixedly connected to the circular rotating plate 12, which transmits the rotational power of the drive motor 2 and drives the circular rotating plate to rotate synchronously.

[0019] The circular rotating plate 12 is fixedly connected to the lower end of the drive shaft 15, and its outer wall is rotatably connected to the circular groove 16 on the inner wall of the drying tank 1, maintaining stability without deviation during rotation; two servo motor mounting boxes 6 are fixedly connected to the upper surface, which move in a circular motion (i.e., revolve) around the axis of the drying tank with the drive shaft 15, laying the foundation for the roast goose to be in full contact with hot air.

[0020] There are two servo motor mounting boxes 6, which are fixedly connected to the upper surface of the circular rotating plate 12, one in front and one behind. The servo motors are fixedly installed inside to provide power for the rotation of the rotating rod 13 and to protect the servo motors from hot air and grease.

[0021] The servo motor is fixedly installed inside the servo motor mounting box 6, and the output end is fixedly connected to the rotating rod 13. The rotating rod 13 drives the hook 11 to rotate, so as to realize the self-rotation of the roast goose.

[0022] The upper end of the rotating rod 13 is fixedly connected to the output end of the servo motor, and the lower end rotates through the lower surface of the corresponding servo motor mounting box 6 and the lower surface of the circular rotating plate 12. Two sets of hooks 11, which are set up vertically and vertically, are fixedly installed on the outer wall to transmit the power of the servo motor and drive the hooks to rotate synchronously with the roast goose.

[0023] Each set of hooks 11 consists of four hooks arranged in a cross shape, which are fixedly installed on the outer wall of the rotating rod 13 (two sets corresponding to each other) for hanging roast geese. The cross arrangement allows multiple roast geese to be hung at the same time, and when rotating, each side of the roast goose can be fully exposed to the hot air, avoiding uneven drying caused by partial obstruction.

[0024] The concave mounting bracket 3 is fixedly connected to the upper surface of the drying can 1, and the hot air blower mounting box 4 is fixedly connected to the upper surface to support the hot air blower mounting box, ensuring its stable position and not affecting the drying of the roast goose.

[0025] The hot air blower mounting box 4 is fixedly connected to the upper surface of the concave mounting bracket 3. The hot air blower is fixedly installed inside. The upper surface is provided with an air inlet pipe (for introducing external air), and the air outlet is fixedly connected to the air delivery pipe 5, which provides a carrier for the generation and delivery of hot air and protects the hot air blower from external interference.

[0026] One end of the air supply pipe 5 is fixedly connected to the air outlet of the hot air blower mounting box 4 (and communicates with it), and the other end is fixedly connected to the ring pipe 7, which delivers the hot air generated by the hot air blower to the ring pipe to realize the transfer of hot air.

[0027] The annular pipe 7 is arranged around the air drying tank 1 and is fixedly connected (and communicates) with the air supply pipe 5. Multiple installation pipes 9 arranged in an array are fixedly connected to the lower surface to distribute the hot air evenly to each installation pipe in the circumferential direction, ensuring that the hot air distribution is consistent in different positions inside the tank.

[0028] Multiple mounting pipes 9 are fixedly connected in an array to the lower surface of the annular pipe 7. A rectangular discharge box 14 is fixedly connected to the side facing the drying tank 1, which diverts the hot air in the annular pipe to the rectangular discharge box and guides the hot air to be blown precisely onto the roasted goose in the tank.

[0029] Multiple rectangular discharge boxes 14 are fixedly connected to the corresponding installation pipes 9. They all penetrate the interior of the air inlet drying tank 1, expanding the air outlet area of ​​the hot air and preventing the hot air from being concentrated on a certain point of the roast goose, which would cause local skin cracking. This ensures that the hot air evenly covers the surface of the roast goose.

[0030] Furthermore, when using this portable roast goose hanging and drying tool, first open the switch door, hang the roast goose on multiple hooks 11, then close the switch door, and then start the hot air blower and drive motor 2; When the drive motor 2 is started, its output end drives the drive shaft 15 to rotate along the axis of the drying jar 1. The lower end of the drive shaft 15 drives the circular rotating plate 12 to rotate synchronously. Since the circular rotating plate 12 is rotatably connected to the circular groove 16 on the inner wall of the drying jar 1, the circular rotating plate 12 remains stable during the rotation process and will not deviate or shake. The two servo motor mounting boxes 6 fixed on its surface and the internal servo motor and rotating rod 13 move in a circle around the drive shaft 15 synchronously with the circular rotating plate 12, that is, they revolve around the central axis, which lays the foundation for the uniform drying of the roast goose. The servo motors inside the two servo motor mounting boxes 6 are activated. The output of the servo motors drives the rotating rod 13 to rotate. The lower end of the rotating rod 13 passes through the servo motor mounting box 6 and the circular rotating plate 12. The two sets of hooks 11 fixed on its outer wall rotate synchronously with the rotating rod 13, that is, they rotate on their own axis. Thus, the hooks 11 drive the roast goose to form a compound motion of revolution and rotation. During the revolution, the roast goose can pass through different areas inside the can in sequence. During the rotation, each side of the roast goose can be fully exposed to the hot air, avoiding uneven drying due to local obstruction and ensuring that the skin of the roast goose is dry at a consistent degree. When the hot air blower inside the hot air blower installation box 4 is started, the generated hot air enters the air supply pipe 5 through the hot air blower outlet. The hot air is then transported along the air supply pipe 5 to the annular pipe 7. The annular pipe 7 is set around the drying tank 1 to achieve circumferential distribution of hot air. Subsequently, the hot air is diverted through multiple array-type installation pipes 9 on the lower surface of the annular pipe 7 and finally blown evenly onto the roast goose in the tank through the rectangular discharge box 14. The rectangular discharge box 14 can expand the air outlet area of ​​the hot air and avoid the hot air being concentrated on a certain point of the roast goose, which would cause local skin cracking. At the same time, the array-type installation pipes 9 ensure that the hot air velocity and temperature are consistent at different positions in the tank, further improving the uniformity of drying. During the air-drying process of the roast goose, the oil that seeps out from the skin and inside of the roast goose will drip down naturally, and the oil will slide down the inner wall of the drying tank 1 to the bottom of the tank. After the drying is completed, the switch valve on the waste oil discharge pipe 10 can be opened, and the waste oil collected at the bottom of the tank can be discharged through the waste oil discharge pipe 10, which is convenient for subsequent cleaning, avoids the accumulation of waste oil in the tank to breed bacteria or affect the next use, and keeps the inside of the equipment clean. Among them, the lower surface of the L-shaped mounting bracket 8 on the front and rear surfaces of the drying jar 1 is fixed with a universal wheel with a self-locking function. When the equipment needs to be moved, the self-locking state of the universal wheel can be released, and the drying jar 1 can be pushed to move on the ground. This adapts to the usage needs of different scenarios (such as kitchens, workshops, and temporary processing points). After drying, locking the universal wheel can fix the position of the equipment and prevent accidental slippage. This satisfies the design goal of convenience and ensures stability during use. Once the roast goose has reached the preset air-drying effect, turn off the drive motor 2, servo motor, and hot air blower, open the switch door on the left side of the air-drying tank 1, and remove the roast goose from the hook 11.

[0031] Example: like Figure 5 As shown: Application of high-frequency batch air drying in large roast goose factories after replacing the 12 circular rotating plates with ball bearings on the outer wall. Scene background A large roast goose processing plant needs to air-dry more than 200 roast geese every day. The circular rotating plate 12 needs to rotate continuously (8 hours a day, 10 r / min). The original circular rotating plate 12 is replaced with a "circular rotating plate with ball bearings on the outer wall". The outer wall of the rotating plate is opened with annular ball bearing grooves (2mm deep, 10mm spacing) and φ3mm stainless steel ball bearings are installed inside. The fixed connection with the drive shaft 15 and the sliding fit with the circular groove 16 are retained. Food-grade grease (oil resistant and high temperature resistant) is applied to the ball bearing grooves. By converting sliding friction into rolling friction through ball bearings, the coefficient of friction decreased from 0.2 to 0.05, the wear on the outer wall of the rotating plate decreased from 0.3 mm / month to 0.02 mm / month, and the wear on the inner wall of the circular groove 16 decreased from 0.2 mm / month to 0.01 mm / month. The rotation gap stabilized at 0.1-0.15 mm, the orbital sway amplitude decreased from ±2 mm to ±0.2 mm, the hook 11 drove the roast goose to operate smoothly, and the hot air evenly covered the skin (the uneven drying rate decreased from 18% to 1.5%). The crispness of the roast goose was improved by 92%, meeting the requirements of mass standardized production. Furthermore, rolling friction resistance is reduced by 75%, the load current of drive motor 2 drops from 1.8A to 1.1A, daily energy consumption decreases from 4.8kW·h to 2.64kW·h, and monthly energy savings average 64.8kW·h; there are no overheating issues under high load, the frequency of motor failures decreases from once per month to 0.1 times (once per year), the motor lifespan is extended from 1 year to 3 years, and annual maintenance costs are reduced by 80%. Furthermore, because the grease in the ball groove can reduce frictional wear of parts, the maintenance cycle is extended from 1 month to 6 months. Each maintenance only requires replenishing the grease (taking 10 minutes), without disassembling the rotating plate or repairing the circular groove. Furthermore, the outer diameter and thickness of the rotating plate with ball bearings are the same as the original, and it can be directly adapted to the circular groove 16; the ball bearings do not affect the fixing strength of the rotating plate and the drive shaft 15 (the load-bearing capacity is still ≥50kg, which meets the total load of 8 roast geese), the coordination of the revolution frequency (10r / min) and the rotation (30r / min) remains unchanged, the hot air conveying path of the rectangular discharge box 14 is not disturbed, and there is no need to modify other structures of the drying tank 1, so the upgrade and replacement can be completed quickly.

[0032] Example 2: Application of Rotatable and Foldable Hook Components in Batch Drying Scenarios of Small and Medium-Sized Roast Meat Factories Scene background A small to medium-sized roast meat processing plant air-dries 80-100 roast geese daily in three batches. The original fixed cross hooks could only hang 8 geese at a time, and each batch required removing the hooks individually, which was time-consuming. In addition, the hooks had a large lateral span, resulting in low space utilization inside the can. The original fixed hooks were replaced with rotatable and foldable hook assemblies. Each set of hooks consists of 4 independently rotatable (0-180°) foldable hooks, with a spring folding shaft at the base of the hooks, retaining the quick-release threaded connection with the rotating rod. The foldable design increases the number of roast geese that can be hung at one time on a single rotating rod from 8 to 12, increasing the single-time processing capacity in the drying tank by 50%, reducing the number of batches per day from 3 to 2, and shortening the batch changeover time from 40 minutes to 15 minutes. The hooks can rotate independently, allowing for flexible adjustment of the hanging spacing of roast geese and preventing adjacent roast geese from blocking each other. The uneven drying rate has been reduced from 12% to 2.3%, and the pass rate of roast goose skin has been increased to 97%. The quick-release threaded connection reduces the time for cleaning and disassembling the hooks from 20 minutes to 5 minutes, and improves the thoroughness of oil stain removal by 80%. After folding, the horizontal space occupied by the rotating rod is reduced by 75%, and an additional set of rotating rods can be added inside the drying tank, increasing the total daily drying capacity from 100 to 150 geese.

[0033] Furthermore, the mounting hole diameter and load-bearing strength of the rotatable folding hook assembly are consistent with the original hook (single hook load ≥ 5kg), without the need to modify the rotating rod structure. When replacing, you only need to unscrew the original hook to install the new assembly. The upgrade cost of a single device is controlled within 300 yuan, and the investment payback period is only 20 days. The spring folding shaft uses a food-grade silicone sealing ring, which can withstand a high temperature of 120℃ and has a service life of up to 2 years, during which there are no records of fault replacement.

[0034] Example 3: Application of integrated dehumidification and heating hot air module in air drying scenarios in humid southern regions Scene background A roast meat shop in a southern coastal city (with an average daily humidity of 65%-85%) was experiencing low drying efficiency when using its existing hot air blower to air-dry roast geese in humid weather. The high moisture content of the hot air resulted in "re-moistening" of the goose skin (the skin moisture content rose back to over 15% within 2 hours of drying), shortening the shelf life to 12 hours. To address this, the existing hot air blower was replaced with an integrated dehumidification and heating hot air module. This module integrates a rotary dehumidifier and a PTC heating element within the hot air blower's mounting box, while retaining the original air inlet and outlet pipe connections. The dehumidification and heating module uses a honeycomb rotary dehumidification core (15cm in diameter and 8cm in thickness), with a rotary speed of 10r / h. It is sealed to the air inlet of the hot air blower through a silicone sealing ring. The PTC heating element has adjustable power and is installed between the dehumidification core and the hot air blower. A temperature sensor is installed at the air outlet. A removable dust filter is installed on the side of the module, which can be cleaned regularly without disassembling the module. By using a rotary dehumidifier, the moisture content of the air entering the hot air blower is reduced from 20g / kg to below 5g / kg, and the relative humidity of the hot air is controlled at 30%-35%. The air-drying time of roast goose is shortened from 4 hours to 2.5 hours, and the air-drying efficiency is improved by 37.5%. The skin moisture content is stably controlled at 8%-10%, and the moisture content rebound within 24 hours after air-drying is ≤2%, extending the shelf life to 36 hours and reducing the product loss rate from 8% to 2.1%. The precise temperature control of the PTC heating element reduces the hot air temperature fluctuation range from ±5℃ to ±1℃, thereby improving the uniformity of the crispiness of the roast goose skin. Furthermore, the integrated dehumidification and heating module has the same external dimensions as the original hot air blower and can be directly installed into the original hot air blower mounting box. No modifications are required to the air supply pipe and air inlet pipe, and the installation and commissioning time is only 1 hour. The dust filter can be washed and reused, extending the replacement cycle from 1 month to 3 months and reducing the single maintenance cost by 60%. The total power of the module is only 0.3kW more than the original hot air blower, and the daily energy consumption increases from 4.8kW·h to 5.7kW·h. However, due to the shortened drying time, the total daily energy consumption is reduced by 0.9kW·h, achieving a balance between high efficiency and energy saving. The rotary dehumidification core has a service life of up to 1.5 years and does not need to be replaced during this period, reducing the equipment maintenance frequency from an average of 2 times per month to 0.5 times per month.

[0035] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A portable tool for hanging and air-drying roasted geese, including an air-drying jar (1), characterized in that: The inner wall of the drying can (1) is provided with a circular groove (16) for hanging drying components. The hanging drying components are set on the drying can (1) and include a drive motor (2). The drive motor (2) is fixedly installed on the upper surface of the drying can (1). Among them, the output end of the drive motor (2) is fixedly connected to the drive shaft (15), the lower end of the drive shaft (15) rotates through the interior of the air-drying tank (1), the lower end of the drive shaft (15) is fixedly connected to the circular rotating plate (12), and the circular rotating plate (12) is rotatably connected to the circular groove (16). Among them, two servo motor mounting boxes (6) are fixedly connected to the upper surface of the circular rotating plate (12). The two servo motor mounting boxes (6) are arranged in a front-to-back correspondence. A rotating rod (13) is fixedly installed inside each of the two servo motor mounting boxes (6).

2. The convenient integrated tool for hanging and air-drying roasted goose according to claim 1, characterized in that: The lower ends of the two rotating rods (13) respectively rotate through the lower surface of the corresponding servo motor mounting box (6), and both rotate through the lower surface of the circular rotating plate (12); Two sets of hooks (11) are fixedly installed on each of the two circular rotating plates (12), with corresponding hooks positioned vertically.

3. The convenient integrated tool for hanging and air-drying roasted goose according to claim 2, characterized in that: A set of hooks consists of four hooks (11) arranged in a cross shape.

4. The convenient integrated tool for hanging and air-drying roasted goose according to claim 1, characterized in that: The upper surface of the drying jar (1) is fixedly connected to a concave mounting bracket (3), and the upper surface of the concave mounting bracket (3) is fixedly connected to a hot air blower mounting box (4). An air inlet pipe is provided on the hot air blower mounting box (4), and a hot air blower is fixedly installed inside the hot air blower mounting box (4).

5. The portable goose roasting, hanging and air-drying integrated tool according to claim 4, characterized in that: The outlet of the hot air blower is fixedly connected to an air supply pipe (5), and the rear end of the air supply pipe (5) passes through the rear surface of the hot air blower mounting box (4). Among them, the gas supply pipe (5) is fixedly connected to an annular pipe (7) that communicates with its interior at one end outside the hot air blower mounting box (4), and the air drying tank (1) is located inside the annular pipe (7). The air drying tank (1) is fixedly connected to the annular pipe (7).

6. The convenient integrated tool for hanging and air-drying roasted goose according to claim 5, characterized in that: The lower surface of the annular tube (7) is fixedly connected to a plurality of mounting tubes (9) arranged in an array, and a rectangular discharge box (14) communicating with the interior of each mounting tube (9) is fixedly connected to the side of the air-drying tank (1). Among them, multiple rectangular discharge boxes (14) all penetrate the interior of the air-drying tank (1).

7. The convenient integrated tool for hanging and air-drying roasted geese according to claim 1, characterized in that: The front and rear surfaces of the air-drying jar (1) are fixedly connected with L-shaped mounting brackets (8), and the lower surfaces of the two L-shaped mounting brackets (8) are fixedly connected with casters with self-locking function.

8. The convenient integrated tool for hanging and air-drying roasted goose according to claim 1, characterized in that: The lower surface of the air-drying tank (1) is fixedly connected to a waste oil discharge pipe (10) that communicates with its interior. A switch valve is installed on the waste oil discharge pipe (10), and a switch door is installed on the left side of the air-drying tank (1).

9. The convenient integrated tool for hanging and air-drying roasted geese according to claim 1, characterized in that: The circular rotating plate (12) can be replaced with a circular rotating plate with balls on the outer wall. Three annular ball grooves are opened on the outer wall of the rotating plate, and φ3mm stainless steel balls are built in. The fixed connection with the drive shaft (15) and the sliding fit of the circular groove (16) are retained.