Edible bird's nest beverage detection device convenient to sample

By designing a bird's nest beverage detection device including a detection base, a can assembly and a detection assembly, the problems of low sampling convenience and low detection accuracy in the prior art are solved, and closed sampling and efficient detection of bird's nest beverages are realized.

CN119936006AInactive Publication Date: 2025-05-06JINAN HAIFANGYI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510144711.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing bird's nest beverage detection device has low convenience during the sampling process and is easily exposed to the air, resulting in bacterial pollution and reduced detection accuracy.

Method used

A bird's nest beverage detection device including a detection base, a can assembly and a detection assembly is designed. The device realizes closed sampling through a nitrogen tank and inlet assembly, uses the dual heating technology of the heater and friction seat for high temperature sterilization, and quickly detects impurities through the light-transmitting plate and the development detection plate.

Benefits of technology

It realizes convenient, fast and closed sampling of bird's nest beverages, avoids external bacterial contamination, improves detection accuracy, and maintains equipment stability when the heater fails.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a bird's nest beverage detection device convenient to sample, and relates to the technical field of bird's nest beverage detection.The bird's nest beverage detection device comprises a detection base station, a tank assembly and a detection assembly, a spacing seat is arranged on the inner side of the detection base station, nitrogen tanks are arranged on the two sides of the top of the detection base station, and the tank assembly is arranged at the middle end of the detection base station; and an air inlet assembly is arranged on the outer side of the bottom of the tank body assembly. After the air pressure in the tank body rises, the homogenized bird's nest beverage in the tank body enters the feeding groove due to the air pressure difference and enters the sampling bottle through the material passing groove and the butt joint pipe, through the design, the device can conveniently and rapidly sample the bird's nest beverage, the whole sampling process is in a closed state, and the sampling efficiency is improved. And the introduced nitrogen can play a role in air sealing and air isolation when the sampling bottle is in the open state, so that the risk that the bacteria enter the sampling bottle when the sampling bottle is in the open state in the subsequent detection process can be greatly reduced.
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Description

Technical Field

[0001] The invention relates to the technical field of bird's nest beverage detection, and in particular to a bird's nest beverage detection device which is convenient for sampling. Background Art

[0002] Bird's nest drink is a high-end tonic, mainly made of bird's nest and other ingredients. Its main ingredients include bird's nest, water and seasoning. Bird's nest drink is rich in protein, amino acids and a variety of trace elements and minerals, and also has a high content of collagen. The testing items of bird's nest drinks mainly involve food safety, quality and authenticity. When testing bird's nest drinks, microbial indicators, heavy metal content, nutritional ingredients, additives, hormone substances, nitrite content, impurity content in bird's nest and other items are usually tested.

[0003] The common bird's nest beverage testing devices on the market have low sampling convenience during the testing process, which causes the bird's nest beverage to be easily exposed to the air during the sampling process. Since the bird's nest beverage testing items are numerous and the time is long, bacteria are easily mixed into the bird's nest beverage exposed to the air. The bacteria mixed in from the outside will change the composition of the bird's nest, thereby affecting the accuracy of the bird's nest testing.

[0004] Therefore, in view of this, the existing structure and deficiencies are studied and improved, and a bird's nest beverage detection device that is convenient for sampling is proposed. Summary of the invention

[0005] The object of the present invention is to provide a bird's nest beverage detection device that is convenient for sampling, so as to solve the problems raised in the above-mentioned background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a bird's nest beverage detection device for convenient sampling, comprising a detection base, a tank assembly and a detection assembly, wherein a spacer is arranged on the inner side of the detection base, and nitrogen tanks are arranged on both sides of the top of the detection base, the tank assembly is arranged at the middle end of the detection base, and an air inlet assembly is arranged on the outer side of the bottom of the tank assembly, a driving assembly is arranged on the outer side of the top of the detection base, and a detection assembly is arranged on the outer end of the driving assembly, the detection assembly comprises a rotating rod body, a homogenizing paddle, a docking head, a feed trough, a feed trough, a docking tube, a light-transmitting plate, a strong light lamp and a developing detection plate, homogenizing paddles are connected to the outer ends of the rotating rod body, and a docking head is arranged on the outer side of the bottom of the rotating rod body, a feed trough is opened at the outer end of the rotating rod body, and the end of the feed trough is connected to the feed trough, and the end of the feed trough is connected to the docking tube, light-transmitting plates are arranged on both sides of the inner side of the feed trough, a strong light lamp and a developing detection plate are arranged on the outer end of the light-transmitting plate, and a sampling bottle is connected to the outer end of the docking tube.

[0007] Furthermore, the tank assembly includes a base, an air inlet groove, an electrically controlled one-way valve, a tank body and a heater. An air inlet groove is provided at the outer end of the base, and an electrically controlled one-way valve is provided at the end of the air inlet groove. The tank body is provided at the top of the base, and a heater is placed at the outer end of the tank body.

[0008] Furthermore, the base, the tank body and the detection base are an integrated structure, and the base is connected to the inside of the tank body through the air inlet groove.

[0009] Furthermore, the nitrogen tank is communicated with the compartment inside the spacer seat, and the compartment inside the spacer seat is communicated with the air inlet groove.

[0010] Furthermore, the air intake assembly includes a docking seat, a friction seat and an air intake fan. The bottom end of the docking seat is provided with a friction seat, and the bottom end of the friction seat is provided with an air intake fan.

[0011] Furthermore, the docking seat and the docking head are docked with each other, and the docking seat and the friction seat are integrated.

[0012] Furthermore, the friction seat and the base are fitted with each other, and the base is sleeve-connected with the docking seat.

[0013] Furthermore, the driving assembly includes a first support seat, an electric push rod, a cover plate, a bearing sleeve, a second support seat and a motor, the outer end of the first support seat is provided with an electric push rod, and the output end of the electric push rod is provided with a cover plate, the inner side of the cover plate is provided with a bearing sleeve, and the top end of the cover plate is provided with a second support seat, and the motor is provided on the outer side of the top of the second support seat.

[0014] Furthermore, the motor drives the rotating rod body to rotate, and the rotating rod body is sleeved with the bearing sleeve.

[0015] Furthermore, the electric push rod drives the cover plate to rise and fall, and the cover plate seals the tank body.

[0016] The present invention provides a bird's nest beverage detection device that is convenient for sampling, and has the following beneficial effects: 1. In the process of the rotating rod body of the present invention moving to the inside of the can body, the docking joint at the bottom end thereof can dock with the docking seat. In the process of the rotating rod body rotating, the torque can be transmitted to the docking seat through the docking joint, so that the docking seat can drive the friction seat and the air inlet fan to rotate. Since the friction seat fits with the base, the friction seat rubs with the base during high-speed rotation, which can increase the temperature of the base. By cooperating with the heating of the heater, the bird's nest beverage can be quickly sterilized at high temperature, which can prevent bacterial growth from affecting the detection accuracy of the bird's nest beverage. In addition, the friction seat and the base friction cooperate with the double heating of the heater, which can still stably heat the bird's nest beverage when the heater is damaged or fails, which can improve the stability of the equipment.

[0017] 2. The docking seat of the present invention can also drive the air intake fan to rotate in the process of driving the friction seat to rotate. In the process of rotating, the air intake fan can drive the air in the inner compartment of the spacing seat to flow in the direction of the air intake groove. Because the nitrogen tank is connected to the inner compartment of the spacing seat, the air intake fan can make the nitrogen in the nitrogen tank pass through the air intake groove and the electric control one-way valve into the inside of the tank body during the rotation. Because the air intake groove is located inside the base, the nitrogen can be automatically heated and disinfected when it enters the inside of the tank body. By heating and injecting air into the inside of the tank body, the air pressure inside the tank body can be increased. Before the device is used , the staff can fix the sampling bottle on the outer end of the butt joint. After the air pressure inside the can body rises, the homogenized bird's nest beverage inside the can body will enter the feed trough due to the air pressure difference, and enter the sampling bottle through the feed trough and the butt joint. Through this design, the equipment can conveniently and quickly realize the sampling of bird's nest beverage, and the sampling process is in a closed state throughout, which can prevent external bacteria from contaminating the sample, and the introduced nitrogen can play the role of air-sealing and isolating the air when the sampling bottle is in the open state, which can greatly reduce the risk of bacteria entering when the sampling bottle is in the open state in the subsequent detection process.

[0018] 3. When the bird's nest beverage of the present invention flows in the feeding trough, it will flow through the light-transmitting plate. The strong light at the outer end of the light-transmitting plate will work, so that light can pass through the light-transmitting plate and shine on the developing detection plate. If there is no impurity in the bird's nest beverage, it will appear translucent. After being homogenized by the homogenizing paddle, the light of the strong light shining on the developing detection plate will not show a shadow. On the contrary, if there are impurities, the impurities will not be broken up by the homogenizing paddle (the impurities are mostly swallow feathers), and a shadow will appear. By combining the impurity detection step with the homogenizing step of the detection, the equipment can quickly, effectively and conveniently detect whether the bird's nest beverage contains impurities. In addition, because the flow of the bird's nest beverage in the feeding trough is affected by the air pressure difference, the environment in the feeding trough is single, and no misjudgment will be caused by the shadow of other objects, and the feeding trough space is closed and less affected by the outside world. In addition, the bird's nest beverage has a slow flow rate due to the air pressure difference, which enables the developing detection board to accurately and quickly detect impurities in the bird's nest beverage. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall three-dimensional structure of a bird's nest beverage detection device that is convenient for sampling according to the present invention; Figure 2 This is a schematic diagram of the spacing seat structure of a bird's nest beverage detection device for convenient sampling of the present invention; Figure 3 This is a schematic diagram of the internal structure of a can of a bird's nest beverage detection device that is convenient for sampling according to the present invention; Figure 4 This is a schematic diagram of the base structure of a bird's nest beverage detection device that is convenient for sampling according to the present invention; Figure 5This is a schematic diagram of the structure of an air intake component of a bird's nest beverage detection device that is convenient for sampling according to the present invention; Figure 6 This is a schematic diagram of the overall cross-sectional structure of a bird's nest beverage detection device that is convenient for sampling according to the present invention; Figure 7 This is a schematic diagram of the structure of a detection component of a bird's nest beverage detection device that is convenient for sampling according to the present invention; Figure 8 The invention provides a bird's nest beverage detection device which is convenient for sampling Figure 7 Enlarged structural diagram at A in the middle.

[0020] In the figure: 1. detection base; 2. spacer seat; 3. nitrogen tank; 4. tank body assembly; 401. base; 402. air inlet groove; 403. electric control one-way valve; 404. tank body; 405. heater; 5. air inlet assembly; 501. docking seat; 502. friction seat; 503. air inlet fan; 6. drive assembly; 601. first support seat; 602. electric push rod; 603. cover plate; 604. bearing sleeve; 605. second support seat; 606. motor; 7. detection assembly; 701. rotating rod body; 702. homogenizing paddle; 703. docking head; 704. feed trough; 705. feed trough; 706. docking tube; 707. light-transmitting plate; 708. strong light lamp; 709. developing detection plate; 8. sampling bottle. DETAILED DESCRIPTION

[0021] See also Figures 1 to 8 The present invention provides a technical solution: a bird's nest beverage detection device for convenient sampling, comprising a detection base 1, a tank assembly 4 and a detection assembly 7, wherein a spacer seat 2 is arranged on the inner side of the detection base 1, and nitrogen tanks 3 are arranged on both sides of the top of the detection base 1, a tank assembly 4 is arranged at the middle end of the detection base 1, and an air inlet assembly 5 is arranged on the outer side of the bottom of the tank assembly 4, a driving assembly 6 is arranged on the outer side of the top of the detection base 1, and a detection assembly 7 is arranged on the outer end of the driving assembly 6, and the detection assembly 7 comprises a rotating rod body 701, a homogenizing paddle 702, a docking joint 703, a feed trough 704, a feed trough 705, The butt joint tube 706, the light-transmitting plate 707, the strong light lamp 708 and the developing detection plate 709, the two outer ends of the rotating rod body 701 are connected with the homogenizing paddles 702, and the bottom outer side of the rotating rod body 701 is provided with a butt joint 703, the outer end of the rotating rod body 701 is provided with a feed trough 704, and the end of the feed trough 704 is connected with a feed trough 705, the end of the feed trough 705 is connected with the butt joint tube 706, the inner sides of the feed trough 705 are provided with light-transmitting plates 707, the outer end of the light-transmitting plate 707 is provided with a strong light lamp 708 and a developing detection plate 709, and the outer end of the butt joint tube 706 is connected with a sampling bottle 8.

[0022] See also Figures 1 to 8The tank assembly 4 includes a base 401, an air inlet groove 402, an electrically controlled one-way valve 403, a tank body 404 and a heater 405. The outer end of the base 401 is provided with an air inlet groove 402, and the end of the air inlet groove 402 is provided with an electrically controlled one-way valve 403. The top of the base 401 is provided with a tank body 404, and the outer end of the tank body 404 is provided with a heater 405. The base 401, the tank body 404 and the detection base 1 are an integrated structure, and the base 401 is connected to the inside of the tank body 404 through the air inlet groove 402, the nitrogen tank 3 is connected to the compartment inside the spacer seat 2, and the compartment inside the spacer seat 2 is connected to the air inlet groove 402. The air inlet assembly 5 includes a docking seat 501, a friction seat 502 and an air inlet fan 503. The bottom end of the docking seat 501 is provided with a friction seat 502, and the bottom end of the friction seat 502 is provided with an air inlet fan 503. The docking seat 501 is connected to The docking joints 703 are docked with each other, and the docking seat 501 and the friction seat 502 are integrated, the friction seat 502 and the base 401 are fitted with each other, and the base 401 is sleeved and connected with the docking seat 501, the driving assembly 6 includes a first support seat 601, an electric push rod 602, a cover plate 603, a bearing sleeve 604, a second support seat 605 and a motor 606, the outer end of the first support seat 601 is provided with an electric push rod 602, and the output end of the electric push rod 602 is provided with a cover plate 603, the inner side of the cover plate 603 is provided with a bearing sleeve 604, and the top of the cover plate 603 is provided with a second support seat 605, and the outer side of the top of the second support seat 605 is provided with a motor 606, the motor 606 drives the rotating rod body 701 to rotate, and the rotating rod body 701 is sleeved with the bearing sleeve 604, the electric push rod 602 drives the cover plate 603 to rise and fall, and the cover plate 603 seals the tank body 404; The specific operation is as follows. After the staff pours the bird's nest beverage that needs to be tested into the can body 404, the electric push rod 602 can drive the cover plate 603 to move down and fit and seal the can body 404. Because the cover plate 603 is connected to the rotating rod body 701 through the bearing sleeve 604, the rotating rod body 701 and the homogenizing paddle 702 can be driven to enter the can body 404 together during the downward movement of the can body 404. After the cover plate 603 and the can body 404 are fitted together, the rotating rod body 701 is driven to rotate by the motor 606, and the homogenizing paddle 702 can rotate inside the can body 404. The stirring of the bird's nest beverage by the homogenizing paddle 702 can homogenize the bird's nest component and the liquid component of the bird's nest beverage, which can facilitate the subsequent detection of various components of the bird's nest beverage. During the process of the moving rod body 701 moving to the inside of the can body 404, the docking joint 703 at its bottom end can dock with the docking seat 501. During the rotation of the rotating rod body 701, the torque can be transmitted to the docking seat 501 through the docking joint 703, so that the docking seat 501 can drive the friction seat 502 to rotate. Since the friction seat 502 fits with the base 401, the friction seat 502 rubs with the base 401 during the high-speed rotation, which can increase the temperature of the base 401. By cooperating with the heating of the heater 405, the bird's nest beverage can be quickly sterilized at high temperature, which can prevent bacterial growth from affecting the detection accuracy of the bird's nest beverage. In addition, the friction seat 502 and the base 401 rub against the double heating of the heater 405, which can prevent the heater 405 from being damaged or When a fault occurs, the bird's nest beverage can still be heated stably, which can improve the stability of the equipment. The docking seat 501 can drive the friction seat 502 to rotate, and can also drive the air intake fan 503 to rotate. During the rotation of the air intake fan 503, the air in the inner compartment of the spacing seat 2 can be driven to flow in the direction of the air intake groove 402. Because the nitrogen tank 3 is connected to the internal compartment of the spacing seat 2, the air intake fan 503 can make the nitrogen in the nitrogen tank 3 pass through the air intake groove 402 and the electric control one-way valve 403 to enter the inside of the tank body 404 during the rotation. Because the air intake groove 402 is located inside the base 401, the nitrogen can automatically heat and disinfect when it enters the inside of the tank body 404. By heating and injecting gas into the inside of the tank body 404, the air pressure inside the tank body 404 can be increased. Rise, before the equipment is used, the staff can fix the sampling bottle 8 at the outer end of the butt joint 706. After the air pressure inside the tank body 404 rises, the homogenized bird's nest beverage inside the tank body 404 will enter the feed trough 704 due to the air pressure difference, and enter the sampling bottle 8 through the feed trough 705 and the butt joint 706. Through this design, the equipment can conveniently and quickly realize the sampling of the bird's nest beverage, and the sampling process is in a closed state throughout the whole process, which can prevent external bacteria from contaminating the sample, and the introduced nitrogen can play the role of air sealing and isolating the air when the sampling bottle 8 is in the open state, which can greatly reduce the risk of bacteria entering when the sampling bottle 8 is in the open state in the subsequent detection process. When the bird's nest beverage flows in the feed trough 705, it will flow through the light-transmitting plate 707,The strong light 708 at the outer end of the light-transmitting plate 707 works, and can make light pass through the light-transmitting plate 707 and shine on the developing detection plate 709. If there are no impurities in the bird's nest drink, it will appear translucent. After being homogenized by the homogenizing paddle 702, the light of the strong light 708 on the developing detection plate 709 will not show a shadow. On the contrary, if there are impurities, the impurities will not be dispersed by the homogenizing paddle 702 (the impurities are mostly swallow feathers), and a shadow will appear. By combining the impurity detection step with the detection homogenization step, the equipment can quickly, effectively and conveniently detect whether the bird's nest drink contains impurities. In addition, because the flow of the bird's nest drink in the feeding trough 705 is affected by the air pressure difference, the environment in the feeding trough 705 is single, and it will not be misjudged due to the shadow of other objects, and the space of the feeding trough 705 is closed and less affected by the outside world. In addition, the bird's nest drink flows slowly due to the air pressure difference, which enables the developing detection plate 709 to accurately and quickly realize the impurity detection in the bird's nest drink.

[0023] In summary, when using the bird's nest beverage detection device that is convenient for sampling, first, the staff pours the bird's nest beverage that needs to be detected into the inside of the can body 404, and then the electric push rod 602 works to drive the cover plate 603 to move down and fit and seal with the can body 404. Because the cover plate 603 is connected to the rotating rod body 701 through the bearing sleeve 604, the rotating rod body 701 and the homogenizing paddle 702 can be driven to enter the inside of the can body 404 during the downward movement of the can body 404. After the cover plate 603 and the can body 404 are completely fitted, the rotating rod body 701 is driven to rotate by the motor 606, and the homogenizing paddle 702 can rotate inside the can body 404. The stirring of the bird's nest beverage by the homogenizing paddle 702 can homogenize the bird's nest component and the liquid component of the bird's nest beverage, which can facilitate the subsequent detection of various components of the bird's nest beverage. Then, when the rod body 701 is rotated to move inside the can body 404, the docking joint 703 at its bottom end can dock with the docking seat 501. During the rotation of the rod body 701, the torque can be transmitted to the docking seat 501 through the docking joint 703, so that the docking seat 501 can drive the friction seat 502 to rotate. Since the friction seat 502 fits with the base 401, the friction seat 502 rubs with the base 401 during high-speed rotation, which can increase the temperature of the base 401. By cooperating with the heating of the heater 405, the bird's nest beverage can be quickly sterilized at high temperature, which can prevent bacterial growth from affecting the detection accuracy of the bird's nest beverage. In addition, the friction seat 502 and the base 401 are rubbed with the double heating of the heater 405, so that the bird's nest beverage can still be stably heated when the heater 405 is damaged or fails, which can improve the stability of the device. Then, in the process of driving the friction seat 502 to rotate, the docking seat 501 can also drive the air intake fan 503 to rotate. In the process of rotating, the air intake fan 503 can drive the air in the inner compartment of the spacing seat 2 to flow in the direction of the air intake groove 402. Because the nitrogen tank 3 is connected to the internal compartment of the spacing seat 2, the air intake fan 503 can make the nitrogen in the nitrogen tank 3 pass through the air intake groove 402 and the electric control one-way valve 403 to enter the tank body 404 during the rotation. Because the air intake groove 402 is located inside the base 401, the nitrogen can be automatically heated and disinfected when it enters the tank body 404. By heating and injecting air into the tank body 404, the air inside the tank body 404 can be sterilized. The pressure rises. Before the equipment is used, the staff can fix the sampling bottle 8 at the outer end of the butt joint 706. After the air pressure inside the tank body 404 rises, the homogenized bird's nest beverage inside the tank body 404 will enter the feed trough 704 due to the air pressure difference, and enter the sampling bottle 8 through the feed trough 705 and the butt joint 706. Through this design, the equipment can conveniently and quickly realize the sampling of the bird's nest beverage, and the sampling process is in a closed state throughout the whole process, which can prevent external bacteria from contaminating the sample, and the nitrogen introduced can play the effect of air-sealing and isolating the air when the sampling bottle 8 is in the open state, which can greatly reduce the risk of bacteria entering when the sampling bottle 8 is in the open state in the subsequent detection process; Finally, when the bird's nest drink flows in the feeding trough 705, it will flow through the light-transmitting plate 707. The strong light 708 at the outer end of the light-transmitting plate 707 will work, allowing light to pass through the light-transmitting plate 707 and irradiate the developing detection plate 709. If the bird's nest in the bird's nest drink has no impurities, it will appear translucent. After being homogenized by the homogenizing paddle 702, the light of the strong light 708 on the developing detection plate 709 will not show a shadow. On the contrary, if there are impurities, the impurities will not be dispersed by the homogenizing paddle 702 (the impurities are mostly swallow feathers), and a shadow will appear. By combining the impurity detection step with the detection homogenization step, the equipment can quickly, effectively and conveniently detect whether the bird's nest beverage contains impurities. In addition, the flow of the bird's nest beverage in the feeding trough 705 is affected by the air pressure difference. Since the environment in the feeding trough 705 is single, there will be no misjudgment due to the shadow of other objects, and the feeding trough 705 is closed and less affected by the outside world. In addition, the bird's nest beverage has a slower flow rate due to the air pressure difference, which enables the developing detection plate 709 to accurately and quickly realize the detection of impurities in the bird's nest beverage.

[0024] The embodiments of the present invention are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.

Claims

1. A bird's nest beverage detection device that is convenient for sampling, characterized in that: The invention comprises a detection base (1), a tank assembly (4) and a detection assembly (7), wherein a spacer seat (2) is arranged on the inner side of the detection base (1), and nitrogen tanks (3) are arranged on both sides of the top of the detection base (1), the tank assembly (4) is arranged at the middle end of the detection base (1), and an air inlet assembly (5) is arranged on the outer side of the bottom of the tank assembly (4), a driving assembly (6) is arranged on the outer side of the top of the detection base (1), and a detection assembly (7) is arranged on the outer end of the driving assembly (6), and the detection assembly (7) comprises a rotating rod body (701), a homogenizing paddle (702), a butt joint (703), a feed trough (704), a feed trough (705), a butt joint (706), a light-transmitting plate (707), and a plurality of other components. ), a strong light lamp (708) and a developing detection plate (709), the two ends of the outer side of the rotating rod body (701) are connected with a homogenizing paddle (702), and a docking joint (703) is arranged on the outer side of the bottom of the rotating rod body (701), the outer end of the rotating rod body (701) is provided with a feed trough (704), and the end of the feed trough (704) is connected with a feed trough (705), the end of the feed trough (705) is connected with a docking pipe (706), and the inner sides of the feed trough (705) are provided with light-transmitting plates (707), the outer ends of the light-transmitting plates (707) are provided with a strong light lamp (708) and a developing detection plate (709), and the outer ends of the docking pipe (706) are connected with a sampling bottle (8).

2. A convenient sampling bird's nest beverage detection device according to claim 1, characterized in that: The tank assembly (4) comprises a base (401), an air inlet groove (402), an electrically controlled one-way valve (403), a tank body (404) and a heater (405); an air inlet groove (402) is provided at the outer end of the base (401), and an electrically controlled one-way valve (403) is provided at the end of the air inlet groove (402); a tank body (404) is provided at the top end of the base (401), and a heater (405) is arranged at the outer end of the tank body (404).

3. A convenient sampling bird's nest beverage detection device according to claim 2, characterized in that: The base (401), the can body (404) and the detection base (1) are an integrated structure, and the base (401) is connected to the inside of the can body (404) through the air inlet groove (402).

4. A convenient sampling bird's nest beverage detection device according to claim 2, characterized in that: The nitrogen tank (3) is communicated with the compartment inside the spacer seat (2), and the compartment inside the spacer seat (2) is communicated with the air inlet groove (402).

5. A bird's nest beverage detection device for convenient sampling according to claim 2, characterized in that: The air intake assembly (5) comprises a docking seat (501), a friction seat (502) and an air intake fan (503); the friction seat (502) is arranged at the bottom end of the docking seat (501), and the air intake fan (503) is arranged at the bottom end of the friction seat (502).

6. A bird's nest beverage detection device for convenient sampling according to claim 5, characterized in that: The docking seat (501) and the docking head (703) are docked with each other, and the docking seat (501) and the friction seat (502) are integrated.

7. A bird's nest beverage detection device for convenient sampling according to claim 5, characterized in that: The friction seat (502) and the base (401) are fitted to each other, and the base (401) and the docking seat (501) are sleeve-connected.

8. A bird's nest beverage detection device for convenient sampling according to claim 2, characterized in that: The driving assembly (6) comprises a first supporting seat (601), an electric push rod (602), a cover plate (603), a bearing sleeve (604), a second supporting seat (605) and a motor (606); the outer end of the first supporting seat (601) is provided with the electric push rod (602), and the output end of the electric push rod (602) is provided with the cover plate (603); the inner side of the cover plate (603) is provided with the bearing sleeve (604), and the top end of the cover plate (603) is provided with the second supporting seat (605); and the outer side of the top of the second supporting seat (605) is provided with the motor (606).

9. A bird's nest beverage detection device for convenient sampling according to claim 8, characterized in that: The motor (606) drives the rotating rod (701) to rotate, and the rotating rod (701) is sleeved with the bearing sleeve (604).

10. A convenient sampling bird's nest beverage detection device according to claim 8, characterized in that: The electric push rod (602) drives the cover plate (603) to move up and down, and the cover plate (603) seals the tank body (404).