A refrigerator cabinet for facilitating the taking and placing of Buddha Jumping over the Wall and a refrigeration method

Through the design of the adaptive cooling mechanism and indication mechanism, the problems of smell and air-conditioning waste in the refrigerator compartment are solved, and separate refrigeration, energy-saving monitoring and convenient pick-up are realized, which is suitable for refrigeration in Buddha Jumping the Wall.

CN120101384BActive Publication Date: 2025-07-08FUQING BRANCH OF FUJIAN NORMAL UNIV
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Patent Information

Application Number
CN202510604200.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-07-08
Estimated Expiration
2045-05-12

AI Technical Summary

Technical Problem

Existing refrigerators have problems with odor and waste of air conditioners in refrigeration rooms, especially when there are fewer refrigeration items, which leads to an increase in energy consumption.

Method used

A refrigerator for easy access and storage is designed, using an adaptive cooling mechanism and an indicator mechanism. Through the design of the movable rod and the air supply chamber, it realizes separate refrigeration and automatic refrigeration. It combines the indicator light to monitor the storage status and integrates the collection mechanism to process the discharge.

Benefits of technology

It realizes separate refrigeration to avoid odor, saves energy and reduces air-conditioning consumption, and can monitor the storage status in real time, making it easier to pick up and handle spills.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a refrigerator cabinet for facilitating the taking and placing of Buddha Jumping over the Wall and a refrigeration method, which relates to the technical field of refrigerator cabinets. The refrigerator cabinet includes a cabinet body, on which a plurality of accommodating cavities are opened. Inside the accommodating cavities, storage boxes are arranged. At the bottom of each storage box, a mounting seat is fixedly installed, and the mounting seat is movably installed on the cabinet body. The storage box is movably installed inside the accommodating cavity through the mounting seat. Above the inside of the cabinet body, a refrigeration device is arranged. An air delivery groove is opened inside the cabinet body. Inside the storage box, a placing tray is arranged. An adaptive cold air delivery mechanism is arranged on the storage box and the mounting seat; the adaptive cold air delivery mechanism includes a movable rod, a first movable groove and a first mounting spring. By setting a plurality of storage boxes, each storage box stores Buddha Jumping over the Wall separately, thereby avoiding the situation of flavor mixing between different portions of Buddha Jumping over the Wall. At the same time, an adaptive cold air delivery mechanism is provided, achieving the effect of automatically refrigerating after putting in Buddha Jumping over the Wall, reducing the consumption of cold air and being more energy-saving.
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Description

Technical Field

[0001] The present invention relates to the technical field of refrigerators, and in particular to a refrigerator for facilitating the taking and placing of Fotiaoqiang and a refrigeration method. Background Art

[0002] Fotiaoqiang is a traditional Chinese famous dish stewed with a variety of precious ingredients. To maintain the freshness, flavor and nutritional value of Fotiaoqiang, a refrigerator is needed to store it.

[0003] Chinese Patent with the publication number CN114152019A discloses a vertical refrigerator, including a vertical refrigerator body. An adjusting structure is fixedly installed on the rear inner wall of the vertical refrigerator body. The adjusting mechanism includes an adjusting plate. An adjusting hole is opened inside the adjusting plate. A convex limiting sliding groove is opened on the rear inner wall of the adjusting hole. A plurality of convex limiting sliding rods are slidably installed on the inner wall of the convex limiting sliding groove. A limiting hole is opened on one side of the convex limiting sliding rod away from the convex limiting sliding groove. A spring is fixedly connected to the rear inner wall of the limiting hole. Through the adjusting mechanism of this invention, the up and down height of the placing plate can be adjusted, so that the placing plate can carry items of different heights, and the use is more flexible. By the work of the hydraulic cylinder to drive the moving plate to move down, the moving plate drives the four moving casters to move down to the ground through the looped frame and lift the vertical refrigerator body, and then the vertical refrigerator body can be pushed by the four moving casters, which is time-saving and labor-saving.

[0004] However, the above invention has the following deficiencies:

[0005] In the above solution, the refrigerating chambers are connected, so that if multiple refrigerated products are placed together, the situation of flavor mixing is likely to occur. And the cold air inside the refrigerating chamber is fixedly delivered. If there are fewer refrigerated products inside the refrigerating chamber, delivering the same amount of cold air will cause waste of a part of the cold air, resulting in more energy consumption. Summary of the Invention

[0006] The purpose of the present invention is to provide a refrigerator for facilitating the taking and placing of Fotiaoqiang and a refrigeration method to solve the problems put forward in the above background art.

[0007] The technical solution of the present invention is: a refrigerator for facilitating the taking and placing of Fotiaoqiang, including a cabinet body. A plurality of accommodating cavities are opened on the cabinet body. A storage box is arranged inside the accommodating cavity. An installation seat is fixedly installed at the bottom of the storage box. The installation seat is movably installed on the cabinet body. The storage box is movably installed inside the accommodating cavity through the installation seat. A refrigeration device is arranged above the interior of the cabinet body. An air delivery groove is opened inside the cabinet body. A placing tray is arranged inside the storage box. An adaptive cold air delivery mechanism is arranged on the storage box and the installation seat;

[0008] The adaptive cold air delivery mechanism includes:

[0009] A movable rod, a first movable groove, and a mounting spring. The movable rod is fixedly installed on the bottom wall surface of the placing tray. The first movable groove is formed inside the mounting seat. The bottom of the movable rod penetrates downward through the top wall surface of the mounting seat and is located above the inside of the first movable groove. The mounting spring is sleeved on the movable rod and is respectively connected to the storage box and the placing tray.

[0010] An air supply chamber, a connection chamber, a gas distribution chamber, and an air outlet. The air supply chamber is formed inside the mounting seat and is respectively communicated with the first movable groove and the air delivery groove. The cold air inside the air delivery groove can enter the inside of the air supply chamber. The connection chamber is formed inside the movable rod and penetrates through one side wall surface of the movable rod. The gas distribution chamber is formed inside the placing tray. The top of the movable rod penetrates upward through the bottom wall surface of the placing tray so that the inside of the connection chamber and the gas distribution chamber are communicated. There are multiple air outlets, and the multiple air outlets are evenly distributed and opened on the side wall of the placing tray and are communicated with the inside of the gas distribution chamber.

[0011] Preferably, a plurality of bumps are inlaid and installed on the top of the placing tray. The bottom of the bump penetrates downward through the top of the placing tray and is located inside the gas distribution chamber. A second mounting spring is installed at the bottom of the bump.

[0012] Preferably, a sealing ring is inlaid and installed at the bottom of the movable rod.

[0013] Preferably, a moving groove is formed inside the cabinet body. The bottom of the mounting seat is fixedly installed with a slider. The bottom wall surface of the slider is inlaid and movably installed with a pulley, and the side wall of the pulley is attached to the bottom wall surface of the moving groove.

[0014] Preferably, a placing opening is formed at the top of the storage box. A torsion spring shaft is movably installed on one side inside the placing opening. A cover plate is fixedly sleeved on the torsion spring shaft. The cover plate seals the inside of the storage box. A buckle groove is formed on the mounting seat. A first air pipe and a second air pipe are arranged inside the air supply chamber. The first air pipe is located inside the second air pipe. The second air pipe is movably installed inside the air supply chamber. The first air pipe is fixedly connected to the cabinet body.

[0015] Preferably, a hinge is fixedly installed on the side wall of the cabinet body. A cabinet door is movably installed on the hinge. A control panel is installed on the cabinet door. A handle is fixedly installed on the cabinet door. A base is fixedly installed at the bottom of the cabinet body. Universal wheels are arranged at the bottom of the base.

[0016] Preferably, an indicating mechanism is provided on the storage box. The indicating mechanism includes a telescopic rod, a second movable groove, a connecting pipe, a moving block, a pressure sensor, and an indicator light. The telescopic rod is embedded and installed at the bottom of the storage box, and the top of the telescopic rod is fixedly connected to the bottom of the placement tray. The second movable groove is opened inside the storage box. The connecting pipe is embedded and installed inside the storage box. The connecting pipe communicates with the inside of the telescopic rod and the second movable groove. The moving block is slidably installed inside the second movable groove. There are two pressure sensors in total. The two pressure sensors are respectively fixedly installed on the upper and lower sides inside the second movable groove. The indicator light is fixedly installed on the outer side wall of the cabinet body. Multiple groups of LED lights are provided on the indicator light. Each group of LED lights corresponds to each storage box. A group of LED lights consists of a green light and a red light. Both pressure sensors are electrically connected to the indicator light through a controller.

[0017] Preferably, the inside of the placement tray is a structure that gradually slopes towards both sides. A plurality of liquid discharge ports are opened on the side wall of the placement tray, and the liquid discharge ports penetrate the inner and outer side walls of the placement tray.

[0018] Preferably, a collection mechanism is provided inside the storage box. The collection mechanism includes a baffle, a first collection groove, a communication groove, a second collection groove, a liquid discharge pipe, a bottom groove, and a sealing cover. The baffle is fixedly sleeved on the side wall of the placement tray and the baffle is located between the liquid discharge port and the air outlet. The first collection groove is opened on the bottom wall surface inside the storage box. The second collection groove is opened inside the mounting seat. The communication groove is opened inside the mounting seat and communicates with the inside of the first collection groove and the second collection groove. The liquid discharge pipe is embedded and installed at the bottom of the mounting seat and communicates with the inside of the second collection groove. The bottom groove is opened on the bottom wall surface of the mounting seat. The liquid discharge pipe is located inside the liquid discharge pipe. The sealing cover is movably installed on the liquid discharge pipe by means of a thread.

[0019] The present invention also discloses a refrigeration method for a refrigerator cabinet for facilitating the taking and placing of Buddha Jumping Over the Wall, including the following steps:

[0020] Step 1: First, pull the mounting seat, and the mounting seat will drive the storage box to move, thereby pulling the storage box and the mounting seat out of the accommodation cavity.

[0021] Step 2: Then, the Buddha Jumping Over the Wall can be placed on the placement tray. Under the action of gravity, the placement tray and the movable rod will move downward. The movement of the movable rod can cause the connecting cavity to move into the first movable groove.

[0022] Step 3: At this time, the cold air inside the first movable groove and the air supply cavity can enter the inside of the connecting cavity, and then enter the inside of the air distribution cavity. Then, through the air outlet, the cold air can move into the inside of the storage box, thereby forming a low-temperature environment inside the storage box.

[0023] Step 4: After the Buddha Jumping over the Wall is placed on the placement tray, the placement tray moves downward, and the indicating mechanism can light up the green light according to gravity. At this time, it can be indicated that the Buddha Jumping over the Wall is stored inside this storage box.

[0024] The present invention provides a refrigerator cabinet and a refrigeration method for facilitating the taking and placing of the Buddha Jumping over the Wall through improvement. Compared with the prior art, it has the following improvements and advantages:

[0025] Firstly: The present invention can pull the mounting seat through the buckle groove, and the mounting seat will drive the storage box to move. At this time, the slider and the pulley will move inside the moving groove, and at the same time, the second air pipe will move inside the air supply cavity, and the first air pipe will move inside the second air pipe. The rotation of the pulley can reduce the friction generated by the slider inside the moving groove, thereby making the energy required for the storage box and the mounting seat to move smaller, and thus facilitating the pulling out of the storage box and the mounting seat. Then, the Buddha Jumping over the Wall can be placed on the placement tray, and each Buddha Jumping over the Wall is stored separately inside each separate storage box, thereby avoiding the situation of flavor mixing between the Buddha Jumping over the Walls.

[0026] Secondly: Through the setting of the adaptive cooling mechanism of the present invention, when there is no Buddha Jumping over the Wall inside the storage box, the placement tray and the movable rod will be located at a position close to the upper part under the action of the first mounting spring. At this time, the connecting cavity is not communicated with the inside of the first movable groove and the air supply cavity. When the Buddha Jumping over the Wall is placed on the placement tray, under the action of gravity, the placement tray and the movable rod will move downward. The movement of the movable rod can make the connecting cavity move into the inside of the first movable groove. At this time, the cold air inside the first movable groove and the air supply cavity can enter the inside of the connecting cavity, and then enter the inside of the air distribution cavity. Then, through the air outlet, the cold air can move into the inside of the storage box, thereby forming a low-temperature environment inside the storage box, and thus refrigerating the Buddha Jumping over the Wall, achieving the effect of automatically refrigerating after the Buddha Jumping over the Wall is put in, reducing the consumption of cold air, and being more energy-saving.

[0027] Thirdly: With the setting of the indicating mechanism in the present invention, when there is Buddha Jumping over the Wall on the placing tray, the placing tray moves downward, which can cause the telescopic rod to contract. After the telescopic rod contracts, the air inside the telescopic rod will be squeezed out. The air inside the telescopic rod can enter the inside of the second movable slot through the connecting pipe, thereby driving the moving block to move upward inside the second movable slot. At this time, the upper pressure sensor will be triggered, and the pressure sensor can light up the green light in the group of LED lights corresponding to the current storage box through the controller. At this time, it can be indicated that there is Buddha Jumping over the Wall stored inside this storage box. On the contrary, when there is no Buddha Jumping over the Wall in the storage box, the moving block will contact the pressure sensor at the lower part inside the second movable slot, and the green light in the LED lights will not light up. When the container storing Buddha Jumping over the Wall on the placing tray leaks, the soup inside the container will flow onto the placing tray. Since the inside of the placing tray is a structure that gradually slopes towards both sides, the soup will flow towards the position of the drain port and then can flow out of the inside of the placing tray through the drain port. At this time, the gravity received by the placing tray becomes smaller, and the placing tray will move upward under the action of the mounting spring one, and the telescopic rod will become longer. At this time, the air inside the second movable slot will become less, and the moving block will not contact the upper pressure sensor and will not contact the lower pressure sensor either. At this time, the red light on the indicator light becomes bright, which can prompt that there is a problem with the Buddha Jumping over the Wall stored inside the storage box. At this time, the storage box can be opened to process the Buddha Jumping over the Wall, thus achieving the effect of monitoring the storage state of Buddha Jumping over the Wall in the storage box.

[0028] Fourthly: With the setting of the collecting mechanism in the present invention, the first collecting slot can collect water and soup, and then the water and soup can flow into the inside of the second collecting slot through the communicating slot. When the storage box and the mounting base are pulled out of the inside of the accommodating cavity, the sealing cover inside the bottom slot can be unscrewed at this time, and the water or soup inside the second collecting slot can be discharged from the inside of the second collecting slot through the drain pipe, thus achieving the effect of facilitating the collection and treatment of water and soup. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0030] Figure 1 It is a schematic diagram of the overall structure in the present invention;

[0031] Figure 2 It is a schematic diagram of the open state of the cabinet door in the present invention;

[0032] Figure 3 It is a cross-sectional view of the internal partial structure in the present invention;

[0033] Figure 4 is a cross-sectional view of the internal structure of the storage box in the present invention;

[0034] Figure 5 in the present invention Figure 3 is an enlarged view of part A in;

[0035] Figure 6 in the present invention Figure 4 is an enlarged view of part B in;

[0036] Figure 7 in the present invention Figure 4 is an enlarged view of part C in;

[0037] Figure 8 in the present invention Figure 4 is an enlarged view of part D in.

[0038] Reference numerals:

[0039] 1, cabinet body; 2, accommodation cavity; 3, hinge; 4, cabinet door; 5, base; 6, handle; 7, storage box; 8, mounting seat; 9, refrigeration equipment; 10, air delivery groove; 11, placement tray; 12, movable rod; 13, first movable groove; 14, air supply cavity; 15, first mounting spring; 16, connection cavity; 17, air distribution cavity; 18, air outlet; 19, sealing ring; 20, convex block; 21, second mounting spring; 22, moving groove; 23, slider; 24, pulley; 25, placement opening; 26, torsion spring shaft; 27, cover plate; 28, buckling groove; 29, telescopic rod; 30, second movable groove; 31, connecting pipe; 32, moving block; 33, pressure sensor; 34, indicator light; 35, liquid discharge port; 36, baffle; 37, first collection tank; 38, communication groove; 39, second collection tank; 40, liquid discharge pipe; 41, bottom groove; 42, sealing cover; 43, control panel; 44, first gas pipeline; 45, second gas pipeline. Detailed implementation manners

[0040] The present invention will be described in detail below. The technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0041] The present invention provides a refrigerated cabinet and a refrigeration method for facilitating the taking and placing of Buddha Jumping over the Wall by improvement. The technical solution of the present invention is as follows:

[0042] Embodiment 1: A refrigerated cabinet for facilitating the taking and placing of Buddha Jumping over the Wall, as Figures 1 to 4As shown in the figure, it includes a cabinet body 1, the cabinet body 1 is a rectangular structure, there are a plurality of accommodation cavities 2 opened on the cabinet body 1, the accommodation cavity 2 is a rectangular structure groove, a storage box 7 is arranged inside the accommodation cavity 2, the storage box 7 is a hollow rectangular structure, the storage box 7 is used for storing the stewing pot containing Fotiaoqiang, a mounting seat 8 is fixedly installed at the bottom of the storage box 7, the mounting seat 8 is a rectangular structure, the mounting seat 8 is movably installed on the cabinet body 1, and the storage box 7 is movably installed inside the accommodation cavity 2 through the mounting seat 8. A refrigeration device 9 is arranged above the inside of the cabinet body 1, the refrigeration device 9 is used for outputting cold air, an air delivery groove 10 is opened inside the cabinet body 1, the air delivery groove 10 is a rectangular structure groove, a placement tray 11 is arranged inside the storage box 7, and Fotiaoqiang is placed on the placement tray 11. An adaptive cold air delivery mechanism is arranged on the storage box 7 and the mounting seat 8;

[0043] As Figures 3 to 6As shown, the adaptive cooling air supply mechanism includes a movable rod 12, a first movable groove 13, an air supply chamber 14, a first mounting spring 15, a connecting chamber 16, a gas distribution chamber 17, and an air outlet 18. The movable rod 12 has a cylindrical structure and is fixedly installed on the bottom wall surface of the placement tray 11. The first movable groove 13 is a cylindrical groove and is opened inside the mounting base 8. The bottom of the movable rod 12 penetrates downward through the top wall surface of the mounting base 8 and is located above the inside of the first movable groove 13. The air supply chamber 14 is a rectangular groove and is opened inside the mounting base 8 and is respectively communicated with the first movable groove 13 and the air delivery groove 10. The cold air inside the air delivery groove 10 can enter the inside of the air supply chamber 14. The first mounting spring 15 is sleeved on the movable rod 12 and is respectively connected to the storage box 7 and the placement tray 11. The connecting chamber 16 is a cylindrical groove and is opened inside the movable rod 12 and penetrates through one side wall surface of the movable rod 12. The gas distribution chamber 17 is a cylindrical groove and is opened inside the placement tray 11. The top of the movable rod 12 penetrates upward through the bottom wall surface of the placement tray 11 so that the inside of the connecting chamber 16 and the gas distribution chamber 17 are communicated. The air outlet 18 is a cylindrical opening. There are multiple air outlets 18, and the multiple air outlets 18 are evenly distributed and opened on the side wall of the placement tray 11 and are communicated with the inside of the gas distribution chamber 17. Through the setting of the adaptive cooling air supply mechanism, when the storage box 7 does not contain Buddha Jumping over the Wall, the placement tray 11 and the movable rod 12 will be in a position close to the upper part under the action of the first mounting spring 15. At this time, the connecting chamber 16 is not communicated with the inside of the first movable groove 13 and the air supply chamber 14. When Buddha Jumping over the Wall is placed on the placement tray 11, under the action of gravity, the placement tray 11 and the movable rod 12 will move downward. The movement of the movable rod 12 can make the connecting chamber 16 move into the inside of the first movable groove 13. At this time, the cold air inside the first movable groove 13 and the air supply chamber 14 can enter the inside of the connecting chamber 16, then enter the inside of the gas distribution chamber 17, and then through the air outlet 18, the cold air can move into the inside of the storage box 7, thereby forming a low-temperature environment inside the storage box 7, so as to refrigerate Buddha Jumping over the Wall, and each Buddha Jumping over the Wall is stored separately in each separate storage box 7, thus avoiding the situation of flavor mixing between Buddha Jumping over the Wall;

[0044] A sealing ring 19 is inlaid and installed at the bottom of the movable rod 12. The sealing ring 19 is a circular ring structure made of rubber material. When there is no Buddha Jumping over the Wall on the placement tray 11, the sealing ring 19 will contact the top wall surface of the first movable groove 13, so as to seal the connecting chamber 16 and the first movable groove 13 and avoid the occurrence of cold air leakage;

[0045] A plurality of bumps 20 are installed on the top of the placement tray 11 in an inlaid manner. The bumps 20 are cylindrical blocks. The bottom of the bump 20 penetrates downward through the top of the placement tray 11 and is located inside the air distribution cavity 17. An installation spring two 21 is installed at the bottom of the bump 20. When placing the Buddha Jumping over the Wall on the placement tray 11, the Buddha Jumping over the Wall will first contact the bump 20, and then the bump 20 will move into the air distribution cavity 17 under the action of pressure. Furthermore, a movable bump 20 can be arranged between the Buddha Jumping over the Wall and the placement tray 11, thus avoiding the occurrence of ice crystal condensation between the Buddha Jumping over the Wall and the placement tray 11;

[0046] A moving groove 22 is formed inside the cabinet body 1. The moving groove 22 is a groove with a rectangular structure. A slider 23 is fixedly installed at the bottom of the mounting seat 8. The slider 23 is a block with a rectangular structure. A pulley 24 is inlaid and movably installed on the bottom wall surface of the slider 23. The pulley 24 is a cylindrical structure. The side wall of the pulley 24 is attached to the bottom wall surface of the moving groove 22. A placement opening 25 is formed at the top of the storage box 7. A torsion spring shaft 26 is movably installed on one side inside the placement opening 25. The torsion spring shaft 26 is a cylindrical structure. A cover plate 27 is fixedly sleeved on the torsion spring shaft 26. The cover plate 27 is a plate with a rectangular structure. The cover plate 27 seals the inside of the storage box 7. A buckle groove 28 is formed on the mounting seat 8. A first air duct 44 and a second air duct 45 are arranged inside the air supply cavity 14. Both the first air duct 44 and the second air duct 45 are hollow rectangular structures. The first air duct 44 is located inside the second air duct 45. The second air duct 45 is movably installed inside the air supply cavity 14. The first air duct 44 is fixedly connected to the cabinet body 1. When it is necessary to put the Buddha Jumping over the Wall into the storage box 7 or take out the inside of the storage box 7, first, the mounting seat 8 can be pulled through the buckle groove 28. The mounting seat 8 will drive the storage box 7 to move. At this time, the slider 23 and the pulley 24 will move inside the moving groove 22. At the same time, the second air duct 45 moves inside the air supply cavity 14, and the first air duct 44 moves inside the second air duct 45. The rotation of the pulley 24 can reduce the friction generated by the slider 23 inside the moving groove 22. Furthermore, the energy required for the storage box 7 and the mounting seat 8 to move can be reduced, thus facilitating the pulling out of the storage box 7 and the mounting seat 8. At the same time, when the storage box 7 leaves the inside of the mounting seat 8, the cover plate 27 will also lose the limit of the cabinet body 1 and can then flip upward, and the inside of the storage box 7 will be opened. At this time, the operation of taking and placing the Buddha Jumping over the Wall can be carried out, thus achieving the effect of facilitating the taking and placing of the Buddha Jumping over the Wall.

[0047] A hinge 3 is fixedly installed on the side wall of the cabinet body 1. A cabinet door 4 is movably installed on the hinge 3. The cabinet door 4 can seal the cabinet body 1. A control panel 43 is installed on the cabinet door 4. The control panel 43 is used to control the refrigeration device 9. A handle 6 is fixedly installed on the cabinet door 4. The handle 6 is used to open or close the cabinet door 4 from the cabinet body 1. A base 5 is fixedly installed at the bottom of the cabinet body 1. Universal wheels are arranged at the bottom of the base 5, thus facilitating the movement of the cabinet body 1.

[0048] As Figures 5 to 8 shown, an indicating mechanism is provided on the storage box 7. The indicating mechanism includes a telescopic rod 29, a second movable groove 30, a connecting pipe 31, a moving block 32, a pressure sensor 33 and an indicator light 34. The telescopic rod 29 is of a hollow cylindrical structure. The telescopic rod 29 is embedded and installed at the bottom of the storage box 7. The top of the telescopic rod 29 is fixedly connected to the bottom of the placing tray 11. The second movable groove 30 is a groove of a rectangular structure. The second movable groove 30 is opened inside the storage box 7. The connecting pipe 31 is of a tubular structure. The connecting pipe 31 is embedded and installed inside the storage box 7. The connecting pipe 31 communicates with the interiors of the telescopic rod 29 and the second movable groove 30. The moving block 32 is a block of a rectangular structure. The moving block 32 is slidably installed inside the second movable groove 30. There are two pressure sensors 33 in total. The two pressure sensors 33 are respectively fixedly installed on the upper and lower sides inside the second movable groove 30. The indicator light 34 is fixedly installed on the outer side wall of the cabinet body 1. Multiple groups of LED lights are provided on the indicator light 34. Each group of LED lights corresponds to each storage box 7. One group of LED lights is composed of a green light and a red light. Both pressure sensors 33 are electrically connected to the indicator light 34 through a controller. Through the setting of the indicating mechanism, when the Fo Tiao Qiang is placed on the placing tray 11, the placing tray 11 moves downward, and then the telescopic rod 29 can be contracted. After the telescopic rod 29 is contracted, the air inside the telescopic rod 29 will be squeezed out. The air inside the telescopic rod 29 can enter the interior of the second movable groove 30 through the connecting pipe 31, thereby driving the moving block 32 to move upward inside the second movable groove 30. At this time, the upper pressure sensor 33 will be triggered. The pressure sensor 33 can light up the green light in the group of LED lights corresponding to the current storage box 7 of the indicator light 34 through the controller. At this time, it can be indicated that the Fo Tiao Qiang is stored inside this storage box 7. On the contrary, when there is no Fo Tiao Qiang placed inside the storage box 7, the moving block 32 will contact the pressure sensor 33 at the lower part inside the second movable groove 30, and the green light in the LED lights will not light up;

[0049] The interior of the placement tray 11 has a structure that slopes gradually towards both sides. A plurality of liquid discharge ports 35 are formed in the side wall of the placement tray 11, and the liquid discharge ports 35 penetrate through the inner and outer side walls of the placement tray 11. When the Buddha Jumping over the Wall in the placement tray 11 leaks, the soup inside the Buddha Jumping over the Wall will flow onto the placement tray 11. Since the interior of the placement tray 11 has a structure that slopes gradually towards both sides, the soup will flow towards the position of the liquid discharge ports 35, and then can flow out of the interior of the placement tray 11 through the liquid discharge ports 35. At this time, the gravity acting on the placement tray 11 becomes smaller, and the placement tray 11 will move upward under the action of the mounting spring 15, and the telescopic rod 29 will become longer. At this time, the air inside the second movable groove 30 will become less, and the moving block 32 will not contact the upper pressure sensor 33, nor will it contact the lower pressure sensor 33. At this time, the red light on the indicator lamp 34 will light up, indicating that there is a problem with the Buddha Jumping over the Wall stored inside the storage box 7. At this time, the storage box 7 can be opened to handle the Buddha Jumping over the Wall;

[0050] A collection mechanism is provided inside the storage box 7. The collection mechanism includes a baffle 36, a first collection groove 37, a communication groove 38, a second collection groove 39, a drain pipe 40, a bottom groove 41, and a sealing cover 42. The baffle 36 has an annular structure and is fixedly sleeved on the side wall of the placement tray 11 and is located between the liquid discharge port 35 and the air outlet 18. The first collection groove 37 is a groove with an annular structure and is formed on the bottom wall inside the storage box 7. The water condensed on the cabinet body 1 and the spilled soup can be discharged from the interior of the placement tray 11 through the liquid discharge port 35. The baffle 36 can guide the flow to prevent the water or soup from flowing into the interior of the air outlet 18. Subsequently, the first collection groove 37 can collect the water or soup. The second collection groove 39 is a groove with a rectangular structure and is formed inside the mounting seat 8. The communication groove 38 is a groove with a cylindrical structure and is formed inside the mounting seat 8 to communicate the interiors of the first collection groove 37 and the second collection groove 39. The drain pipe 40 is a cylindrical pipe and is embedded and installed at the bottom of the mounting seat 8 and communicates with the interior of the second collection groove 39. The bottom groove 41 is a groove with a rectangular structure and is formed on the bottom wall of the mounting seat 8. The drain pipe 40 is located inside the drain pipe 40. The sealing cover 42 is movably installed on the drain pipe 40 by means of a thread. Through the setting of the collection mechanism, the first collection groove 37 can collect the water and soup, and then the water and soup can flow into the interior of the second collection groove 39 through the communication groove 38. When the storage box 7 and the mounting seat 8 are pulled out of the interior of the accommodation cavity 2, the sealing cover 42 inside the bottom groove 41 can be unscrewed at this time, and the water or soup inside the second collection groove 39 can be discharged from the interior of the second collection groove 39 through the drain pipe 40, thus achieving the effect of facilitating the collection and treatment of water and soup.

[0051] Embodiment 2: This embodiment discloses a refrigeration method for a refrigerator cabinet that facilitates the taking and placing of the Buddha Jumping over the Wall, including the following steps:

[0052] Step 1: First, the mounting seat 8 can be pulled through the slot 28. The mounting seat 8 will drive the storage box 7 to move. At this time, the slider 23 and the pulley 24 will move inside the moving slot 22. At the same time, the second air delivery pipe 45 will move inside the air delivery cavity 14, and the first air delivery pipe 44 will move inside the second air delivery pipe 45. The rotation of the pulley 24 can reduce the friction generated by the slider 23 inside the moving slot 22, thereby reducing the energy required for the storage box 7 and the mounting seat 8 to move, and facilitating the pulling out of the storage box 7 and the mounting seat 8.

[0053] Step 2: Then, the Buddha Jumping over the Wall can be placed on the placing plate 11. Under the action of gravity, the placing plate 11 and the movable rod 12 will move downward. The movement of the movable rod 12 can make the connecting cavity 16 move into the first movable slot 13.

[0054] Step 3: At this time, the cold air inside the first movable slot 13 and the air delivery cavity 14 can enter the connecting cavity 16, then enter the air distribution cavity 17, and then move into the storage box 7 through the air outlet 18, thereby forming a low-temperature environment inside the storage box 7.

[0055] After the Buddha Jumping over the Wall is placed on the placing plate 11, the placing plate 11 moves downward. By setting an indicating mechanism, the telescopic rod 29 can be contracted. After the telescopic rod 29 is contracted, the air inside the telescopic rod 29 will be extruded. The air inside the telescopic rod 29 can enter the second movable slot 30 through the connecting pipe 31, thereby driving the moving block 32 to move upward inside the second movable slot 30. At this time, the upper pressure sensor 33 will be triggered. The pressure sensor 33 in the indicating mechanism can light up the green light in the group of LED lights corresponding to the current storage box 7 through the controller, indicating that the Buddha Jumping over the Wall is stored inside this storage box 7.

[0056] The above description enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but will be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A refrigerator cabinet for facilitating the taking and placing of Fotiaoqiang, comprising a cabinet body (1), wherein a plurality of accommodating cavities (2) are formed in the cabinet body (1), and it is characterized in that: Inside the accommodation cavity (2), there is a storage box (7). A mounting seat (8) is fixedly installed at the bottom of the storage box (7). The mounting seat (8) is movably installed on the cabinet body (1). The storage box (7) is movably installed inside the accommodation cavity (2) through the mounting seat (8). Above the inside of the cabinet body (1), there is a refrigeration device (9). An air delivery groove (10) is formed inside the cabinet body (1). Inside the storage box (7), there is a placement tray (11). An adaptive air-cooling mechanism is provided on the storage box (7) and the mounting seat (8). An indicating mechanism is also provided on the storage box (7). The adaptive air-cooling mechanism includes: A movable rod (12), a first movable groove (13), and a first mounting spring (15). The movable rod (12) is fixedly installed on the bottom wall surface of the placement tray (11). The first movable groove (13) is formed inside the mounting seat (8). The bottom of the movable rod (12) extends downward through the top wall surface of the mounting seat (8) and is located above the inside of the first movable groove (13). The first mounting spring (15) is sleeved on the movable rod (12) and is respectively connected to the storage box (7) and the placement tray (11). An air delivery cavity (14), a connection cavity (16), a gas distribution cavity (17), and an air outlet (18). The air delivery cavity (14) is formed inside the mounting seat (8) and is respectively communicated with the first movable groove (13) and the air delivery groove (10). The cold air inside the air delivery groove (10) can enter the inside of the air delivery cavity (14). The connection cavity (16) is formed inside the movable rod (12) and penetrates through one side wall surface of the movable rod (12). The gas distribution cavity (17) is formed inside the placement tray (11). The top of the movable rod (12) extends upward through the bottom wall surface of the placement tray (11) so that the inside of the connection cavity (16) and the gas distribution cavity (17) are communicated. There are multiple air outlets (18). The multiple air outlets (18) are evenly distributed on the side wall of the placement tray (11) and are communicated with the inside of the gas distribution cavity (17). A plurality of bumps (20) are inlaid and installed on the top of the placement tray (11). The bottom of the bump (20) extends downward through the top of the placement tray (11) and is located inside the gas distribution cavity (17). A second mounting spring (21) is installed at the bottom of the bump (20). Inside the storage box (7), a collection mechanism is provided. The collection mechanism includes a baffle (36), a first collection groove (37), a communication groove (38), a second collection groove (39), a drain pipe (40), a bottom groove (41), and a sealing cover (42). The baffle (36) is fixedly sleeved on the side wall of the placement tray (11), and the baffle (36) is located between the drain port (35) and the air outlet (18). The first collection groove (37) is opened on the bottom wall inside the storage box (7). The second collection groove (39) is opened inside the mounting seat (8). The communication groove (38) is opened inside the mounting seat (8) and communicates with the interiors of the first collection groove (37) and the second collection groove (39). The drain pipe (40) is inlaid and installed at the bottom of the mounting seat (8) and communicates with the interior of the second collection groove (39). The bottom groove (41) is opened on the bottom wall of the mounting seat (8). The drain pipe (40) is located inside the drain pipe (40). The sealing cover (42) is movably installed on the drain pipe (40) by means of threads.

2. The refrigerated cabinet for facilitating the taking and placing of Buddha Jumping over the Wall according to claim 1, wherein: A sealing ring (19) is inlaid and installed at the bottom of the movable rod (12).

3. A refrigerator for facilitating the taking and placing of Fotiaoqiang, as described in claim 1, wherein: A moving groove (22) is opened inside the cabinet body (1). A slider (23) is fixedly installed at the bottom of the mounting seat (8). A pulley (24) is inlaid and movably installed on the bottom wall of the slider (23). The side wall of the pulley (24) is in contact with the bottom wall of the moving groove (22).

4. A refrigerator for facilitating the taking and placing of Fotiaoqiang, as described in claim 1, characterized in that: A placement opening (25) is opened at the top of the storage box (7). A torsion spring shaft (26) is movably installed on one side inside the placement opening (25). A cover plate (27) is fixedly sleeved on the torsion spring shaft (26). The cover plate (27) seals the interior of the storage box (7). A buckling groove (28) is opened on the mounting seat (8). A first air delivery pipe (44) and a second air delivery pipe (45) are provided inside the air delivery cavity (14). The first air delivery pipe (44) is located inside the second air delivery pipe (45). The second air delivery pipe (45) is movably installed inside the air delivery cavity (14). The first air delivery pipe (44) is fixedly connected to the cabinet body (1).

5. A refrigerator for facilitating the taking and placing of Buddha Jumping over the Wall according to claim 1, characterized in that: A hinge (3) is fixedly installed on the side wall of the cabinet body (1). A cabinet door (4) is movably installed on the hinge (3). A control panel (43) is installed on the cabinet door (4). A handle (6) is fixedly installed on the cabinet door (4). A base (5) is fixedly installed at the bottom of the cabinet body (1). Universal wheels are provided at the bottom of the base (5).

6. The refrigerated cabinet for conveniently taking and placing Fotiaoqiang according to claim 1, characterized in that: The indicating mechanism includes a telescopic rod (29), a second movable groove (30), a connecting pipe (31), a moving block (32), a pressure sensor (33) and an indicating lamp (34). The telescopic rod (29) is embedded and installed at the bottom of the storage box (7), and the top of the telescopic rod (29) is fixedly connected to the bottom of the placement plate (11). The second movable groove (30) is opened inside the storage box (7). The connecting pipe (31) is embedded and installed inside the storage box (7). The connecting pipe (31) communicates with the inside of the telescopic rod (29) and the second movable groove (30). The moving block (32) is slidably installed inside the second movable groove (30). There are two pressure sensors (33), and the two pressure sensors (33) are respectively fixedly installed on the upper and lower sides inside the second movable groove (30). The indicating lamp (34) is fixedly installed on the outer side wall of the cabinet body (1). Multiple groups of LED lights are arranged on the indicating lamp (34), and each group of LED lights corresponds to each storage box (7). A group of LED lights consists of a green light and a red light. Both pressure sensors (33) are electrically connected to the indicating lamp (34) through a controller.

7. A refrigerator cabinet for facilitating the taking and placing of Fotiaoqiang, as claimed in claim 1, wherein: The inside of the placement plate (11) has a structure that gradually slopes towards both sides. A plurality of liquid discharge ports (35) are opened on the side wall of the placement plate (11), and the liquid discharge ports (35) penetrate through the inner and outer side walls of the placement plate (11).

8. A refrigeration method for a refrigerator cabinet facilitating the taking and placing of Buddha Jumping Over the Wall according to any one of claims 1-7, characterized in that: It includes the following steps: Step 1: First, pull the mounting seat (8), and the mounting seat (8) will drive the storage box (7) to move, thereby pulling the storage box (7) and the mounting seat (8) out of the accommodation cavity (2). Step 2: Then, the Buddha Jumping over the Wall can be placed on the placement plate (11). Under the action of gravity, the placement plate (11) and the movable rod (12) will move downward. The movement of the movable rod (12) can cause the connecting cavity (16) to move into the first movable groove (13). Step 3: At this time, the cold air inside the first movable groove (13) and the air supply cavity (14) can enter the connecting cavity (16), then enter the air distribution cavity (17), and then the cold air can move into the storage box (7) through the air outlet (18), thereby forming a low-temperature environment inside the storage box (7). Step 4: After the Buddha Jumping over the Wall is placed on the placement plate (11), the placement plate (11) moves downward, and the indicating mechanism can light up the green light according to the gravity. At this time, it can be indicated that the Buddha Jumping over the Wall is stored inside this storage box (7).

Citation Information

Patent Citations

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