Vibrating type defrosting device
By combining hot water immersion and vibration in a vibratory defrosting device, the problems of single function and long defrosting time of defrosting equipment are solved, thereby improving defrosting efficiency and making the temperature controllable.
Patent Information
- Application Number
- CN202520113264.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing defrosting equipment has limited functionality, uncontrollable defrosting temperature, long defrosting time, and requires a large amount of water for thawing.
A vibration-type defrosting device is adopted, which combines hot water immersion and vibration mechanism. Hot water is transferred into the defrosting box through the water circuit mechanism and the vibration mechanism makes the defrosting box vibrate back and forth. Combined with barcode scanner and display screen, the defrosting items are distinguished and the temperature is controlled.
Improve defrosting efficiency, reduce defrosting time and energy consumption, and achieve controllable defrosting temperature.
Smart Images

Figure CN223681903U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to kitchen appliance technical field more particularly, it relates to a vibrating type thawing device. BACKGROUND
[0002] At present, the thawing equipment on market function is relatively single, only thawing food can be carried out to the frozen food, and there is certain limitation in use, and thawing temperature is uncontrollable and thawing time is long, and the existing thawing equipment usually adopts thawing by water, needs using a large amount of water to soak thawing object.
[0003] Therefore, a new scheme needs to be proposed to solve the above problems. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at overcoming the deficiency of prior art, provide a vibrating type thawing device.
[0005] In order to realize the above object, the utility model adopts the following technical scheme:
[0006] A vibrating type thawing device, including thawing box, vibrating mechanism and waterway mechanism, waterway mechanism turns hot water into thawing box and thaws thawing object in thawing box, and in thawing, vibrating mechanism makes thawing box reciprocating vibration.
[0007] Further, the thawing box is installed on the upper surface of the mounting plate, the vibrating mechanism is located below the mounting plate and connected with the mounting plate, and the vibrating mechanism drives the thawing box to reciprocate through the mounting plate.
[0008] Further, the vibrating mechanism includes a motor, a first pulley, a second pulley, a belt, an eccentric shaft, a crank, and a mounting column, the output end of the motor is provided with the first pulley, one end of the eccentric shaft is provided with the second pulley, the first pulley and the second pulley are connected by the belt transmission, the other end of the eccentric shaft is rotatably connected to one end of the crank, and the end of the mounting column penetrates through the mounting plate and is rotatably connected to the other end of the crank.
[0009] Further, the bottom plate is provided below the mounting plate, the sliding shafts are installed on both sides of the bottom plate, the lower surface of the mounting plate is provided with the roller assembly, and the mounting plate reciprocates along the sliding shaft through the roller assembly.
[0010] Further, the roller assembly includes a roller bracket and a roller, the roller bracket is in U-shaped structure, the roller is provided with two, arranged in upper and lower, and located in the roller bracket, each roller is rotatably connected to the roller bracket, a gap adapted to the sliding shaft is arranged between the two rollers, and each roller is rotatably connected to the sliding shaft.
[0011] Further, the thawing freezer is divided into a plurality of thawing compartments by a partition plate, the display screen and the code scanner are electrically connected, and the thawing objects are distinguished and prompted to be distributed to corresponding thawing compartments through the code scanner and the display screen, and the waterway mechanism thaws the thawing objects according to corresponding thawing parameters of the thawing compartments.
[0012] Further, the waterway mechanism comprises a controller, a water inlet distributor, a water outlet distributor, a rapid heating module and a flow meter, the water inlet distributor is connected with a first water inlet pipe at an input end, the rapid heating module and the flow meter are installed on the first water inlet pipe, the water inlet distributor is connected with a plurality of second water inlet pipes at an output end, each second water inlet pipe is connected with one thawing compartment, and each second water inlet pipe is installed with a water inlet valve, the water outlet distributor is connected with a plurality of first water outlet pipes at an input end, each first water outlet pipe is connected with one thawing compartment, each first water outlet pipe is installed with a water outlet valve, and the water outlet distributor is connected with a second water outlet pipe at an output end, and the controller is electrically connected with the rapid heating module, the flow meter, the water inlet valve, the water outlet valve, the code scanner and the display screen.
[0013] Further, the thawing freezer is divided into a plurality of thawing compartments by a partition plate, the display screen and the code scanner are electrically connected, and the thawing objects are distinguished and prompted to be distributed to corresponding thawing compartments through the code scanner and the display screen, and the waterway mechanism thaws the thawing objects according to corresponding thawing parameters of the thawing compartments.
[0014] The thawing freezer has the advantages that:
[0015] 1. In the thawing freezer, hot water is transferred into the thawing compartments through the waterway mechanism, the thawing objects are thawed by hot water immersion, and the thawing compartments are reciprocally vibrated by the vibration mechanism, so that the hot water in the thawing compartments is in a moving state, the thawing is accelerated by hot water flow, and the thawing efficiency and thawing effect are improved.
[0016] 2. In the thawing freezer, the first pulley is driven to rotate by the motor, the first pulley and the second pulley are simultaneously sleeved by the belt, the second pulley is synchronously driven to rotate by the belt when the first pulley rotates, the eccentric shaft is driven to rotate by the second pulley, the other end of the eccentric shaft is driven to perform cam motion, the mounting plate is reciprocally vibrated by the crank, and the thawing compartments are synchronously reciprocally vibrated by the mounting plate.
[0017] 3. In the thawing freezer, the thawing compartments are divided by the partition plate, so that the thawing space of the thawing objects is reduced, the amount of hot water and heat energy required for thawing the thawing objects is reduced, and the thawing energy consumption is reduced.
[0018] 4. The utility model discloses, through the cooperation of code scanner and display screen, to distinguish different thawing objects, and thawing corresponding thawing objects in combination with thawing bin and corresponding thawing parameters, realize thawing temperature controllable and shorten thawing time.
[0019] 5. The utility model discloses, through the water inlet valve for controlling water inlet and the drain valve for controlling drainage are equipped separately to each thawing bin, to realize the separate water inlet and drainage control of each thawing bin. DRAWINGS
[0020] Figure 1 It is a kind of structure schematic view of vibration thawing device in the embodiment;
[0021] Figure 2 It is a kind of structure schematic view of waterway mechanism in the embodiment;
[0022] Figure 3 It is another perspective structure schematic view of waterway mechanism in the embodiment;
[0023] Figure 4 It is a kind of explosion structure schematic view of vibrating mechanism in the embodiment;
[0024] Figure 5 It is a kind of structure schematic view of gyro wheel assembly in the embodiment.
[0025] Fig. 1 is a thawing box, 101 is a partition, 102 is a thawing bin, 2 is a mounting plate, 201 is a fixed block, 3 is a motor, 4 is a first belt pulley, 5 is a second belt pulley, 6 is a belt, 7 is an eccentric shaft, 8 is a crank, 9 is a mounting column, 10 is a first mounting bracket, 11 is a second mounting bracket, 12 is a first bearing seat, 13 is a first bearing, 14 is a second bearing, 15 is a third bearing, 16 is a bottom plate, 17 is a sliding shaft, 18 is a gyro wheel assembly, 1801 is a gyro wheel support, 1802 is a gyro wheel, 19 is a code scanner, 20 is a display screen, 21 is a controller, 22 is a water inlet and water distributor, 23 is a drainage water distributor, 24 is a rapid heating module, 25 is a flow meter, 26 is a first water inlet pipe, 27 is a second water inlet pipe, 28 is a water inlet valve, 29 is a first drainage pipe, 30 is a second drainage pipe, 31 is a drainage valve, 32 is a first water valve support, 33 is a second water valve support, 34 is a water inlet master valve, 35 is a shell, 36 is a door body, 37 is a hinge. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0027] Example: A vibration-type defrosting device, such as Figures 2-5 As shown, the device includes a defrosting chamber 1, a vibration mechanism, and a water system. The water system transfers hot water into the defrosting chamber 1 to thaw the items inside. During defrosting, the vibration mechanism causes the defrosting chamber 1 to vibrate reciprocally. During defrosting, the water system transfers hot water into the defrosting chamber 1, using the hot water to immerse the items and thaw them. Combined with the vibration mechanism driving the defrosting chamber 1 to vibrate reciprocally, the hot water inside the chamber is in motion, using the flow of hot water to accelerate defrosting and improve defrosting efficiency and effect.
[0028] Specifically, the defrosting chamber 1 is installed on the upper surface of the mounting plate 2, and the vibration mechanism is located below the mounting plate 2 and connected to the mounting plate 2. During defrosting, the vibration mechanism drives the mounting plate 2 to vibrate back and forth, and drives the defrosting chamber 1 to vibrate back and forth synchronously through the mounting plate 2.
[0029] Preferably, a fixing block 201 is provided at each of the four corners of the bottom of the defrosting box 1, and the fixing block 201 is installed on the upper surface of the mounting plate 2. By cooperating with the four fixing blocks 201, the defrosting box 1 is limited and installed in the area enclosed by the four fixing blocks 201, and at the same time, the fixing blocks 201 can provide a certain degree of protection for the bottom of the defrosting box 1.
[0030] Furthermore, such as Figures 2-4 As shown, the vibration mechanism includes a motor 3, a first pulley 4, a second pulley 5, a belt 6, an eccentric shaft 7, a crank 8, and a mounting post 9. The motor 3 is mounted on a first mounting bracket 10, which is mounted on a base plate 16. The output end of the motor 3 is fitted with the first pulley 4. The eccentric shaft 7 is rotatably connected to a second mounting bracket 11, specifically, the eccentric shaft 7 is rotatably connected to a first bearing 13. The first bearing 13 is fitted onto a first bearing seat 12, which is mounted on the second mounting bracket 11. The second mounting bracket 11... Mounted on the base plate 16, one end of the eccentric shaft 7 is equipped with a second pulley 5. The first pulley 4 and the second pulley 5 are connected by a belt 6. The other end of the eccentric shaft 7 is rotatably connected to one end of the crank 8, that is, the other end of the eccentric shaft 7 is rotatably connected to a second bearing 14. The second bearing 14 is sleeved on one end of the crank 8. The end of the mounting column 9 passes through the mounting plate 2 and is rotatably connected to the other end of the crank 8. That is, the end of the mounting column 9 passes through the mounting plate 2 and is rotatably connected to a third bearing 15. The third bearing 15 is sleeved on the other end of the crank 8.
[0031] In use, the motor 3 is used to drive the first pulley 4 to rotate. Since the belt 6 is sleeved with the first pulley 4 and the second pulley 5, the first pulley 4 drives the second pulley 5 to rotate through the belt 6 when the first pulley 4 rotates, and the second pulley 5 drives the eccentric shaft 7 to rotate, so that the other end of the eccentric shaft 7 performs a cam motion, and the mounting plate 2 is driven to reciprocate through the crank 8, and the thawing box 1 is driven to reciprocate synchronously through the mounting plate 2.
[0032] Further, the bottom plate 16 is arranged below the mounting plate 2, and the sliding shaft 17 is arranged on both sides of the bottom plate 16. The rolling wheel assembly 18 is arranged on the lower surface of the mounting plate 2 and moves along the sliding shaft 17 through the rolling wheel assembly 18. Through the cooperation of the sliding shaft 17 and the rolling wheel assembly 18, on the one hand, the movement of the mounting plate 2 is limited, and on the other hand, the stability of the mounting plate 2 is improved when the mounting plate 2 moves.
[0033] Specifically, as shown in Figure 5 , the rolling wheel assembly 18 includes a rolling wheel bracket 1801 and rolling wheels 1802. The rolling wheel bracket 1801 has a U-shaped structure, and the rolling wheels 1802 are arranged in a top-down manner and are located in the rolling wheel bracket 1801. Each rolling wheel 1802 is rotatably connected to the rolling wheel bracket 1801, and a gap adapted to the sliding shaft 17 is arranged between the two rolling wheels 1802. Each rolling wheel 1802 is rollingly connected to the sliding shaft 17. By arranging two rolling wheels 1802 on the upper and lower sides of the sliding shaft 17, the stability of the rolling wheel bracket 1801 when moving on the sliding shaft 17 is improved, thereby improving the stability of the mounting plate 2 when moving.
[0034] The above-mentioned vibrating thawing device, as shown in Figure 1 and Figure 2 , further includes a code scanner 19 and a display screen 20. The thawing box 1 is divided into a plurality of thawing compartments 102 by the partition 101. The display screen 20 and the code scanner 19 are electrically connected, and the thawing objects are distinguished and prompted to be distributed to the corresponding thawing compartments 102 through the code scanner 19 and the display screen 20. The waterway mechanism thaws the thawing objects according to the corresponding thawing parameters of each thawing compartment 102.
[0035] In use, the code scanner 19 scans the label on the thawing object, and the display screen 20 is a touch screen, which is used to display the information of the thawing object and prompt the thawing compartment 102 adapted to the thawing parameters of the thawing object. After the thawing object is placed in the adapted thawing compartment 102, the waterway mechanism thaws the thawing object by injecting hot water into the thawing compartment 102 in which the thawing object is placed. It should be noted that the thawing parameters of the thawing compartment 102 include the hot water inflow and the hot water temperature, and the hot water inflow and the hot water temperature corresponding to each thawing compartment 102 are different to adapt to different thawing objects. At the same time, the hot water temperature corresponding to each thawing compartment 102 is an interval value to adapt to different thawing objects with similar thawing temperatures.
[0036] The thawing tank 1 is divided into multiple thawing compartments 102 by the partition 101 to reduce the thawing space of the thawing objects, thereby reducing the amount of hot water and heat energy required for thawing the thawing objects, lowering the thawing energy consumption, for example, when the thawing objects only occupy one thawing compartment 102, the occupied thawing compartment 102 thaws the thawing objects, while the other unoccupied thawing compartments 102 do not start thawing; for example, when the thawing objects only occupy two thawing compartments 102, the occupied two thawing compartments 102 thaw the thawing objects, while the other unoccupied thawing compartments 102 do not start thawing. The different thawing objects are distinguished by the cooperation of the code scanner 19 and the display screen 20, and the corresponding thawing objects are thawed in combination with the thawing compartments 102 and the corresponding thawing parameters, so as to realize the controllable thawing temperature and shorten the thawing time. Of course, part of the thawing compartments 102 can also correspond to the same thawing parameters, increase the thawing space, and adapt to a large amount of thawing objects.
[0037] Specifically, as shown in Figure 2 and Figure 3 , the waterway mechanism includes a controller 21, a water inlet distributor 22, a water outlet distributor 23, a rapid heating module 24, and a flow meter 25; the water inlet distributor 22 has an input end and multiple output ends, the input end of the water inlet distributor 22 is connected with a first water inlet pipe 26, the first water inlet pipe 26 is used for water inlet, the rapid heating module 24 and the flow meter 25 are installed on the first water inlet pipe 26, the rapid heating module 24 is used for heating water, the flow meter 25 is used for monitoring the flow of water, the output end of the water inlet distributor 22 is connected with multiple second water inlet pipes 27, and each second water inlet pipe 27 is connected with one thawing compartment 102, that is, each output end of the water inlet distributor 22 is connected with one second water inlet pipe 27, and each second water inlet pipe 27 is connected with one thawing compartment 102, and each second water inlet pipe 27 is installed with one water inlet valve 28, and the water inlet valve 28 is used for controlling the conduction and cutoff of the corresponding second water inlet pipe 27.
[0038] The water outlet distributor 23 has multiple input ends and one output end, the input end of the water outlet distributor 23 is connected with multiple first water outlet pipes 29, and each first water outlet pipe 29 is connected with one thawing compartment 102, that is, each input end of the water outlet distributor 23 is connected with one first water outlet pipe 29, and each first water outlet pipe 29 is connected with one thawing compartment 102, and each first water outlet pipe 29 is installed with one water outlet valve 31, and the water outlet valve 31 is used for controlling the conduction and cutoff of the corresponding first water outlet pipe 29, and the output end of the water outlet distributor 23 is connected with a second water outlet pipe 30, and the second water outlet pipe 30 is used for discharging the hot water in the thawing compartment 102.
[0039] The rapid heating module 24 comprises a water tank, a heating pipe and a temperature sensor, the water in the water tank is heated by the heating pipe, and the temperature of the water is monitored by the temperature sensor, specifically, when the temperature sensor monitors that the temperature of the water flowing into the water tank is consistent with the set heating temperature, the heater does not start heating, when the temperature of the water flowing into the water tank is lower than the set heating temperature, the heating pipe starts heating, and the water flowing into the water tank is heated, so that the temperature of the water reaches the set temperature.
[0040] The water inlet valves 28 are provided in plurality and are installed on the first water valve support 32, and the first water valve support 32 is installed on the bottom plate 16 of the shell 35.
[0041] The water outlet valves 31 are provided in plurality and are installed on the second water valve support 33, and the second water valve support 33 is installed on the bottom plate 16 of the shell 35.
[0042] The controller 21 is electrically connected with the rapid heating module 24, the flow meter 25, the water inlet valves 28, the water outlet valves 31, the code scanner 19, the display screen 20 and the motor 3 respectively, and the controller 21 is installed on the inner side wall of the shell 35.
[0043] Further, the end of the first water inlet pipe 26 is installed with the water inlet total valve 34, and the water inlet total valve 34 is used for controlling the conduction and cut-off of the water inlet of the first water inlet pipe 26.
[0044] As shown in the figure, Figure 1 The vibration type thawing device further comprises a shell 35 and a door body 36, one end of the shell 35 is open, the door body 36 is connected to the shell 35 through a hinge 37 and is used for covering the open end of the shell 35, the code scanner 19 and the display screen 20 are installed on the side wall of the shell 35, and the water channel mechanism, the vibration mechanism and the thawing tank 1 are installed in the inner cavity of the shell 35.
[0045] Further, as shown in the figure, Figures 2-4 The inner cavity of the shell 35 is installed with a mounting plate 2, the thawing tank 1 is separated from the water channel mechanism and the vibration mechanism through the mounting plate 2, the thawing tank 1 is installed on the upper surface of the mounting plate 2, the water channel mechanism and the vibration mechanism are installed on the bottom plate 16 of the shell 35 and are located below the mounting plate 2.
[0046] The above only is the preferred implementation manner of the present application, the protection scope of the present application is not only limited to the above-mentioned embodiments, and all technical solutions belonging to the idea of the present application are within the protection scope of the present application. It should be noted that, for the ordinary skilled in the art, some improvements and decorations without departing from the principle of the present application are also regarded as the protection scope of the present application.
Claims
1. A thawing apparatus of a vibration type comprising a thawing tank (1), a vibration mechanism and a water path mechanism, characterized by, The waterway mechanism turns hot water into the thawing box (1) to thaw thawing objects in the thawing box (1), and in the thawing process, the thawing box (1) is reciprocatingly vibrated by the vibration mechanism.
2. A vibratory thawing device according to claim 1, characterised in that The thawing box (1) is installed on the upper surface of the mounting plate (2), the vibration mechanism is located below the mounting plate (2) and connected with the mounting plate (2), and the vibration mechanism drives the thawing box (1) to reciprocatingly vibrate through the mounting plate (2).
3. A vibratory thawing device according to claim 2, wherein The vibration mechanism comprises a motor (3), a first pulley (4), a second pulley (5), a belt (6), an eccentric shaft (7), a crank (8) and a mounting column (9), the output end of the motor (3) is provided with the first pulley (4), one end of the eccentric shaft (7) is provided with the second pulley (5), the first pulley (4) and the second pulley (5) are transmissionally connected through the belt (6), the other end of the eccentric shaft (7) is rotationally connected to one end of the crank (8), and the end of the mounting column (9) is rotationally connected to the other end of the crank (8) after penetrating through the mounting plate (2).
4. A vibratory thawing device according to claim 2, wherein A bottom plate (16) is arranged below the mounting plate (2), sliding shafts (17) are arranged on both sides of the bottom plate (16), and a roller assembly (18) is arranged on the lower surface of the mounting plate (2) and moves reciprocatingly along the sliding shafts (17) through the roller assembly (18).
5. A vibratory thawing device according to claim 4, wherein The roller assembly (18) comprises a roller support (1801) and rollers (1802), the roller support (1801) is in a U-shaped structure, the rollers (1802) are arranged in two and arranged in an upper-lower mode and located in the roller support (1801), each roller (1802) is rotationally connected to the roller support (1801), a gap matched with the sliding shaft (17) is arranged between the two rollers (1802), and each roller (1802) is rollingly connected to the sliding shaft (17).
6. A vibratory thawing device according to claim 1, wherein Further comprising a code scanner (19) and a display screen (20), the thawing box (1) is divided into a plurality of thawing compartments (102) by a partition (101), the display screen (20) and the code scanner (19) are electrically connected, and the thawing objects are distinguished and prompted to be distributed to corresponding thawing compartments (102) through the code scanner (19) and the display screen (20), and the waterway mechanism thaws the thawing objects according to corresponding thawing parameters of the thawing compartments (102).
7. A vibratory thawing device according to claim 6, wherein The waterway mechanism comprises a controller (21), a water inlet valve (22), a water outlet valve (23), a rapid heating module (24) and a flow meter (25), the input end of the water inlet valve (22) is connected with a first water inlet pipe (26), the rapid heating module (24) and the flow meter (25) are installed on the first water inlet pipe (26), the output end of the water inlet valve (22) is connected with a plurality of second water inlet pipes (27), each second water inlet pipe (27) is connected with a thawing bin (102), each second water inlet pipe (27) is installed with a water inlet valve (28), the input end of the water outlet valve (23) is connected with a plurality of first water outlet pipes (29), each first water outlet pipe (29) is connected with a thawing bin (102), each first water outlet pipe (29) is installed with a water outlet valve (31), the output end of the water outlet valve (23) is connected with a second water outlet pipe (30), the controller (21) is electrically connected with the rapid heating module (24), the flow meter (25), the water inlet valve (28), the water outlet valve (31), a code scanner (19) and a display screen (20) respectively.
8. A vibratory thawing device according to claim 6, wherein Further comprising a shell (35) and a door body (36) for covering the open end of the shell (35), the shell (35) and the door body (36) are connected through a hinge (37), the code scanner (19) and the display screen (20) are installed on the side wall of the shell (35), the waterway mechanism, the vibration mechanism and the thawing bin (1) are installed in the inner cavity of the shell (35).