Upward turning cover type kitchen garbage drying and weight reducing machine

By setting up heating air supply components inside the upper cover assembly of the kitchen waste dryer, and setting up exhaust components and deodorizing components in the body assembly, the existing kitchen waste dryer has solved the problems of low drying efficiency and complex structure, and achieved efficient, time-saving and cost-saving drying effects.

CN222951381UActive Publication Date: 2025-06-06SHENZHEN LIANCHUANG TECHNOLOGY GROUP CO LTD
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Patent Information

Application Number
CN202421758068.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-06-06
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The existing kitchen waste dryer has low drying efficiency, complex structure, large volume, low space utilization and high implementation cost.

Method used

A flip-top kitchen waste drying weight reduction machine is designed. By setting a heating air supply component inside the upper cover assembly, and a exhaust component and a deodorizing component are installed in the fuselage assembly to realize hot air circulation heating and rapid steam extraction, improving drying efficiency.

Benefits of technology

It significantly improves drying efficiency, shortens drying time, optimizes the body structure, improves space utilization, and reduces assembly difficulty and implementation costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an upper flip type kitchen garbage drying and weight-reducing machine which comprises a machine body assembly, a machine body air inlet, a machine body air outlet, a machine body air inlet and a machine body air outlet. The container assembly is provided with a container air inlet and a container steam outlet; the upper cover assembly is provided with a circulating air inlet and a hot air outlet, and the circulating air inlet and the hot air outlet are both communicated with the container inner cavity of the container assembly; the heating air supply assembly is provided with a heating air inlet and a heating air outlet, and the heating air inlet is communicated with the circulating air inlet; the deodorization assembly comprises a deodorization air inlet and a deodorization air outlet, and the deodorization air outlet is communicated with the machine body air outlet; and the air draft assembly is provided with an air draft air inlet and an air draft air outlet. The upturning cover type kitchen garbage drying and weight reducing machine has the advantages of being high in drying efficiency, simple in structure, high in space utilization rate, low in implementation cost and the like, and existing products do not have the advantages.
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Description

Technical Field

[0001] The utility model relates to the technical field of kitchen waste drying, in particular to an upper flip-cover type kitchen waste drying and weight reducing machine. Background Art

[0002] The kitchen waste dryer is a product that uses hot air to dry kitchen waste to dehydrate it, reduce its weight and size. The principle is to put the kitchen waste in a container assembly and then place the container assembly in a closed cavity. A hot air inlet is set at one end of the closed cavity. The hot air passes through the heating element in the fuselage assembly to generate high temperature. The hot air is blown out by the fan and enters the closed cavity from the hot air inlet through the air duct. A steam outlet is set at the other end. The steam generated in the process of hot air drying and dehydrating the kitchen waste passes through the steam outlet and the steam channel into the activated carbon box for sterilization and deodorization, and then is discharged into the air. After being dried and dehydrated, the kitchen waste becomes very light and very small in size. It can be used as fertilizer to plant flowers and plants. It does not breed bacteria if it is placed for a long time, and there is no need to dump garbage every day. Therefore, it is deeply loved by consumers.

[0003] At present, due to the limitations of design and structure, the existing kitchen waste dryers on the market generally have a defect when used: the drying and dehydration time is too long and the efficiency is low. For example, when the kitchen waste generated during cooking at noon is being dehydrated and dried, it is not completed until cooking at night. It is necessary to wait for the completion before putting in new kitchen waste for processing, which brings a bad experience to consumers. In addition, the existing kitchen waste dryers are generally large in size because they need to integrate heating, deodorization and other functions inside the base body. There is spatial interference between different modules, resulting in low space utilization of the dryer, difficulty in assembly, and high implementation cost.

[0004] In summary, the existing kitchen waste dryers have the disadvantages of low drying efficiency, complex structure, large size, high implementation cost, etc. The above-mentioned defects seriously limit the further promotion and application of this field.

[0005] Therefore, the purpose of the present invention is to provide a new technical solution to solve the existing technical defects. Utility Model Content

[0006] In order to overcome the deficiencies of the prior art, the utility model provides a flip-top kitchen waste drying and weight reducing machine, which effectively solves the technical defects of existing products such as low drying efficiency, complex structure, large size, low space utilization and high implementation cost.

[0007] The technical solution adopted by the utility model to solve its technical problems is:

[0008] A flip-top kitchen waste drying and weight-reducing machine, comprising:

[0009] A fuselage assembly, wherein the fuselage assembly has a fuselage inner cavity, and a fuselage air inlet and a fuselage air outlet are arranged on the fuselage assembly, and the fuselage air inlet is communicated with the fuselage inner cavity;

[0010] A container assembly, the container assembly having a container inner cavity and arranged in the container assembly, the container assembly being provided with a container air inlet and a container steam outlet, the container air inlet connecting the container inner cavity with the inner cavity of the fuselage;

[0011] An upper cover assembly, the upper cover assembly is rotatably disposed inside the body assembly, the upper cover assembly has an upper cover inner cavity, the upper cover assembly is provided with a circulating air inlet and a hot air outlet, and the circulating air inlet and the hot air outlet are both communicated with the container inner cavity of the container assembly;

[0012] A heating air supply component, the heating air supply component is arranged in the upper cover inner cavity of the upper cover component, the heating air supply component has a heating air inlet and a heating air outlet, the heating air inlet is connected to the circulating air inlet, and the heating air outlet of the heating air supply component is connected to the hot air outlet;

[0013] A deodorizing component, the deodorizing component is disposed in the fuselage component, the deodorizing component comprises a deodorizing air inlet and a deodorizing air outlet, and the deodorizing air outlet is communicated with the fuselage air outlet;

[0014] An exhaust component, wherein the exhaust component has an exhaust air inlet and an exhaust air outlet, the exhaust air inlet is connected to the container steam outlet of the container component, and the exhaust air outlet is connected to the deodorizing air inlet of the deodorizing component.

[0015] As a further improvement of the above technical solution, the container assembly includes a container bracket, a container and a water collecting box, the container bracket is fixedly installed inside the fuselage assembly, the container is removably arranged in the inner cavity of the container bracket, and the water collecting box is arranged between the container bracket and the container.

[0016] As a further improvement of the above technical solution, the container air inlet includes a bracket air inlet opened on the upper side wall of the container bracket and a container air inlet opened on the upper side wall of the container, the positions of the container air inlet and the bracket air inlet are adapted to the positions of the bracket air inlet and are connected to each other, and the container inner cavity of the container assembly is connected to the body inner cavity of the body assembly through the container air inlet and the bracket air inlet.

[0017] As a further improvement of the above technical solution, the container steam outlet includes a container steam outlet arranged at the bottom of the container, a water receiving box steam outlet arranged at the lower side wall of the water receiving box, and a bracket steam outlet arranged at the lower side wall of the container bracket. The water receiving box steam outlet and the bracket steam outlet are connected to each other, and a steam gap is provided between the bottom of the container and the inner bottom wall of the water receiving box. The container inner cavity of the container assembly is connected to the exhaust inlet of the exhaust assembly through the container steam outlet, the steam gap, the water receiving box steam outlet and the bracket steam outlet.

[0018] As a further improvement of the above technical solution, the body component includes a body main body, the body inner cavity is the inner cavity of the body main body, a deodorizing component installation groove is arranged at the rear side of the body main body, the deodorizing component is arranged in the deodorizing component installation groove, a deodorizing component installation groove air inlet is arranged at the bottom position of the deodorizing component installation groove, the deodorizing component installation groove air inlet connects the exhaust air outlet of the exhaust assembly with the deodorizing air inlet of the deodorizing assembly, a removable rear cover is arranged at the mouth position of the deodorizing component installation groove, and the body air outlet is arranged at the rear cover and is connected with the deodorizing air outlet of the deodorizing assembly.

[0019] As a further improvement of the above technical solution, a mounting slot air inlet connected to the inner cavity of the fuselage is arranged at the upper position of the mounting slot of the deodorizing component, and the fuselage air inlet includes a rear cover air inlet arranged on the rear cover, and the rear cover air inlet is connected to the inner cavity of the fuselage through the mounting slot air inlet.

[0020] As a further improvement of the above technical solution, a counterweight block is arranged at the bottom of the fuselage assembly, a detachable bottom cover is arranged at the bottom of the counterweight block, the fuselage air inlet includes a bottom cover air inlet arranged on the bottom cover, and the bottom cover air inlet is connected to the inner cavity of the fuselage.

[0021] As a further improvement of the above technical solution, a steam channel connecting the steam outlet of the container and the deodorizing air inlet is arranged inside the body component, and the exhaust component is arranged in the steam channel.

[0022] As a further improvement of the above technical solution, the deodorizing component is an activated carbon deodorizing device, and the deodorizing component includes a deodorizing body and a deodorizing upper cover; the exhaust component includes a blower fan.

[0023] As a further improvement of the above technical solution, the upper cover assembly includes an upper cover upper shell and an upper cover bottom shell, an upper cover sealing ring is arranged between the bottom of the upper cover bottom shell and the upper cover inner shell, and the upper cover sealing ring is used for container sealing, the upper cover upper shell and the upper cover bottom shell are combined to form an upper cover shell body with an upper cover inner cavity, and the upper cover shell body is rotatably mounted on the upper part of the fuselage assembly through an opening and closing device group.

[0024] As a further improvement of the above technical solution, the circulating air inlet and the hot air outlet are opened on the upper cover bottom shell and the upper cover inner shell, and the circulating air inlet and the hot air outlet are respectively provided with a circulating air inlet sealing ring and a hot air outlet sealing ring.

[0025] As a further improvement of the above technical solution, the upper cover assembly also includes a rocker switch, a control panel device and a power board device.

[0026] As a further improvement of the above technical solution, an upper cover air inlet is provided on the rear side wall of the upper cover assembly, and the upper cover air inlet is connected to the upper cover inner cavity of the upper cover assembly.

[0027] As a further improvement of the above technical solution, the heating and air supply assembly includes a heating element bracket arranged in the inner cavity of the upper cover of the upper cover assembly and an air supply fan and a heating element installed inside the heating element bracket, a hot air duct is formed inside the heating element bracket, and the hot air duct is connected to the hot air outlet.

[0028] The beneficial effects of the utility model are as follows: the utility model provides a flip-top type kitchen waste drying and weight-reducing machine, in which a heating and air supply component is arranged inside the upper cover component, and an exhaust component and a deodorizing component are arranged on the body component, which can greatly improve the drying efficiency and shorten the drying time in actual application; in addition, through structural optimization, the space utilization rate inside the dryer body component can be greatly improved, the volume can be effectively reduced, and the assembly difficulty and implementation cost can be reduced.

[0029] This technical solution has the following advantages when applied:

[0030] 1. The utility model is provided with a hot air supply component inside the upper cover component, and the hot air supply component heats the air inside the container component and circulates it inside the container cavity, so that the temperature in the container cavity is always maintained at a suitable temperature, thereby accelerating the drying rate of the internal kitchen waste and increasing the dehydration rate;

[0031] 2. The hot air supply component circulates the hot air in the container component and draws part of the external air into the fuselage component, which can cool down the inner cavity of the fuselage component before reaching the inner cavity of the container, effectively protecting other internal components and effectively improving the life of the product to a certain extent;

[0032] 3. The utility model is provided with an active exhaust assembly inside the body assembly, which quickly draws the steam generated in the sealed container cavity of the container assembly into the deodorizing device through the container steam outlet and the steam channel, and then discharges it into the air after being sterilized and deodorized by the deodorizing device. Since the steam generated in the sealed cavity is quickly extracted, the efficiency of drying and dehydration is improved, thereby shortening the working time. The kitchen waste generated by lunch can be processed before dinner without waiting, thus saving time.

[0033] 4. The utility model can make simple modifications to the traditional kitchen waste dehydration and drying machine. It has a simple structure and manufacturing process, is easy to install and produce, has low manufacturing cost, and is easy to operate. It brings a good experience to consumers, has low assembly difficulty, and low implementation cost.

[0034] In summary, this type of flip-top kitchen waste drying and weight-reducing machine effectively solves the technical defects of existing products such as low drying efficiency, complex structure, large size, low space utilization, and high implementation cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0036] Figure 1 It is an assembly schematic diagram of the utility model;

[0037] Figure 2 It is an open state diagram of the utility model;

[0038] Figure 3 It is a schematic diagram of the structure of the utility model when the water receiving box and the container are taken out;

[0039] Figure 4 It is a schematic diagram of the structure of the utility model when the water receiving box and the container are disassembled;

[0040] Figure 5 This is a schematic diagram of the structure of the utility model when the rear cover and the deodorizing component are removed;

[0041] Figure 6 This is a schematic diagram of the structure of the utility model when the rear cover and the deodorizing component are disassembled;

[0042] Figure 7 It is an exploded view of the utility model;

[0043] Figure 8 It is another assembly schematic diagram of the utility model;

[0044] Fig. 9 yes Figure 8 Sectional view in the AA direction;

[0045] Fig.10 yes Figure 8 Cross-sectional view along the BB direction. DETAILED DESCRIPTION

[0046] The following will clearly and completely describe the concept, specific structure and technical effects of the utility model in combination with the embodiments and drawings, so as to fully understand the purpose, characteristics and effects of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of them. Based on the embodiments of the utility model, other embodiments obtained by technical personnel in this field without creative work are all within the scope of protection of the utility model. In addition, all the connection / connection relationships involved in the patent do not refer to the direct connection of components, but refer to the formation of a better connection structure by adding or reducing connection accessories according to the specific implementation situation. The various technical features in the creation of the utility model can be combined interchangeably without conflicting with each other, refer to Figure 1-10 .

[0047] Specific reference Figure 1 , Figure 2 , Figure 3 , Figure 5 , Figure 7 , Fig. 9 , Fig.10 , the utility model provides:

[0048] A flip-top kitchen waste drying and weight-reducing machine comprises: a body component 1, a container component 2, an upper cover component 3, a heating and air supply component 4, a deodorizing component 5 and an exhaust component 6.

[0049] The fuselage assembly 1 has a fuselage inner cavity, and a fuselage air inlet and a fuselage air outlet 103 are arranged on the fuselage assembly 1, and the fuselage air inlet is connected to the fuselage inner cavity;

[0050] The container assembly 2 has a container inner cavity and is disposed in the container assembly 2. The container assembly 2 is provided with a container air inlet and a container steam outlet. The container air inlet connects the container inner cavity with the inner cavity of the fuselage.

[0051] The upper cover assembly 3 is rotatably disposed inside the body assembly 1, and the upper cover assembly 3 has an upper cover inner cavity. The upper cover assembly 3 is provided with a circulating air inlet 301 and a hot air outlet 302, and the circulating air inlet 301 and the hot air outlet 302 are both connected to the container inner cavity of the container assembly 2;

[0052] The heating air supply component 4 is arranged in the inner cavity of the upper cover of the upper cover component 3, and the heating air supply component 4 has a heating air inlet and a heating air outlet, the heating air inlet is connected to the circulating air inlet 301, and the heating air outlet of the heating air supply component 4 is connected to the hot air outlet 302;

[0053] The deodorizing component 5 is disposed in the fuselage component 1, and the deodorizing component 5 includes a deodorizing air inlet and a deodorizing air outlet, and the deodorizing air outlet is connected to the fuselage air outlet 103;

[0054] The exhaust component 6 has an exhaust inlet and an exhaust outlet 61 , the exhaust inlet is connected to the container steam outlet of the container component 2 , and the exhaust outlet 61 is connected to the deodorizing inlet of the deodorizing component 5 .

[0055] In the present technical solution, the fan in the heating and air supply component 4 draws in external air, part of which enters the inner cavity of the fuselage to cool the shell, and part of it is used to supplement it. The fan in the heating and air supply component 4 draws in the air in the inner cavity of the container, heats it, and then blows it toward the kitchen waste in the container component 2. In this way, most of the hot air inside the container 33 circulates, and a small amount of hot air is drawn to the deodorization component 5 under pressure and the action of the exhaust component 6 for deodorization, sterilization and disinfection. The treated air is discharged from the fuselage.

[0056] Figure 3 , Figure 4 , Figure 7 , Fig. 9 , Fig.10 In this technical solution, the heating and air supply component 4 is arranged in the upper cover 3 component, which can save the internal space of the body component 1 and increase the space utilization rate of the dryer. An exhaust component 6 is arranged inside the body component 1, which can greatly improve the drying efficiency and save time.

[0057] Preferably, the container assembly 2 includes a container bracket 21, a container 23 and a water collecting box 22, the container bracket 21 is fixedly installed inside the fuselage assembly 1, the container 23 is removably arranged in the inner cavity of the container bracket 21, and the water collecting box 22 is arranged between the container bracket 21 and the container 23.

[0058] Specifically, the container support 21 has a container inlet, and the container 23 is placed inside the container support 21 through the container inlet. The side of the water receiving box 22 is provided with a buckle, and the container 23 can be detachably fastened to the water receiving box 22 through the buckle. The container is used to load kitchen waste, and the water receiving box 22 can easily carry the water leaked from the kitchen waste.

[0059] In this embodiment, the container air inlet includes a bracket air inlet 211 opened on the upper side wall of the container bracket 21 and a container air inlet 231 opened on the upper side wall of the container 23. The container air inlet 231 is adapted to the position of the bracket air inlet 211 and is connected to each other. The container inner cavity of the container assembly 2 is connected to the body inner cavity of the body assembly 1 through the container air inlet 231 and the bracket air inlet 211. The container steam outlet includes a container steam outlet 232 arranged at the bottom of the container 23, a water receiving box steam outlet 222 arranged on the lower side wall of the water receiving box 22, and a bracket steam outlet 212 arranged on the lower side wall of the container bracket 21. The water receiving box steam outlet 222 and the bracket steam outlet 212 are connected to each other, and a steam gap 221 is provided between the bottom of the container 23 and the inner bottom wall of the water receiving box 22. The container inner cavity of the container assembly 2 is connected to the exhaust inlet of the exhaust assembly 6 through the container steam outlet 232, the steam gap 221, the water receiving box steam outlet 222 and the bracket steam outlet 212.

[0060] Preferably, refer to Figure 5 , Figure 7 , Fig. 9 , Fig.10 The fuselage assembly 1 includes a fuselage body 11, the fuselage inner cavity is the inner cavity of the fuselage body 11, the rear side of the fuselage body 11 is set in the deodorant assembly installation slot 110, the deodorant assembly 5 is set in the deodorant assembly installation slot 110, the deodorant assembly installation slot air inlet 111 is set at the bottom of the deodorant assembly installation slot 110, the deodorant installation slot air inlet 111 connects the exhaust air outlet of the exhaust assembly 6 with the deodorant air inlet of the deodorant assembly 5, and the exhaust assembly sealing ring 61 for connecting with the exhaust assembly 6 is set at the deodorant installation supercar air inlet 111. A detachable rear cover 12 is set at the mouth of the deodorant assembly installation slot 110, and the fuselage air outlet 103 is set at the rear cover 12 and connected with the deodorant air outlet of the deodorant assembly 5. The deodorizing component mounting slot 110 is provided with a mounting slot air inlet 112 communicating with the inner cavity of the fuselage at the upper position thereof. The fuselage air inlet includes a rear cover air inlet 101 provided on the rear cover. The rear cover air inlet 101 is communicated with the inner cavity of the fuselage via the mounting slot air inlet 112 .

[0061] Furthermore, the bottom of the fuselage assembly 1 is provided with a counterweight block 14, a detachable bottom cover 13 is provided at the bottom of the counterweight block 14, and the fuselage air inlet includes a bottom cover air inlet 102 provided on the bottom cover 13, and the bottom cover air inlet 102 is connected to the fuselage inner cavity.

[0062] A steam passage 15 connecting the steam outlet of the container and the deodorizing air inlet is disposed inside the body component 1 , and the exhaust component 6 is disposed in the steam passage 15 .

[0063] In this embodiment, the deodorizing component 5 is an activated carbon deodorizing device, and the deodorizing component 5 includes a deodorizing body 51 and a deodorizing upper cover 62; the exhaust component 6 includes a blower fan. The blower fan can quickly draw steam into the activated carbon box for sterilization and deodorization, and then discharge it into the air.

[0064] Reference Figure 2 , Figure 7 , Fig. 9 , Fig.10 The upper cover assembly 3 includes an upper cover upper shell 31 and an upper cover bottom shell 32. An upper cover sealing ring 33 is arranged between the bottom of the upper cover bottom shell 32 and the upper cover inner shell 34, and the upper cover sealing ring 33 is used for container sealing. The upper cover upper shell 31 and the upper cover bottom shell 32 are combined to form an upper cover shell body with an upper cover inner cavity. The upper cover shell body is rotatably mounted on the upper part of the fuselage assembly 1 through an opening and closing device group 7.

[0065] Preferably, the circulating air inlet 301 and the hot air outlet 302 are opened on the upper cover bottom shell 32 and the upper cover inner shell 34, and a circulating air inlet sealing ring 35 and a hot air outlet sealing ring 36 are respectively provided at the circulating air inlet 301 and the hot air outlet 302.

[0066] The upper cover assembly 3 further includes a rocker switch 37, a control panel device 38 and a power board device 39. The upper cover assembly 3 is provided with an upper cover air inlet 303 on the rear side wall, and the upper cover air inlet 303 is communicated with the upper cover inner cavity of the upper cover assembly 3.

[0067] A power cord is connected to the rear of the body assembly 1, and the power cord is used to plug into the mains or a power supply battery. After entering the body assembly 1, the power cord enters the upper cover assembly 3 through a connecting line and is electrically connected to the power board device 39. The power board device 39 is electrically connected to the control panel device 38, the exhaust assembly 6 and other electrical components through internal connecting lines. The control panel device 38 is provided with control buttons.

[0068] Reference Figure 7 , Fig. 9 , Fig.10 The heating and air supply assembly 4 includes a heating element support 41 disposed in the upper cover inner cavity of the upper cover assembly 3, and an air supply fan 42 and a heating element 43 installed inside the heating element support 41. A hot air duct 44 is formed inside the heating element support 41, and the hot air duct 44 is connected to the hot air outlet 302. The air entering the upper cover inner cavity is sent to the heating element 43 by the air supply fan 42, and the heating element 43 heats the air and then sends it out to the hot air duct 44.

[0069] When in use, the wind entering from the rear cover air inlet 101 enters the inner cavity of the fuselage through the rear cover mounting slot air inlet 112, together with the wind entering from the bottom cover air inlet 102 into the inner cavity of the fuselage, cools down the local area inside the fuselage assembly 1, ensures the stable operation of the dryer, and extends the service life of components. Part of the wind entering the inner cavity of the fuselage enters the inner cavity of the container through the container air inlet 231 and the bracket air inlet 211, part of the air entering the inner cavity of the container circulates in the inner cavity of the container, and part enters the inner cavity of the upper cover through the circulating air inlet 301 and enters the heating air supply component 4. After the wind entering the heating air supply component 4 is heated by the heating air supply component 4, the hot air is sent into the inner cavity of the container through the hot air outlet 302 for hot air replenishment, and part of the hot air entering the hot air inner cavity undergoes the above-mentioned circulation in the inner cavity of the container, and the other part of the hot air carries the steam of kitchen waste and passes through the container steam outlet 232, the steam gap 221, the water box steam outlet 222 and the bracket steam outlet 212 in turn and enters the steam channel 15, the steam entering the steam channel 15 is extracted by the exhaust component 6 and sent to the deodorization component 5 for deodorization and sterilization treatment, and the air that has been deodorized and sterilized is sent out from the fuselage air outlet 103.

[0070] The utility model provides a heating and air supply component 4 inside the upper cover component 3 for circulating the hot steam in the container component 2 and driving the hot air supply, and an active exhaust component 6 is also provided in the body component 1, which quickly draws the steam generated in the closed cavity of the container component 2 into the deodorizing component 5 through the container steam outlet and the steam channel, thereby improving the efficiency of drying and dehydration, thereby shortening the working time, greatly reducing the weight and volume of kitchen waste, and the processed kitchen waste can be reused, saving the cost of processing domestic waste.

[0071] The above is a specific description of the preferred implementation of the utility model, but the invention of the utility model is not limited to the described embodiments. Technical personnel familiar with the field can also make various equivalent deformations or substitutions without violating the spirit of the utility model. These equivalent deformations or substitutions are all included in the scope defined by the claims of this application.

Claims

1. A flip-top kitchen waste drying and weight-reducing machine, characterized in that: include: A fuselage component (1), the fuselage component (1) having a fuselage inner cavity, the fuselage component (1) being provided with a fuselage air inlet and a fuselage air outlet (103), the fuselage air inlet being in communication with the fuselage inner cavity; A container assembly (2), the container assembly (2) having a container inner cavity and being arranged in the container assembly (2), the container assembly (2) being provided with a container air inlet and a container steam outlet, the container air inlet connecting the container inner cavity with the inner cavity of the fuselage; an upper cover assembly (3), the upper cover assembly (3) being rotatably arranged inside the body assembly (1), the upper cover assembly (3) having an upper cover inner cavity, the upper cover assembly (3) being provided with a circulating air inlet (301) and a hot air outlet (302), the circulating air inlet (301) and the hot air outlet (302) both being in communication with the container inner cavity of the container assembly (2); A heating air supply component (4), the heating air supply component (4) being arranged in the inner cavity of the upper cover of the upper cover component (3), the heating air supply component (4) having a heating air inlet and a heating air outlet, the heating air inlet being connected to the circulating air inlet (301), and the heating air outlet of the heating air supply component (4) being connected to the hot air outlet (302); A deodorizing component (5), the deodorizing component (5) being arranged in the fuselage component (1), the deodorizing component (5) comprising a deodorizing air inlet and a deodorizing air outlet, the deodorizing air outlet being in communication with the fuselage air outlet (103); An exhaust component (6), the exhaust component (6) having an exhaust air inlet and an exhaust air outlet (61), the exhaust air inlet being connected to the container steam outlet of the container component (2), and the exhaust air outlet (61) being connected to the deodorizing air inlet of the deodorizing component (5).

2. The upward flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: The container assembly (2) comprises a container support (21), a container (23) and a water receiving box (22); the container support (21) is fixedly mounted inside the body assembly (1); the container (23) is removably disposed in an inner cavity of the container support (21); and the water receiving box (22) is disposed between the container support (21) and the container (23).

3. The upward flip-top kitchen waste drying and weight-reducing machine according to claim 2, characterized in that: The container air inlet comprises a support air inlet (211) opened on the upper side wall of the container support (21) and a container air inlet (231) opened on the upper side wall of the container (23); the container air inlet (231) and the support air inlet (211) are adapted to each other and are in communication with each other; the container inner cavity of the container assembly (2) is in communication with the body inner cavity of the body assembly (1) via the container air inlet (231) and the support air inlet (211).

4. The upward flip-top kitchen waste drying and weight-reducing machine according to claim 2, characterized in that: The container steam outlet comprises a container steam outlet (232) arranged at the bottom of the container (23), a water receiving box steam outlet (222) arranged at the lower side wall of the water receiving box (22), and a bracket steam outlet (212) arranged at the lower side wall of the container bracket (21); the water receiving box steam outlet (222) and the bracket steam outlet (212) are communicated with each other; a steam gap (221) is provided between the bottom of the container (23) and the inner bottom wall of the water receiving box (22); and the container inner cavity of the container assembly (2) is communicated with the exhaust inlet of the exhaust assembly (6) through the container steam outlet (232), the steam gap (221), the water receiving box steam outlet (222), and the bracket steam outlet (212).

5. The flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: The fuselage component (1) comprises a fuselage main body (11); the fuselage inner cavity is the inner cavity of the fuselage main body (11); the rear side of the fuselage main body (11) is arranged in a deodorizing component installation slot (110); the deodorizing component (5) is arranged in the deodorizing component installation slot (110); a deodorizing installation slot air inlet (111) is arranged at the bottom of the deodorizing component installation slot (110); the deodorizing installation slot air inlet (111) connects the exhaust air outlet of the exhaust air component (6) with the deodorizing air inlet of the deodorizing component (5); a detachable rear cover (12) is arranged at the mouth of the deodorizing component installation slot (110); the fuselage air outlet (103) is arranged at the rear cover (12) and is connected to the deodorizing air outlet of the deodorizing component (5).

6. The flip-top kitchen waste drying and weight-reducing machine according to claim 5, characterized in that: An installation slot air inlet (112) communicating with the inner cavity of the fuselage is arranged at the upper position of the deodorizing component installation slot (110); the fuselage air inlet comprises a rear cover air inlet (101) arranged on the rear cover; the rear cover air inlet (101) is communicated with the inner cavity of the fuselage through the installation slot air inlet (112).

7. The upward flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: The bottom of the fuselage assembly (1) is arranged on a counterweight block (14), a detachable bottom cover (13) is arranged at the bottom of the counterweight block (14), the fuselage air inlet comprises a bottom cover air inlet (102) arranged on the bottom cover (13), and the bottom cover air inlet (102) is connected to the inner cavity of the fuselage.

8. The flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: A steam passage (15) is provided inside the body component (1) and is connected to the steam outlet of the container and the deodorizing air inlet. The exhaust component (6) is arranged in the steam passage (15).

9. The upward flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: The deodorizing component (5) is an activated carbon deodorizing device, and the deodorizing component (5) comprises a deodorizing body (51) and a deodorizing upper cover (62); the exhaust component (6) comprises a blower fan.

10. The upward flip type kitchen waste drying and weight reducing machine according to claim 1, characterized in that: The upper cover assembly (3) comprises an upper cover upper shell (31) and an upper cover bottom shell (32); an upper cover sealing ring (33) is arranged between the bottom of the upper cover bottom shell (32) and the upper cover inner shell (34); and the upper cover sealing ring (33) is used for container sealing; the upper cover upper shell (31) and the upper cover bottom shell (32) are combined to form an upper cover shell having an upper cover inner cavity; and the upper cover shell is rotatably mounted on the upper part of the fuselage assembly (1) via an opening and closing device group (7).

11. The flip-top kitchen waste drying and weight-reducing machine according to claim 10, characterized in that: The circulating air inlet (301) and the hot air outlet (302) are opened on the upper cover bottom shell (32) and the upper cover inner shell (34), and the circulating air inlet (301) and the hot air outlet (302) are respectively provided with a circulating air inlet sealing ring (35) and a hot air outlet sealing ring (36).

12. The flip-top kitchen waste drying and weight-reducing machine according to claim 10, characterized in that: The upper cover assembly (3) also includes a rocker switch (37), a control panel device (38) and a power board device (39).

13. The flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: The rear side wall of the upper cover assembly (3) is provided with an upper cover air inlet (303), and the upper cover air inlet (303) is connected to the upper cover inner cavity of the upper cover assembly (3).

14. The flip-top kitchen waste drying and weight-reducing machine according to claim 1, characterized in that: The heating and air supply component (4) comprises a heating element bracket (41) arranged in the inner cavity of the upper cover of the upper cover component (3), and an air supply fan (42) and a heating element (43) installed inside the heating element bracket (41); a hot air duct (44) is formed inside the heating element bracket (41), and the hot air duct (44) is connected to the hot air outlet (302).