Incineration closestool

By using electromagnetic heating and a compartmentalized design, the incineration toilet solves the problems of low heating efficiency and bulkiness of existing incineration toilets, achieving high-efficiency, energy-saving, and convenient incineration treatment, and improving the user experience.

CN223799720UActive Publication Date: 2026-01-16FOSHAN TUOFANG INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423181292.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-01-16
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing incineration toilets have low heating efficiency, high energy consumption, and are inconvenient to use, especially the incineration tanks are bulky, resulting in a poor user experience.

Method used

Electromagnetic heating is adopted, using magnetic heating components and electromagnetic coils to generate a high-temperature magnetic field for rapid heating. The incineration chamber and ash collection chamber are designed separately. The magnetic heating components rapidly heat up and incinerate the excrement, and the ash is collected in an independent ash collection chamber, avoiding the need for a thick insulation layer.

Benefits of technology

It achieves highly efficient and energy-saving incineration, reduces energy consumption, has a lightweight structure, is easy for users to operate, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an incineration closestool which comprises a sewage receiving cavity, an incineration cavity and an ash receiving cavity which are arranged on a closestool body. A sewage inlet and an ash outlet are formed in the incineration cavity, the sewage receiving cavity in the open state communicates with the incineration cavity through the sewage inlet, and the incineration cavity in the open state communicates with the ash receiving cavity through the ash outlet; a magnetic heating part and an electromagnetic coil are arranged on the incineration cavity and correspond to each other, and a magnetic field generated by electrifying the electromagnetic coil enables the magnetic heating part to generate high temperature for incinerating excrement. According to the incineration closestool, excrement is heated and incinerated in an electromagnetic heating mode, the incineration area and the ashing matter collecting area are separated from each other, and therefore the incineration closestool has the advantages of being high in heating efficiency, low in energy consumption, easy and convenient to use and the like.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a closestool, in particular to a cremation closestool. BACKGROUND

[0002] The cremation closestool is also called waterless closestool, which is an equipment for treating excrement by cremation. For example, a cremation closestool disclosed in Chinese patent document CN2024202151221 specifically discloses that the cremation barrel further comprises a cremation part located below the receiving part, the cremation part is provided with a heating element to have a heating function; the cremation structure comprises a cremation sealing element and a cremation barrel with an open top; the mounting cylinder is fixed on the mounting cylinder bottom plate, which can conveniently install the cremation barrel in the mounting cylinder, and the mounting cylinder is provided with a heat insulation layer. The heating device of the cremation closestool is a heating body, and the actual product is a heating pipe. The heating speed of the heating pipe is slow, which results in low heating efficiency and high energy consumption. In addition, the cremation treatment of the cremation closestool is completed in the cremation barrel. In order to separate the heat, a thick heat insulation layer needs to be arranged on the side of the cremation barrel. After the cremation treatment is completed, the excrement is burned into ash, and in order to facilitate the treatment of the ash after cremation, the cremation barrel generally adopts a detachable structure so as to be taken out by the user to clean the ash in the cremation barrel. However, due to the thick heat insulation layer arranged on the side of the cremation barrel, the cremation barrel is relatively heavy, and the user feels very tired when carrying the cremation barrel. Therefore, the use experience is poor.

[0003] Therefore, it is necessary to further improve the existing cremation closestool. CONTENT OF THE UTILITY MODEL

[0004] The utility model aims at overcoming the defects of the prior art, and provides a cremation closestool, which has high heating efficiency, low energy consumption, and is simple and convenient to use.

[0005] The utility model aims at overcoming the defects of the prior art, and provides a cremation closestool, which has high heating efficiency, low energy consumption, and is simple and convenient to use.

[0006] The utility model discloses a cremation closestool which comprises a pollution receiving cavity, a cremation cavity and an ash receiving cavity arranged on a closestool body.

[0007] As a specific scheme, the magnetic heating part is arranged on the side of the cremation cavity, and the electromagnetic coil is arranged outside the magnetic heating part.

[0008] As another specific scheme, a heat insulation layer is arranged between the magnetic heating part and the electromagnetic coil.

[0009] As a further specific solution, the electromagnetic coil is wrapped with a thermal insulation layer.

[0010] As a further specific solution, the incineration toilet further comprises an incinerator, the incineration cavity is arranged on the incinerator, the waste inlet is arranged on the top of the incinerator, and the ash outlet is arranged on the bottom of the incinerator; the incinerator is made of a metal material, and the magnetic heating component is the body of the incinerator.

[0011] As a further specific solution, the incinerator is provided with a first baffle for opening or closing the waste inlet and a first power device connected with the first baffle; the first power device drives the first baffle to move relative to the incinerator to open or close the waste inlet.

[0012] As a further specific solution, the first baffle is hinged on the incinerator, the first baffle is provided with a linkage rod, the motor shaft of the first power device is connected with a first screw rod, the first screw rod is screwed with a first nut, the first nut is connected with the linkage rod, and the first power device drives the linkage rod to move through the first screw rod and the first nut to control the first baffle to open or close the waste inlet.

[0013] As a further specific solution, the incinerator is provided with a second baffle for opening or closing the ash outlet and a second power device connected with the second baffle; the second power device drives the second baffle to move relative to the incinerator to open or close the ash outlet.

[0014] As a further specific solution, the incinerator is provided with an inner air inlet and an inner air outlet respectively connected with the incineration cavity; the toilet body is provided with an outer air inlet and an outer air outlet respectively connected with the incineration cavity, and the toilet body is provided with a circulating fan corresponding to the outer air outlet.

[0015] As a further specific solution, the incineration toilet further comprises a waste receiving device, a waste receiving cavity is arranged on the waste receiving device, the waste receiving device is provided with a waste outlet connected with the waste receiving cavity, and the waste receiving device is provided with a third baffle for opening or closing the waste outlet and a third power device connected with the third baffle; the third power device drives the third baffle to move relative to the waste receiving device to open or close the waste outlet.

[0016] As a further specific solution, the incineration toilet further comprises a detachable ash receiving device arranged on the toilet body, the ash receiving device is located below the incineration cavity, and an ash receiving cavity is arranged on the ash receiving device.

[0017] The beneficial effects of the utility model are as follows:

[0018] The present utility model adopts electromagnetic heating mode to heat and burn excrement; specifically, a magnetic heating component and an electromagnetic coil are arranged on the burning chamber, when the electromagnetic coil is electrified to generate a magnetic field, the surrounding magnetic field acts on the magnetic heating component, so that the magnetic heating component is rapidly heated to a high temperature required for burning excrement, so as to achieve the purpose of burning excrement; the electromagnetic heating mode has the advantages of high efficiency, energy saving, rapid heating, safety, environmental protection, long service life and low maintenance cost.

[0019] The burning area and the ash collection area of the present utility model are separated from each other; specifically, the burning chamber providing the required space for burning excrement and the ash receiving chamber providing the required space for collecting ash are included, after the burning treatment is completed, the burning chamber is opened and the ash is discharged into the ash receiving chamber, the user can clean the ash in the ash receiving chamber by taking out the ash receiving chamber alone, since the burning treatment is not carried out in the ash receiving chamber, the thick heat insulation layer does not need to be arranged on the surface of the ash receiving chamber, that is, the overall quality of the dirt collector is lighter, and the user can easily take and clean it. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a sectional view of the burning toilet in an embodiment of the present utility model.

[0021] Figure 2 It is Figure 1 It is an enlarged view of the H part.

[0022] Figure 3 It is a sectional view of the burning chamber in the working process of an embodiment of the present utility model.

[0023] Figure 4 It is a sectional view of the burning state in the working process of an embodiment of the present utility model.

[0024] Figure 5 It is a sectional view of the ash receiving chamber in the working process of an embodiment of the present utility model.

[0025] Figure 6 It is a sectional view of the ash receiving chamber in the working process of an embodiment of the present utility model.

[0026] Figure 7 It is a partial schematic view of the closed state of the burner in an embodiment of the present utility model.

[0027] Figure 8 It is a partial schematic view of the open state of the burner in an embodiment of the present utility model. DETAILED DESCRIPTION

[0028] The present utility model will be further described below in combination with the drawings and embodiments.

[0029] See Figures 1-8The embodiment relates to a burning toilet, which comprises a sewage receiving cavity 201, a burning cavity 1002, an ash receiving cavity 1101 and a control module 7 arranged in a toilet body 1, the sewage receiving cavity 201 is in communication with an opening at the top of the toilet body 1, a toilet cover (not shown in the figure) is arranged at the top of the toilet body 1 and used for opening or closing the sewage receiving cavity 201, the burning cavity 1002 is provided with a sewage inlet 1001 at the top and an ash outlet 1003 at the bottom, the sewage receiving cavity 201 in an open state is in communication with the burning cavity 1002 through the sewage inlet 1001, and the burning cavity 1002 in an open state is in communication with the ash receiving cavity 1101 through the ash outlet 1003, the magnetic heating component and an electromagnetic coil 13 are arranged on the burning cavity 1002, the magnetic heating component and the electromagnetic coil 13 correspond to each other, the electromagnetic coil 13 is electrically connected with the control module 7, and a magnetic field generated by the electromagnetic coil 13 makes the magnetic heating component generate high temperature used for burning excrement A.

[0030] The burning toilet adopts an electromagnetic heating mode to heat and burn the excrement A, specifically, the magnetic heating component and the electromagnetic coil 13 are arranged on the burning cavity 1002, when the electromagnetic coil 13 is electrified to generate a magnetic field, the surrounding magnetic field acts on the magnetic heating component, so that the magnetic heating component is rapidly heated to high temperature required for burning the excrement A, and the purpose of burning the excrement A is achieved, the electromagnetic heating mode has the advantages of high efficiency, energy saving, rapid heating, safety, environmental protection, long service life and low maintenance cost. In addition, the burning area and the ash collection area of the burning toilet are separated from each other, specifically, the burning toilet comprises the burning cavity 1002 providing a required space for burning the excrement A and the ash receiving cavity 1101 providing a required space for collecting ash B, after the burning treatment is completed, the burning cavity 1002 is opened and the ash B is discharged into the ash receiving cavity 1101, the user can clean the ash B in the ash receiving cavity 1101 by taking out the ash receiving cavity 1101 alone, since the burning treatment is not performed in the ash receiving cavity 1101, a thick heat insulation layer does not need to be arranged on the surface of the ash receiving cavity 1101, that is, the overall quality of the ash receiving device 11 is relatively light, and the user can easily take and clean.

[0031] Further, the magnetic heating component is at least partially annular and arranged on the side of the burning cavity 1002, and the electromagnetic coil 13 is arranged outside the magnetic heating component, when the electromagnetic coil 13 is electrified to generate a magnetic field, the annular magnetic heating component uniformly transmits heat to the inside, and the heat is concentrated on the excrement A, so that the excrement A is rapidly heated and burned, the heat is fully utilized, the heating efficiency is further improved, and the energy consumption is reduced.

[0032] Further, a heat insulation layer 14 is arranged between the magnetic heating component and the electromagnetic coil 13, the heat insulation layer 14 is made of a material which does not affect the magnetic field, and the heat insulation layer 14 also has heat insulation and insulation effects.

[0033] Further, the electromagnetic coil 13 is wrapped with a heat preservation layer 19, which can prevent heat loss and avoid the surface of the closestool body 1 from being too hot to affect the user experience, and the heat can be fully utilized.

[0034] Further, the incineration closestool further comprises an incinerator 10 arranged in the closestool body 1, the incineration chamber 1002 is arranged in the incinerator 10, the waste inlet 1001 is arranged at the top of the incinerator 10, and the ash outlet 1003 is arranged at the bottom of the incinerator 10; the incinerator 10 in the embodiment is made of metal material, and the magnetic heating component is the body of the incinerator 10, which is simple and reasonable in structure; in addition, the incinerator 10 can also be made of non-metallic material, and the magnetic heating component of metal material is arranged in the incinerator 10.

[0035] Further, the incinerator 10 is provided with a first baffle 9 for opening or closing the waste inlet 1001 and a first power device 17 connected with the first baffle 9, and the first power device 17 is electrically connected with the control module 7; the first power device 17 drives the first baffle 9 to move relative to the incinerator 10 to open or close the waste inlet 1001. When it is needed to introduce the excrement A into the incineration chamber 1002, the first power device 17 drives the first baffle 9 to open the waste inlet 1001; during the incineration process, the first power device 17 drives the first baffle 9 to close the waste inlet 1001 to avoid the high-temperature heat from being transferred to the waste receiving chamber 201 to affect the user.

[0036] Further, referring to Figure 7 and Figure 8 , the first baffle 9 is hinged to the top of the incinerator 10, the first baffle 9 is provided with a linkage rod 15, the first power device 17 is a servo motor, the motor shaft of the servo motor is connected with a first screw rod 18 through a gear assembly (or a belt, etc.), the first screw rod 18 is rotatable relative to the incinerator 10, a first nut 16 is screwed on the first screw rod 18, the first nut 16 is connected with the linkage rod 15, and the first power device 17 drives the linkage rod 15 to move through the first screw rod 18 and the first nut 16 to control the first baffle 9 to open or close the waste inlet 1001. Specifically, the linkage rod 15 is provided with a strip-shaped groove 1501, the first nut is provided with a linkage shaft 1601, and the linkage shaft 1601 is movably inserted into the strip-shaped groove 1501; when the first power device 17 drives the first screw rod 18 to rotate, the first nut 16 is driven to move along the length direction of the first screw rod 18 under the action of the thread, at this time, the linkage shaft 1601 drives the linkage rod 15 to move, the linkage shaft 1601 slides in the strip-shaped groove 1501, and finally drives the first baffle 9 to move relative to the incinerator 10 to achieve the purpose of opening or closing the waste inlet 1001; the first baffle 9 in the embodiment is symmetrically arranged in two pieces and is opened and closed in a split manner.

[0037] Further, the incinerator 10 is provided with a second baffle 12 for opening or closing the ash outlet 1003, and a second power device (not shown in the figure) connected with the second baffle 12; the second power device drives the second baffle 12 to move relative to the incinerator 10 to open or close the ash outlet 1003. It should be noted that the moving mode of the second baffle 12 can be consistent with the first baffle 9, so it will not be repeated here, of course, it does not exclude other power components that can drive the second baffle 12 to complete the opening and closing movement.

[0038] Further, the incinerator 10 is provided with an inner air inlet 1004 and an inner air outlet 1005 respectively connected with the incineration cavity 1002; the closestool body 1 is provided with an outer air inlet 101 and an outer air outlet 102 respectively connected with the incineration cavity 1002, and is provided with a circulating fan 8 corresponding to the outer air outlet 102, and the circulating fan 8 is electrically connected with the control module 7. During the incineration process, the circulating fan 8 operates to form air convection in the incineration cavity 1002, thereby providing the required oxygen for the incineration work.

[0039] Further, the incineration closestool further comprises a pollution collector 2, a pollution collection cavity 201 is arranged in the pollution collector 2, the pollution collector 2 is provided with a pollution outlet 202 connected with the pollution collection cavity 201, and the pollution collector 2 is provided with a third baffle 3 for opening or closing the pollution outlet 202 and a third power device 4 connected with the third baffle 3; one end of the third baffle 3 is hingedly connected to the closestool body 1, and the third power device 4 drives the third baffle 3 to move relative to the pollution collector 2 to open or close the pollution outlet 202. Specifically, the third power device 4 is fixedly arranged in the closestool body 1, a driving gear 5 is connected with the motor shaft of the third power device 4, a driven gear 6 is arranged on the third baffle 3, and the driving gear 5 and the driven gear 6 are engaged, so that the third power device 4 and the third baffle 3 form an effective linkage relationship.

[0040] Further, the incineration closestool further comprises a pollution collector 2, a pollution collection cavity 201 is arranged in the pollution collector 2, the pollution collector 2 is provided with a pollution outlet 202 connected with the pollution collection cavity 201, and the pollution collector 2 is provided with a third baffle 3 for opening or closing the pollution outlet 202 and a third power device 4 connected with the third baffle 3; one end of the third baffle 3 is hingedly connected to the closestool body 1, and the third power device 4 drives the third baffle 3 to move relative to the pollution collector 2 to open or close the pollution outlet 202. Specifically, the third power device 4 is fixedly arranged in the closestool body 1, a driving gear 5 is connected with the motor shaft of the third power device 4, a driven gear 6 is arranged on the third baffle 3, and the driving gear 5 and the driven gear 6 are engaged, so that the third power device 4 and the third baffle 3 form an effective linkage relationship.

[0041] The above is the preferred scheme of the present application, which shows and describes the basic principle, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and all these changes and improvements fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A toilet comprising a sewage receiving cavity (201) provided on a toilet body (1), characterized in that: It also includes a burning cavity (1002) and an ash receiving cavity (1101) arranged on the toilet body (1) respectively; the burning cavity (1002) is provided with an inlet (1001) and an ash outlet (1003), the open state of the sewage receiving cavity (201) is communicated with the burning cavity (1002) through the inlet (1001), and the open state of the burning cavity (1002) is communicated with the ash receiving cavity (1101) through the ash outlet (1003); the burning cavity (1002) is provided with a magnetic heating component and an electromagnetic coil (13), the magnetic heating component and the electromagnetic coil (13) correspond to each other, and the magnetic field generated by the electromagnetic coil (13) makes the magnetic heating component generate high temperature for burning excrement (A).

2. The incinerating toilet according to claim 1, wherein: The magnetic heating component is arranged on the side of the burning cavity (1002), and the electromagnetic coil (13) is arranged outside the magnetic heating component.

3. The incinerating toilet according to claim 2, wherein: A heat insulation layer (14) is arranged between the magnetic heating component and the electromagnetic coil (13).

4. The incinerating toilet according to claim 2, wherein: The outside of the electromagnetic coil (13) is wrapped with a heat preservation layer (19).

5. The incinerating toilet according to claim 1, wherein: It also includes a burner (10), the burning cavity (1002) is arranged on the burner (10), the inlet (1001) is arranged at the top of the burner (10), and the ash outlet (1003) is arranged at the bottom of the burner (10); the burner (10) is made of metal material, and the magnetic heating component is the body of the burner (10).

6. The incinerating toilet according to claim 4, wherein: The burner (10) is provided with a first baffle (9) for opening or closing the inlet (1001), and a first power device (17) drivingly connected with the first baffle (9); the first power device (17) drives the first baffle (9) to move relative to the burner (10) to open or close the inlet (1001).

7. The incinerating toilet according to claim 4, wherein: The burner (10) is provided with a second baffle (12) for opening or closing the ash outlet (1003), and a second power device drivingly connected with the second baffle (12); the second power device drives the second baffle (12) to move relative to the burner (10) to open or close the ash outlet (1003).

8. The incinerating toilet according to claim 4, wherein: The burner (10) is provided with an inner air inlet (1004) and an inner air outlet (1005) respectively communicating with the burning cavity (1002); the toilet body (1) is provided with an outer air inlet (101) and an outer air outlet (102) respectively communicating with the burning cavity (1002), and the toilet body (1) is provided with a circulating fan (8) corresponding to the outer air outlet (102).

9. The incinerating toilet according to claim 1, wherein: It also includes a sewage receiver (2), the sewage receiving cavity (201) is arranged on the sewage receiver (2), the sewage receiver (2) is provided with a sewage outlet (202) communicating with the sewage receiving cavity (201), and the sewage receiver (2) is provided with a third baffle (3) for opening or closing the sewage outlet (202), and a third power device (4) drivingly connected with the third baffle (3); the third power device (4) drives the third baffle (3) to move relative to the sewage receiver (2) to open or close the sewage outlet (202).

10. The incinerating toilet according to claim 1, wherein: It also includes an ash receiver (11) detachably arranged on the toilet body (1), the ash receiver (11) is located below the burning cavity (1002), and the ash receiving cavity (1101) is arranged on the ash receiver (11).