Cremation product incinerator

By designing the shell components of the incinerator and coordinating them with the dust collection equipment, the problem of ash being blown into the air was solved, achieving clean emissions in windy locations and improving environmental performance and practicality.

CN223622914UActive Publication Date: 2025-12-02HANGZHOU LIAO FA ENVIRONMENT EQUIP
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Patent Information

Application Number
CN202422923578.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-02
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

When existing incinerators are used in windy locations, the ash produced during combustion is easily blown into the air, causing air pollution and reducing their environmental performance and practicality.

Method used

A cremation incinerator has been designed, including a base, furnace body, sealing door, shell assembly, pipe body and smoke outlet pipe. Through the telescopic movement of the shell assembly and the cooperation of the dust collection device, the incineration ash is concentrated in the inner shell and discharged through the discharge pipe and dust collection device to prevent the ash from being blown into the air.

Benefits of technology

This effectively prevents ash from being blown into the air, improves the environmental performance and practicality of the incinerator, and ensures clean emissions when used in windy locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of incinerators, in particular to a cremation incinerator which comprises a base, an incinerator body, a sealing door, a shell assembly, a pipe body, a mounting pipe and a smoke outlet pipe. The base is connected with the furnace body, the furnace body is connected with the sealing door, and the sealing door is connected with the shell assembly. The shell assembly comprises a side plate a connected into the furnace body, the side plate a is connected with a mounting frame, and clamping plates are connected to the two end faces of the mounting frame. The side plate a is connected with a side plate c, the side plate c is connected with a connecting frame, and clamping rails are connected to the two end faces of the connecting frame. The mounting frame and the connecting frame are connected with a connecting piece and an inner shell piece; and the pipe body is arranged on the furnace body. According to the cremation product incinerator, the sealing door is opened, cremation products needing to be incinerated are placed on the inner shell part, the inner shell part is connected in a telescopic mode, incinerated ash can be conveniently concentrated in the inner shell part, the ash is prevented from being blown into air when the cremation product incinerator is used in a windy place, air pollution is effectively avoided, and the using environment-friendly performance of the cremation product incinerator is improved; and the practicability of the cremation product incinerator is improved.
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Description

Technical Field

[0001] This utility model relates to the field of incinerator technology, and in particular to a crematorium incinerator. Background Technology

[0002] Incinerators and other high-temperature waste recovery systems can be described as "heat recovery." Incinerators convert waste into ash, exhaust gases, particulate matter, and heat, which can then be used to generate electricity. Pollutants such as exhaust gases are cleaned before entering the air. Incinerators and energy recovery are among many waste-to-energy conversion technologies such as gasification, hyperbaric combustion, and anaerobic digestion.

[0003] Chinese Patent CN211667824U discloses a cremation incinerator, which solves the problem that some existing locations cannot provide a fixed cremation incineration device, or the provided incineration devices or buildings have poor safety features and are not suitable for the public to dispose of cremated materials in a disorderly and unsafe manner. The technical measures adopted are as follows: A cremation incinerator includes a hollow furnace body, in which a smoke collection chamber, a combustion chamber, and an ash collection chamber are formed sequentially from top to bottom. An ash-discharging grid is arranged between the combustion chamber and the ash collection chamber. The upper part of the smoke collection chamber has a smoke outlet, and the discharge port communicates with the combustion chamber. The key feature is that an annular barrier is provided on the outside of the furnace body at a position corresponding to the combustion chamber, with a gap between the barrier and the furnace body, and the barrier extends circumferentially along the furnace body.

[0004] When existing incinerators are used in windy locations, the ash produced by burning the incinerator is discharged from the furnace body by opening the air damper. During operation, the ash is blown into the air by the wind, causing air pollution, reducing the environmental performance of the incinerator and its practicality. Utility Model Content

[0005] To address the problems existing in the background technology, a cremation incinerator is proposed.

[0006] This utility model proposes a cremator, comprising: a base, a furnace body, a sealing door, a shell assembly, a pipe body, an installation pipe, and a smoke outlet pipe;

[0007] The base is connected to the furnace body, the furnace body is connected to the sealing door, and the sealing door is connected to the shell assembly; the shell assembly includes a side plate a connected to the furnace body, a mounting bracket connected to the side plate a, and locking plates connected to both ends of the mounting bracket; side plate a is connected to side plate c, side plate c is connected to a connecting bracket, and locking rails connected to both ends of the connecting bracket; the mounting bracket and the connecting bracket are connected to a connector and an inner shell component;

[0008] And the tubes are installed on the furnace body.

[0009] Preferably, the furnace body is hollow inside, with a circular opening at the top connecting to a pipe, which is connected to an installation pipe and a flue pipe.

[0010] Preferably, the door has an elongated opening and a windproof panel is connected to the outside.

[0011] Preferably, the mounting bracket is connected to a side plate b; the locking plate is movably connected within the locking rail; and a slider a is connected below the mounting bracket, with slider a connected within the moving rail.

[0012] Preferably, the side plate c is provided with a through hole; the connecting frame is connected to the side plate d and the slider b is connected below it, and the connecting frame is movably connected to one side of the mounting frame.

[0013] Preferably, the connector includes a control block connected to the outside of the mounting bracket and the connecting bracket. The control block is connected to a block body, and the two control blocks are hollow inside, with an opening on the side for connecting telescopic blocks.

[0014] Preferably, the inner shell includes a U-shaped plate connected within the mounting bracket, with a connecting plate a connected to one side of the U-shaped plate and a connecting plate b connected to the other end, and both connecting plate a and connecting plate b are connected to inclined plates; a discharge pipe is provided through the connecting plate b, and the discharge pipe is a sealing movable connecting cover.

[0015] Compared with the prior art, the present invention has the following beneficial technical effects:

[0016] This invention allows the cremated materials to be incinerated to be placed on the inner shell by opening the sealing door. The components of the inner shell are telescopically connected, facilitating movement as needed via connectors, side plate a, mounting bracket, locking plate, side plate c, connecting bracket, and locking rail. After the cremated materials have finished incinerating, connecting plates a and b are moved outwards towards the U-shaped plate by controlling the connectors, side plate a, mounting bracket, locking plate, side plate c, connecting bracket, and locking rail. This concentrates the ash inside the inner shell, which is then removed from the furnace by a dust extraction device. This prevents the ash from being blown into the air in windy environments, effectively avoiding air pollution and improving the environmental performance and practicality of the cremated material incinerator. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the internal structure of the furnace body in this utility model;

[0019] Figure 3 This is a schematic diagram of the shell assembly structure in this utility model;

[0020] Figure 4 This is a schematic diagram of the inner shell structure in this utility model.

[0021] Reference numerals: 1. Base; 2. Furnace body; 3. Sealing door; 301. Windproof plate; 4. Shell assembly; 401. Side plate a; 402. Mounting bracket; 403. Clamping plate; 404. Side plate c; 405. Connecting bracket; 406. Clamping rail; 407. Control block; 408. Block body; 409. Telescopic block; 410. U-shaped plate; 411. Connecting plate a; 412. Connecting plate b; 413. Inclined plate; 414. Discharge pipe; 5. Pipe body; 6. Mounting pipe; 7. Smoke outlet pipe. Detailed Implementation

[0022] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.

[0023] Example 1

[0024] like Figure 1 - Figure 4 As shown, the present invention proposes a cremation incinerator, comprising: a base 1, a furnace body 2, a sealing door 3, a shell assembly 4, a pipe 5, an installation pipe 6, and a smoke outlet pipe 7; the base 1 is connected to the furnace body 2, the furnace body 2 is connected to the sealing door 3, and the sealing door 3 is connected to the shell assembly 4; the shell assembly 4 includes a side plate a401 connected inside the furnace body 2, a mounting bracket 402 connected to the side plate a401, and locking plates 403 connected to both ends of the mounting bracket 402; the side plate a401 is connected to a side plate c404, the side plate c404 is connected to a connecting bracket 405, and locking rails 406 connected to both ends of the connecting bracket 405; the mounting bracket 402 and the connecting bracket 405 are connected to a connecting member and an inner shell component. By opening the sealing door 3, the discharge pipe 414 and the dust collection equipment are connected to achieve the discharge of incinerated materials from the furnace body 2. The shell assembly 4 is controlled to concentrate the incineration ash in the inner shell, preventing the ash from being blown into the air, avoiding affecting air quality, and improving the use of the incinerator.

[0025] Further explanation: Mounting bracket 402 is connected to side plate b; locking plate 403 is movably connected within locking rail 406; slider a is connected below mounting bracket 402 and is connected within moving rail; side plate c404 has through holes; connecting bracket 405 is connected to side plate d and has slider b connected below it, and connecting bracket 405 is movably connected to one side of mounting bracket 402. Locking plate 403 is T-shaped, and locking rail 406 is U-shaped, facilitating the locking connection between connecting bracket 405 and mounting bracket 402, improving stability during use; slider a and slider b move synchronously with mounting bracket 402 and connecting bracket 405 around furnace body 2, and slider a and slider b move along moving rail, which is located at the bottom of the inner surface of furnace body 2, facilitating smooth movement and improving the practicality of the incinerator.

[0026] Further explanation: The connector includes control blocks 407 connected to the outside of the mounting bracket 402 and the connecting bracket 405. Control blocks 407 are connected to a block body 408, and both control blocks 407 are hollow internally, with openings on their sides for connecting telescopic blocks 409. The two control blocks 407 are connected to the block body 408 through these openings, allowing for the movable connection of the connecting bracket 405, the mounting bracket 402, and the inner shell. This facilitates the movement of the mounting bracket 402 and the connecting bracket 405, enabling the telescopic closure of the inner shell, conveniently concentrating incinerator ash, and improving processing efficiency.

[0027] Further explanation: The inner shell includes a U-shaped plate 410 connected within the mounting bracket 402. A connecting plate a411 is connected to one side of the U-shaped plate 410, and a connecting plate b412 is connected to the other end. Both connecting plates a411 and b412 are connected to inclined plates 413. A discharge pipe 414 is provided through the connecting plate b412, and the discharge pipe 414 is movably and sealingly connected to the cover. The inclined plate 413 facilitates the concentration of incinerator ash inside. The cover and discharge pipe 414 are movably and sealingly connected, allowing the cover to be opened to connect the discharge pipe 414 to a dust collection device, enabling the incinerator ash to be discharged from the incinerator. Furthermore, the discharge pipe 414 and the through hole are aligned, facilitating the use of the components of the shell assembly 4.

[0028] Example 2

[0029] like Figure 1 As shown, the present invention proposes a cremation incinerator. Based on the above embodiments, this embodiment also details the specific components such as the tube body 5 and the way they are assembled.

[0030] To further explain, the pipe body 5 is installed on the furnace body 2. The inside of the pipe body 5 is hollow, and a circular opening is provided at the upper end to connect the pipe body 5. The pipe body 5 is connected to the installation pipe 6 and the flue pipe 7. The installation pipe 6 is used to put incinerators and additional combustibles. The flue pipe 7 is connected to the chimney, and the chimney is at least three times the height of the furnace body 2 to facilitate the discharge of flue gas generated by the incinerator.

[0031] To further explain, the sealing door 3 has an elongated opening and is connected to a windproof plate 301 on its outer side. The windproof plate 301 is positioned to correspond to the elongated opening, preventing wind from entering the furnace body 2 from the connection point between the telescopic block 409 and the two control blocks 407, thus further facilitating the coordinated use of the components of the incinerator.

[0032] The working principle of this utility model is as follows: After the cremated goods are burned, the ashes are on the U-shaped plate 410. The two ends of the U-shaped plate 410 extend and retract to the connecting plate a411 and the connecting plate b412. The connecting plate a411 and the connecting plate b412 are connected to the mounting frame 402 and the connecting frame 405. The mounting frame 402 and the connecting frame 405 are both connected by the block 408 and the control block 407. The control blocks 407 are connected by the telescopic block 409. The hook body of the control block 407 extends to the elongated opening. The hook body is connected to the mobile device to facilitate the operation of the control block 407. 07 moves to the periphery of the telescopic block 409, thereby driving the connecting frame 405 and the mounting frame 402 to move toward the opposite side via the block 408, thereby driving the connecting plate a411 and the connecting plate b412 to move toward the periphery of the U-shaped plate 410, so as to concentrate the ash inside the inner shell. Then, the cover is opened through the through hole, and the discharge pipe 414 is connected to the dust collection equipment, so that the ash is discharged from the inner shell. After discharge, the mounting frame 402, the connecting frame 405, the connecting parts and the inner shell are reset by the mobile device, so as to put the unburned cremated materials into incineration.

[0033] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. A crematorium incinerator, characterized in that, include: Base (1); Base (1) is connected to furnace body (2), furnace body (2) is connected to sealing door (3), sealing door (3) is connected to shell assembly (4); The shell assembly (4) includes a side plate a (401) connected inside the furnace body (2), a mounting bracket (402) connected to the side plate a (401), and a locking plate (403) connected to both ends of the mounting bracket (402); a side plate c (404) connected to the side plate a (401), a connecting bracket (405) connected to the side plate c (404), and a locking rail (406) connected to both ends of the connecting bracket (405); a connector and an inner shell are connected to the mounting bracket (402) and the connecting bracket (405); And the tube body (5) is installed on the furnace body (2).

2. The incinerator for cremated materials according to claim 1, characterized in that, The furnace body (2) is hollow inside, and a circular opening is provided at the top to connect the pipe body (5). The pipe body (5) is connected to the installation pipe (6) and the flue pipe (7).

3. The incinerator for cremated materials according to claim 1, characterized in that, The door (3) has an elongated opening and is connected to a windproof panel (301) on the outside.

4. The incinerator for cremated materials according to claim 1, characterized in that, The mounting bracket (402) is connected to a side plate b; the locking plate (403) is movably connected to the locking rail (406); a slider a is connected below the mounting bracket (402), and the slider a is connected to the moving rail.

5. A cremation incinerator according to claim 4, characterized in that, Side plate c (404) is provided with through holes; connecting bracket (405) is connected to side plate d and has a slider b connected below it, and connecting bracket (405) is movably connected to one side of mounting bracket (402).

6. A cremation incinerator according to claim 5, characterized in that, The connector includes a control block (407) connected to the outside of the mounting bracket (402) and the connecting bracket (405). The control block (407) is connected to a block body (408), and the two control blocks (407) are hollow inside, with an open connection to the telescopic block (409) on the side.

7. A crematorium for incinerating waste according to claim 6, characterized in that, The inner shell includes a U-shaped plate (410) connected in the mounting bracket (402). A connecting plate a (411) is connected to one side of the U-shaped plate (410), and a connecting plate b (412) is connected to the other end. Both the connecting plate a (411) and the connecting plate b (412) are connected to inclined plates (413). A discharge pipe (414) is provided through the connecting plate b (412), and the discharge pipe (414) seals the movable connecting cover.

Citation Information

Patent Citations

  • Cremation product incinerator

    CN211667824U