Singeing machine with uniform singeing and water saving

CN224647288UActive Publication Date: 2026-08-18GUANGZHOU KITCHEN BUTLER INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202521796719.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-21
Publication Date
2026-08-18
Estimated Expiration
2035-08-21

AI Technical Summary

Technical Problem

一方面,烧毛效果不够均匀

Benefits of technology

[0016]本实用新型的一种具有均匀烧毛和节水的烧毛机通过烧毛机构能够实现火焰的均匀分布,确保面料各个部位的绒毛都能得到均匀燃烧,烧毛效果更加一致,大大提高了面料的外观质量;挡火罩能够让烧毛机可持续长时间工作,极大的提升的工作效率和降低运营成本;一级水冷散热净化机构和二级水冷散热净化机构有效回收了废气中的热量,将其重新用于净化废气毛灰降温,重新回收热水,减少了能源的浪费,降低了生产成本,符合节能环保的发展趋势;控制机构使得烧毛机能够根据不同面料的材质和厚度,灵活调整工作参数,具备更强的适应性,可满足多种面料的烧毛需求。

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Abstract

The utility model relates to the technical field of gas equipment discloses a singeing machine with even singeing and water saving including control mechanism, conveying mechanism, singeing mechanism, primary water cooling heat dissipation purification mechanism, secondary water cooling heat dissipation purification mechanism and water pan, control mechanism with singeing mechanism connects, singeing mechanism installs in the top of conveying mechanism, water pan installs in the bottom of conveying mechanism, singeing mechanism primary water cooling heat dissipation purification mechanism and secondary water cooling heat dissipation purification mechanism from below to top are connected in proper order, and singeing mechanism respectively with primary water cooling heat dissipation purification mechanism and secondary water cooling heat dissipation purification mechanism intercommunication. The utility model can improve the appearance quality of fabric greatly, reduced the waste of energy, reduced production cost.
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Description

Technical Field

[0001] This utility model relates to the technical field of gas equipment, and in particular to a singeing machine that features uniform singeing and water saving. Background Technology

[0002] In the production process of processing the skin and fur of food, singeing is an important step. Through singeing, the hair on the surface of the material can be removed, making the surface of the material smoother and improving the quality and appearance of the material.

[0003] Currently, existing singeing machines on the market have some shortcomings. Firstly, the singeing effect is not uniform. Due to the uneven flame distribution of traditional singeing machines, the degree of burning varies across different parts of the material, affecting the overall appearance quality of the fabric. Secondly, energy efficiency is low. Existing singeing machines waste a significant amount of heat energy during operation, increasing production costs and failing to meet energy conservation and environmental protection requirements. Furthermore, some singeing machines lack flexibility when handling fabrics of different thicknesses and materials, making it difficult to effectively adjust parameters according to actual needs, thus limiting their applicability. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a singeing machine that features uniform singeing and water saving.

[0005] The objective of this invention is achieved through the following technical solution: A singeing machine with uniform singeing and water-saving properties includes a control mechanism, a conveying mechanism, a singeing mechanism, a primary water-cooling and heat dissipation purification mechanism, a secondary water-cooling and heat dissipation purification mechanism, and a water receiving tray. The control mechanism is connected to the singeing mechanism, which is installed on top of the conveying mechanism. The water receiving tray is installed at the bottom of the conveying mechanism. The singeing mechanism, the primary water-cooling and heat dissipation purification mechanism, and the secondary water-cooling and heat dissipation purification mechanism are connected sequentially from bottom to top, and the singeing mechanism is connected to both the primary and secondary water-cooling and heat dissipation purification mechanisms. This singeing machine can improve the appearance quality of fabrics, increase work efficiency, and reduce energy waste.

[0006] Preferably, the singeing mechanism includes a flame shield, a smoke exhaust pipe, and a singeing assembly. The singeing assembly is installed on the flame shield, which is installed on the conveying mechanism. The flame shield is connected to the primary water-cooled heat dissipation and purification mechanism via the smoke exhaust pipe. The flame shield is also connected to both the primary and secondary water-cooled heat dissipation and purification mechanisms. The singeing assembly is connected to the control mechanism. This singeing mechanism uses multi-angle flames to cover the food's skin and fur, evenly removing the fuzz. Simultaneously, circulating water absorbs the combustion heat, preventing overheating and guiding exhaust gas out.

[0007] Preferably, the singeing assembly includes a first singeing furnace head, which is disposed between two adjacent exhaust pipes and is connected to the control mechanism.

[0008] Preferably, the singeing assembly further includes a second singeing furnace head, which is disposed on both sides of the flue pipe. The first singeing furnace head and the second singeing furnace head are at an angle of less than 90°. The second singeing furnace head is connected to the control mechanism.

[0009] Preferably, the fire shield includes a fire-shielding outer shell and a fire-shielding inner shell, both of which are mounted on the conveying mechanism. The singeing assembly is mounted on the fire-shielding inner shell. The fire-shielding outer shell is connected to the primary water-cooled heat dissipation and purification mechanism. The fire-shielding outer shell has a water inlet and a drain outlet, which are respectively connected to the primary and secondary water-cooled heat dissipation and purification mechanisms. The fire-shielding inner shell is connected to the primary water-cooled heat dissipation and purification mechanism through the exhaust pipe. This fire shield forms a closed combustion space, preventing flame overflow and protecting operational safety.

[0010] Preferably, the primary water-cooled heat dissipation and purification mechanism includes a first spray pipe, a first heat dissipation shell, and a water storage chamber. The first heat dissipation shell is provided with a flue and a water storage chamber. The flue is connected to the singeing mechanism, and the water storage chamber is located outside the flue. The first spray pipe is located above the flue and the water storage chamber and is connected to the singeing mechanism. The water storage chamber is provided with a water outlet. This primary water-cooled heat dissipation and purification mechanism performs initial cooling and purification of the exhaust gas generated during singeing. It removes most of the particulate matter and heat through water spraying, reducing environmental pollution, and stores the spray water.

[0011] Preferably, the secondary water-cooled heat dissipation and purification mechanism includes a second heat dissipation shell and a second spray pipe. The second heat dissipation shell is connected to the top of the primary water-cooled heat dissipation and purification mechanism, and the second spray pipe is installed in the inner cavity of the second heat dissipation shell and communicates with the singeing mechanism. This secondary water-cooled heat dissipation and purification mechanism performs secondary deep treatment on the exhaust gas after primary purification, further improving purification efficiency, ensuring that exhaust gas emissions meet standards, and achieving water-saving recycling by returning wastewater.

[0012] Preferably, the control mechanism includes a chassis, an ignition switch, a control box, and a gas supply structure. The gas supply structure and the ignition switch are both connected to the singeing mechanism, and the control box is connected to the gas supply structure. The ignition switch, the control box, and the gas supply structure are all mounted on the chassis. This control mechanism can control the gas supply, ignition, combustion ratio, and equipment coordination throughout the singeing process, ensuring stable and efficient combustion. It can also adjust the singeing intensity according to the material and thickness of the food, avoiding over-singing or under-singing.

[0013] Preferably, the gas supply structure includes an ignition valve, a main gas valve, a gas chamber, a secondary gas chamber, and a fan. The main gas chamber is connected to the singeing mechanism through the secondary gas chamber. Both the ignition valve and the main gas valve are installed in the secondary gas chamber. The fan is connected to the singeing mechanism. The main gas chamber is installed in the chassis. The secondary gas chamber is connected to the control box.

[0014] Preferably, the conveying mechanism includes a conveyor frame, a power motor, and a conveyor belt. The conveyor belt and the singeing mechanism are both mounted on the conveyor frame, and the power motor is connected to the conveyor belt.

[0015] This utility model has the following advantages and beneficial effects compared to the prior art:

[0016] This utility model discloses a singeing machine with uniform singeing and water-saving features. The singeing mechanism achieves uniform flame distribution, ensuring even burning of the fibers in all parts of the fabric, resulting in a more consistent singeing effect and significantly improving the fabric's appearance quality. The fire shield allows the singeing machine to operate continuously for extended periods, greatly improving work efficiency and reducing operating costs. The primary and secondary water-cooling purification mechanisms effectively recover heat from the exhaust gas, reusing it for purifying the exhaust gas and cooling the ash, and recycling hot water, reducing energy waste and lowering production costs, aligning with the trend of energy conservation and environmental protection. The control mechanism allows the singeing machine to flexibly adjust operating parameters according to the material and thickness of different fabrics, providing greater adaptability and meeting the singeing needs of various fabrics. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of a singeing machine with uniform singeing and water saving according to the present invention;

[0018] Figure 2 This is a cross-sectional view of a singeing machine with uniform singeing and water saving according to this utility model;

[0019] Figure 3 This is a schematic diagram of the singeing structure of a singeing machine with uniform singeing and water saving according to this utility model.

[0020] Figure 4 This is a schematic diagram of the primary water-cooled heat dissipation and purification mechanism of a singeing machine with uniform singeing and water saving according to this utility model.

[0021] Figure 5 This is a cross-sectional view of the primary water-cooled heat dissipation and purification mechanism of a singeing machine with uniform singeing and water saving according to this utility model.

[0022] Figure 6 This is a schematic diagram of a two-stage water-cooled heat dissipation and purification mechanism for a singeing machine that features uniform singeing and water saving, according to this utility model.

[0023] The components in the attached diagram are labeled as follows: 1-Control mechanism; 101-Chassis; 102-Ignition switch; 103-Control box; 1031-Fan switch; 104-Gas supply structure; 1041-Ignition valve; 1042-Main gas valve; 1043-Auxiliary gas chamber; 1044-Main gas chamber; 1045-Fan; 2-Conveying mechanism; 201-Conveyor frame; 202-Power motor; 203-Conveyor belt; 3-Singeing mechanism; 301-Fireproof outer shell; 302-Fireproof inner shell; 303-Smoke exhaust pipe; 304 - Singeing assembly; 3041-First singeing furnace head; 3042-Second singeing furnace head; 305-Water inlet; 306-Drain outlet; 4-First-stage water-cooled heat dissipation and purification mechanism; 401-Water outlet; 402-First spray pipe; 403-First flue; 404-First heat dissipation shell; 405-Water storage chamber; 406-First filter screen; 407-Second flue; 5-Second-stage water-cooled heat dissipation and purification mechanism; 501-Second heat dissipation shell; 502-Second spray pipe; 503-Second filter screen; 6-Water receiving tray. Detailed Implementation

[0024] The utility model objective of this utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. The embodiments cannot be described one by one here, but the implementation of this utility model is not limited to the following embodiments.

[0025] like Figure 1 and 2 As shown, a singeing machine with uniform singeing and water saving features includes a control mechanism 1, a conveying mechanism 2, a singeing mechanism 3, a primary water-cooled heat dissipation and purification mechanism 4, a secondary water-cooled heat dissipation and purification mechanism 5, and a water receiving tray 6. The control mechanism 1 is connected to the singeing mechanism 3, which is mounted on top of the conveying mechanism 2. The primary water-cooled heat dissipation and purification mechanism 4 is mounted on top of and communicates with the singeing mechanism 3. The secondary water-cooled heat dissipation and purification mechanism 5 is mounted on top of and communicates with the primary water-cooled heat dissipation and purification mechanism 4. The singeing mechanism 3 has a water inlet 305 and a water outlet 306.

[0026] Control mechanism 1 supplies gas to singeing mechanism 3, controls the mixing ratio of gas and air, and controls the ignition and extinguishing of singeing mechanism 3. Conveying mechanism 2 uses a conveyor belt (a track) to transport food scraps and fur into singeing mechanism 3. Singeing mechanism 3 singes off the food scraps and fur, absorbing heat from the combustion process through circulating water. Primary water-cooled heat dissipation and purification mechanism 4 uses water spray to absorb exhaust gas and heat. Secondary water-cooled heat dissipation and purification mechanism 5 uses water spray to absorb exhaust gas and heat a second time. Water collection tray 6 collects leaked circulating water from singeing mechanism 3.

[0027] like Figure 3As shown, the singeing mechanism 3 includes a fire shield, four exhaust pipes 303, and a set of singeing components 304. The singeing components 304 include nine first singeing heads 3041 and six second singeing heads 3042. The fire shield includes a fire-resistant inner shell 302 and a fire-resistant outer shell 301. The four exhaust pipes 303 are installed on and connected to the fire-resistant inner shell 302, and are arranged in a straight line with a certain distance between each pair of exhaust pipes 303. The nine first singeing heads 3041 are divided into three rows of three. The three rows of first singeing heads 3041 are distributed between the four exhaust pipes 303, that is, each row of first singeing heads 3041 is positioned between two adjacent exhaust pipes 303. The six second singeing heads 3042 are divided into two rows of three. The two rows of second singeing heads 3042 are positioned on both sides of the exhaust pipe 303 in that row. The first singeing burner head 3041 and the second singeing burner head 3042 have a certain angle, which is less than 90°, specifically 60° or 45°, to ensure that the skin and hair of the food are fully singed. The fireproof outer shell 301 and the fireproof inner shell 302 are connected to form a circulating water cavity. The fireproof outer shell 301 is provided with a water inlet 305 and a drain outlet 306. The water inlet 305 is connected to the external circulating water, and the drain outlet 306 is connected to the first spray pipe 401 of the primary water-cooled heat dissipation and purification mechanism 4 and the second spray pipe 502 of the secondary water-cooled heat dissipation and purification mechanism 5, respectively. Four exhaust pipes 303 penetrate the fireproof outer shell 301 and extend to the outside. The four exhaust pipes 303 are connected to the four first flues 403 of the primary water-cooled heat dissipation and purification mechanism 4, respectively. The nine first singeing burner heads 3041 and the six singeing burner heads are all connected to the main gas valve 1042 and the ignition switch 102 of the control mechanism 1.

[0028] The flame shield forms a closed combustion space, preventing flame overflow; the double-layered circulating water cavity absorbs combustion heat, reduces the outer shell temperature, and prevents overheating. The exhaust pipe 303 directs the exhaust gas generated during combustion to a primary water-cooled purification unit, ensuring orderly treatment of the exhaust gas and preventing accumulation in the combustion zone. The first singeing burner 3041 of the singeing assembly 304 vertically covers the surface of the food, while the second singeing burner 3042 is angled to cover the sides. This multi-angle arrangement ensures complete singeing of the food's skin and feathers (such as pigskin and poultry feathers), eliminating dead zones. The first and second singeing burners 3041 and 3042 are flame generators, which can be purchased on the market and are capable of producing a stable and uniform flame, mixing fuel gas and air. The water inlet 305 is used to input circulating water into the flame shield. The drain outlet 306 is used to discharge the water after heat absorption.

[0029] like Figure 1 , 2As shown in Figures 4 and 5, the primary water-cooled heat dissipation and purification mechanism 4 includes three first spray pipes 402, a first heat dissipation shell 404, two first filter screens 406, four first flues 403, two second flues 407, and a water storage chamber 405. The four first flues 403 are located at the bottom of the first heat dissipation shell 404 and are connected to the four exhaust pipes 303 of the singeing mechanism 3. The water storage chamber 405 surrounds the four exhaust pipes 303 and forms the bottom of the first heat dissipation shell 404. An outlet 401 is located on one side of the water storage chamber 405. The two first filter screens 406 are located outside the four first flues 403. The two second flues 407 are respectively located outside the two first filter screens 406. The two second flues 407 are connected to the second filter screens 503 of the secondary water-cooled heat dissipation and purification mechanism 5.

[0030] The first spray pipe 402 atomizes water and sprays it into the exhaust gas channel, increasing the water-air contact area and efficiently absorbing particulate matter and heat from the exhaust gas. The first filter screen 406 is used to intercept large carbonized particles in the exhaust gas, preventing blockage of subsequent pipes. The first flue 403 and the second flue 407 guide the exhaust gas to flow in stages. The first flue 403 is connected to the exhaust pipe 303, and the second flue 407 transports the preliminarily purified exhaust gas to the secondary water-cooled heat dissipation purification unit 5. The water storage chamber 405 is used to temporarily store the circulating water after spraying.

[0031] like Figure 1 , 2 As shown in Figure 6, the secondary water-cooled heat dissipation and purification mechanism 5 includes a second heat dissipation housing 501, three second spray pipes 502, and two second filter screens 503. The second heat dissipation housing 501 is connected to the top of the primary water-cooled heat dissipation and purification mechanism 4, and the second spray pipes 502 are installed in the inner cavity of the second heat dissipation housing 501. The two second filter screens 503 are installed at the bottom of the second heat dissipation housing 501. The two second flues 407 of the primary water-cooled heat dissipation and purification mechanism 4 are connected to the second heat dissipation housing 501 through the two second filter screens 503. The bottom of the second heat dissipation housing 501 is connected to the top of the first heat dissipation housing 404. The three second spray pipes 502 are installed longitudinally in the inner cavity of the second heat dissipation housing 501, and all three second spray pipes 502 are connected to the drain outlet 306 of the singeing mechanism 3.

[0032] The second heat dissipation housing 501 collects the secondary spray wastewater and returns it to the water storage chamber 405 of the primary water-cooled heat dissipation and purification mechanism 4 through the bottom pipe. The second spray pipe 502 sprays the primary treated exhaust gas with a secondary water mist to deeply remove residual pollutants and improve purification efficiency. The second filter screen 503 further filters fine impurities to ensure the cleanliness of the emitted gas.

[0033] like Figure 1As shown, the control mechanism 1 includes a chassis 101, fifteen ignition switches 102, a control box 103, and a gas supply structure 104. The gas supply structure 104 includes fifteen ignition valves 1041, fifteen main gas valves 1042, one main gas chamber 1044, three auxiliary gas chambers 1043, and fifteen fans 1045. The main gas chamber 1044 is installed on the left side of the chassis 101 and is connected to the three auxiliary gas chambers 1043. The fifteen ignition valves 1041 are installed on the three auxiliary gas chambers 1043, and the three auxiliary gas chambers 1043 are connected to nine first singeing furnace heads 3041 and six second singeing furnace heads 3042 through the fifteen main gas valves 1042. The fifteen ignition switches 102 are located on the chassis 101 and are connected to the nine first singeing furnace heads 3041 and six second singeing furnace heads 3042. The control box 103 is installed on the top of the housing 101, and fifteen fans 1045 are installed inside the housing 101. The control box 103 is equipped with fifteen fan switches 1031, which are connected to the fifteen fans 1045 respectively. The fifteen fans 1045 are connected to nine first singeing furnace heads 3041 and six second singeing furnace heads 3042 respectively.

[0034] The gas supply structure 104 is used to adjust the gas-air mixing ratio to ensure stable and efficient combustion. The ignition switch 102 and ignition valve 1041 are used to independently control the ignition / extinguishing of each burner head, adapting to the singeing intensity requirements of different foods. The blower 1045 provides combustion-supporting air to enhance flame intensity and simultaneously promotes directional exhaust gas emission. The control box 103 coordinates the gas supply and the start / stop of the blower 1045.

[0035] like Figure 1 As shown, the conveying mechanism 2 includes a conveyor frame 201, a power motor 202, and a conveyor belt 203. Both the conveyor belt 203 and the singeing mechanism 3 are mounted on the conveyor frame 201, and the power motor 202 is connected to the conveyor belt 203. The fire shield of the singeing mechanism 3 is mounted on the conveyor frame 201. The conveyor frame 201 supports the singeing mechanism 3, the primary water-cooled heat dissipation and purification mechanism 4, and the secondary water-cooled heat dissipation and purification mechanism 5, maintaining the overall stability of the equipment. The power motor 202 is a variable frequency speed-regulating motor, which drives the conveyor belt to move at a uniform speed, controlling the residence time of the food in the singeing zone to avoid over-singling or under-singling. The conveyor belt 203 is a crawler-type conveyor belt, used to smoothly transport the food skins through the singeing zone; its high-temperature resistant design ensures long-term operational reliability.

[0036] The working process of a singeing machine with uniform singeing and water saving is described as follows: Based on the material and thickness of the food scraps, the ratio of gas and air is adjusted using the control mechanism 1, thereby generating a stable flame in the first singeing burner 3041 and the second singeing burner 3042. The speed of the motor of the conveying mechanism 2 is also adjusted to maintain stable combustion of the food scraps during transport. Circulating water is continuously pumped into the flame shield through the inlet 305 by a water pump, continuously cooling the flame shield. After use, the circulating water is discharged from the drain 306 of the flame shield for storage and cooling. The food scraps are placed at the feed end of the conveying mechanism 2, which transports them to the singeing mechanism 3. The first singeing burner 3041 is positioned directly above the food scraps, and the second singeing burners 3042 are positioned on both sides of the food scraps, thus removing the fuzz from the food scraps from three angles. The defuzz-removed food scraps are discharged from the discharge end of the conveying mechanism 2. During the singeing process of the food ingredients, waste gas is generated and discharged upwards from the four exhaust pipes 303 of the singeing mechanism 3 into the first flue 403. The cooled circulating water passes through the three first spray pipes 402 of the first-stage water-cooled heat dissipation and purification mechanism 4, converting the water into water mist, thereby increasing the contact area between the waste gas and the water and improving the absorption rate of the waste gas. The water that absorbs the waste gas is temporarily stored in the water storage chamber 405. The remaining waste gas passes through the first filter screen 406 and is discharged from the second flue 407 into the second-stage water-cooled heat dissipation and purification mechanism 5. The cooled circulating water passes through the second spray pipe 502, converting the water into water mist again, absorbing the remaining waste gas and temporarily storing it in the second heat dissipation shell 501. The water in the second heat dissipation shell 501 flows from the second flue 407 into the water storage chamber 405 of the first-stage water-cooled heat dissipation and purification mechanism 4, thus achieving double absorption of the waste gas. Finally, the circulating water in the water storage chamber 405 is discharged from the outlet 401 under the action of gravity and stored in the recycling pool, and used to rinse the ash from the burnt food skins.

[0037] The above-described specific embodiments are preferred embodiments of this utility model and are not intended to limit this utility model. Any other changes or equivalent substitutions made without departing from the technical solution of this utility model are included within the protection scope of this utility model.

Claims

1. A singeing machine having uniform singeing and water saving, characterized by: It includes a control mechanism (1), a conveying mechanism (2), a singeing mechanism (3), a primary water-cooled heat dissipation and purification mechanism (4), a secondary water-cooled heat dissipation and purification mechanism (5), and a water receiving tray (6). The control mechanism (1) is connected to the singeing mechanism (3). The singeing mechanism (3) is installed on the top of the conveying mechanism (2). The water receiving tray (6) is installed on the bottom of the conveying mechanism (2). The singeing mechanism (3), the primary water-cooled heat dissipation and purification mechanism (4), and the secondary water-cooled heat dissipation and purification mechanism (5) are connected sequentially from bottom to top. The singeing mechanism (3) is connected to the primary water-cooled heat dissipation and purification mechanism (4) and the secondary water-cooled heat dissipation and purification mechanism (5) respectively.

2. A singeing machine with uniform singeing and water conservation as claimed in claim 1 wherein: The singeing mechanism (3) includes a fire shield, a smoke exhaust pipe (303), and a singeing assembly (304). The singeing assembly (304) is installed on the fire shield, which is installed on the conveying mechanism (2). The fire shield is connected to the primary water-cooled heat dissipation and purification mechanism (4) through the smoke exhaust pipe (303). The fire shield is connected to the primary water-cooled heat dissipation and purification mechanism (4) and the secondary water-cooled heat dissipation and purification mechanism (5) respectively. The singeing assembly (304) is connected to the control mechanism (1).

3. A singeing machine with uniform singeing and water conservation as claimed in claim 2 wherein: The singeing assembly (304) includes a first singeing burner (3041), which is disposed between two adjacent exhaust pipes (303) and is connected to the control mechanism (1).

4. A singeing machine with uniform singeing and water conservation as claimed in claim 3 wherein: The singeing assembly (304) further includes a second singeing burner (3042), which is disposed on both sides of the exhaust pipe (303). The first singeing burner (3041) and the second singeing burner (3042) have an angle between them, which is less than 90°. The second singeing burner (3042) is connected to the control mechanism (1).

5. The singeing machine with uniform singeing and water conservation as claimed in claim 2 wherein: The fire shield includes a fire shield outer shell (301) and a fire shield inner shell (302). Both the fire shield outer shell (301) and the fire shield inner shell (302) are installed on the conveying mechanism (2). The singeing assembly (304) is installed on the fire shield inner shell (302). The fire shield outer shell (301) is connected to the primary water-cooled heat dissipation and purification mechanism (4). The fire shield outer shell (301) is provided with a water inlet (305) and a drain outlet (306). The drain outlet (306) is connected to the primary water-cooled heat dissipation and purification mechanism (4) and the secondary water-cooled heat dissipation and purification mechanism (5) respectively. The fire shield inner shell (302) is connected to the primary water-cooled heat dissipation and purification mechanism (4) through the smoke exhaust pipe (303).

6. The singeing machine with uniform singeing and water conservation as claimed in claim 1 wherein: The primary water-cooled heat dissipation and purification mechanism (4) includes a first spray pipe (402), a first heat dissipation shell (404), and a water storage chamber (405). The first heat dissipation shell (404) is provided with a flue and a water storage chamber (405). The flue is connected to the singeing mechanism (3). The water storage chamber (405) is located outside the flue. The first spray pipe (402) is located above the flue and the water storage chamber (405). The first spray pipe (402) is connected to the singeing mechanism (3). The water storage chamber (405) is provided with a water outlet (401).

7. A singeing machine with uniform singeing and water conservation as claimed in claim 6 wherein: The secondary water-cooled heat dissipation and purification mechanism (5) includes a second heat dissipation shell (501) and a second spray pipe (502). The second heat dissipation shell (501) is connected to the top of the primary water-cooled heat dissipation and purification mechanism (4). The second spray pipe (502) is installed in the inner cavity of the second heat dissipation shell (501) and is connected to the singeing mechanism (3).

8. The singeing machine with uniform singeing and water conservation as claimed in claim 1 wherein: The control mechanism (1) includes a chassis (101), an ignition switch (102), a control box (103), and a gas supply structure (104). The gas supply structure (104) and the ignition switch (102) are both connected to the singeing mechanism (3). The control box (103) is connected to the gas supply structure (104). The ignition switch (102), the control box (103), and the gas supply structure (104) are all installed in the chassis (101).

9. The singeing machine with uniform singeing and water conservation as claimed in claim 8 wherein: The gas supply structure (104) includes an ignition valve (1041), a main gas valve (1042), a gas chamber, a secondary gas chamber (1043), and a fan (1045). The main gas chamber (1044) is connected to the singeing mechanism (3) through the secondary gas chamber (1043). The ignition valve (1041) and the main gas valve (1042) are both installed in the secondary gas chamber (1043). The fan (1045) is connected to the singeing mechanism (3). The main gas chamber (1044) is installed in the chassis (101). The secondary gas chamber (1043) is connected to the control box (103).

10. The singeing machine with uniform singeing and water conservation as claimed in claim 1 wherein: The conveying mechanism (2) includes a conveyor frame (201), a power motor (202) and a conveyor belt (203). The conveyor belt (203) and the singeing mechanism (3) are both installed on the conveyor frame (201), and the power motor (202) is connected to the conveyor belt (203).