Incinerator with peripheral cooling

CN224706910UActive Publication Date: 2026-09-01DESICCANT TECH CORP +1
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Patent Information

Application Number
CN202521903227.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2025-07-21
Filing Date
2025-09-04
Publication Date
2026-09-01
Estimated Expiration
2035-09-04

AI Technical Summary

Technical Problem

[0004]然而,该焚烧炉装置装设有一燃烧器(burner),而该燃烧器(burner)的周遭的温度很高可达93摄氏度以上,由于该燃烧器(burner)外露于该焚烧炉装置的外边,因此,容易造成操作人员或现场人员不小心碰触到该燃烧器(burner),而造成高温烫伤等安全问题

Benefits of technology

[0009] To further understand the features, characteristics, and technical contents of this utility model, please refer to the following detailed description and accompanying drawings. The accompanying drawings are for reference and illustration only and are not intended to limit this utility model.

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Abstract

This utility model provides an incinerator device with peripheral cooling. The incinerator device mainly includes a combination design of a box body, a furnace head, a cover body, a gas outlet pipe and a gas inlet pipe. The cover body has a cover surface, and the cover surface is bent to form a first side and a second side. The first side of the cover surface abuts against the furnace head, and the second side of the cover surface abuts against the box body. The gas inlet pipe and the gas outlet pipe are respectively inserted through the second side of the cover surface, and gas can be introduced through the gas inlet pipe to fill the cover body, so that the temperature around the furnace head can be reduced, which can prevent high temperature burns and protect operators or on-site personnel.
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Description

Technical Field

[0001] This utility model relates to the technical field of incinerator devices with peripheral cooling, and more particularly to an incinerator device or similar equipment that can reduce the temperature around the burner head, thereby preventing high-temperature burns and protecting operators or on-site personnel. It is applicable to the semiconductor industry, optoelectronic industry or chemical-related industries. Background Technology

[0002] Currently, volatile organic compounds (VOCs) are generated during the manufacturing processes of the semiconductor and optoelectronic industries. These VOCs and other compounds are one of the important causes of photochemical smog and human respiratory diseases.

[0003] Currently, the industry practice for treating volatile organic compounds (VOCs) mostly involves using a rotary adsorption and desorption process before the concentrated and desorbed gas is sent to an incinerator for high-temperature decomposition. Therefore, VOCs treatment equipment is installed in various factories to prevent direct release of VOCs into the air and causing air pollution. Currently, the concentrated gas desorbed by this treatment equipment is mostly sent to the incinerator for combustion, and the resulting gas is then sent to a chimney for emission.

[0004] However, the incinerator is equipped with a burner, and the temperature around the burner can be as high as 93 degrees Celsius or more. Since the burner is exposed outside the incinerator, it is easy for operators or on-site personnel to accidentally touch the burner, resulting in safety problems such as burns from high temperatures.

[0005] Therefore, in view of the above-mentioned deficiencies, the applicant hopes to propose an incinerator device with peripheral cooling that can prevent high-temperature burns and is easy for users to operate and assemble. Thus, the applicant has devoted itself to research, design and assembly to provide convenience for users, which is the creative motivation for the applicant's research and development. Utility Model Content

[0006] The main objective of this invention is to provide an incinerator device with peripheral cooling. The incinerator device comprises a housing, a burner head, a cover, an outlet pipe, and an inlet pipe. The cover has a surface that is bent to form a first side and a second side. The first side of the cover abuts against the burner head, and the second side abuts against the housing. The inlet pipe and the outlet pipe pass through the second side of the cover, allowing gas to be introduced through the inlet pipe to fill the cover, thereby lowering the temperature around the burner head. This prevents burns and protects operators and on-site personnel, thus increasing the overall practicality.

[0007] Another objective of this invention is to provide an incinerator device with peripheral cooling. An inlet pipe and an outlet pipe are respectively installed through the second side of the cover. The inlet pipe is connected to a gas cylinder or a gas tank, which stores a gas, which is any one of compressed dry air (CDA), condensate, or a special gas. Furthermore, the inlet pipe is equipped with a valve to control the gas flow rate, and the outlet pipe has an outlet with a valve to control the gas flow rate. This allows the gas to enter the cover through the inlet pipe and exit through the outlet, creating a circulating flow within the cover. This allows the heat-carrying gas to be discharged outside the cover through the outlet, thereby increasing overall usability.

[0008] Another objective of this utility model is to provide an incinerator device with peripheral cooling, wherein the cover is divided into a first half-cover and a second half-cover, and the first half-cover is combined with a first piece and a second piece, each of which has a hole. Similarly, the second half-cover is combined with a first piece and a second piece, each of which has a hole. The first and second pieces of the first and second half-covers are respectively L-shaped. When the first half-cover and the second half-cover are combined, the first piece of the first half-cover can be attached to the first piece of the second half-cover, and a screw is passed through the holes of the first and second pieces of the first half-cover to complete the combination of the first and second half-covers into the cover. The cover can be divided into a first half-cover and a second half-cover, which facilitates construction at the stove head and makes assembly convenient, thereby increasing the overall convenience.

[0009] To further understand the features, characteristics, and technical contents of this utility model, please refer to the following detailed description and accompanying drawings. The accompanying drawings are for reference and illustration only and are not intended to limit this utility model. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the structure of the cover of this utility model;

[0011] Figure 2 This is a schematic diagram of the cover of this utility model installed at the stove head;

[0012] Figure 3 This is another structural schematic diagram of the cover body of this utility model;

[0013] Figure 4 This is an exploded view of another structure of the cover of this utility model;

[0014] Figure 5 This is a schematic diagram of another structure of the cover of this utility model installed at the stove head;

[0015] Figure 6 This is a schematic diagram showing the first possible position of the air outlet pipe and air inlet pipe of this utility model.

[0016] Figure 7 This is a schematic diagram showing the second possible position of the air outlet and air inlet pipes of this utility model.

[0017] The annotations in the attached figures are explained as follows:

[0018] 1-Incinerator apparatus;

[0019] 10-Box;

[0020] 20-Stove head;

[0021] 21-Gas fuel pipe;

[0022] 22-Combustion-supporting gas pipe;

[0023] 30-Cap;

[0024] 31-Cover;

[0025] 32 - First side;

[0026] 33 - Second side;

[0027] 40 - Exhaust pipe;

[0028] 41 - Air outlet;

[0029] 50 - Inhalation tube;

[0030] 51-Gas Cylinder;

[0031] 52-Air valve;

[0032] 60 - First half-cover body;

[0033] 61-First piece;

[0034] 611 - Hole;

[0035] 62-Second piece;

[0036] 621 - Hole;

[0037] 63-First cover;

[0038] 64 - First side;

[0039] 65 - Second side;

[0040] 70 - Second half-cap;

[0041] 71-First piece;

[0042] 711 - Hole;

[0043] 72-Second piece;

[0044] 721 - Hole;

[0045] 73-Second cover;

[0046] 74 - First side;

[0047] 75 - Second side;

[0048] 80-Screw. Detailed Implementation

[0049] Please see Figures 1-7 The above is a schematic diagram of an embodiment of the present utility model. The preferred implementation of the incinerator device with peripheral cooling provided by the present utility model is an incinerator device or similar equipment used in the semiconductor industry, optoelectronic industry or chemical-related industry. The main purpose is to reduce the temperature around the furnace head, so as to prevent high temperature burns and protect the operators or on-site personnel.

[0050] The incinerator device with peripheral cooling provided by this utility model mainly refers to the incinerator device 1, which includes a combination design of a housing 10, a furnace head 20, a cover 30, an exhaust pipe 40, and an inlet pipe 50 (e.g., Figure 1 and Figure 2 As shown), the incinerator device 1 can be any one of a direct-fired incinerator (TO), a catalytic incinerator, or a regenerative thermal oxidizer (RTO). The incinerator device 1 has a housing 10, which is the combustion chamber, and the burner head 20 is mounted on the housing 10. Furthermore, the burner head 20 is connected to a gas fuel pipe 21 and a combustion-supporting gas pipe 22 (e.g., Figure 2As shown), the gas fuel pipe 21 delivers a gaseous fuel, which is either natural gas or coal gas, and the combustion-supporting gas pipe 22 delivers a combustion-supporting gas, which is either air or oxygen, so that the gaseous fuel and the combustion-supporting gas can be delivered to the burner head 20 for use. In addition, when the burner head 20 is in operation, the temperature of the burner head 20 can reach about 93 degrees Celsius.

[0051] Furthermore, the cover 30 is designed to fit the burner head 20, and when the burner head 20 is circular (e.g.) Figure 1 and Figure 2 As shown in the figure), the cover 30 is also circular, and when the burner head 20 is square, the cover 30 is also square. However, the cover 30 and the burner head 20 are not limited to the shapes described in this specification and the accompanying drawings, and may also be other shapes. The cover 30 has a cover surface 31, which is bent to form a first side 32 and a second side 33 (as shown in the figure). Figure 1 As shown), the cover 30 is made of metal, such as iron, stainless steel, nickel, aluminum, aluminum alloy, chromium, galvanized steel, or a combination thereof. Furthermore, the length of the first side 31 of the cover 31 is less than the length of the second side 32, and the first side 31 of the cover 31 abuts against the burner head 20 (as shown). Figure 2 As shown), the burner head 20 is positioned inside the cover 30. In addition, the second side 33 of the cover 31 abuts against the housing 10, and the first side 32 of the cover 31 abuts against the burner head 20, while the second side 33 of the cover 31 abuts against the housing 10, so that the cover 30 can form an accommodating space.

[0052] Furthermore, the air outlet pipe 40 and the air inlet pipe 50 (e.g., the second side 33 of the cover 31) pass through the cover 31. Figure 1 and Figure 2 As shown), the outlet pipe 40 and the inlet pipe 50 correspond to each other. That is, when the inlet pipe 50 is located below the second side 33 of the cover 31, the outlet pipe 40 is located above the second side 33 of the cover 31 to facilitate flow. The inlet pipe 50 is connected to a gas cylinder 51 (e.g., Figure 2The gas cylinder 51 (shown in the figure) or the gas tank (not shown) is connected to a gas tank, wherein the gas cylinder 51 or the gas tank stores a gas, and the gas is any one of compressed dry air (CDA), condensed gas or special gas. The compressed dry air (CDA) is taken from the atmosphere, compressed by an air compressor, and then dehumidified by refrigeration or chemical dehumidification, and then filtered or activated carbon adsorbed to remove dust and hydrocarbons. In addition, the condensed gas is cold air or gas from a cooler, and the special gas can be a gas such as nitrogen. In addition, the air inlet pipe 50 is provided with an air valve 52 to control the air volume of the air inlet pipe 50, and the air outlet pipe 40 is provided with an air outlet 41. The air outlet 41 of the air outlet pipe 40 has an air valve (not shown) to control the air volume of the air outlet 41, so that the gas can enter the cover 30 through the air inlet pipe 50 and blow over the burner 20 located next to the first side 32 of the cover 31, so that the temperature of the burner 20 drops slightly. The blown gas carries the heat energy generated by the burner 20 and is discharged through the air outlet 41, so that the gas in the cover 30 can form a flowing state, so that the gas with heat energy can be discharged outside the cover 30 through the air outlet 41.

[0053] In addition, another embodiment of this utility model is that the cover 30 is divided into a first half-cover 60 and a second half-cover 70 (e.g. Figures 3 to 7 As shown), the first half-cover 60 is combined with a first piece 61 and a second piece 62, and the first piece 61 and the second piece 62 are respectively provided with a hole 611 and a hole 621 (as shown). Figure 3 and Figure 4 As shown), the second half-cover 70 is combined with a first piece 71 and a second piece 72, and the first piece 71 and the second piece 72 are respectively provided with a hole 711 and a hole 721 (as shown). Figure 3 and Figure 4 As shown in the figure, the first half-cover 60 and the second half-cover 70 have L-shaped first pieces 61, first pieces 71 and second pieces 62 and second pieces 72 respectively. The first pieces 61 and second pieces 62 are joined to the first half-cover 60 by welding, bonding or screwing. The first pieces 71 and second pieces 72 are joined to the second half-cover 70 by welding, bonding or screwing, but not limited to the specification and drawings, other joining methods are also possible.

[0054] When the first half-cover 60 and the second half-cover 70 are combined, the first piece 61 of the first half-cover 60 can be attached to the first piece 71 of the second half-cover 70, and a screw 80 passes through the hole 611 of the first piece 61 of the first half-cover 60 and the hole 711 of the first piece 71 of the second half-cover 70 (e.g., Figures 3 to 5As shown), the first half cover 60 and the second half cover 70 can be combined to form the cover 30, and the cover 30 can be divided into a first half cover 60 and a second half cover 70, so as to facilitate construction at the burner head 20 and make it easy to assemble.

[0055] Furthermore, the first half-cover 60 has a first cover surface 63, which is bent to form a first side 64 and a second side 65 (e.g., Figure 3 and Figure 4 As shown), the length of the first side 64 of the first cover 63 is less than the length of the second side 65, and the second half-cover 70 has a second cover 73, which is bent to form a first side 74 and a second side 75 (as shown). Figure 3 and Figure 4 As shown), the length of the first side 74 of the second cover 73 is less than the length of the second side 75, and the first side 64 of the first cover 63 and the first side 74 of the second cover 73 abut against the burner head 20 (as shown). Figure 5 As shown), a portion of the burner head 20 is located within the first cover 63 and the second cover 73. Furthermore, the second side 65 of the first cover 63 and the second side 75 of the second cover 73 abut against the housing 10, and a receiving space is formed by combining the first half cover 60 and the second half cover 70.

[0056] Furthermore, the second side 65 of the first cover 63 and the second side 75 of the second cover 73 are respectively provided with the air outlet pipe 40 and the air inlet pipe 50 (e.g. Figures 3 to 5 As shown), the air outlet pipe 40 and the air inlet pipe 50 are corresponding; that is, when the air inlet pipe 50 is located below the second side 75 of the second cover 73, the air outlet pipe 40 is located above the second side 65 of the first cover 63 (as shown). Figure 6 (As shown), or when the air inlet pipe 50 is located above the second side 65 of the first cover 63, the air outlet pipe 40 is located below the second side 75 of the second cover 73 (as shown). Figure 7 (as shown), to facilitate the formation of a flow state.

[0057] The air inlet tube 50 and a gas cylinder 51 (such as...) Figure 5(as shown) or a gas tank (not shown) is connected, wherein the gas cylinder 51 or the gas tank stores a gas, and the gas is any one of compressed dry air (CDA), condensed gas or special gas. The compressed dry air (CDA) is taken from the atmosphere, compressed by an air compressor, and then dehumidified by refrigeration or chemical dehumidification, and then filtered or activated carbon adsorbed to remove dust and hydrocarbons. In addition, the condensed gas is cold air or gas from a cooler, and the special gas can be a gas such as nitrogen. In addition, the air inlet pipe 50 is provided with an air valve 52 to control the air volume of the air inlet pipe 50, and the air outlet pipe 40 is provided with an air outlet 41. The air outlet 41 of the air outlet pipe 40 has an air valve (not shown) to control the air volume of the air outlet 41, so that the gas can enter the first half cover 60 and the second half cover 70 through the air inlet pipe 50, and blow over the burner 20 located next to the first side 64 of the first cover surface 63 and the first side 74 of the second cover surface 73, so that the temperature of the burner 20 drops slightly. The blown gas carries the heat energy generated by the burner 20, and is discharged through the air outlet 41, so that the gas in the first half cover 60 and the second half cover 70 can form a flow state, so that the gas with heat energy can be discharged to the outside of the first half cover 60 and the second half cover 70 through the air outlet 41.

[0058] Therefore, the main feature of this utility model is that the incinerator device 1 includes a combination design of a housing 10, a furnace head 20, a cover 30, an exhaust pipe 40, and an inlet pipe 50 (e.g., Figure 1 and Figure 2 As shown, the cover 30 has a cover surface 31, which is bent to form a first side 32 and a second side 33. The first side 32 of the cover surface 31 abuts against the burner head 20, and the second side 33 of the cover surface 31 abuts against the housing 10. The second side 33 of the cover surface 31 is respectively provided with the air inlet pipe 50 and the air outlet pipe 40, and gas can be introduced through the air inlet pipe 50 to fill the cover 30, so that the temperature around the burner head 20 can be reduced, thus preventing high temperature burns and protecting the operator or on-site personnel, thereby increasing the overall practicality.

[0059] The above detailed description enables those skilled in the art to understand that the present invention can indeed achieve the aforementioned objectives.

[0060] The above description is merely a preferred embodiment of the present utility model and should not be construed as limiting the scope of the present utility model. Therefore, any simple equivalent changes and modifications made in accordance with the claims and description of the present utility model should still fall within the scope of the claims of the present utility model.

Claims

1. A combustion furnace device with peripheral cooling, characterized in that, The incinerator assembly includes: One box; One furnace head, the furnace head assembly is installed on the box body; A cover body having a cover surface that is bent to form a first side and a second side, the first side of the cover surface abutting against the burner head and the second side of the cover surface abutting against the housing body; A vent pipe, which passes through the second side of the cover; and An air inlet tube is inserted through the second side of the cover.

2. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The air inlet pipe is further equipped with an air valve to control the air volume of the air inlet pipe.

3. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The air inlet tube is then connected to a gas cylinder.

4. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The air inlet pipe is further connected to an air tank.

5. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The vent pipe is further provided with an vent.

6. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The cover is further divided into a first half-cover and a second half-cover.

7. The incinerator apparatus with peripheral cooling according to claim 6, characterized in that, The first half-cover is further combined with a first piece and a second piece, the first piece having a hole and the second piece having a hole.

8. The incinerator apparatus with peripheral cooling according to claim 6, characterized in that, The second half-cover is further combined with a first piece and a second piece, the first piece having a hole and the second piece having a hole.

9. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The length of the first side of the cover is further less than the length of the second side.

10. The incinerator apparatus with peripheral cooling according to claim 1, characterized in that, The cover is further made of metal.