Modular fuel gas stewing pot cooking bench hearth shell structure

The modular design of the gas stew pot stove furnace shell structure solves the problem of non-targeted maintenance of fireproof cement caused by the overall structure, realizes low-cost and efficient maintenance method, and extends the service life.

CN223470242UActive Publication Date: 2025-10-24BEIJING TIANFUHAO FOOD CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422636681.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-10-24
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

The furnace shell of the existing gas stew pot stove is an integral structure, which leads to the fireproof cement maintenance being not targeted, high maintenance cost and short service life.

Method used

It adopts a modular design, including a fixing ring and an alternately arranged first module and a second module. Each module is provided with a groove for arranging fireproof cement, which is connected by bolts and nuts to achieve modular disassembly and installation, and independent maintenance of the fireproof cement.

Benefits of technology

It improves the targeted maintenance of fireproof cement, reduces maintenance costs and extends service life.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223470242U_ABST
    Figure CN223470242U_ABST
Patent Text Reader

Abstract

The utility model relates to a modularized fuel gas stewing pot cooking bench hearth shell structure which is characterized in that side flanges are integrally manufactured on two sides of a hearth shell single body, a lower flange is integrally manufactured on one side, close to a hearth, of the lower end of the hearth shell single body, a hearth groove is formed by the side flanges, the lower flange and a hearth wall, and a fireproof cement layer is arranged in the hearth groove. The upper ends of the hearth shell single bodies vertically extend outwards to be integrally provided with upper flanges, and the hearth shell single body of the second module is provided with a smoke exhaust air duct opening. According to the utility model, the original integral hearth shell is subjected to modularization treatment, the arrangement groove for the fireproof cement is reserved in each module, and the fireproof cement arranged in each module is independent from each other due to the existence of the flanges, so that the fireproof cement does not adhere to each other; when the fireproof cement needs to be maintained, the single module installed on the fixing ring is detached, connection between the adjacent modules of the module is removed, the portion needing to be damaged is independently maintained, the maintenance pertinence is improved, the maintenance cost is reduced, and the service life is prolonged.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to food making kitchen utensil technical field relates to stewing pot especially relates to a modularization gas stewing pot stove hearth shell structure. BACKGROUND

[0002] The gas stewing pot is the common equipment of traditional marinated meat product famous enterprise, is used for stewing of chicken, duck, pig elbow, pig liver, beef and other meat products. The gas stewing pot is mainly composed of cast iron pot and stove table;The cast iron pot is deep mouth arc bottom, and the pot mouth diameter is 1.2~1.8 meters. The stove table is composed of support steel column, hearth shell, combustion fire plate, peripheral stainless steel fence, and gas inlet pipeline and control system.

[0003] As shown in Figure 1 The cast iron pot is embedded in the stove table, and the lower part is the hearth shell. The hearth shell is a two-layer structure: the outer layer is 2~3mm thick cast iron, which serves as a support for the inner lining layer;The inner lining layer is a certain thickness of refractory cement layer, which is used for heat preservation and heat dissipation. The cavity formed between the hearth shell and the cast iron pot is the hearth. The fire plate is located in the center of the hearth bottom opening, and the natural gas and air are ignited and burned at the fire plate;The high-temperature flame contacts the cast iron pot bottom through the hearth, and the heat is transferred to the cast iron pot, so as to carry out meat stewing processing. The rear side of the stove table hearth is a smoke exhaust duct connected with the factory negative pressure exhaust duct, which can actively exhaust the flue gas from the hearth.

[0004] The hearth shell of the gas stewing pot stove table is a whole structure, and after a certain period of use, the refractory cement arranged in the hearth will crack and other conditions, resulting in a decrease in heat insulation effect, which needs to be re-arranged for maintenance. Because the stove table shell is a whole welding and cannot be disassembled, when the refractory cement between the cast iron pot and the shell is maintained, the cast iron pot needs to be opened from the top of the stove table, the previously arranged refractory cement is removed, and then it is re-arranged from the top to the inside. Because the cast iron pot has large volume and weight, the refractory cement re-arrangement work is large and the procedure is complicated. At the same time, the refractory cement arranged in the whole structure of the hearth shell is a whole, and once a part of the refractory cement is broken, the whole needs to be maintained, resulting in no targeted maintenance of the refractory cement, high maintenance cost, short service life and other problems. UTILITY MODEL CONTENTS

[0005] The utility model aims at overcoming the defects of prior art and provides a modularization gas stewing pot stove hearth shell structure.

[0006] The utility model solves the technical problem by the following technical scheme:

[0007] The utility model relates to a modularization gas stewing pot cooking range hearth shell structure, including fixed ring and the first module and the second module of fixed installation in the alternation of fixed ring, the first module and the second module all include hearth shell monomer, both sides of hearth shell monomer are integrally made of wing edge, the lower end of hearth shell monomer is integrally made of lower wing edge close to hearth one side, the wing edge, lower wing edge and hearth wall form hearth recess, the fireproof cement layer is arranged in hearth recess, the upper end of hearth shell monomer is integrally made of upper wing edge and extends vertically outward, the second module's hearth shell monomer is provided with the smoke flue mouth.

[0008] And, the upper wing edge is evenly provided with three threaded through holes, the fixed ring is provided with fixed ring threaded holes corresponding to the threaded through holes, and the fixed ring is fixedly connected with the first module and the second module through fixed bolts threaded into the threaded through holes and the fixed ring threaded holes.

[0009] And, the upper end of the wing edge is provided with a wing edge threaded hole, and the first module and the second module are fixedly connected through connecting bolts and connecting nuts threaded into the wing edge threaded hole.

[0010] And, the wing edges of the first module and the second module are provided with sealing washers.

[0011] And, the arrangement depth of the fireproof cement layer is less than the hearth recess depth.

[0012] The utility model has the advantages and beneficial effects that:

[0013] The utility model discloses a modularization gas stewing pot cooking range hearth shell structure, through the modularization processing to the original whole type hearth shell, and reserving the arrangement recess of fireproof cement in each module, the fireproof cement arranged in each module is independent due to the existence of the wing edge, and does not adhere, when the fireproof cement needs to be maintained, the single module installed on the fixed ring is disassembled, and the connection between the adjacent modules is removed, the fireproof cement in each module is checked to find the part needing to be maintained, the part needing to be damaged is maintained individually, and the pot does not need to be disassembled, and all fireproof cements are rearranged, the use of the utility model can improve the pertinence of maintenance, reduce the maintenance cost and prolong the service life. ACCURACY

[0014] Figure 1 It is the structure schematic diagram of modularization gas stewing pot cooking range;

[0015] Figure 2 It is the structure schematic diagram of the utility model;

[0016] Figure 3 It is the structure schematic diagram of the first module of the utility model;

[0017] Figure 4 It is the structure schematic view of the second module of the utility model;

[0018] Figure 5 It is the installation schematic view of the first module on the fixed ring.

[0019] Mark explanation

[0020] 1. furnace shell monomer;2. side wing edge;3. upper wing edge;4. threaded through hole;5. smoke exhaust air duct mouth;6. furnace recess;7. lower wing edge;8. connecting nut;9. fixed bolt;10. connecting bolt;11. fixed ring;12. fixed ring threaded hole;13. side wing edge threaded hole;14. sealing washer. Specific implementation

[0021] The utility model will be further described in detail through specific embodiments below, the following embodiments are only descriptive, not limiting, and the protection scope of the utility model cannot be limited by this.

[0022] As Figures 2 to 5 The utility model discloses a modularization gas stewing pot cooking platform furnace shell structure, its innovation lies in: including fixed ring 11 and the first module and the second module of fixed installation in the fixed ring 11 of alternative setting, the furnace cylindrical inner wall diameter of fixed ring 11, the first module and the second module combination is 1225mm, and the depth is 260mm, the circular table inner wall generatrix length is 398mm, and the depth is 133mm, and the upper bottom diameter is 300mm, and the lower bottom diameter is 625mm.

[0023] Three in the embodiment, the second module is three, the first module and the second module all include furnace shell monomer 1, both sides of the furnace shell monomer 1 are integrally provided with side wing edge 2, and the length of the inside and outside of the side wing edge 2 wing edge is 50mm, and the thickness is 3mm, the lower end of the furnace shell monomer 1 is integrally provided with lower wing edge 7 close to one side of the furnace, and the length of the lower wing edge 7 is 90mm, and the length of the upper wing edge is 50mm, the side wing edge 2, the lower wing edge 7 and the furnace wall form the furnace recess 6, and the depth of the recess is 50mm, the furnace recess 6 is arranged with a fireproof cement layer, and the upper end of the furnace shell monomer 1 is integrally provided with upper wing edge 3 extending vertically outward, and the thickness of the upper wing edge 3 is 5mm, the furnace shell monomer 1 of the second module is provided with smoke exhaust air duct mouth 5, and the opening height is 180mm in the embodiment, and the length is 1000mm.

[0024] Three threaded through holes 4 are evenly arranged on the upper wing edge 3, the fixed ring threaded hole 12 is arranged on the fixed ring 11 corresponding to the threaded through hole 4, and the fixed ring 11 is fixedly connected with the first module and the second module through the fixed bolt 9 inserted into the threaded through hole 4 and the fixed ring threaded hole 12.

[0025] The upper end of the side flange 2 is provided with a side flange threaded hole 13 with a hole diameter of 5 mm, and the first module and the second module are fixedly connected by connecting bolts 10 and connecting nuts 8 inserted into the side flange threaded hole 13.

[0026] A sealing washer 14 is arranged between the side flanges 2 of the first module and the second module, and the washer should be placed first and then the connection between the modules is fastened to ensure the sealing property when disassembling.

[0027] The arrangement depth of the fireproof cement layer is less than the depth of the hearth groove 6, so that the adhesion of the fireproof cement between adjacent modules due to the overflow of the fireproof cement is avoided, and the fireproof cement of the adjacent modules is not damaged when disassembling.

[0028] When the first module, the second module and the fixing ring are connected, the fixing ring should be installed on the cooking bench frame first, the threaded holes of each module should be matched, the module and the fixing ring are preferentially installed, and finally the connecting member between the modules is installed. When disassembling, the connecting member between the modules should be disassembled first, and then the bolts between the fixing ring and the module are disassembled.

[0029] Although the embodiments and the drawings of the utility model are disclosed for the purpose of illustration, those skilled in the art can understand that various substitutions, changes and modifications are possible without departing from the spirit and scope of the utility model and the appended claims, therefore, the scope of the utility model is not limited to the contents disclosed in the embodiments and the drawings.

Claims

1. A modular gas simmer plate hearth enclosure structure, characterized by: The application relates to a fixed ring (11) and first and second modules alternately arranged and fixedly installed on the fixed ring (11), wherein the first and second modules each comprise a furnace shell unit (1), the two sides of the furnace shell unit (1) are integrally provided with side flanges (2), the lower end of the furnace shell unit (1) is integrally provided with a lower flange (7) close to one side of a furnace, the side flanges (2), the lower flange (7) and a furnace wall form a furnace recess (6), a fireproof cement layer is arranged in the furnace recess (6), the upper end of the furnace shell unit (1) is integrally provided with an upper flange (3) extending vertically outward, and the furnace shell unit (1) of the second module is provided with a smoke exhaust air duct opening (5).

2. The modular gas simmer plate hearth enclosure structure of claim 1, wherein: Three threaded through holes (4) are uniformly arranged on the upper flange (3), the fixed ring (11) is provided with fixed ring threaded holes (12) corresponding to the threaded through holes (4), and the fixed ring (11) is fixedly connected with the first and second modules through fixed bolts (9) penetrating into the threaded through holes (4) and the fixed ring threaded holes (12).

3. The modular gas simmer plate hearth enclosure structure of claim 1, wherein: The upper end of the side flange (2) is provided with a side flange threaded hole (13), and the first and second modules are fixedly connected through connecting bolts (10) and connecting nuts (8) penetrating into the side flange threaded hole (13).

4. The modular gas simmer plate hearth enclosure structure of claim 1, wherein: Sealing washers (14) are arranged between the side flanges (2) of the first and second modules.

5. The modular gas simmering cooktop hearth enclosure structure according to claim 1, wherein: The arrangement depth of the fireproof cement layer is smaller than the depth of the furnace recess (6).