Copper hot pot device
By using a cold-pressing integrated molding process to manufacture copper hot pot devices, the problems of cumbersome manufacturing and health hazards associated with existing copper hot pot devices have been solved, achieving efficient production and safe use.
Patent Information
- Application Number
- CN202422674027.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-11-04
AI Technical Summary
The existing copper hot pot equipment has a complicated manufacturing process, is difficult to operate, has low production efficiency, and the lead material used in the welding process poses health hazards and affects the food safety of users.
The pot body, base, and lid are formed into one piece using a cold pressing process, avoiding welding, improving structural strength and processing efficiency, ensuring no solder buildup, and eliminating heavy metal hazards.
It simplifies the processing, improves production efficiency and food safety, reduces labor intensity, ensures the structural stability of cookware and user health, and avoids the health hazards of heavy metals such as lead in solder.
Smart Images

Figure CN223799620U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food material cooking and supporting container technical field, especially a copper chafing dish device. BACKGROUND
[0002] As a cooking utensil for boiling, the copper chafing dish is widely used in the current catering industry, and accordingly, the production and processing mode and the structure and performance of the copper chafing dish have an important influence on its daily use.
[0003] The device manufacturing process of the copper chafing dish belongs to a traditional process with a long history and mature manufacturing technology. Specifically, the device assembly of the existing copper chafing dish generally includes a pot body and some accessories. Generally, the production and manufacturing process of the existing copper chafing dish device is to separately spin-form the pot body and part of the accessories, and then assemble and weld the pot body and the corresponding accessories. Accordingly, the common welding methods for implementing the above-mentioned accessory welding assembly include copper welding, tin welding or silver welding, etc. Such welding processes are collectively referred to as brazing. This brazing process requires the use of lead material as a soldering aid for welding assembly. These lead materials exist in the welds of the assembled copper chafing dish, causing some lead elements to be precipitated during the subsequent normal use of the copper pot, which is very harmful to the human body and seriously affects the food safety of the user when using the copper chafing dish for boiling and cooking.
[0004] In addition, the existing copper chafing dish manufacturing process is complicated and difficult to operate. Most of the component parts are separately processed by hand beating and other methods, and then the overall product of the copper chafing dish device is obtained by welding and assembling the parts. The whole process is time-consuming and laborious, and the production efficiency is low.
[0005] Therefore, how to optimize the manufacturing method and component structure of the copper chafing dish device to make it more simple and efficient, and improve the food safety of the user when using the copper chafing dish device is an important technical problem to be solved by those skilled in the art. UTILITY MODEL CONTENT
[0006] The utility model aims to provide a copper chafing dish device, which is simple and efficient to process and use, and can effectively improve the food safety of the user when cooking.
[0007] To solve the above technical problems, the utility model provides a copper chafing dish device, which comprises a bottom support, a pot body arranged above the bottom support, and a pot cover detachably arranged on the pot body. The pot body comprises a pot body, a smoke exhaust pipe, and a main handle located on the outer wall of the pot body. The smoke exhaust pipe is protrudingly arranged at the middle part of the pot body from bottom to top. The outer wall of the smoke exhaust pipe and the inner wall of the pot body are gap-fitted to form a pot cavity capable of accommodating food materials. The pot body is a cold-pressed integral forming part.
[0008] The bottom support comprises a tray and a support protruding from the middle of the top surface of the tray, the inside of the support has a heating cavity capable of containing fuel, the pot body is overlapped on the top of the support, and the bottom support is a cold-pressed integrated part;
[0009] The pot cover comprises a cover plate capable of being buckled on the pot cavity and a secondary handle on the outer wall of the cover plate, the middle of the pot cover has a avoiding hole for the smoke exhaust pipe to pass through, and the pot cover is a cold-pressed integrated part.
[0010] Preferably, the pot body further comprises at least two integrated baffles in the pot cavity, the baffles extend along the radial direction of the pot body, and the bottom and side edges of the baffles are in close contact with the inner wall of the pot cavity.
[0011] Preferably, the bottom surface of the tray is protruded with a heat dissipation support, the heat dissipation support extends along the circumferential direction of the tray and is connected end to end.
[0012] Preferably, the heat dissipation support is located at the outer edge of the bottom surface of the tray, the middle of the bottom surface of the tray is protruded with an inner support, and the inner support and the heat dissipation support are gap-fitted along the radial direction of the tray.
[0013] Preferably, the outer wall of the support and the inner wall of the tray are circumferentially enclosed to form a cooling groove capable of containing cooling water.
[0014] Preferably, the bottom surface of the pot body is protruded with a limiting boss, and the middle of the top end of the support has a positioning groove for the limiting boss to be inserted and positioned.
[0015] Preferably, the top end of the positioning groove has a chamfered portion with a smooth transition, and the chamfered portion is fitted with the outer wall of the limiting boss.
[0016] Preferably, the inner cavity of the smoke exhaust pipe is provided with a wind deflector, and the outer edge of the wind deflector is gap-fitted with the inner wall of the smoke exhaust pipe.
[0017] Preferably, the inner wall of the smoke exhaust pipe is protruded with at least two support bosses, the vertical height of each support boss is consistent and equally distributed along the circumferential direction of the smoke exhaust pipe, and the wind deflector is fixedly connected to the top of each support boss by bolts.
[0018] Preferably, the smoke exhaust pipe comprises a heating section, a transition section and a smoke exhaust section arranged in sequence from bottom to top and sequentially connected, the inner diameter of the heating section is greater than that of the transition section, the inner diameter of the transition section is greater than that of the smoke exhaust section, the bottom port of the heating section is connected with the heating cavity, the smoke exhaust port of the smoke exhaust pipe is located at the top end of the smoke exhaust section, and the support boss is located at the joint of the heating section and the transition section.
[0019] In view of the prior art, the copper hot pot device provided by the utility model has the advantages that during operation and use, the pot body is integrally formed by cold pressing process, so that there is no welding seam or splicing part on the pot body, the structural strength and working condition resistance of the pot body are effectively improved, and there is no solder accumulation position on the pot body due to no welding assembly, so that the health hazards of heavy metals such as lead in the solder to the user of the pot are effectively avoided, the safety of the copper hot pot device during cooking operations such as boiling is effectively improved, and the food safety of the user is correspondingly improved. In addition, the cold pressing integral forming process significantly improves the processing efficiency of the pot body, and the production personnel do not need to process and polish the pot body and the main handle and other matching components of the pot body one by one, so that the forming process of the pot body is effectively simplified, the production and processing efficiency is improved, and the processing difficulty and the labor intensity of the production personnel are reduced. Correspondingly, the bottom support and the pot cover integrally formed by the cold pressing process also have an integrated structure, which not only effectively improves the overall processing and forming efficiency of the bottom support and the pot cover, reduces the production and processing difficulty, but also correspondingly reduces the labor intensity of the relevant production personnel, effectively improves the overall component structural strength and working condition resistance of the bottom support, and makes the supporting effect of the bottom support on the pot body better, so that the operation and use safety and the overall structural stability of the copper hot pot device are correspondingly improved. The integrated structure also makes the pot cover main body structure have no welding seam, so that the health hazards of heavy metals such as lead in the solder of the pot cover structure of the prior art to the user during operation and use are eliminated, so that the operation and use of the copper hot pot device are safer, and the food safety of the user is further ensured.
[0020] In another preferred embodiment of the utility model, the pot body further comprises at least two baffles integrally formed in the pot cavity, the baffles extend along the radial direction of the pot body, and the bottom and side edges of the baffles are in close contact with the inner wall of the pot cavity. During production and processing of the pot body, the baffles are integrally formed with the pot body and the main handle and other matching structural components of the pot body, and the structure of the connection between the baffles and the pot body is ensured to be tight, so as to avoid gaps or other structural dead angles between the edges of the baffles and the inner wall of the pot cavity, so that harmful microorganisms such as aspergillus flavus cannot breed due to food residues in the gaps between the baffles and the pot cavity during use of the pot, and the operation and use of the copper hot pot device are further improved to be cleaner and more hygienic, and the user can use the copper hot pot device to cook more safely and healthily. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description, and obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0022] Figure 1 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure.
[0023] Figure 2 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure. Figure 1 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure.
[0024] Figure 3 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure. Figure 2 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure.
[0025] Figure 4 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure. Figure 1 The assembly structure front view of the copper hot pot device provided in the specific embodiment of the present application is shown in the figure.
[0026] Among them:
[0027] 11-base support; 111-tray; 112-stand; 113-heating cavity; 114-heat dissipation support; 115-cooling groove; 116-inner support; 117-positioning groove; 118-chamfered part;
[0028] 12-pot body; 121-pot body; 122-exhaust pipe; 1221-heating section; 1222-transition section; 1223-exhaust section; 123-main handle; 124-pot chamber; 125- partition plate; 126-limiting boss; 127-supporting boss; 128-exhaust port;
[0029] 13-pot cover; 131-cover plate; 132-secondary handle; 133-avoidance hole;
[0030] 14-suspension ring. DETAILED DESCRIPTION
[0031] The core of the present application is to provide a copper hot pot device, which is relatively simple and efficient to process and form, and can effectively improve the food safety of users when using the copper hot pot device for cooking.
[0032] In order to make the person skilled in the art better understand the present application, the present application will be further described in detail below in combination with the drawings and specific embodiments.
[0033] It needs to be explained in advance that in the utility model, unless there is a clear provision and limitation, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood broadly, for example, it can be fixed connection, or it can be detachable connection, or it can be integrally connected, it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0034] In addition, in the utility model, unless there is a clear provision and limitation, the first feature "on" or "below" the second feature can include that the first and second features are in direct contact, or can include that the first and second features are not in direct contact but are in contact through another feature between them.
[0035] In addition, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature. The orientation or positional relationship indicated by the terms "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like is based on the orientation or positional relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and is not indicative or implied that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, therefore it cannot be understood as a limitation on the utility model.
[0036] Please refer to Figures 1 to 4 .
[0037] In the specific embodiment, the copper hot pot device provided by the utility model, including the bottom support 11, the pot body 12 arranged above the bottom support 11 and the pot cover 13 disassembled and arranged on the pot body 12, the pot body 12 includes the pot body 121, the smoke exhaust pipe 122 and the main handle 123 located on the outer wall of the pot body 121, the smoke exhaust pipe 122 is protrudingly arranged in the middle of the pot body 12 from bottom to top, the outer wall of the smoke exhaust pipe 122 and the inner wall of the pot body 12 are gap matched to form the pot cavity 124 capable of accommodating food materials, and the pot body 12 is a cold-pressed integral forming part.
[0038] The bottom support 11 includes the tray 111 and the support 112 protrudingly arranged in the middle of the top surface of the tray 111 from bottom to top, the inside of the support 112 has the heating cavity 113 capable of accommodating fuel, the pot body 12 is overlapped on the top of the support 112, and the bottom support 11 is a cold-pressed integral forming part.
[0039] In addition, the pot cover 13 comprises a cover plate 131 capable of being buckled to the pot cavity 124 in position and a secondary handle 132 located on the outer wall of the cover plate 131, the middle part of the pot cover 13 has a avoiding hole 133 for the smoke pipe 122 to pass through, and the pot cover 13 is a cold-pressed integrated part.
[0040] In the specific operation process, since the pot body 12 is integrally formed by the cold-pressing process, there is no welding seam or joint part in the pot body 12, which effectively improves the structural strength and working condition resistance of the pot body 12. Since there is no need for welding assembly, there is no solder accumulation position in the pot body 12, thereby effectively avoiding the health hazards of heavy metals such as lead in the solder to the user of the pot, thereby effectively improving the safety of the copper hot pot device when used for cooking such as boiling, and correspondingly improving the food safety of the user.
[0041] In addition, the cold-pressing integrated forming process significantly improves the processing efficiency of the pot body 12, and there is no need for production personnel to process and polish the pot body 121 and the main handle 123 and other matching parts of the pot body 12 one by one, thereby effectively simplifying the forming process of the pot body 12, improving the production and processing efficiency, and reducing the processing difficulty and labor intensity of the production personnel.
[0042] Correspondingly, the bottom support 11 and the pot cover 13 formed by the cold-pressing process also have an integrated structure, which not only effectively improves the overall processing and forming efficiency of the bottom support 11 and the pot cover 13, reduces the production and processing difficulty, but also correspondingly reduces the labor intensity of the relevant production personnel, and effectively improves the overall component structural strength and working condition resistance of the bottom support 11, thereby making the supporting effect of the bottom support 11 on the pot body 12 better, and further improving the operation safety and overall structural stability of the copper hot pot device. The integrated structure also makes the main structure of the pot cover 13 free of welding seams, thereby eliminating the health hazards of heavy metals such as lead in the solder of the structure of the pot cover 13 in the prior art to the user during operation, thereby making the operation and use of the copper hot pot device safer, and further ensuring the food safety of the user.
[0043] Generally, a lifting ring 14 and other matching parts can also be installed on the main handle 123 and the secondary handle 132, and a small sculpture can be arranged on the pot cover 13, or a relief pattern can be arranged on the outer wall of the pot cover 13 and the pot body 12, so as to optimize the overall aesthetics of the copper hot pot device, optimize the appearance layout and arrangement effect; if necessary, the pot cover 13 or the pot body 12 can be hoisted as a whole through the lifting ring 14 on the handle, so as to meet the needs of pot installation and arrangement under special working conditions, and improve the operation convenience of the copper hot pot device.
[0044] Of course, considering the equipment cost and process difficulty in practical application, in addition to the cold-press forming process mentioned above, other process methods that can realize the integral forming of the pot body 12, the bottom support 11 and the pot cover 13 can also be selected to meet the production and processing needs of the copper hot pot device. In principle, as long as the process method can meet the needs of the processing and forming of the copper hot pot device and ensure the reliability of the component structure, it can be used.
[0045] In addition, the side wall of the support 112 is also provided with a plurality of hollow areas, so that the air in the external environment can freely enter the heating cavity 113, so as to ensure the continuous combustion of the fuel in the heating cavity 113, and ensure the stable heating of the pot body 121 above the bottom support 11, and meet the cooking needs of the food in the pot cavity 124.
[0046] Specifically, the pot body 12 further comprises a partition plate 125 integrally formed in the pot cavity 124, the partition plate 125 extends along the radial direction of the pot body 12, and the bottom and side edges of the partition plate 125 are in close contact with the inner wall of the pot cavity 124. When the pot body 12 is produced and processed, the partition plate 125 is integrally formed with the pot body 12 and the matching structural parts of the pot body 12 such as the main handle 123, and the structure of the connection between the partition plate 125 and the pot body 12 is ensured to be tight, so as to avoid the existence of gaps or other structural dead angles between the edges of the partition plate 125 and the inner wall of the pot cavity 124, so as to prevent the breeding of harmful microorganisms such as aspergillus flavus due to food residues in the gaps between the partition plate 125 and the pot cavity 124 during the use of the pot, thereby further improving the operation and use of the copper hot pot device to be cleaner and more hygienic, and making the food more safe and healthy when the user uses the copper hot pot device to implement cooking such as boiling.
[0047] It is not difficult to understand that the partition plate 125 can also be multiple, and each partition plate 125 can be arranged along the circumference of the pot body 12 to form a pot groove between any two partition plates 125 that can accommodate different types of pot bottom soup, so as to meet the needs of different users for food boiling and cooking taste, and improve the convenience of the copper hot pot device.
[0048] In addition, the bottom surface of the tray 111 is provided with a heat dissipation support 114, which extends along the circumference of the tray 111 and is connected end to end. The bottom end of the heat dissipation support 114 is in direct contact with the supporting surface such as the table top, which serves as the bottommost supporting structure of the overall structure of the copper hot pot device, and ensures the overall stability of the copper hot pot device.
[0049] On this basis, the heat dissipation support 114 can reliably hold up the main body structure of the tray 111, so that the bottom surface of the tray 111 does not directly contact the desktop, thereby effectively avoiding the heat in the heating cavity 113 directly conducting to the desktop through the bottom of the tray 111 to cause scalding or other damage to the desktop, thereby further ensuring the use safety of the copper hot pot device. Accordingly, since the heat dissipation support 114 can effectively avoid the copper hot pot device from causing scalding and other damage to the desktop, it is not necessary to inject an appropriate amount of cooling water into the tray 111 to assist in cooling, as in the prior art, to avoid scalding the desktop, thereby making the copper hot pot device in the present scheme have lower use cost and more convenient operation and use.
[0050] Of course, a cooling groove 115 capable of containing cooling water can also be formed between the outer wall of the support 112 and the inner wall of the tray 111 along the circumferential direction of the tray 111. In actual use, an appropriate amount of cooling water is injected into the cooling groove 115 to assist in cooling and heat dissipation in cooperation with the heat dissipation support 114, thereby avoiding the heat generated by the fuel combustion at the heating cavity 113 from causing scalding to the desktop, thereby further improving the operation and use safety and working condition adaptability of the copper hot pot device.
[0051] Generally, the heat dissipation support 114 is located at the outer edge of the bottom surface of the tray 111, and the inner support 116 is protrusively arranged in the middle of the bottom surface of the tray 111 from top to bottom, and the inner support 116 and the heat dissipation support 114 are gap-fitted along the radial direction of the tray 111. The inner support 116 can cooperate with the heat dissipation support 114 to reliably support the edge and central parts of the bottom of the tray 111, thereby making the overall placement and use of the copper hot pot device more stable and reliable.
[0052] On the other hand, the bottom surface of the pot body 121 is protrusively provided with a limiting boss 126, and the top end of the support 112 has a positioning groove 117 for the limiting boss 126 to be inserted and fitted. When the pot body 121 is overlapped on the top of the support 112, the limiting boss 126 can be inserted and fitted in the positioning groove 117 in position, so that the limiting boss 126 is limited and fitted in the radial direction of the pot body 121 by the positioning groove 117, so that the pot body 121 is not easy to be dislocated or loosened on the top of the support 112, thereby avoiding the pot body 121 from overturning during the use of the copper hot pot device, thereby further improving the installation and arrangement reliability and operation and use safety of the copper hot pot device.
[0053] More specifically, the top end of the positioning groove 117 is provided with a chamfered portion 118 with a smooth transition, which is in close fit with the outer wall of the limiting boss 126. The chamfered portion 118 can effectively avoid the rigid contact between the limiting boss 126 and the positioning groove 117 during the alignment and insertion, so as to avoid the structural damage of the limiting boss 126 and the positioning groove 117. By close fit of the chamfered portion 118 and the outer wall of the limiting boss 126, the insertion process of the limiting boss 126 can be guided by the chamfered portion 118, so that the alignment and insertion between the limiting boss 126 and the positioning groove 117 is more smooth and efficient.
[0054] In addition, the inner cavity of the smoke exhaust pipe 122 is provided with an air deflector (not shown in the figure), and the outer edge of the air deflector is in gap fit with the inner wall of the smoke exhaust pipe 122. The air deflector is usually arranged in the center of the smoke exhaust pipe 122 along the direction perpendicular to the axial direction of the smoke exhaust pipe 122. The air deflector can effectively prevent the high-temperature flue gas from escaping mainly through the middle part of the smoke exhaust pipe 122, so that the high-temperature flue gas sent by the heating cavity 113 can continue to flow upward through the gap between the outer edge of the air deflector and the inner cavity wall of the smoke exhaust pipe 122, so that the high-temperature flue gas can be more fully in contact with the side wall of the smoke exhaust pipe 122. In this way, the heat of the high-temperature flue gas can be more efficiently exchanged with the soup and food materials in the pot cavity 124 through the smoke exhaust pipe 122, so as to improve the heating effect of the food materials and soup in the pot cavity 124, thereby significantly improving the heat utilization rate of the high-temperature flue gas in the smoke exhaust pipe 122, so that the cooking efficiency of the copper hot pot device is higher, and the operation and use are more convenient.
[0055] Further, at least two supporting bosses 127 are protrudingly arranged on the inner wall of the smoke exhaust pipe 122, and the vertical height of each supporting boss 127 is consistent and equally distributed along the circumferential direction of the smoke exhaust pipe 122. The air deflector is fixedly connected to the top of each supporting boss 127 by bolts. The supporting boss 127 can provide stable and reliable structural support for the air deflector, so as to prevent the air deflector from being inclined or misaligned, thereby ensuring the guiding and interfering effect of the air deflector on the high-temperature flue gas.
[0056] It should be noted that the smoke exhaust pipe 122 comprises a heating section 1221, a transition section 1222 and a smoke exhaust section 1223 arranged in sequence from bottom to top and sequentially communicated, the inner diameter of the heating section 1221 is larger than that of the transition section 1222, the inner diameter of the transition section 1222 is larger than that of the smoke exhaust section 1223, the bottom port of the heating section 1221 is communicated with the heating cavity 113, the smoke exhaust port 128 of the smoke exhaust pipe 122 is located at the top end of the smoke exhaust section 1223, and the supporting boss 127 is located at the joint of the heating section 1221 and the transition section 1222. Through the sequential arrangement and cooperative cooperation of the heating section 1221, the transition section 1222 and the smoke exhaust section 1223, the smoke exhaust pipe 122 forms an inner cavity structure with a decreasing inner diameter from bottom to top, so that the high-temperature flue gas sent from the heating cavity 113 can rise at a slower rate at the heating section 1221, thereby increasing the heat exchange time of the high-temperature flue gas with the soup and food materials at the pot cavity 124, and the flow rate of the flue gas in the smoke exhaust pipe 122 can be gradually accelerated through the gradual reduction of the inner cavity of the smoke exhaust pipe 122 during the gradual upward movement of the high-temperature flue gas to the smoke exhaust port 128, thereby promoting the exhaust of the flue gas, and further enabling the high-temperature flue gas in the heater to be more efficiently introduced into the heating section 1221, thereby further improving the food material heating efficiency and the cooking effect of the copper hot pot device.
[0057] The copper hot pot device provided by the utility model has the advantages that during operation and use, the pot body is integrally formed by cold pressing process, so that the pot body has no welding seam or splicing part, the structural strength and working condition resistance of the pot body are effectively improved, the pot body has no solder accumulation position due to the absence of welding assembly, the health hazards of heavy metals such as lead in the solder to the user of the pot are effectively avoided, the safety of the copper hot pot device during cooking operations such as boiling is effectively improved, and the food safety of the user is correspondingly improved; in addition, the cold pressing integral forming process significantly improves the processing efficiency of the pot body, the production personnel do not need to process and polish the pot body and the pot body supporting components such as the main handle one by one, the forming process of the pot body is effectively simplified, the production and processing efficiency is improved, and the processing difficulty and the labor intensity of the production personnel are reduced.
[0058] The copper hot pot device provided by the utility model has the advantages that during operation and use, the pot body is integrally formed by cold pressing process, so that the pot body has no welding seam or splicing part, the structural strength and working condition resistance of the pot body are effectively improved, the pot body has no solder accumulation position due to the absence of welding assembly, the health hazards of heavy metals such as lead in the solder to the user of the pot are effectively avoided, the safety of the copper hot pot device during cooking operations such as boiling is effectively improved, and the food safety of the user is correspondingly improved; in addition, the cold pressing integral forming process significantly improves the processing efficiency of the pot body, the production personnel do not need to process and polish the pot body and the pot body supporting components such as the main handle one by one, the forming process of the pot body is effectively simplified, the production and processing efficiency is improved, and the processing difficulty and the labor intensity of the production personnel are reduced. The principle and implementation mode of the utility model are described by applying specific examples in the paper, and the description of the above examples is only used to help understand the method and core idea of the utility model. It should be pointed out that the ordinary skilled in the art can make some improvements and modifications to the utility model without departing from the principle of the utility model, and these improvements and modifications also fall within the protection scope of the utility model claim.
Claims
1. A copper hot pot apparatus, characterized by, The bottom support, the pot body and the pot cover are arranged in sequence, the pot body comprises a pot body, a smoke exhaust pipe and a main handle arranged on the outer wall of the pot body, the smoke exhaust pipe is arranged in the middle of the pot body, the outer wall of the smoke exhaust pipe is matched with the inner wall of the pot body to form a pot cavity capable of accommodating food, and the pot body is a cold-pressed integrated part; The bottom support comprises a tray and a support arranged in the middle of the top surface of the tray, the inside of the support has a heating cavity capable of accommodating fuel, the pot body is overlapped on the top of the support, and the bottom support is a cold-pressed integrated part; The pot cover comprises a cover plate capable of being matched and buckled on the pot cavity and a secondary handle arranged on the outer wall of the cover plate, the middle of the pot cover has a avoiding hole for the smoke exhaust pipe to pass through, and the pot cover is a cold-pressed integrated part.
2. The Korean-style brass hot pot apparatus as claimed in claim 1, wherein The pot body further comprises at least two integrated baffles in the inside of the pot cavity, the baffles extend along the radial direction of the pot body, and the bottom and side edges of the baffles are closely connected with the inner wall of the pot cavity.
3. The Korean-style brass hot pot apparatus as claimed in claim 1, wherein The bottom surface of the tray is protrusively provided with a heat dissipation support, the heat dissipation support extends along the circumferential direction of the tray and is connected end to end.
4. The Korean-style brass hot pot apparatus as claimed in claim 3, wherein The heat dissipation support is located at the outer edge of the bottom surface of the tray, the middle of the bottom surface of the tray is protrusively provided with an inner support from top to bottom, and the inner support is matched with the heat dissipation support in the radial direction of the tray.
5. The Korean-style brass hot pot apparatus as claimed in claim 3, wherein The outer wall of the support and the inner wall of the tray are circumferentially matched to form a cooling groove capable of accommodating cooling water.
6. The Korean-style brass hot pot apparatus as claimed in claim 1, wherein The bottom surface of the pot body is protrusively provided with a limiting boss, and the middle of the top end of the support has a positioning groove for the limiting boss to be matched and inserted.
7. The Korean-style brass hot pot apparatus as claimed in claim 6, wherein The top end of the positioning groove is provided with a chamfered portion with smooth transition, and the chamfered portion is matched with the outer wall of the limiting boss.
8. The Korean-style brass hot pot apparatus as claimed in claim 1, wherein The inner cavity of the smoke exhaust pipe is provided with a guide vane, and the outer edge of the guide vane is matched with the inner wall of the smoke exhaust pipe.
9. The Korean-style brassiere as claimed in claim 8, wherein the brassiere body is formed of a single piece of fabric. The inner wall of the smoke exhaust pipe is protrusively provided with at least two supporting bosses, the vertical heights of the supporting bosses are consistent and are equidistantly distributed along the circumferential direction of the smoke exhaust pipe, and the guide vane is fixedly connected to the top of the supporting bosses by bolts.
10. The Korean-style brassiere as claimed in claim 9, wherein the brassiere body is formed of a single piece of fabric. The smoke exhaust pipe comprises a heating section, a transition section and a smoke exhaust section arranged in sequence from bottom to top and sequentially communicated, the inner diameter of the heating section is greater than that of the transition section, the inner diameter of the transition section is greater than that of the smoke exhaust section, the bottom port of the heating section is communicated with the heating cavity, the smoke exhaust port of the smoke exhaust pipe is located at the top end of the smoke exhaust section, and the supporting bosses are located at the joint of the heating section and the transition section.