Mounting shell and high-temperature cooking box
By designing an integrated mounting housing that combines water supply components, heating components, and steam transmission pipes, the problems of large space occupation and complex assembly of existing cooking tank components have been solved, achieving a compact structure and efficient assembly.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-04-03
AI Technical Summary
In existing cooking ovens, each component, such as the water supply unit, heating unit, and steam transmission pipe, is installed separately on the overall frame, which occupies a lot of space, is complicated to assemble, and has low assembly efficiency.
Design an installation housing that integrates water supply components, heating components, and steam transmission pipes to form a compact overall structure. The installation positions of the components are pre-set for easy assembly.
It effectively solves the problem of wasted space for parts, improves assembly efficiency and production quality, and reduces installation complexity.
Smart Images

Figure CN224070217U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of cooking oven structure, specifically a mounting shell and a high-temperature cooking oven. Background Technology
[0002] With the improvement of people's living standards and the pursuit of healthy eating, steaming and boiling, a healthy cooking method, are becoming increasingly popular. As a result, steam ovens have become common cooking equipment in home kitchens and the catering industry. People use steam ovens to process various ingredients, such as seafood, meat, pasta, and vegetables, to preserve the nutrients and original flavor of the food.
[0003] Existing cooking ovens typically integrate components such as water supply units, heating units, and steam transmission pipes. This allows water to be heated to generate steam, which is then transmitted to the cooking oven via the steam transmission pipes, enabling the cooking of various foods. However, these components are often installed separately on the overall frame of the cooking oven, occupying a lot of space and requiring complex assembly, which hinders the improvement of assembly efficiency.
[0004] This utility model was proposed in response to the shortcomings of the existing technology. Utility Model Content
[0005] Regarding the aforementioned problem that existing cooking ovens require each component, such as the water supply assembly, heating assembly, and steam transmission pipe, to be installed separately on the overall frame of the cooking oven, thus occupying a significant amount of space, the technical solution adopted by this utility model to solve this problem is as follows:
[0006] A mounting housing has a first mounting portion for mounting a water supply component and located on one side of the mounting housing, a second mounting portion for mounting a heating component, and a third mounting portion communicating with the outside and located on the other side of the mounting housing. The heating component has a steam transmission pipe, and the third mounting portion is used to fix the steam transmission pipe so that the steam generated by the heating component can be transmitted to the outside of the mounting housing through the steam transmission pipe.
[0007] Furthermore, the mounting housing includes a main housing, the main housing includes a first mounting panel, and the first mounting portion includes a first mounting through hole and a first mounting plane located on the first mounting panel.
[0008] Furthermore, the main housing includes a mounting base plate arranged parallel to the first mounting panel, and a first side plate that is perpendicularly connected to the mounting base plate and the first mounting panel respectively. The first mounting part includes a first mounting cavity formed by the mounting base plate, the first side plate and the first mounting panel, and the first mounting cavity communicates with the first mounting through hole.
[0009] Furthermore, the mounting housing includes a mounting bracket that is perpendicularly connected to the mounting base plate, and the second mounting portion includes a mounting groove located on the mounting bracket.
[0010] Furthermore, the mounting housing includes a second side plate located on one side of the main housing and a third side plate located on the other side of the main housing. The main housing is perpendicularly connected to the second side plate and the third side plate respectively. The second mounting part includes a second mounting through hole located on the second side plate and a third mounting through hole located on the third side plate.
[0011] Furthermore, the main housing includes a fourth side plate that is perpendicularly connected to the mounting base plate, and the third mounting part includes a fourth mounting through hole located on the fourth side plate, through which the steam transmission pipe extends to the outside of the mounting housing.
[0012] Furthermore, the first mounting through hole is provided with an isolation plate, which divides the first mounting through hole into a first water inlet, a first detection mounting port, and a second detection mounting port.
[0013] Furthermore, the second mounting through hole includes a first power mounting port and a second power mounting port, and the third mounting through hole includes a first temperature sensing mounting port and a second temperature sensing mounting port. The first power mounting port and the first temperature sensing mounting port are coaxially arranged, and the second power mounting port and the second temperature sensing mounting port are coaxially arranged.
[0014] Furthermore, the mounting groove is arc-shaped.
[0015] This utility model also provides a high-temperature cooking oven, including a cooking oven shell and an installation shell as described above disposed within the cooking oven shell.
[0016] The beneficial effects of this utility model are as follows:
[0017] 1. This utility model provides a first mounting part for installing a water supply component, a second mounting part for installing a heating component, and a third mounting part that communicates with the outside of the mounting housing and is used for installing a steam transmission pipe. This allows the water supply component, heating component, and steam transmission pipe to be centrally arranged on the same mounting housing, forming a more compact whole structure. This avoids the space waste of traditional decentralized installation and effectively solves the problem that existing cooking tanks require each component to be installed separately on the overall frame of the cooking tank, occupying a lot of space.
[0018] 2. By setting up an installation shell with pre-set installation positions for each component, the installation of each component in the cooking chamber is made simple and convenient. Simply place the water supply component, heating component, and steam transmission pipe into the pre-set positions on the installation shell to complete the assembly. This helps to improve the assembly efficiency of the cooking chamber and improve production quality.
[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the mounting housing of this utility model;
[0021] Figure 2 This is one of the exploded views of the mounting housing of this utility model;
[0022] Figure 3 This is the second exploded view of the mounting housing of this utility model;
[0023] Figure 4 This is the third exploded view of the mounting housing of this utility model;
[0024] Figure 5 This is an exploded view of the cooking oven of this utility model. Detailed Implementation
[0025] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0026] like Figures 1 to 5 The mounting housing shown has a first mounting part 2 for mounting a water supply component 91 and located on one side of the mounting housing 1, a second mounting part 3 for mounting a heating component 92, and a third mounting part 4 that communicates with the outside and is located on the other side of the mounting housing 1. The heating component 92 is provided with a steam transmission pipe 93. The third mounting part 4 is used to fix the steam transmission pipe 93 so that the steam generated by the heating component 92 can be transmitted to the outside of the mounting housing 1 through the steam transmission pipe 93.
[0027] This invention provides a first mounting section for installing a water supply component, a second mounting section for installing a heating component, and a third mounting section that communicates with the outside of the mounting housing for installing a steam transmission pipe. This allows the water supply component, heating component, and steam transmission pipe to be centrally located on the same mounting housing, forming a more compact whole. This avoids the space waste of traditional decentralized installation and effectively solves the problem of existing cooking tanks where each component is separately installed on the overall frame of the cooking tank, occupying a lot of space.
[0028] Furthermore, by setting up the mounting housing 1, the installation positions of each component are pre-set on the mounting housing 1, so that the installation of each component in the cooking chamber is simple and convenient. The assembly can be completed simply by placing the water supply component 91, heating component 92 and steam transmission pipe 93 and other components into the pre-set positions on the mounting housing 1, which helps to improve the assembly efficiency of the cooking chamber and improve production quality.
[0029] Furthermore, the water supply component 91 includes a water pump 911, a solenoid valve 912, a water storage pipe 913, and a level sensor 914. The level sensor 914 is installed in the water storage pipe 913 and is used to detect the water level in the water storage pipe 913. When the level sensor 914 detects that the water level in the water storage pipe 913 is too low, the level sensor 914 sends a signal to the main control board. The main control board controls the water pump 911 and the solenoid valve 912 to open, and water flows into the water storage pipe 913. When the level sensor 914 detects that the water level has reached the set value, the level sensor 914 sends a signal to the main control board. The main control board controls the water pump 911 and the solenoid valve 912 to stop working.
[0030] Furthermore, the heating assembly 92 includes a first heating tube 921 and a second heating tube 922. The first heating tube 921 is connected to the water storage pipe 913 and the second heating tube 922 respectively, and the second heating tube 922 is connected to the steam transmission pipe 93.
[0031] Furthermore, the main housing 11 includes a fifth side plate 115, which is parallel to the fourth side plate 114 and perpendicularly connected to the first mounting panel 111. Both the fifth side plate 115 and the fourth side plate 114 are arranged in a vertical direction. There is an accommodating space between the fifth side plate 115 and the fourth side plate 114 for placing the heating component 92, making full use of the vertical space inside the mounting housing 1. Secondly, the arrangement of the fifth side plate 115 is beneficial to separating the heating component 92 and the water supply component 91, avoiding mutual interference between the heating component 92 and the water pump 911 and the solenoid valve 912 respectively.
[0032] Furthermore, the mounting housing 1 also includes a top cover 15, which is arranged horizontally and is perpendicularly connected to the fifth side plate 115, the third side plate 14, the second side plate 13 and the fourth side plate 114 respectively.
[0033] Furthermore, the cross-section of the mounting housing 1 is L-shaped.
[0034] Furthermore, a heat insulation material is provided inside the mounting housing 1 and between the heating component 92, the water supply component 91, and the steam transmission pipe 93. The heat insulation material is ceramic fiber, which has excellent heat insulation performance. Its low thermal conductivity can effectively prevent the heat generated by the heating component 92 from being conducted to the mounting housing 1 and other components. When the heating component 92 is working, it generates a lot of heat. Without the heat insulation material, the heat would be rapidly transferred to the mounting housing 1 or other components, causing the temperature of the mounting housing 1 and other components to rise sharply. The ceramic fiber heat insulation layer acts as a barrier, which can reduce the rate and amount of heat transfer, so that the mounting housing 1 and other components will not overheat due to the high temperature of the heating component 92, thereby protecting the structure and performance of the mounting housing 1 and other components and avoiding deformation or damage caused by high temperature. Finally, the ceramic fiber can effectively block the heat transfer from the heating component 92 to the outside of the mounting housing 1, which helps to reduce heat loss and effectively improve the overall thermal efficiency.
[0035] like Figures 1 to 5 The mounting housing 1 shown includes a main housing 11, the main housing 11 includes a first mounting panel 111, and the first mounting part 2 includes a first mounting through hole 21 and a first mounting plane 23 located on the first mounting panel 111.
[0036] Specifically, the first mounting plane 23 is used to install the water pump 911 and the solenoid valve 912. A water inlet pipe is provided between the solenoid valve 912 and the water storage pipe 913. The first mounting through hole 21 is used to install the water inlet pipe and the level gauge 914.
[0037] Optionally, in some embodiments, the water pump 911 and the solenoid valve 912 are both installed on the first mounting plane 23 by a snap-fit connection.
[0038] Optionally, in some embodiments, both the water pump 911 and the solenoid valve 912 are installed on the first mounting plane 23 by means of threaded connection.
[0039] Furthermore, the first mounting through hole 21 provides a clear positioning point for the installation of the water inlet pipe and the level gauge 914. When installing the water supply assembly 91, the water inlet pipe and the level gauge 914 can be inserted or connected through the first mounting through hole 21, so that the installation process is more accurate and efficient.
[0040] Furthermore, the first mounting surface 23 provides a flat and stable mounting base for the water supply assembly 91. The water pump 911 and the solenoid valve 912 can be installed on the first mounting surface 23, which can ensure the firmness of the installation of the water pump 911 and the solenoid valve 912 and reduce vibration and loosening caused by uneven installation. Secondly, the flat first mounting surface 23 also facilitates the use of bolts, nuts, clips and other connecting parts to fix the water pump 911 and the solenoid valve 912 to the first mounting panel 111, which improves the reliability of installation.
[0041] Furthermore, the first mounting part 2 includes a first mounting through hole 21 and a first mounting plane 23 located on the first mounting panel 111, which can make full use of the surface space of the main housing 11 so that the water supply component 91 can be compactly installed on the main housing, avoiding space waste caused by unreasonable installation position.
[0042] like Figures 1 to 5 The main housing 11 shown includes a mounting base plate 112 arranged parallel to the first mounting panel 111, and a first side plate 113 perpendicularly connected to the mounting base plate 112 and the first mounting panel 111 respectively. The first mounting part 2 includes a first mounting cavity 22 formed by the mounting base plate 112, the first side plate 113 and the first mounting panel 111. The first mounting cavity 22 communicates with the first mounting through hole 21.
[0043] Furthermore, the first mounting cavity 22 formed by the mounting base plate 112, the first side plate 113 and the first mounting panel 111 provides a dedicated mounting area for the water storage pipe 913, which helps to avoid mutual interference between the water storage pipe 913 and other components, and ensures the independence and stability of the water storage pipe 913.
[0044] Furthermore, the first mounting cavity 22 is connected to the first mounting through hole 21, which is beneficial to better control the installation position of the water supply component 91 and ensure the stable connection of the water storage pipe 913 to the water inlet pipe and the level gauge 914 respectively.
[0045] Furthermore, the first mounting panel 111 and the mounting base plate 112 are arranged in parallel, and the two ends of the first side plate 113 are respectively perpendicularly connected to the first mounting panel 111 and the mounting base plate 112, thereby forming a three-dimensional support frame, effectively dispersing the vibration load of the water supply component 91 during operation, improving the overall structural stability, and extending the equipment life.
[0046] like Figures 1 to 5 The mounting housing 1 shown includes a mounting bracket 12 that is perpendicularly connected to the mounting base plate 112, and the second mounting part 3 includes a mounting groove 31 located on the mounting bracket 12;
[0047] Furthermore, the mounting slot 31 provides a clear positional reference for the installation of the heating assembly 92. When installing the first heating tube 921, it is only necessary to align it with the mounting slot 31 and perform the installation operation. This can quickly and accurately determine the installation position of the first heating tube 921, avoiding installation deviations and repeated adjustments caused by inaccurate positioning, and greatly improving installation efficiency.
[0048] Furthermore, compared to other complex installation methods, installing the first heating tube 921 using the mounting slot 31 is simpler. The first heating tube 921 can be directly embedded or snapped into the mounting slot 31, which helps to reduce the number of parts and installation steps during the installation process and effectively reduces the installation difficulty.
[0049] Furthermore, the mounting bracket 12 is vertically connected to the mounting base plate 112, providing a stable support structure for the mounting groove 31 and the first heating tube 921 installed therein. The vertical connection can better withstand the weight of the heating component 92 and the vibration and impact generated during operation, ensuring that the heating component 92 will not shake or shift during operation, thus ensuring the stable operation of the heating component 92.
[0050] Specifically, there are two mounting brackets 12, each of which is provided with a mounting groove 31. One mounting groove 31 is used to install one side of the first heating tube 921, and the other mounting groove 31 is used to install the other side of the first heating tube 921. The second heating tube 922 is connected to the first heating tube 921 and is located above the first heating tube 921. This is beneficial to make full use of the vertical space inside the mounting housing 1, so that the spatial layout inside the mounting housing 1 is more reasonable and can accommodate more functional components in a limited space.
[0051] like Figures 1 to 5 The mounting housing 1 shown includes a second side plate 13 located on one side of the main housing 11 and a third side plate 14 located on the other side of the main housing 11. The main housing 11 is perpendicularly connected to the second side plate 13 and the third side plate 14 respectively. The second mounting part 3 includes a second mounting through hole 32 located on the second side plate 13 and a third mounting through hole 33 located on the third side plate 14.
[0052] Furthermore, by providing a second side plate 13 and a third side plate 14 on both sides of the main housing 11 and connecting them perpendicularly to the main housing 11, a stable frame structure is formed, which can effectively enhance the overall rigidity and stability of the mounting housing 1, enabling it to withstand greater external forces and vibrations generated during the operation of internal components.
[0053] Specifically, the second mounting through hole 32 is located on the second side plate 13 and is used to install the power supply end of the heating component 92. The power supply end of the heating component 92 extends through the second mounting through hole 32 to the outside of the mounting housing 1. A temperature sensing probe is provided on the side of the heating component 92 away from the power supply end. The third mounting through hole 33 is located on the third side plate 14 and is used to install the temperature sensing probe. The end of the temperature sensing probe extends through the third mounting through hole 33 to the outside of the mounting housing 1. The arrangement of the second mounting through hole 32 and the third mounting through hole 33 makes the installation position of the heating component 92 more reasonable and makes full use of the space on both sides of the mounting housing 1.
[0054] Furthermore, the second mounting through hole 32 and the third mounting through hole 33 provide precise mounting positions for the power supply terminal of the heating component 92 and the temperature sensing probe, respectively. This helps to ensure that the power supply terminal of the heating component 92 and the temperature sensing probe can be accurately fixed on the mounting housing 1, which helps to reduce errors during the installation process and effectively improves the installation accuracy.
[0055] like Figures 1 to 5 The main housing 11 shown includes a fourth side plate 114 that is perpendicularly connected to the mounting base plate 112. The third mounting part 4 includes a fourth mounting through hole 41 located on the fourth side plate 114. The steam transmission pipe 93 extends through the fourth mounting through hole 41 to the outside of the mounting housing 1.
[0056] Furthermore, the steam transmission pipe 93 extends directly to the outside of the mounting housing 1 through the fourth mounting through hole 41 on the fourth side plate 114, so that the steam can be output through a more direct path. Compared with the steam passing through a complex and tortuous route inside the housing before being output, it is beneficial to reduce the turns and obstacles in the steam transmission process, and help to reduce the resistance of steam flow, so that the steam can be transmitted more smoothly from the inside of the mounting housing 1 to the working end.
[0057] Furthermore, the outlet of the steam transmission pipe 93 is located on the fourth side plate 114, so that the direction of the steam transmission pipe 93 is clearer, which facilitates centralized management, helps to avoid the messy arrangement of the steam transmission pipe 93 inside the mounting housing 1, reduces space waste, and improves space utilization.
[0058] Furthermore, the fourth mounting through hole 41 provides a precise mounting position for the steam transmission pipe 93, ensuring that the steam transmission pipe 93 can be accurately fixed on the fourth side plate 114, reducing installation errors and improving installation accuracy.
[0059] like Figures 1 to 5 The first mounting through hole 21 shown is provided with a partition plate 1110, and the first mounting through hole 21 is divided into a first water inlet 211, a first detection mounting port 212 and a second detection mounting port 213 by the partition plate 1110.
[0060] Specifically, the isolation plate 1110 divides the first mounting through hole 21 into a first water inlet 211, a first detection mounting port 212, and a second detection mounting port 213. There are two level gauges 914. When one level gauge 914 fails, the other level gauge 914 can be used as a backup to ensure the continuity and reliability of the level detection function and avoid abnormal equipment operation due to level detection failure. The first water inlet 211 is used to install the water inlet pipe, the first detection mounting port 212 is used to install the level gauge 914, and the second detection mounting port 213 is used to install the other level gauge 914.
[0061] Furthermore, the isolation plate 1110 divides the first mounting through hole 21 into a first water inlet 211, a first detection mounting port 212, and a second detection mounting port 213, so that the installation positions of the water inlet pipe and the level gauge 914 are more clearly defined, avoiding functional confusion and mutual interference.
[0062] Furthermore, the isolation plate 1110 provides a precise installation position for the water inlet pipe and the two level gauges 914, ensuring that the water inlet pipe and the two level gauges 914 can be accurately installed in the designated position, reducing installation errors.
[0063] like Figures 1 to 5 The second mounting through hole 32 shown includes a first power mounting port 321 and a second power mounting port 322. The third mounting through hole 33 includes a first temperature sensing mounting port 331 and a second temperature sensing mounting port 332. The first power mounting port 321 and the first temperature sensing mounting port 331 are coaxially arranged, and the second power mounting port 322 and the second temperature sensing mounting port 332 are coaxially arranged.
[0064] Specifically, the first power mounting port 321 is used to install the power supply terminal of the first heating tube 921, and the first temperature sensing mounting port 331 is used to install the temperature sensing probe on the first heating tube 921. Similarly, the second power mounting port 322 is used to install the power supply terminal of the second heating tube 922, and the second temperature sensing mounting port 332 is used to install the temperature sensing probe on the second heating tube 922.
[0065] Furthermore, the coaxial arrangement makes it easier to install the power supply terminals and temperature sensors on the first heating tube 921 and the second heating tube 922. During installation, the installer can operate along the same axis, reducing the steps of adjusting position and angle and lowering the installation difficulty.
[0066] Furthermore, the coaxial configuration provides a clear positioning reference for the power supply terminals and temperature sensing probes mounted on the first heating tube 921 and the second heating tube 922, which helps to ensure the accuracy of the installation position.
[0067] like Figures 1 to 5The mounting groove 31 shown is arc-shaped;
[0068] Furthermore, the arc-shaped mounting groove 31 can completely cover part of the circumference of the first heating tube 921, making the first heating tube 921 more stable after installation, avoiding shaking or displacement due to mismatch in installation, and ensuring good contact and connection between the first heating tube 921 and the mounting groove 31.
[0069] Furthermore, the contact area between the arc-shaped mounting groove 31 and the first heating tube 921 is larger than that of the straight mounting groove. The larger contact area can provide more support points and friction, making the first heating tube 921 more stable within the mounting groove 31.
[0070] Furthermore, when the first heating tube 921 is installed in the arc-shaped mounting groove 31, the stress can be more evenly distributed in various parts of the mounting groove 31. Compared with the straight mounting groove, which may have stress concentration at certain points, the curved surface of the arc-shaped mounting groove 31 can disperse the stress over a larger area, reducing the risk of excessive local stress, helping to extend the service life of the mounting groove 31, and reducing damage and failure caused by stress concentration.
[0071] like Figures 1 to 5 A high-temperature cooking oven is shown, comprising a cooking oven shell 8 and an installation shell as described above disposed within the cooking oven shell 8;
[0072] Furthermore, by integrating components such as the water supply assembly 91, heating assembly 92, and steam transmission pipe 93 into the mounting housing 1, and installing the mounting housing 1 inside the cooking chamber housing 8, the structure of the entire cooking chamber becomes more compact. This helps to reduce the dispersed layout of components inside the cooking chamber, saves space, and makes the overall volume of the cooking chamber smaller, making it more suitable for use in limited spaces.
[0073] Furthermore, the mounting housing 1 integrates multiple key components to make the assembly process of the cooking oven more modular. During assembly, the mounting housing 1 can be installed as a whole module into the cooking oven housing 8, which greatly reduces the assembly steps and time.
[0074] Optionally, the mounting housing 1 can be installed into the cooking oven housing 8 via a connection method such as snap-fit connection, threaded connection, or slot connection.
[0075] The implementation method of this embodiment is as follows:
[0076] A mounting housing 1 includes a first mounting portion 2 for mounting a water supply assembly 91 on one side, a second mounting portion 3 for mounting a heating assembly 92, and a third mounting portion 4 communicating with the outside and located on the other side of the mounting housing 1. The heating assembly 92 is provided with a steam transmission pipe 93, and the third mounting portion 4 is used to fix the steam transmission pipe 93. The mounting housing 1 includes a main housing 11, which includes a first mounting panel 111, a mounting base plate 112 parallel to the first mounting panel 111, and mounting plates 112 respectively disposed on the mounting base plate 111. The first side plate 113 is perpendicularly connected to the first mounting panel 111. The first mounting part 2 includes a first mounting through hole 21, a first mounting plane 23, and a first mounting cavity 22. The first mounting plane 23 is located on the first mounting panel 111 and is used to install the water pump 911 and the solenoid valve 912. The first mounting through hole 21 is also located on the first mounting panel 111 and is used to install the level gauge 914 and the water inlet pipe. The first mounting cavity 22 is formed by the mounting base plate 112, the first side plate 113, and the first mounting panel 111 and is used to install the water storage pipe 913.
[0077] The mounting housing 1 includes a mounting bracket 12 perpendicularly connected to the mounting base plate 112, a second side plate 13 located on one side of the main housing 11, and a third side plate 14 located on the other side of the main housing 11. The second mounting part 3 includes a mounting groove 31 on the mounting bracket 12, a second mounting through hole 32 on the second side plate 13, and a third mounting through hole 33 on the third side plate 14. The heating component 92 can be directly embedded in the mounting groove 31. The power supply end of the heating component 92 extends through the second mounting through hole 32 to the outside of the mounting housing 1. The temperature sensing probe on the heating component 92 extends through the third mounting through hole 33 to the outside of the mounting housing 1.
[0078] The main housing 11 includes a fourth side plate 114 that is perpendicularly connected to the mounting base plate 112. The third mounting part 4 includes a fourth mounting through hole 41 located on the fourth side plate 114. The steam transmission pipe 93 extends through the fourth mounting through hole 41 to the outside of the mounting housing 1.
[0079] A high-temperature cooking oven includes a cooking oven shell 8 and a mounting shell as described above disposed within the cooking oven shell 8. By integrating components such as a water supply component 91, a heating component 92, and a steam transmission pipe 93 into the mounting shell 1 and installing the mounting shell 1 within the cooking oven shell 8, the structure of the entire cooking oven becomes more compact. This reduces the dispersed layout of components inside the cooking oven, helps save space, and makes the overall volume of the cooking oven smaller, making it more suitable for use in limited spaces.
[0080] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.
Claims
1. A mounting housing characterized by: The installation shell (1) is provided with a first installation part (2) for installing a water supply assembly (91) on one side of the installation shell (1), a second installation part (3) for installing a heating assembly (92), and a third installation part (4) in communication with the outside and located on the other side of the installation shell (1), and the heating assembly (92) is provided with a steam transmission pipe (93), and the third installation part (4) is used for fixing the steam transmission pipe (93), so that the steam generated by the heating assembly (92) can be transmitted to the outside of the installation shell (1) through the steam transmission pipe (93).
2. A mounting housing according to claim 1, wherein: The installation shell (1) comprises a main shell (11), and the main shell (11) comprises a first installation panel (111), and the first installation part (2) comprises a first installation through hole (21) and a first installation plane (23) on the first installation panel (111).
3. A mounting housing according to claim 2, wherein: The main shell (11) comprises an installation bottom plate (112) arranged in parallel with the first installation panel (111), and a first side plate (113) vertically connected with the installation bottom plate (112) and the first installation panel (111) respectively, the first installation part (2) comprises a first installation cavity (22) enclosed by the installation bottom plate (112), the first side plate (113) and the first installation panel (111), and the first installation cavity (22) is in communication with the first installation through hole (21).
4. A mounting housing according to claim 3, wherein: The installation shell (1) comprises an installation support (12) vertically connected with the installation bottom plate (112), and the second installation part (3) comprises an installation slot (31) on the installation support (12).
5. A mounting housing according to claim 3, wherein: The installation shell (1) comprises a second side plate (13) on one side of the main shell (11) and a third side plate (14) on the other side of the main shell (11), and the main shell (11) is vertically connected with the second side plate (13) and the third side plate (14) respectively, and the second installation part (3) comprises a second installation through hole (32) on the second side plate (13) and a third installation through hole (33) on the third side plate (14).
6. A mounting housing according to claim 3, wherein: The main shell (11) comprises a fourth side plate (114) vertically connected with the installation bottom plate (112), and the third installation part (4) comprises a fourth installation through hole (41) on the fourth side plate (114), and the steam transmission pipe (93) extends through the fourth installation through hole (41) to the outside of the installation shell (1).
7. A mounting housing according to claim 2, wherein: The first installation through hole (21) is provided with a partition plate (1110), and the first installation through hole (21) is divided into a first water inlet (211), a first detection installation port (212) and a second detection installation port (213) by the partition plate (1110).
8. A mounting housing according to claim 5, wherein: The second mounting through hole (32) comprises a first power supply mounting port (321) and a second power supply mounting port (322), the third mounting through hole (33) comprises a first temperature sensing mounting port (331) and a second temperature sensing mounting port (332), the first power supply mounting port (321) and the first temperature sensing mounting port (331) are coaxially arranged, and the second power supply mounting port (322) and the second temperature sensing mounting port (332) are coaxially arranged.
9. A mounting housing according to claim 4, wherein: The mounting groove (31) is arranged in an arc shape.
10. A retort, characterized by: The installation shell comprises a steaming box shell (8) and a mounting shell as claimed in any one of claims 1-9 arranged in the steaming box shell (8).