Mounting mechanism, camera mechanism and cooking device
By employing an installation mechanism in cooking equipment and utilizing a combination of microwave shielding and transparent heat insulation components, the microwave leakage and sealing issues of the camera components in microwave-steam-grill products are solved, improving the stability and image quality of the camera components, and enhancing intelligent recognition functions and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUANGDONG MIDEA KITCHEN APPLIANCES MFG CO LTD
- Filing Date
- 2023-11-07
- Publication Date
- 2026-07-24
AI Technical Summary
In the existing technology, microwave steam oven products with intelligent recognition functions have not been developed, and when camera components are set in cooking equipment, there are problems such as microwave leakage, poor sealing and heat insulation, which affect the stability of the camera components and the photo quality.
An installation mechanism is adopted, including a first mounting component, a second mounting component, a microwave shield, and a transparent heat insulation component. By forming a camera hole and placing the microwave shield between the mounting components, and combining the transparent heat insulation component in the groove, the stability and sealing of the camera component are improved, and microwave leakage is reduced.
It improves the positional stability and anti-interference ability of the camera component, enhances the photo quality, reduces the impact of microwave leakage and heat on the camera component, and improves the intelligent recognition function and user experience of the cooking equipment.
Smart Images

Figure CN117329555B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of home appliance technology, and in particular to an installation mechanism, a camera mechanism, and a cooking device. Background Technology
[0002] With the continuous development of technology, cooking equipment is gradually becoming one of the most common kitchen appliances in people's daily lives. As intelligent recognition technology continues to advance, people's demand for intelligent recognition of cooking equipment is becoming increasingly apparent.
[0003] In the existing technology, ovens and steam ovens with intelligent recognition functions have appeared on the market, but microwave-steam-oven products with intelligent recognition have not yet been developed. When installing camera components in cooking equipment, how to reduce microwave leakage at the camera component installation location and improve sealing and heat insulation is one of the problems that urgently needs to be solved by those skilled in the art. Summary of the Invention
[0004] This application provides an installation mechanism, a camera mechanism, and a cooking device, which can not only reduce microwave leakage near the mounting hole and improve the sealing and heat insulation of the mounting hole, but also improve the stability of the installation mechanism, thereby improving the structural stability and image quality of the camera component. This makes it easier to realize and improve the intelligent recognition function of the cooking device and enhances the user experience.
[0005] To address the aforementioned technical problems, this application provides an installation mechanism for a cooking device. The cooking device includes a housing, an installation mechanism, and a camera assembly. The camera assembly is mounted on a mounting hole in the heating cavity of the housing via the installation mechanism. The installation mechanism includes a first mounting member, a second mounting member, and a transparent heat insulation assembly. The first mounting member has a first through hole; the second mounting member has a second through hole, and a groove is formed on the side of the second mounting member closest to the first mounting member; a microwave shield has a third through hole, disposed between the first and second mounting members, and the third through hole, the first through hole, and the second through hole form a camera hole; the transparent heat insulation assembly is disposed within the groove.
[0006] In this design, a mounting groove is formed between the sidewall of the first mounting component and the sidewall of the second mounting component, which is used to set the sidewall of the mounting hole.
[0007] The microwave shield is disposed between the side wall of the mounting hole and the first mounting component.
[0008] The microwave shielding component includes a metal mesh.
[0009] The transparent heat insulation component includes a first glass sheet, a second glass sheet, and a first sealing ring. The first glass sheet is disposed away from the first mounting component; the second glass sheet is disposed on the side of the first glass sheet away from the first mounting component; and the first sealing ring is disposed between the first glass sheet and the second glass sheet.
[0010] The first mounting component is provided with multiple fourth through holes, which surround the outer periphery of the first through hole.
[0011] The installation mechanism also includes a heat insulation sheet, which is located on the side of the first mounting component that is away from the second mounting component.
[0012] The installation mechanism also includes a mounting base, which is located on the side of the first mounting component away from the second mounting component and is connected to the first mounting component.
[0013] The mounting base has a first mounting cavity for mounting the camera component, and the first mounting cavity has an air inlet and an air outlet.
[0014] The mounting base has a first mounting cavity and a second mounting cavity that are connected. The first mounting cavity has an air outlet and the second mounting cavity has an air inlet. The first mounting cavity is used to install the camera component and the second mounting cavity is used to install the control component.
[0015] To address the aforementioned technical problems, this application further provides a camera mechanism, which includes a mounting mechanism on which a camera assembly is mounted.
[0016] To address the aforementioned technical problems, this application further provides a cooking device, which includes a housing and a camera mechanism. The housing has a heating cavity, and the camera mechanism is disposed at a mounting hole in the heating cavity.
[0017] The camera mechanism is located in the middle area of the top wall of the heating cavity and near the side wall of the heating cavity.
[0018] The cooking equipment includes a microwave-steam-grill combo.
[0019] The beneficial effects of this application are as follows: The camera component of this application is installed at the mounting hole on the heating cavity of the housing through the mounting mechanism, which can improve the positional stability of the camera component, improve the anti-interference ability of the camera component, and improve the imaging effect; the first through hole, the second through hole, the third through hole, and the mounting hole are connected to form a camera hole, and the camera component is set on the mounting mechanism. The setting of the camera hole allows the camera component to take pictures through the camera hole to realize the intelligent recognition function; the setting of the microwave shield can further reduce the microwave leakage of the heating cavity, thereby improving the anti-interference ability of the camera component; the microwave shield is set in the first The fixed connection between the first and second mounting components improves the structural stability of the microwave shielding, thereby enhancing microwave leakage prevention and improving the product's intelligent recognition capabilities, thus improving the user experience. Furthermore, the transparent heat insulation component enhances the heat insulation and sealing of the mounting mechanism, reducing the impact of heat and moisture on the camera component. The transparent heat insulation component also acts as a steam seal, improving the steam sealing effect at the mounting holes, thereby improving the sealing of the heating chamber and ultimately enhancing its cooking performance. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Wherein:
[0021] Figure 1 This is a schematic diagram of the structure of an embodiment of the cooking equipment of this application;
[0022] Figure 2 This is a schematic diagram of the structure of one embodiment of the installation mechanism of this application;
[0023] Figure 3 This is an exploded structural diagram of an embodiment of the installation mechanism of this application. Detailed Implementation
[0024] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0025] The terms “first,” “second,” etc., used in this application are used to distinguish different objects, not to describe a specific order. Furthermore, the terms “comprising” and “having,” and any variations thereof, are intended to cover non-exclusive inclusion.
[0026] It should be noted that when one element is fixed to another element, this includes fixing the element directly to the other element or fixing the element to the other element through at least one other intermediate element. When one element is connected to another element, this includes connecting the element directly to the other element or connecting the element to the other element through at least one other intermediate element.
[0027] This application first proposes a cooking device, such as Figures 1 to 3 As shown, Figure 1 This is a schematic diagram of the structure of an embodiment of the cooking equipment of this application. Figure 2 This is a structural schematic diagram of one embodiment of the installation mechanism of this application. Figure 3 This is an exploded structural diagram of an embodiment of the installation mechanism of this application. The cooking device includes a housing 01 and a camera mechanism 02. The housing 01 forms a heating chamber 10; the camera mechanism 02 is disposed at a mounting hole on the heating chamber 10.
[0028] The camera mechanism 02 in this embodiment includes a mounting mechanism 21 and a camera component 22, with the camera component 22 mounted on the mounting mechanism 21.
[0029] In this embodiment, the mounting mechanism 21 is used to fix the camera assembly 22 to the mounting hole on the heating chamber 10. Since the camera assembly 22 is mounted on the mounting mechanism 21, the camera assembly 22 can be fixed to the mounting hole by the mounting mechanism 21.
[0030] The mounting mechanism 21 of this embodiment includes a first mounting member 211, a second mounting member 212, a microwave shielding member 213, and a transparent heat insulation component 214. The first mounting member 211 is provided with a first through hole 211a; the second mounting member 212 is provided with a second through hole 212a, and a groove is formed on the side of the second mounting member 212 near the first mounting member 211; the microwave shielding member 213 is provided with a third through hole 213a, which is disposed between the first mounting member 211 and the second mounting member 212, and the third through hole 213a, the first through hole 211a, and the second through hole 212a form a camera hole; the transparent heat insulation component 214 is disposed in the groove.
[0031] Specifically, a groove is formed on the side of the second mounting member 212 near the first mounting member 211, and the transparent heat insulation component 214 is disposed in the groove and abuts against the inner wall of the groove.
[0032] With the development of technological and intelligent hardware, intelligent cooking products have become the future trend of cooking products. Currently, products such as ovens and steam ovens with intelligent recognition functions have appeared on the market, but microwave-steam-oven products with intelligent recognition have not yet been developed. Unlike ordinary ovens, products that integrate microwave and steam functions require solutions to the steam sealing problem at the installation location of the camera component 22, the microwave leakage problem at the installation location of the camera component 22, and the heat insulation problem of the camera component 22 must also be considered.
[0033] In the prior art, the camera component 22 in an oven or steam oven is generally installed on the oven door. Since ovens or steam ovens do not need to consider microwave leakage, the camera component 22 can be directly fixed on the oven door. However, for a microwave-steam-oven combo, a metal door body is required on the oven door to prevent microwave leakage. How to design a mounting mechanism 21 for the camera component 22 in a microwave-steam-oven combo, so that the camera component 22 can reduce microwave leakage at the mounting point while performing normal shooting functions, and improve the sealing and heat insulation effect at the mounting point, is a problem that urgently needs to be solved by those skilled in the art.
[0034] It should be noted that the camera assembly 22 is located on the side of the first mounting member 211 away from the heating chamber 10, which can reduce the impact of temperature changes in the heating chamber 10 on the camera assembly 22.
[0035] In this embodiment, the camera component 22 is mounted on the mounting hole of the heating cavity 10 of the housing 01 via the mounting mechanism 21. This improves the positional stability of the camera component 22, enhances its anti-interference capability, and improves the image capture effect. The first through hole 211a, the second through hole 212a, the third through hole 213a, and the mounting hole form a camera hole. The transparent heat insulation component 214 allows light to pass through. The camera component 22 is mounted on the mounting mechanism 21, and the camera hole facilitates image capture through the camera component 22 to achieve intelligent recognition. The microwave shield 213 further reduces microwave leakage from the heating cavity 10, thereby improving the anti-interference capability of the camera component 22. The microwave shield 213 is located between the first mounting component 211 and the second mounting component 212. The first mounting component 211 and the second mounting component 212 are fixedly connected, which improves the structural stability of the microwave shield 213, thereby improving the microwave leakage prevention effect and the intelligent recognition effect of the product, thus enhancing the user experience. Furthermore, the transparent heat insulation component 214 not only allows the camera component 22 to capture images through the camera hole, but also isolates the high temperature inside the cavity, reducing the impact of heat and moisture on the camera component 22, thereby improving the anti-interference ability of the camera component 22 and extending its service life. The transparent heat insulation component 214 also acts as a steam seal, improving the steam sealing effect at the mounting hole, thereby improving the sealing of the heating cavity 10 and enhancing the cooking effect of the heating cavity 10. Therefore, the design scheme of this embodiment not only reduces microwave leakage near the mounting hole and improves the sealing and heat insulation of the mounting hole, but also improves the stability of the mounting mechanism 21, thereby improving the structural stability and imaging effect of the camera component 22, making it easier to realize and improve the intelligent recognition function of the cooking equipment, and enhancing the user experience.
[0036] It should be noted that the installation mechanism 21 of this application can also be used in cooking equipment such as microwave ovens, steam ovens or ovens, and microwave-steam-grill combination appliances.
[0037] Optionally, the camera assembly 22 is disposed outside the heating chamber 10, which can reduce the impact of temperature changes inside the heating chamber 10 on the camera assembly 22 and improve the ease of cleaning inside the heating chamber 10.
[0038] Optionally, the first mounting component 211 and the second mounting component 212 are metal structures, which can reduce microwave leakage, further improve the microwave leakage prevention capability of the product, and improve the anti-interference capability of the camera component 22, thereby improving the photo-taking effect.
[0039] Optionally, the first mounting component 211 and the second mounting component 212 are made of aluminum alloy, which can reduce production costs and improve microwave shielding effect.
[0040] Optionally, the first part of the second mounting member 212 is located inside the heating cavity 10, and the second part of the second mounting member 212 extends through the mounting hole in a direction away from the heating cavity 10. The outer side wall of the second part of the second mounting member 212 is sequentially and tightly engaged with the side wall of the mounting hole, the side wall of the third through hole 213a, and the inner side wall of the first mounting member 211 along the axial direction of the camera hole. The first mounting member 211 is located outside the heating cavity 10. This arrangement can further improve the stability and sealing effect of the mounting mechanism 21, thereby reducing microwave leakage and improving the sealing and safety of the product. Furthermore, the second part of the second mounting member 212 extending through the mounting hole and engaging with the first mounting member 211 in a direction away from the heating cavity 10 can improve the ease of product assembly.
[0041] In other embodiments, a groove may be formed on the side of the first mounting member near the second mounting member, and the mounting mechanism may also include a transparent heat insulation component disposed within the groove. A first portion of the first mounting member is located outside the heating cavity, and a second portion of the first mounting member extends toward the heating cavity and passes through a mounting hole. The outer sidewall of the second portion of the first mounting member is sequentially and tightly engaged with the sidewall of the third through hole, the sidewall of the mounting hole, and the inner sidewall of the second mounting member along the axial direction of the camera hole, wherein the second mounting member is disposed within the heating cavity. This arrangement can also improve the stability and sealing effect of the mounting mechanism, thereby reducing microwave leakage and improving the product's sealing and safety.
[0042] Optionally, a mounting groove is formed between the sidewall of the first mounting member 211 and the sidewall of the second mounting member 212 for providing the sidewall of the mounting hole.
[0043] After the first mounting member 211 and the second mounting member 212 are snapped together, a mounting groove can be formed between the side wall of the first mounting member 211 and the side wall of the second mounting member 212. This mounting groove can accommodate the side wall of the mounting hole and abut against it tightly.
[0044] The first mounting component 211 and the second mounting component 212 are respectively located on both sides of the mounting hole of the heating cavity 10. The microwave shield 213 is disposed between the first mounting component 211 and the second mounting component 212. The first mounting component 211 and the second mounting component 212 are snapped together and fixed, so that the entire mounting mechanism 21 can be fixedly installed on the mounting hole. This improves the structural stability and sealing of the mounting mechanism 21, thereby improving the stability of the camera component 22, improving the image capture effect, and improving the intelligent recognition effect of the product, thus enhancing the user experience. This arrangement improves the sealing at the mounting hole, enhances the positional stability of the mounting mechanism 21, reduces the risk of microwave leakage at the mounting hole, and improves the anti-interference capability of the camera component 22.
[0045] In other embodiments, the first mounting member 211 and the second mounting member 212 may also be welded to or bonded to the sidewall of the mounting hole of the heating cavity 10.
[0046] Optionally, the microwave shield 213 is disposed between the sidewall of the mounting hole and the first mounting member 211.
[0047] Specifically, the sidewall of the first mounting member 211 abuts against the microwave shield 213; the microwave shield 213 abuts against the outer wall of the heating cavity 10, that is, against the sidewall of the mounting hole facing away from the heating cavity 10; the second mounting member 212 abuts against the inner wall of the heating cavity 10, that is, against the sidewall of the mounting hole close to the heating cavity 10.
[0048] The microwave shield 213 is disposed between the side wall of the mounting hole and the first mounting member 211, which can reduce the impact of hot and humid air in the heating cavity 10 of the cooking equipment on the microwave shield 213. Furthermore, the microwave shield 213 is disposed between the side wall of the mounting hole and the first mounting member 211, which can reduce the impact of the microwave shield 213 on the internal environment of the heating cavity 10, improve the cleanliness of the heating cavity 10, improve the convenience of hygienic cleaning of the inner wall of the heating cavity 10, and thus improve the user experience.
[0049] Optionally, the microwave shielding component 213 includes a metal mesh, which has a simple structure, small size, and low cost.
[0050] In other embodiments, the microwave shielding element may also be disposed between the sidewall of the mounting hole and the second mounting element, and the specific arrangement is not limited.
[0051] Optionally, the transparent heat insulation component 214 includes a first glass sheet 31, a second glass sheet 32, and a first sealing ring 33. The first glass sheet 31 is disposed away from the first mounting member 211; the second glass sheet 32 is disposed on the side of the first glass sheet 31 away from the first mounting member 211; and the first sealing ring 33 is disposed between the first glass sheet 31 and the second glass sheet 32.
[0052] Specifically, the transparent heat insulation component 214 is composed of a first glass sheet 31, a second glass sheet 32, and a first sealing ring 33. The sidewalls of the first glass sheet 31 and the second glass sheet 32 abut against the sidewalls of the groove to form a sealing structure. The first glass sheet 31 is disposed on the side of the first mounting member 211 near the heating chamber 10 and abuts against the first mounting member 211 to form a sealing structure. The second glass sheet 32 is disposed on the side of the first glass sheet 31 away from the first mounting member 211 and abuts against the second mounting member 212 to form a sealing structure. The first sealing ring 33 is disposed between the first glass sheet 31 and the second glass sheet 32 and abuts against the first glass sheet 31 and the second glass sheet 32 respectively.
[0053] The beneficial effect of the above arrangement is that the first glass sheet 31 is disposed away from the first mounting member 211, and the second glass sheet 32 is disposed on the side of the first glass sheet 31 away from the first mounting member 211, so that the transparent heat insulation component 214 can be surrounded by the first mounting member 211 and the second mounting member 212 within the groove, which can protect the first glass sheet 31 and the second glass sheet 32 and improve its anti-interference ability; the sidewalls of the first glass sheet 31 and the second glass sheet 32 abut against the sidewall of the groove to form a sealing structure, and the first glass sheet 31 abuts against the first mounting member 211 to form a sealing structure, and the second glass sheet 32 abuts against the first mounting member 211 to form a sealing structure, and the second ... The two glass sheets 32 abut against the second mounting member 212 to form a sealing structure, which can enhance the sealing effect between the transparent heat insulation component 214 and the groove, and can form a hollow glass structure, further improving the heat insulation effect; furthermore, the first sealing ring 33 is disposed between the first glass sheet 31 and the second glass sheet 32, abutting against the first glass sheet 31 and the second glass sheet 32 respectively, which can further enhance the sealing effect between the transparent heat insulation component 214 and the groove, and can enhance the stability of the hollow glass structure, and can further improve the heat insulation effect without affecting the camera hole function.
[0054] Furthermore, the first mounting component 211 and the second mounting component 212 are snapped together, which can be used to fix the transparent heat insulation component 214. The component consisting of the transparent heat insulation component 214, the first mounting component 211, and the second mounting component 212 is set on the side of the camera component 22 near the heating cavity 10, which can improve the anti-interference ability of the camera component 22, thereby improving the overall heat insulation effect and microwave leakage prevention effect of the camera component 02.
[0055] Optionally, both the first glass sheet 31 and the second glass sheet 32 are heat-reflective glass. Heat-reflective glass is a flat glass with high heat reflectivity while maintaining good light transmittance. It is made by coating the glass surface with a thin film of metals or metal oxides such as gold, silver, copper, aluminum, chromium, nickel, and iron through methods such as pyrolysis, vacuum evaporation, and cathode sputtering; or by using an electroflotation plasma exchange method to replace the original ions on the glass surface with metal ions to form a heat-reflective film. Heat-reflective glass is also called mirrored glass and comes in various colors such as gold, brown, gray, purple, tan, bronze, and light blue. Heat-reflective glass has a high heat reflectivity; for example, the total heat reflection of 6mm thick float glass is only 16%, while under the same conditions, the total heat reflection of heat-absorbing glass is 40%, while that of heat-reflective glass can reach as high as 61%. Furthermore, heat-reflective glass can be used to make insulated glass or laminated glass to further increase its heat insulation performance.
[0056] Optionally, the first sealing ring 33 can be a silicone ring. Silicone is a rubber material with excellent heat resistance, low-temperature elasticity, and particularly excellent resistance to oxidation and ozone. Using a silicone ring can improve the service life and sealing performance of the first sealing ring 33.
[0057] In other embodiments, the transparent heat insulation component may also consist of only a glass sheet, or may use other light-transmitting and heat-insulating materials, without any specific limitation.
[0058] Optionally, the first mounting member 211 is provided with a plurality of fourth through holes 211b surrounding the outer periphery of the first through hole 211a.
[0059] Specifically, the first mounting member 211 is provided with a plurality of fourth through holes 211b on the outer periphery of the first through hole 211a. The fourth through holes 211b can be used for heat dissipation, thereby reducing the interference of the temperature rise of the heating cavity 10 on the camera assembly 22 and improving the performance stability of the camera assembly 22.
[0060] Optionally, the first through hole 211a can be a circular hole with a diameter of 5-7mm (e.g., 5mm, 6mm, 7mm), through which the camera component 22 can take pictures.
[0061] Optionally, except for the first through hole 211a and the fourth through hole 211b, the other parts of the first mounting component 211 are solid structures without any other openings. This design can enhance the microwave leakage prevention capability of the mounting mechanism 21.
[0062] In another embodiment, the plurality of fourth through holes can be circular holes with a diameter of 0.1-2 mm (e.g., 0.15 mm, 0.123 mm, 0.23 mm, 0.55 mm, 0.7 mm, 0.886 mm, 0.94 mm, 1.23 mm, 1.03 mm, 1.5 mm, 1.9 mm, 2 mm) and can be used for heat dissipation.
[0063] In other embodiments, the first and fourth through holes may be of other sizes or shapes, depending on the specifications and heat dissipation requirements of the camera component, and are not specifically limited.
[0064] Optionally, the mounting mechanism 21 may also include a heat insulation sheet 215 disposed on the side of the first mounting member 211 opposite to the second mounting member 212.
[0065] In one application scenario, a heat insulation cotton 11 is provided outside the heating cavity 10. At the mounting hole of the heating cavity 10, the heat insulation cotton 11 has a fifth through hole. A first mounting member 211 is located inside the fifth through hole and abuts against the side wall of the fifth through hole. A heat insulation sheet 215 is located on the side of the first mounting member 211 away from the second mounting member 212, abutting against the first mounting member 211 and the side wall of the fifth through hole. That is, the portion of the heat insulation sheet 215 near the heating cavity 10 abuts against the side of the heat insulation cotton 11 away from the heating cavity 10. A camera assembly 22 is located on the side of the heat insulation sheet 215 away from the first mounting member 211.
[0066] The beneficial effect of the above-mentioned arrangement is that the mounting mechanism 21 is provided with a heat insulation plate 215, which is located outside the heating cavity 10 and on the side of the first mounting member 211 away from the second mounting member 212. This can improve the heat insulation effect and reduce the interference of the temperature rise in the heating cavity 10 on the camera component 22.
[0067] Optionally, the heat insulation sheet 215 is a one-piece molded structure, with a sixth through hole 215a in the middle for forming a camera hole, so that the camera component 22 can take pictures through the camera hole. In other embodiments, the heat insulation sheet 215 may also be spliced around the first through hole 211a, and the specific method is not limited.
[0068] Optionally, the first mounting member 211 has multiple mounting posts 41 on the side opposite to the second mounting member 212, and the heat insulation sheet 215 has multiple openings corresponding to the mounting posts 41. The mounting posts 41 pass through the corresponding openings, thereby fixing the heat insulation sheet 215 to the side of the first mounting member 211 opposite to the second mounting member 212. This arrangement can improve the positional stability of the heat insulation sheet 215, thereby improving its heat insulation effect. In other embodiments, the heat insulation cotton 11 can also be fixed to the first mounting member 211 by other means, such as adhesive.
[0069] Optionally, the insulation sheet 215 can be a mica sheet, which has good high temperature resistance and heat insulation properties, can withstand the insulation requirements in high temperature environments, and can effectively isolate heat and noise.
[0070] Optionally, the mounting mechanism 21 further includes a mounting base 216, which is disposed on the side of the first mounting member 211 opposite to the second mounting member 212 and is connected to the first mounting member 211.
[0071] Specifically, the mounting mechanism 21 includes a mounting base 216, which is disposed on the side of the first mounting member 211 opposite to the second mounting member 212 and fixed on the first mounting member 211. The mounting base 216 can be used to fix the camera component 22 on the first mounting member 211. The mounting base 216 can further protect the camera component 22 and improve the positional stability and anti-interference ability of the camera component 22.
[0072] Optionally, the first mounting member 211 is provided with a plurality of mounting posts 41, and the mounting base 216 is fixedly connected to the first mounting member 211 through the mounting posts 41. In other embodiments, the mounting base and the first mounting member can also be fixed by other means, such as adhesive bonding.
[0073] In one application scenario, a heat insulation plate 215 is provided between the mounting base 216 and the first mounting component 211. This arrangement can improve the anti-interference capability of the camera assembly 22 and reduce the impact of the high temperature inside the heating cavity 10 on the camera assembly 22.
[0074] Optionally, the mounting base 216 is provided with a first mounting cavity 216a for mounting the camera component 22, and the first mounting cavity 216a is provided with an air inlet and an air outlet.
[0075] Specifically, the mounting base 216 may only have a first mounting cavity 216a for mounting the camera component 22. The first mounting cavity 216a has an air inlet and an air outlet to guide cool air to flow through the area where the camera component 22 is located, thereby dissipating heat from the camera component 22. This configuration can reduce the space occupied by the mounting mechanism 21, improve the simplicity of the mounting mechanism 21, and reduce the assembly difficulty.
[0076] Optionally, an arc-shaped guide plate is provided in the first mounting cavity 216a to form an arc-shaped air duct in the first mounting cavity 216a. The arc-shaped air duct is connected to the air inlet and the air outlet respectively. The air inlet and the air outlet of the first mounting cavity 216a are not on a straight line. The arc-shaped air duct can make the airflow smoother and improve the heat dissipation effect of the camera component 22.
[0077] Optionally, the mounting base 216 is made of plastic, which is safe and reliable, has good stability, high manufacturability, and can reduce production costs.
[0078] In another embodiment, the mounting base has a first mounting cavity and a second mounting cavity that communicate with each other. The first mounting cavity has an air outlet and the second mounting cavity has an air inlet. The first mounting cavity is used to install a camera component and the second mounting cavity is used to install a control component.
[0079] Specifically, the mounting base is provided with a first mounting cavity and a second mounting cavity that are connected. Cool air can enter the mounting base through the air inlet of the second mounting cavity, and after passing through the second mounting cavity and the first mounting cavity, it flows out of the mounting base through the air outlet. The control component acts as the controller of the camera component and can control the operation of the camera component.
[0080] The beneficial effects of the above configuration are as follows: the second mounting cavity is used to house the control component, which can protect the control component and improve its resistance to external interference; the first mounting cavity is used to house the camera component, which can protect the camera component and improve its resistance to external interference; the first mounting cavity is connected to the second mounting cavity and is provided with an air outlet and an air inlet, which can guide cold air to dissipate heat from the camera component and the control component, further reducing the interference of high temperature in the heating cavity on the camera component and the control component, and improving the service life of the camera component and the control component.
[0081] In another embodiment, the mounting base is provided with a first mounting cavity, which has an air inlet and an air outlet. The camera component and the control component can both be housed within the first mounting cavity to achieve heat dissipation for both components. This arrangement not only reduces the space occupied by the mounting mechanism but also allows for the mounting of the control component and provides heat dissipation for it, thereby improving the intelligence of the camera component and enhancing the user experience of the intelligent recognition function of the cooking equipment.
[0082] Optionally, the mounting mechanism 21 further includes a second sealing ring 217. A mounting groove is formed between the second mounting member 212 and the inner wall of the heating chamber 10. The second sealing ring 217 is disposed in the mounting groove to improve the sealing effect between the second mounting member 212 and the heating chamber 10 and improve the sealing performance at the mounting hole.
[0083] Optionally, the second sealing ring 217 can be a silicone sealing ring, and its working principle and structure can be referred to the first sealing ring 33 mentioned above.
[0084] Optionally, the camera mechanism 02 is located in the middle region of the top wall of the heating cavity 10 and near the side wall of the heating cavity 10.
[0085] Specifically, the camera mechanism 02 (including the camera component 22 and the mounting mechanism 21) is set on the top wall of the heating cavity 10 and in the middle area near the side wall of the heating cavity 10, which can capture the food inside the heating cavity 10 more completely. Furthermore, the mounting angle of the camera component 22 can be set according to the position of the food on the baking tray.
[0086] In other embodiments, the camera component may also be configured to intelligently adjust the camera angle based on user needs.
[0087] In other embodiments, the camera mechanism may also include other components, such as cooling fans, air ducts, etc.
[0088] In other embodiments, the camera mechanism may also be mounted on the heating cavity in other ways, such as by adhesive or welding to mounting holes on the heating cavity.
[0089] In other embodiments, similar improvements can be made to such cooking appliances, which will not be described in detail here.
[0090] This application further proposes an installation mechanism, the structure and working principle of which can be referred to the above embodiments.
[0091] This application further proposes a camera mechanism, the structure and working principle of which can be referred to the above embodiments.
[0092] Unlike existing technologies, the camera component in this application is mounted on the heating cavity of the housing via a mounting mechanism, which improves the positional stability of the camera component, enhances its anti-interference capability, and improves the image capture effect. The first through hole, second through hole, third through hole, and mounting hole connect to form a camera hole. The camera component is mounted on the mounting mechanism, and this camera hole facilitates image capture through the hole for intelligent recognition. The microwave shield further reduces microwave leakage from the heating cavity, thereby improving the anti-interference capability of the camera component. The microwave shield is located in the first mounting mechanism... The fixed connection between the first and second mounting components improves the structural stability of the microwave shielding component, thereby enhancing microwave leakage prevention and improving the product's intelligent recognition capabilities, thus improving the user experience. Furthermore, the transparent heat insulation component enhances the heat insulation and sealing of the mounting mechanism, reducing the impact of heat and moisture on the camera component. The transparent heat insulation component also acts as a steam seal, improving the steam sealing effect at the mounting holes, thereby improving the sealing of the heating chamber and ultimately enhancing its cooking performance.
[0093] The above description is merely an embodiment of this application and does not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. An installation mechanism, characterized in that, A cooking device, comprising: a housing, a mounting mechanism, and a camera assembly, wherein the camera assembly is mounted via the mounting mechanism at a mounting hole on the heating cavity of the housing, and the mounting mechanism comprises: The first mounting component has a first through hole; The second mounting component has a second through hole, and a groove is formed on the side of the second mounting component near the first mounting component; A microwave shielding component is provided with a third through hole, which is disposed between the first mounting component and the second mounting component, and the third through hole, the first through hole and the second through hole form a camera hole; A transparent heat insulation component is disposed within the groove; The camera component is located on the side of the first mounting component that is away from the heating cavity; Wherein, a mounting groove is formed between the sidewall of the first mounting member and the sidewall of the second mounting member, for setting the sidewall of the mounting hole; The first mounting component and the second mounting component are located on both sides of the mounting hole, and the first mounting component and the second mounting component are fixedly connected so that the mounting mechanism is fixedly installed on the mounting hole.
2. The installation mechanism according to claim 1, characterized in that, The microwave shielding component is disposed between the side wall of the mounting hole and the first mounting component.
3. The installation mechanism according to claim 1, characterized in that, The microwave shielding component includes a metal mesh.
4. The installation mechanism according to claim 1, characterized in that, The transparent thermal insulation component includes: The first glass plate is positioned away from the first mounting component; The second glass sheet is disposed on the side of the first glass sheet that is away from the first mounting member; The first sealing ring is disposed between the first glass sheet and the second glass sheet.
5. The installation mechanism according to claim 1, characterized in that, The first mounting component is provided with a plurality of fourth through holes surrounding the outer periphery of the first through hole.
6. The installation mechanism according to claim 1, characterized in that, The installation mechanism also includes: The heat insulation sheet is disposed on the side of the first mounting member away from the second mounting member.
7. The installation mechanism according to claim 1, characterized in that, The installation mechanism also includes: The mounting base is located on the side of the first mounting member opposite to the second mounting member and is connected to the first mounting member.
8. The installation mechanism according to claim 7, characterized in that, The mounting base is provided with a first mounting cavity for mounting the camera component, and the first mounting cavity is provided with an air inlet and an air outlet.
9. The installation mechanism according to claim 7, characterized in that, The mounting base has a first mounting cavity and a second mounting cavity that are connected. The first mounting cavity has an air outlet and the second mounting cavity has an air inlet. The first mounting cavity is used to install the camera component and the second mounting cavity is used to install the control component.
10. A camera mechanism, characterized in that, include: The installation mechanism according to any one of claims 1 to 9; A camera assembly is mounted on the mounting mechanism.
11. A cooking device, characterized in that, The cooking equipment includes: The housing has a heating chamber. The camera mechanism of claim 10, wherein the camera mechanism is disposed at a mounting hole on the heating cavity.
12. The cooking apparatus according to claim 11, characterized in that, The camera mechanism is located in the middle region of the top wall of the heating cavity and near the side wall of the heating cavity.
13. The cooking apparatus according to claim 11, characterized in that, The cooking equipment includes a microwave-steam-grill combo.