Door hook mounting structure and cooking device
By introducing a positioning plate and a positioning perforation structure into the cooking device, the safety hazards and assembly difficulties of the door hook and micro switch are solved, achieving both safety and smooth assembly.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-03-31
AI Technical Summary
In existing cooking devices, the hole positions for the door hook and micro switch pose safety hazards and pose assembly difficulties, and are prone to interference and impact problems.
The system employs a positioning plate and positioning perforation structure. The first end of the door hook body is inserted into the positioning perforation. The positioning plate can be slidably adjusted to reduce the hole diameter requirement and assembly difficulty. Smooth movement is ensured through the baffle plate section and guide groove.
It improves safety and assembly precision, reduces safety hazards to children, lowers assembly difficulty, and ensures smooth door hook movement.
Smart Images

Figure CN224055828U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of cooking, especially relates to a door hook mounting structure and cooking device. BACKGROUND
[0002] At present, in the cooking device, generally through the heating structure inside the cooking body to heat the inside of the cooking chamber, in the heating process, the door plate on the cooking body needs to be closed in place, to open the internal heating structure, otherwise scalding or internal heat loss problems will occur.
[0003] The existing structure is that the door hook structure is arranged on the door plate, and the micro switch on the cooking body is triggered when the door hook closes the door plate, so that the internal heating structure can be started while prompting the door plate to be closed in place, and the use is safer.
[0004] However, in order to facilitate the cooperation of the door hook with the micro switch on the cooking body during the opening and closing of the door plate, a hole position for the movement of the door hook is usually arranged on the cooking body, if the hole diameter of the hole position is set too large, the fingers of children are easy to stretch in and cause safety problems during use, therefore, in order to meet the safety use standard, the hole diameter of the hole position for the door hook to stretch in is usually set within a certain standard value, that is, the hole diameter is set smaller, and relative to the size of the whole machine, the hole position may not be completely aligned during assembly, and there is assembly difficulty.
[0005] In addition, during assembly, since the door hook itself has a certain thickness, there is a small assembly gap between the door hook and the hole position during assembly, and then interference may occur during the movement of the door hook, and the hole wall may be hit or the opening and closing process may not be smooth. INVENTION CONTENTS
[0006] In order to overcome at least one of the defects of the prior art described above, the utility model provides a door hook mounting structure and cooking device, which sets the first end of the door hook body into the positioning hole on the positioning plate, and the positioning plate can slide relative to the mounting seat, so as to reduce the small opening and reduce the interference during the movement of the door hook body.
[0007] The utility model adopts the technical scheme that
[0008] A door hook mounting structure comprises,
[0009] The door hook body has a first end;
[0010] The mounting seat is provided with a mounting hole and a positioning plate. The positioning plate is mounted on the mounting seat and can slide in a first direction. The positioning plate is provided with a positioning hole. The inner diameter of the positioning hole is smaller than that of the mounting hole and corresponds to the mounting hole. The first end can pass into the positioning hole and abut against the inner wall of the positioning hole during movement to make the positioning plate slide.
[0011] Further, the positioning plate is provided with a blocking hole plate segment. The blocking hole plate segment is connected to the side of the positioning hole and partially blocks the mounting hole during movement of the positioning plate.
[0012] Further, the side wall of the blocking hole plate segment is provided with a pressure receiving part for being pressed by the first end.
[0013] Further, the pressure receiving part is a pressure receiving inclined surface or a pressure receiving arc surface.
[0014] Further, both sides of the positioning hole are provided with the blocking hole plate segment.
[0015] Further, the positioning plate can slide in a second direction. The second direction is perpendicular to the first direction.
[0016] Further, the mounting seat is provided with a guide groove. The positioning plate is provided with a guide plate segment. The guide plate segment is slidably mounted in the guide groove to guide the positioning plate to slide in the first direction and the second direction.
[0017] Further, the top end and the bottom end of the mounting hole are provided with the guide groove. The top end and the bottom end of the positioning plate are provided with the guide plate segment. Each guide plate segment is correspondingly mounted in the guide groove.
[0018] Further, the first end is provided with a first connecting part.
[0019] The mounting seat is provided with a linkage, a detection switch and an elastic part. The linkage is rotatably connected to the mounting seat. The linkage is provided with a touch part and a second connecting part. The second connecting part is used for detachable connection with the first connecting part after the first end passes into the positioning hole. The detection switch is arranged on the rotation track of the touch part. One end of the elastic part is connected to the mounting seat. The other end of the elastic part is connected to the linkage and provides an elastic stress for keeping the touch part and the detection switch separated.
[0020] A cooking device includes the door hook mounting structure. The mounting seat is mounted on the cooking body of the cooking device. The end part of the door hook main body away from the first end is connected to the door plate and is linked with the door plate.
[0021] In summary, the utility model has the following technical effects:
[0022] In the application, by inserting the first end of the door hook body into the positioning hole of the positioning plate, since the inner diameter of the positioning hole is smaller than the inner diameter of the mounting hole of the original mounting seat, the safety use standard can be met, and since the positioning plate can slide relative to the mounting seat, the position can be automatically adjusted during assembly of the door hook body, thereby reducing the assembly difficulty. In addition, when the door plate is opened and closed, the first end of the door hook body can automatically slide with the linkage of the door plate body, thereby reducing the collision caused by fixed assembly. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 is a disassembled schematic view of the door hook mounting structure of the utility model;
[0024] Figure 2 is a schematic view of the overall assembly structure of the door hook mounting structure of the utility model;
[0025] Figure 3 is a schematic view of the structure of the mounting seat of the utility model;
[0026] Figure 4 is a schematic view of the structure of the positioning plate of the utility model;
[0027] Figure 5 is a schematic view of the structure of the door hook body of the utility model.
[0028] In the drawings, the reference signs have the following meanings: 10, door hook body; 11, first end; 111, bayonet; 20, mounting seat; 21, mounting hole; 22, positioning plate; 221, positioning hole; 222, blocking hole plate segment; 223, pressure receiving portion; 224, guide plate segment; 23, guide groove; 30, detection switch; 40, elastic component; 50, linkage. DETAILED DESCRIPTION
[0029] In order to better understand and implement, the technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model.
[0030] In the description of the utility model, it should be pointed out that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application.
[0032] Referring to Figures 1-5 The utility model discloses a door hook mounting structure, including door hook main part 10 and mounting seat 20, and door hook main part 10 has first end 11. Be equipped with installation perforation 21 and locating plate 22 on above -mentioned mounting seat 20, install locating plate 22 in mounting seat 20, and can slide along the first direction. Specifically be equipped with locating perforation 221 on locating plate 22, and the inner diameter of locating perforation 221 is less than the inner diameter of installation perforation 21, and with installation perforation 21 corresponds, and first end 11 can be in the movable penetration locating perforation 221, and can be in motion and lean against the inner wall of locating perforation 221, to make locating plate 22 slide.
[0033] On the basis of above-mentioned structure, when using the door hook mounting structure of the utility model, the door hook mounting structure can be used in cooking device and other structures with door panel opening and closing, and the detection switch 30 in the machine body is touched to the position by the door hook on the door panel when closing. It can also be used in food processor and other structures that need to start the blade structure rotation after the door panel is closed. The present application is mainly used in cooking device, and the end of the door hook main body 10 away from the first end 11 is connected to the door panel of the cooking device, and the mounting seat 20 can be installed on the cooking machine body. When the door panel is closed, the first end 11 of the door hook main body 10 on the door panel can be inserted into the locating perforation 221 of the mounting seat 20 of the cooking machine body, and after insertion, the detection switch 30 is touched to prompt the door panel to be closed to the position.
[0034] In the prior art, in order to facilitate the first end 11 of the door hook main body 10 to directly penetrate into the installation perforation 21 of the mounting seat 20, the hole diameter of the installation perforation 21 is designed to be relatively large. However, the hole diameter is too large, and the user is easy to get fingers stuck, especially when children use it. Therefore, in order to meet the safety use, the hole diameter of the installation perforation 21 needs to be set to be relatively small. However, when the first end 11 of the door hook main body 10 penetrates into the small hole diameter, it needs to be aligned with the hole position, which requires high precision during installation. Moreover, the hole diameter is too small, and the door hook driven by the rotating door panel is also rotated to insert or withdraw, which is easy to cause interference with the inner wall of the hole diameter of the installation perforation 21.
[0035] It should be noted that in the present embodiment, the first direction is the horizontal left-right direction, and the second direction can be selected as the vertical up-down direction.
[0036] Thus, in the present embodiment, the positioning plate 22 is arranged at the position corresponding to the mounting hole 21 of the mounting base 20, and the positioning plate 22 is slidable leftward and rightward relative to the mounting base 20, and the positioning hole 221 is arranged on the positioning plate 22, the positioning hole 221 is penetrable with the mounting hole 21, and the other part of the positioning plate 22 can block the mounting hole 21, that is, after the positioning plate 22 is assembled to the mounting base 20, the original mounting hole 21 of the mounting base 20 is blocked, and the first end 11 of the door hook body 10 can be inserted into the positioning hole 221 of the positioning plate 22, and after being inserted through the positioning hole 221, the first end 11 is connected with the detection switch 30 in the linkage.
[0037] Specifically, since the positioning plate 22 is slidable leftward and rightward relative to the mounting base 20, even if the first end 11 of the door hook body 10 is not aligned with the positioning hole 221 during the insertion process, as long as the first end 11 is aligned with the side wall of the positioning hole 221, the first end 11 can be forced to the side wall of the positioning hole 221 to move the positioning plate 22 leftward and rightward, and in this process, the positioning hole 221 is adjusted to the position of the first end 11 of the door hook body 10, so that the door hook body 10 is conveniently assembled, and the assembly precision of the door hook body 10 is low.
[0038] In addition, after the first end 11 of the door hook body 10 is inserted, during the closing process of the door plate, since the door hook body 10 is connected with the door plate, when the door plate is closed, the first end 11 of the door hook body 10 can be pushed to extend into the inside of the mounting base 20, and during the rotating process of the door plate, even if the door hook body 10 has a leftward and rightward direction deflection with the rotation of the door plate, the first end 11 of the door hook body 10 is pressed on the side wall of the positioning hole 221, and since the positioning plate 22 has a sliding trend in the leftward and rightward direction, even if the side wall of the positioning hole 221 is pressed and collided, the sliding trend of the positioning plate 22 can correspondingly slide under the action of the force, so as to slow down the pressing and collision, and the first end 11 of the door hook body 10 can be smoothly inserted or taken out.
[0039] It should be further noted that if the hole diameter of the mounting hole 21 is arranged to be consistent with the hole diameter of the positioning hole 221, the part of the door hook body 10 inserted into the positioning hole 221 can be adaptively adjusted during the rotating process of the door plate due to the sliding of the positioning plate 22, and the part of the door hook body 10 inserted into the mounting hole 21 will also cause interference, so the hole diameter of the mounting hole 21 needs to be arranged to be larger than the hole diameter of the positioning hole 221.
[0040] That is, in the present application, by inserting the first end 11 of the door hook body 10 into the positioning hole 221 of the positioning plate 22, since the inner diameter of the positioning hole 221 is smaller than the inner diameter of the mounting hole 21 of the original mounting seat 20, the safety use standard can be met, and since the positioning plate 22 can slide relative to the mounting seat 20, the position can be adaptively adjusted during assembly of the door hook body 10, reducing the assembly difficulty. In addition, the first end 11 of the door hook body 10 can slide adaptively with the linkage of the door body during opening and closing of the door, reducing the collision caused by fixed assembly.
[0041] Of course, the above-mentioned door hook body can be a sheet structure, and the end portion of the door hook body away from the first end can be assembled on the door panel by screws or other structures for convenient disassembly.
[0042] Further, the positioning plate 22 is provided with a blocking hole plate segment 222, which is connected to the side of the positioning hole 221 and partially blocks the mounting hole 21 when the positioning plate 22 moves. In this way, the first end 11 of the door hook body 10 is inserted into the positioning hole 221 of the positioning plate 22, and since the positioning plate 22 slides during opening and closing of the door, the blocking hole plate segment 222 can always cover the part of the mounting hole 21 that does not need to be communicated with the positioning hole 221 during movement of the positioning plate 22, and the mounting hole 21 itself can also retain the original large aperture, without affecting the movement of the first end 11 of the door hook body 10.
[0043] More specifically, the blocking hole plate segment 222 can be connected to the inner side wall of the positioning hole 221, and a pressure receiving portion 223 is provided on the side wall of the blocking hole plate segment 222, which is used to be pressed by the first end 11. Since the first end 11 of the door hook body 10 needs to maintain a small outer diameter, a certain movement gap can be maintained between the first end 11 and the positioning hole 221 after assembly, so the side surface of the door hook body 10 is generally provided as a flat structure. Then, the flat structure of the first end 11 inserted into the positioning hole 221 can only rely on the eccentric force of the door hook body 10 during rotation to press the side wall of the positioning hole 221 and drive the positioning plate 22 to adaptively adjust. In this way, only a hard force acts on the positioning plate 22, and the positioning plate 22 may not move smoothly.
[0044] Therefore, in the present application, the pressure receiving portion 223 is provided on the blocking hole plate segment 222 to decompose the force applied by the first end 11 into a horizontal force guided by the pressure receiving portion 223, so that the positioning plate 22 is more easily slid, and the movement of the door hook body 10 is more smooth.
[0045] Specifically, the pressure receiving part 223 is a pressure receiving inclined surface or a pressure receiving arc surface. In this embodiment, the pressure receiving part 223 is a pressure receiving inclined surface. When the first end 11 of the door hook body 10 acts on the pressure receiving inclined surface, the pressure receiving inclined surface can decompose the force into a transverse force. The positioning plate 22 can move under the action of the transverse force, and the movement process is smooth. Of course, the pressure receiving part 223 can also be a pressure receiving arc surface. The same arc surface can also decompose the force, so that the positioning plate 22 can smoothly slide.
[0046] More specifically, both sides of the positioning perforation 221 are provided with a blocking perforated plate segment 222. In this way, when the positioning plate 22 slides to the left, the first end 11 of the door hook body 10 can act on the left blocking perforated plate segment 222. When the positioning plate 22 slides to the right, the first end 11 of the door hook body 10 can act on the right blocking perforated plate segment 222. In this way, the positioning plate 22 can smoothly slide to the left and right. In addition, the two blocking perforated plate segments 222 can adaptively cover the left and right of the mounting perforation 21.
[0047] Further, the positioning plate 22 can slide in a second direction. The second direction is perpendicular to the first direction. It should be noted that the perpendicular in this embodiment refers to substantially perpendicular or close to perpendicular. On the basis of this structure, in addition to the tendency to slide left and right, the positioning plate 22 also has the tendency to slide up and down. In the actual use process of the door hook body 10, the door hook body 10 can have an up and down movement. In this case, if only the assembly gap formed by the door hook body 10 in the up and down position after being assembled to the positioning perforation 221 is relied on, the up and down collision can occur. Therefore, in this embodiment, the positioning plate 22 can also have the tendency to slide in the up and down direction, which is suitable for the up and down movement of the door hook body 10 under the action of external force, and reduces the up and down collision.
[0048] Further, a guide groove 23 can be further provided on the mounting seat 20, and a guide plate segment 224 can be provided on the positioning plate 22. The guide plate segment 224 can be slidably installed in the guide groove 23 to guide the positioning plate 22 to slide in the first direction and / or the second direction.
[0049] Specifically, if the positioning plate 22 only has the tendency to slide in the left and right directions, the guide plate segment 224 of the positioning plate 22 can slide left and right in the guide groove 23. The left and right side walls of the guide groove 23 can have a larger interval, which is greater than the length of the guide plate segment 224. The top wall and the bottom wall of the guide groove 23 can limit the top end and the bottom end of the guide plate segment 224, so that the guide plate segment 224 of the positioning plate 22 can only slide in the left and right directions of the guide groove 23. In order to avoid the collision of the door hook body 10 in the up and down direction, the inner diameter of the positioning perforation 221 in the up and down direction can be relatively large, thereby reducing the collision.
[0050] If the positioning plate 22 has the left-right direction and the up-down direction sliding, the guide plate segment 224 of the positioning plate 22 can slide left and right in the guide groove 23, and the top wall and the bottom wall of the guide groove 23 can keep a larger interval, so that the positioning plate 22 can have a larger range of movement in the up-down direction, and similarly, the left and right side walls of the guide groove 23 can also keep a larger interval, so that the guide plate segment 224 of the positioning plate 22 and the guide groove 23 can slide left and right and up and down.
[0051] Further, the top end and the bottom end of the mounting hole 21 are provided with the guide groove 23; the top end and the bottom end of the positioning plate 22 are provided with the guide plate segment 224; each guide plate segment 224 is installed in the guide groove 23 one by one, that is, the positioning plate 22 has the guide plate segment 224 and the guide groove 23 at the top end and the bottom end to realize sliding guidance, so that the sliding process of the positioning plate 22 is more stable.
[0052] Further, the first end 11 is provided with a first connecting part, and the mounting seat 20 is provided with a linkage 50, a detection switch 30 and an elastic part 40 corresponding to the first connecting part, specifically, the detection switch 30 can be electrically connected with the heating structure of the cooking device, and when used in a structure such as a food processor, it can be electrically connected with the control circuit of the stirring knife structure.
[0053] The above-mentioned linkage 50 is rotatably connected to the mounting seat 20, and the linkage 50 is provided with a touch part and a second connecting part, the second connecting part is used for detachable connection with the first connecting part after the first end 11 penetrates into the positioning hole 221; the detection switch 30 is arranged on the rotation track of the touch part; one end of the elastic part 40 is connected to the mounting seat 20, and the other end of the elastic part 40 is connected to the linkage 50 and provides an elastic stress for keeping the touch part and the detection switch apart. In this way, when the door plate is closed, the first end 11 of the door hook body 10 can be inserted into the positioning hole 221, and as the door plate is closed, the first end 11 can be gradually inserted to connect the first connecting part with the second connecting part on the linkage 50, after the linkage 50 is connected with the door hook body 10, the continuous closing of the door plate can push the linkage 50 to rotate, at this time, the rotation of the linkage 50 can compress the elastic part 40, and at the same time, the touch part on the linkage 50 can touch the detection switch 30, and the detection switch 30 can send a signal to prompt that the door plate is closed in place, and the cooking device starts to work. In this process, the elastic stress of the elastic part 40 keeps the touch part of the linkage 50 in a compressed state, and the circuit connection structure is stable.
[0054] Of course, when the door plate is opened, the first end 11 of the door hook body 10 can pull the door hook body 10 to move towards the direction of gradually exiting the positioning hole 221, and the touch part of the linkage 50 can be pulled to move away from the detection switch 30, at which time the touch part is separated from the detection switch 30, and the elastic stress provided by the elastic member 40 drives the linkage 50 to quickly reset.
[0055] The detection switch in the embodiment can be a touch switch, or a photoelectric switch, or a Hall switch in the prior art, which can be selected according to actual needs.
[0056] Without the linkage 50 and the elastic member 40, the first end 11 of the door hook body 10 can also form a touch part, which can directly detect the switch after being inserted into position, and can also prompt the door plate to be closed into position.
[0057] It should be noted that the first connecting part is a bayonet 111 structure, and the second connecting part can be a clamping arm structure. In addition, the first connecting part and the second connecting part can also be connected by a buckle and a buckle.
[0058] Embodiment 2,
[0059] A cooking device comprising the door hook mounting structure of embodiment 1, the mounting seat 20 is mounted on the cooking body of the cooking device, and the end of the door hook body 10 away from the first end 11 is connected to the door plate and linked with the door plate, that is, the end of the door hook body 10 away from the first end 11 is connected to the door plate of the cooking device, and the mounting seat 20 can be mounted on the cooking body. When the door plate is closed, the first end 11 of the door hook body 10 on the door plate can be inserted into the positioning hole 221 of the mounting seat 20 of the cooking body, and after being inserted, the touch detection switch 30 is touched to prompt the door plate to be closed into position.
[0060] In the prior art, in order to facilitate the first end 11 of the door hook body 10 to be directly inserted into the mounting hole 21 of the mounting seat 20, the hole diameter of the mounting hole 21 is designed to be large. However, if the hole diameter is too large, the user is easy to get his fingers stuck, especially when children use it. Therefore, in order to meet the safety requirements, the hole diameter of the mounting hole 21 needs to be designed to be small. However, when the first end 11 of the door hook body 10 is inserted into the small hole diameter, the hole position needs to be aligned, which requires high precision during installation. In addition, if the hole diameter is too small, the door hook driven by the rotating door plate also rotates to be inserted or withdrawn, which is easy to interfere with the inner wall of the hole diameter of the mounting hole 21.
[0061] Thus, in the present embodiment, the positioning plate 22 is arranged at the position corresponding to the mounting hole 21 of the mounting base 20, and the positioning plate 22 is slidable leftward and rightward relative to the mounting base 20, and the positioning hole 221 is arranged on the positioning plate 22, the positioning hole 221 is penetrable with the mounting hole 21, and the other part of the positioning plate 22 can block the mounting hole 21, that is, after the positioning plate 22 is assembled to the mounting base 20, the original mounting hole 21 of the mounting base 20 is blocked, and the first end 11 of the door hook body 10 can be inserted into the positioning hole 221 of the positioning plate 22, and after being inserted through the positioning hole 221, the first end 11 is connected with the detection switch 30 in the linkage.
[0062] Specifically, since the positioning plate 22 is slidable leftward and rightward relative to the mounting base 20, even if the first end 11 of the door hook body 10 is not aligned with the positioning hole 221 during the insertion process, as long as the first end 11 is aligned with the side wall of the positioning hole 221, the first end 11 can be forced to the side wall of the positioning hole 221 to move the positioning plate 22 leftward and rightward, and in this process, the positioning hole 221 is adjusted to the position of the first end 11 of the door hook body 10, so that the door hook body 10 is conveniently assembled, and the assembly precision of the door hook body 10 is low.
[0063] In addition, after the first end 11 of the door hook body 10 is inserted, during the closing process of the door plate, since the door hook body 10 is connected with the door plate, when the door plate is closed, the first end 11 of the door hook body 10 can be pushed to extend into the inside of the mounting base 20, and during the rotating process of the door plate, even if the door hook body 10 has a leftward and rightward direction deflection with the rotation of the door plate, the first end 11 of the door hook body 10 is pressed on the side wall of the positioning hole 221, and since the positioning plate 22 has a sliding trend in the leftward and rightward direction, even if the side wall of the positioning hole 221 is pressed and collided, the sliding trend of the positioning plate 22 can correspondingly slide under the action of the force, so as to slow down the pressing and collision, and the first end 11 of the door hook body 10 can be smoothly inserted or taken out.
[0064] It should be further noted that if the hole diameter of the mounting hole 21 is arranged to be consistent with the hole diameter of the positioning hole 221, the part of the door hook body 10 inserted into the positioning hole 221 can be adaptively adjusted during the rotating process of the door plate due to the sliding of the positioning plate 22, and the part of the door hook body 10 inserted into the mounting hole 21 will also cause interference, so the hole diameter of the mounting hole 21 needs to be arranged to be larger than the hole diameter of the positioning hole 221.
[0065] That is, in the present application, by inserting the first end 11 of the door hook body 10 into the positioning hole 221 of the positioning plate 22, since the inner diameter of the positioning hole 221 is smaller than the inner diameter of the mounting hole 21 of the original mounting seat 20, the safety use standard can be met, and since the positioning plate 22 can slide relative to the mounting seat 20, the position can be automatically adjusted during assembly of the door hook body 10, thereby reducing the assembly difficulty. In addition, during opening and closing of the door plate, the first end 11 of the door hook body 10 can slide automatically with the linkage of the door plate body, thereby reducing the collision caused by fixed assembly.
[0066] It should be noted that the cooking device in the present application can be an oven, a microwave oven, a microwave-steam-oven integrated machine and the like in the prior art. In the commonly used cooking device, the door plate and the cooking body are generally hinged to open and close, so one end of the door hook body is connected to the door plate, and the door hook body can push and pull the door hook body during the closing process of the door plate, so that the door hook body is linked with the door plate.
[0067] The technical means disclosed in the utility model scheme is not limited to the technical means disclosed in the above-mentioned embodiments, and also includes the technical scheme composed of any combination of the above technical features. It should be noted that for ordinary skilled persons in the art, without departing from the principle of the utility model, some improvements and refinements can be made, and these improvements and refinements are also considered to be within the protection scope of the utility model.
Claims
1. A door hook mounting structure characterized by comprising: The utility model relates to a door hook installation structure, which comprises a door hook body and a mounting seat. The mounting seat is provided with a mounting hole and a positioning plate. The positioning plate is installed on the mounting seat and can slide in a first direction.
2. The door hook mounting structure according to claim 1, characterized by The first end can be movably inserted into the positioning hole and can abut against the inner wall of the positioning hole during movement to make the positioning plate slide.
3. The door hook mounting structure according to claim 2, characterized by The positioning plate is provided with a blocking hole plate segment.
4. The door hook mounting structure according to claim 3, characterized by The side wall of the blocking hole plate segment is provided with a pressure receiving part for receiving the pressure of the first end.
5. The door hook mounting structure according to claim 2, characterized by The pressure receiving part is a pressure receiving inclined surface or a pressure receiving curved surface.
6. The door hook mounting structure according to any one of claims 1 to 5, characterized in that, Both sides of the positioning hole are provided with the blocking hole plate segment.
7. The door hook mounting structure according to claim 6, characterized by The positioning plate can slide in a second direction perpendicular to the first direction.
8. The door hook mounting structure according to claim 7, characterized by The mounting seat is provided with a guide groove, and the positioning plate is provided with a guide plate segment.
9. The door hook mounting structure according to any one of claims 1 to 5, characterized by The top end and the bottom end of the mounting hole are provided with the guide groove. The top end and the bottom end of the positioning plate are provided with the guide plate segment.
10. A cooking apparatus characterized by, Each guide plate segment is installed in the guide groove one by one. The first end is provided with a first connecting part. The mounting seat is provided with a linkage, a detection switch, and an elastic part. The linkage is rotatably connected to the mounting seat. The linkage is provided with a touch part and a second connecting part. The second connecting part is used for detachable connection with the first connecting part after the first end is inserted into the positioning hole. The detection switch is arranged on the rotation track of the touch part. One end of the elastic part is connected to the mounting seat, and the other end of the elastic part is connected to the linkage and provides an elastic stress for keeping the touch part and the detection switch separated. The utility model relates to a door hook installation structure, which comprises a door hook body and a mounting seat. The mounting seat is installed on the cooking body of the cooking device. The end part away from the first end of the door hook body is connected to the door plate of the cooking device and is linked with the door plate.