Turnover mechanism of control panel and cooking device
The flip mechanism driven by the synchronous transmission shaft and synchronous wheel assembly solves the problems of unstable flipping and uneven force of the control panel in the existing technology, realizes smooth and coherent flipping movement, and is equipped with safety protection measures to improve the safety and stability of use.
Patent Information
- Application Number
- CN202422800917.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-16
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-16
AI Technical Summary
The control panel flip mechanism of the existing cooking device has insufficient stability, uneven force during the flipping movement, and inconsistent movements, posing a safety hazard.
The flipping mechanism is driven by a synchronous transmission shaft. The first and second sliding frames slide linearly along the slide rails. The first and second rocker arms extend to the front of the frame, driving the control panel to flip around the rotating shaft. Combined with the synchronous wheel assembly and drive motor, it achieves smooth and coherent flipping movement. It is equipped with an infrared sensor and a micro switch for safety protection.
The control panel can be flipped smoothly and continuously, the flipping angle is accurately adjustable, the flipping process is safe and reliable, and it has the functions of preventing fingers and foreign objects from being pinched, which improves the safety and stability of use.
Smart Images

Figure CN223392309U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of control panels, in particular to a turning mechanism of a control panel and a cooking device. Background Art
[0002] Cooking devices, such as ovens and steamers, are typically equipped with a control panel to facilitate user control. Control panels are typically fixed to the cooking device, and some cooking devices, such as ovens and steamers, are embedded in kitchen cabinets. However, due to their enclosed design, the water tank and associated water pipe accessories behind the control panel are not visible. If the control panel could be flipped open and laid flat, the water tank would be visible from the front of the device and could be removed or placed, allowing operations such as adding water, emptying the tank, cleaning the tank, and even replacing it. Once the control panel is closed and restored to its upright position, users can adjust various cooking settings and operations on the control panel, and the control panel can be hidden to reduce its size.
[0003] To this end, the control panels on some cooking devices can be flipped to facilitate user observation and operation of the control panel. For example, Chinese patent No. 201920856180.1 discloses a household appliance with a flippable control panel. Although the above patent can facilitate user observation and operation of the control panel through the movement of the control panel, the power source for realizing the movement of the control panel in the prior art is set in the middle, resulting in unstable flipping on both sides, uneven force during the movement process, inconsistent movement of the flip mechanism, flipping movement that is too fast or too slow, and various safety hazards. Utility Model Content
[0004] The purpose of the present invention is to overcome the defects of insufficient stability of the flip mechanism in the prior art and uneven force during the flipping movement, and to provide a flip mechanism for a control panel and a cooking device, so that the flipping movement is smooth, coherent and consistent, the flipping angle is accurately adjustable, and the flipping process is safe and reliable.
[0005] To achieve the above-mentioned purpose, the utility model provides a flipping mechanism of a control panel; it includes a control panel mounted on a frame, the control panel is connected to the frame through a rotating shaft, an upper plate is mounted on one side of the control panel, a first rocker arm is mounted on one side of the upper plate, and a second rocker arm is mounted on the other side, one end of the first rocker arm and the second rocker arm passes through the frame and is connected to the control panel, and the other ends are respectively equipped with a first sliding frame and a second sliding frame, the first sliding frame slides linearly along the first slide rail; the second sliding frame slides linearly along the second slide rail; the first sliding frame and the second sliding frame are also synchronously connected through a synchronous transmission shaft; the synchronous transmission shaft, driven by an external force, causes the first sliding frame and the second sliding frame to slide linearly, and the first rocker arm and the second rocker arm extend to the front of the frame, driving the control panel to perform a flipping movement around the rotating shaft.
[0006] Preferably, the first rocker arm is connected to the first sliding frame via a first connecting shaft, the second rocker arm is connected to the second sliding frame via a second connecting shaft, and support balls are provided between the first sliding frame and the first slide rail, and between the second sliding frame and the second slide rail.
[0007] Preferably, a first synchronous wheel assembly is installed on one side of the first slide rail, and a second synchronous wheel assembly is installed on one side of the second slide rail. The first synchronous wheel assembly is transmission-connected to the first rocker arm, and the second synchronous wheel assembly is transmission-connected to the second rocker arm. The first synchronous wheel assembly and the second synchronous wheel assembly are synchronously transmission-connected through a synchronous transmission shaft; the synchronous transmission shaft is transmission-connected to the drive motor, and the drive motor drives the synchronous transmission shaft to rotate, and respectively drives the first sliding frame and the first rocker arm to move linearly through the first synchronous wheel assembly, and the second synchronous wheel assembly drives the second sliding frame and the second rocker arm to move linearly in turn, thereby driving the control panel to flip around the rotating shaft.
[0008] Preferably, the first synchronous wheel assembly includes a first synchronous wheel bracket connected to the upper plate, a first synchronous wheel installed at both ends of the first synchronous wheel bracket, a first synchronous belt sleeved on the first synchronous wheel and a first pushing block installed on the first synchronous belt, and the end of the first pushing block is connected to the first sliding frame; the second synchronous wheel assembly includes a second synchronous wheel bracket connected to the upper plate, a second synchronous wheel installed at both ends of the second synchronous wheel bracket, a second synchronous belt sleeved on the second synchronous wheel and a second pushing block installed on the second synchronous belt, and the end of the second pushing block is connected to the second sliding frame; the first synchronous wheel is installed at one end of the synchronous transmission shaft, and the second synchronous wheel is installed at the other end, thereby realizing synchronous transmission connection.
[0009] Preferably, a reduction gear set is installed at the end of the drive motor, and the reduction gear set is meshed with the transmission gear on the synchronous transmission shaft; a control PCB board is also installed on the upper plate, and the control PCB board is electrically connected to the drive motor to control the output of the drive motor.
[0010] Preferably, the first rocker arm is provided with a first cover plate on the outside, the second rocker arm is provided with a second cover plate on the outside, the first cover plate is provided with a first infrared sensor, and the second cover plate is provided with a second infrared sensor. When the first rocker arm and the second rocker arm are extended to the front of the frame, the first infrared sensor and the second infrared sensor start to work and emit and receive light at each other.
[0011] Preferably, a first microswitch is installed on one side of the first cover plate, and the first microswitch is fixedly installed on the frame. The first microswitch is electrically connected to the first infrared sensor and the second infrared sensor respectively; a first boss is provided on the side of the first cover plate corresponding to the first microswitch, and the first boss contacts the first microswitch, and the first infrared sensor and the second infrared sensor are turned off when the first microswitch is pressed; when the first rocker arm and the second rocker arm extend to the front of the frame, the first boss separates from the first microswitch, releasing the first microswitch, and the first infrared sensor and the second infrared sensor are activated.
[0012] Preferably, the first cover plate and the second cover plate are both equipped with a limit rod, and when the first rocker arm and the second rocker arm are extended to the front of the frame, the limit rod contacts the frame for hard limiting; a stop frame is provided at the rear end of the first sliding frame and the second sliding frame, and when the first rocker arm and the second rocker arm are retracted to the rear of the frame, the first sliding frame and the second sliding frame contact the stop frame for hard limiting; a second microswitch is installed at one end of the second synchronous wheel bracket, and a third microswitch is installed at the other end; the second microswitch and the third microswitch are both electrically connected to the drive motor; when the first rocker arm and the second rocker arm are extended to the front of the frame, the second connecting shaft contacts the second microswitch to control the drive motor to stop rotating; when the first rocker arm and the second rocker arm are retracted to the rear of the frame, the second connecting shaft contacts the third microswitch to control the drive motor to stop rotating.
[0013] Preferably, the control panel includes a first lock hook installed on one side and connected to the first rocker arm hinge, and a second lock hook installed on the other side and connected to the second rocker arm hinge. A first control button is provided on the front side of the control panel, and a second control button is provided on the back side. A first rotating shaft is provided on one side of the control panel, and a second rotating shaft is provided on the other side; a first panel fixing frame is provided on one side of the frame, and a second panel fixing frame is provided on the other side; the first rotating shaft is inserted into the interior of the first panel fixing frame, and the second rotating shaft is inserted into the interior of the second panel fixing frame, and both the first panel fixing frame and the second panel fixing frame are L-shaped.
[0014] The utility model also provides a cooking device, comprising the above-mentioned flip mechanism of the control panel.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] When the utility model is in operation, the synchronous transmission shaft is driven by an external force to make the first sliding frame slide linearly along the first slide rail, and the second sliding frame slide linearly along the second slide rail; the front ends of the first rocker arm and the second rocker arm extend toward the front of the frame, driving the control panel to perform a flipping movement around the rotating shaft; so that the control panel flips to a certain angle, which can be set, generally between 0° and 180°, preferably 90°, so that the control panel and the frame are perpendicular to each other;
[0017] Furthermore, the ends of the first rocker arm and the second rocker arm slide linearly on the first slide rail and the second slide rail respectively, so that the linear motion is smooth and coherent, thereby causing the flipping motion to be smooth and coherent;
[0018] Furthermore, the first sliding frame and the second sliding frame are also synchronously connected through a synchronous transmission shaft; thereby, the first rocker arm and the second rocker arm have consistent movements, which in turn leads to consistent flipping movements, accurate and adjustable flipping angles, and a safe and reliable flipping process. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0020] Figure 1 This is a schematic diagram of a flip mechanism of a control panel provided by the present invention in a closed state;
[0021] Figure 2 This is a schematic diagram of a flip mechanism of a control panel provided by the present invention in an open state;
[0022] Figure 3 This is a top view schematic diagram of a flip mechanism of a control panel provided by the present invention;
[0023] Figure 4 This is an exploded schematic diagram of a flip mechanism of a control panel provided by the present invention;
[0024] Figure 5 It is a schematic diagram of the second slide rail provided by the utility model;
[0025] Figure 6 This is an exploded schematic diagram of the drive motor, reduction gear set and transmission gear provided by the utility model;
[0026] Figure 7 This is an exploded schematic diagram of the first synchronous wheel assembly provided by the present utility model;
[0027] Figure 8 This is an exploded schematic diagram of the second synchronous wheel assembly provided by the present invention;
[0028] Figure 9 This is an exploded schematic diagram of the first rocker arm and the first cover plate provided by the present invention;
[0029] Figure 10 This is an exploded schematic diagram of the second rocker arm and the second cover plate provided by the present invention;
[0030] Figure 11 This is a structural diagram of the synchronous transmission shaft provided by the utility model;
[0031] Figure 12 This is an exploded schematic diagram of the control panel provided by the present utility model;
[0032] Figure 13 This is a schematic diagram of one side of the control panel provided by the utility model being retracted;
[0033] Figure 14 This is a schematic diagram of the other side of the control panel provided by the present invention being retracted;
[0034] Figure 15 This is a schematic diagram of one side of the control panel provided by the utility model when it is opened;
[0035] Figure 16 It is a schematic diagram of the other side of the control panel provided by the present invention when it is opened.
[0036] Included in the diagram are:
[0037] 11. Control panel; 12. Frame; 14. Rotating shaft; 13. Upper plate; 61. First rocker arm; 62. Second rocker arm; 21. First sliding frame; 22. Second sliding frame; 91. First slide rail; 92. Second slide rail; 5. Synchronous drive shaft; 93. First connecting shaft; 94. Second connecting shaft; 41. First synchronous wheel assembly; 42. Second synchronous wheel assembly; 7. Drive motor; 411. First synchronous wheel bracket; 412. First synchronous wheel; 413. First synchronous belt; 414. First push block; 421. Second synchronous wheel bracket; 422. Second synchronous wheel; 423. Second synchronous belt ;424, second push block;71, reduction gear set;51, transmission gear;72, control PCB board;15, first lock hook;16, second lock hook;17, first control button;18, second control button;141, first rotating shaft;142, second rotating shaft;121, first panel fixing bracket;122, second panel fixing bracket;63, first cover plate;64, second cover plate;65, first infrared sensor;66, second infrared sensor;68, first micro switch;67, first boss;69, limit rod;99, second micro switch;98, third micro switch;60, stop bracket. DETAILED DESCRIPTION
[0038] The following will be combined with the drawings in this embodiment of the present invention to clearly and completely describe the technical solution in this embodiment of the present invention. Obviously, the embodiment described is only one embodiment of the present invention, not all embodiments of the present invention. Based on this embodiment of the present invention, all other embodiments of the present invention obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this utility model.
[0039] Example 1
[0040] Please refer to Figures 1 to 16 , this embodiment provides a flip mechanism for a control panel.
[0041] like Figure 1 As shown, the control panel 11 is mounted on the frame 12. In this embodiment, the control panel 11 is mounted on the upper end of the frame 12, so that the water tank can be observed from the front of the product and can be removed or placed, so as to perform operations such as adding water to the water tank, emptying the water tank, cleaning the water tank, and even replacing the water tank. In other embodiments, the control panel 11 can also be mounted on the lower end of the frame 12, so that components installed inside the control panel 11, such as the filter, can be removed for cleaning.
[0042] like Figure 1As shown, the control panel 11 is connected to the frame 12 via a rotating shaft 14, and the control panel 11 is flipped through the rotating shaft 14 to achieve a hinge connection; in this embodiment, the rotating shaft 14 is installed at the lower part of the control panel 11 to achieve the control panel 11 flipping forward.
[0043] like Figure 1 As shown, an upper plate 13 is installed on one side of the control panel 11. The upper plate 13 is used to place and install a driving device to drive the control panel 11 to flip forward.
[0044] Specifically, a first rocker arm 61 is installed on one side of the upper plate 13, and a second rocker arm 62 is installed on the other side. The first rocker arm 61 and the second rocker arm 62 have the same structure and are designed symmetrically with each other. In other embodiments, more rocker arms can be provided to enable more connections with the control panel 11, so that the control panel 11 is evenly stressed.
[0045] Furthermore, the front ends of the first rocker arm 61 and the second rocker arm 62 pass through the frame 12 and are connected to the control panel 11, so that the control panel 11 is respectively connected to the two control components, achieving mutual symmetry of the forces, and the control panel 11 is evenly stressed during the flipping process.
[0046] Furthermore, the rear end of the first rocker arm 61 is equipped with a first sliding frame 21, and correspondingly, the rear end of the second rocker arm 62 is equipped with a second sliding frame 22. The first sliding frame 21 slides linearly along the first slide rail 91, and the second sliding frame 22 slides linearly along the second slide rail 92. The first slide rail 91 and the second slide rail 92 are fixedly mounted on the upper plate 13.
[0047] The first rocker arm 61 slides linearly along the first slide rail 91 through the first sliding frame 21, and the second rocker arm 62 slides linearly along the second slide rail 92 through the second sliding frame 22, so that the linear motion is smooth and continuous, thereby resulting in smooth and continuous flipping motion.
[0048] The first sliding frame 21 and the second sliding frame 22 are also synchronously connected through the synchronous transmission shaft 5; thereby, the first rocker arm 61 and the second rocker arm 62 have consistent movements, which in turn leads to consistent flipping movements, accurate and adjustable flipping angles, and a safe and reliable flipping process.
[0049] When the present invention is working, the synchronous transmission shaft 5 is driven by an external force, so that the first sliding frame 21 slides linearly along the first slide rail 91, and the second sliding frame 22 slides linearly along the second slide rail 92; the front ends of the first rocker arm 61 and the second rocker arm 62 extend forward of the frame 12, driving the control panel 11 to perform a flipping movement around the rotating shaft 14; so that the control panel 11 flips to a certain angle, and the flipping angle can be set, generally between 0° and 180°, preferably 90°, so that the control panel 11 and the frame 12 are perpendicular to each other.
[0050] Furthermore, the first sliding frame 21 and the second sliding frame 22 can directly slide linearly under the drive of the cylinder.
[0051] like Figure 3 As shown, the first rocker arm 61 and the first sliding frame 21 are hingedly connected via a first connecting shaft 93, and the first connecting shaft 93 connects the first rocker arm 61 and the first sliding frame 21; similarly, the second rocker arm 62 and the second sliding frame 22 are hingedly connected via a second connecting shaft 94; in order to reduce the friction during the sliding process and extend the service life; support balls are provided between the first sliding frame 21 and the first slide rail 91, and between the second sliding frame 22 and the second slide rail 92; rolling friction is used instead of sliding friction.
[0052] like Figure 4 As shown, a first synchronous wheel assembly 41 is installed on one side of the first slide rail 91, and a second synchronous wheel assembly 42 is installed on one side of the second slide rail 92. The first synchronous wheel assembly 41 is transmission-connected to the first rocker arm 61, and the second synchronous wheel assembly 42 is transmission-connected to the second rocker arm 62. The first synchronous wheel assembly 41 and the second synchronous wheel assembly 42 are synchronously transmission-connected through a synchronous transmission shaft 5, and the synchronous transmission shaft 5 is transmission-connected to the drive motor 7.
[0053] The movement process in this embodiment is as follows: the drive motor 7 drives the synchronous transmission shaft 5 to rotate, and drives the first rocker arm 61 and the second rocker arm 62 to move linearly through the first synchronous wheel assembly 41 and the second synchronous wheel assembly 42, thereby driving the control panel 11 to flip around the rotating shaft 14.
[0054] like Figure 4 As shown, the first synchronous wheel assembly 41 and the second synchronous wheel assembly 42 have substantially the same structure and can be understood by comparison.
[0055] Specifically, such as Figure 7As shown, the first synchronous wheel assembly 41 includes a first synchronous wheel bracket 411 connected to the upper plate 13, first synchronous wheels 412 mounted at both ends of the first synchronous wheel bracket 411, a first synchronous belt 413 sleeved on the first synchronous wheel 412, and a first push block 414 mounted on the first synchronous belt 413, with the end of the first push block 414 connected to the first sliding frame 21. Furthermore, the first synchronous wheel bracket 411 is U-shaped, with the two first synchronous wheels 412 placed at both ends of the U-shaped first synchronous wheel bracket 411, and the first push block 414 is fixed to the lower part of the first synchronous belt 413, with the end connected to the first sliding frame 21, thereby converting the rotational motion of the first synchronous wheel 412 into the linear motion of the first synchronous belt 413, thereby driving the first sliding frame 21 to perform linear reciprocating motion.
[0056] Similarly, if Figure 8 As shown, the second synchronous wheel assembly 42 includes a second synchronous wheel bracket 421 connected to the upper plate 13, a second synchronous wheel 422 installed at both ends of the second synchronous wheel bracket 421, a second synchronous belt 423 sleeved on the second synchronous wheel 422 and a second pushing block 424 installed on the second synchronous belt 423, and the end of the second pushing block 424 is connected to the second sliding frame 22.
[0057] In order to achieve the synchronous rotation of the first synchronous wheel 412 and the second synchronous wheel 422, as shown in FIG. Figure 11 As shown, the first synchronous wheel 412 is installed at one end of the synchronous transmission shaft 5, and the second synchronous wheel 422 is installed at the other end of the synchronous transmission shaft 5, thereby realizing a synchronous transmission connection; further, in this embodiment, the synchronous transmission shaft 5 serves as a part of the transmission, and the synchronous transmission shaft 5 drives the first synchronous wheel 412 and the second synchronous wheel 422 to rotate synchronously.
[0058] like Figure 6 As shown, a reduction gear set 71 is installed at the end of the drive motor 7, and the reduction gear set 71 is meshed with the transmission gear 51 on the synchronous transmission shaft 5; a control PCB board 72 is also installed on the upper plate 13, and the control PCB board 72 is electrically connected to the drive motor 7 to control the output of the drive motor 7; further, the control PCB board 72 is also provided with a current sensing element for monitoring the current of the drive motor 7, thereby monitoring the rotation of the drive motor 7 in real time, and also preventing the control panel 11 from pinching hands or foreign objects.
[0059] In this embodiment, first, the control PCB board 72 controls the rotation of the drive motor 7, and drives the rotation of the synchronous transmission shaft 5 after deceleration by the reduction gear group 71; secondly, the synchronous transmission shaft 5 drives the first synchronous wheel 412 and the second synchronous wheel 422 to rotate synchronously; the first synchronous wheel 412 and the second synchronous wheel 422 respectively drive the first synchronous belt 413 and the second synchronous wheel 422 to move linearly; thirdly, the first pushing block 414 on the first synchronous belt 413 pushes the first sliding frame 21 to move linearly, and the second pushing block 424 on the second synchronous wheel 422 pushes the second sliding frame 22 to move linearly; finally, the first sliding frame 21 and the second sliding frame 22 slide linearly along the first slide rail 91 and the second slide rail 92 respectively, so that the first rocker arm 61 and the second rocker arm 62 extend to the front of the frame 12, driving the control panel 11 to flip around the rotating shaft 14.
[0060] like Figure 12 As shown, the control panel 11 includes a first locking hook 15 installed on one side and hingedly connected to the first rocker arm 61, and a second locking hook 16 installed on the other side and hingedly connected to the second rocker arm 62. The first rocker arm 61 controls or drives the control panel 11 through the first locking hook 15, and at the same time, the second rocker arm 62 controls or drives the control panel 11 through the second locking hook 16.
[0061] Furthermore, a first control button 17 is provided on the front side of the control panel 11, and a second control button 18 is provided on the back side. The first control button 17 controls the opening of the control panel 11, and the second control button 18 controls the closing of the control panel 11. The first control button 17 and the second control button 18 can be physical buttons, touch buttons, or virtual buttons.
[0062] like Figure 12 As shown, in this embodiment, the rotating shaft 14 is provided in two pieces, namely a first rotating shaft 141 provided on one side of the control panel 11 and a second rotating shaft 142 provided on the other side of the control panel 11; correspondingly, as shown in FIG. Figure 4 As shown, a first panel fixing frame 121 is installed on one side of the frame 12, and a second panel fixing frame 122 is installed on the other side; the first rotating shaft 141 is inserted into the first panel fixing frame 121, and the second rotating shaft 142 is inserted into the second panel fixing frame 122, so that the control panel 11 can be flipped around the lower rotating shaft 14.
[0063] Furthermore, the first panel fixing frame 121 and the second panel fixing frame 122 are both L-shaped. The first panel fixing frame 121 and the second panel fixing frame 122 are fixedly installed at the rear of the frame 12, and the ends pass through the frame 12 and are plugged into the rotating shaft 14, thereby connecting to the control panel 11.
[0064] like Figure 9 and Figure 10 As shown, the first rocker arm 61 is provided with a first cover plate 63 on the outside, and the second rocker arm 62 is provided with a second cover plate 64 on the outside. The cover plates are used to protect the internal rocker arm, making the movement smoother and extending the service life.
[0065] Furthermore, a first infrared sensor 65 is installed on the first cover plate 63, and a second infrared sensor 66 is installed on the second cover plate 64. When the first rocker arm 61 and the second rocker arm 62 extend to the front of the frame 12, the first infrared sensor 65 and the second infrared sensor 66 start to work and emit and receive light from each other.
[0066] A first implementation method of the first infrared sensor 65 and the second infrared sensor 66: when the control panel 11 is flipped open, the first infrared sensor 65 and the second infrared sensor 66 start working and continuously emit and receive light from each other; when a human hand or other obstacle blocks the first infrared sensor 65 and the second infrared sensor 66, making it impossible to sense the infrared signal, the sensor immediately recognizes the situation and sends a command signal through the control PCB board 72 to stop the rotation of the drive motor 7. The first infrared sensor 65 and the second infrared sensor 66 continue to work, thereby realizing the first safety protection function of the control panel 11 to prevent fingers or foreign objects from being pinched.
[0067] In this embodiment, in order to make the first infrared sensor 65 and the second infrared sensor 66 easier to control, the second implementation method of the first infrared sensor 65 and the second infrared sensor 66 is: a first micro switch 68 is provided to start and shut it down, so that it is started when the control panel 11 is opened; and shut down when the control panel 11 is closed.
[0068] Specifically, a first micro switch 68 is installed on one side of the first cover plate 63, and the first micro switch 68 is fixedly installed on the rear side of the frame 12. The first micro switch 68 is electrically connected to the first infrared sensor 65 and the second infrared sensor 66 respectively; further, in other embodiments, the first micro switch 68 can also be electrically connected to the first infrared sensor 65 and the second infrared sensor 66 through the control PCB board 72.
[0069] Furthermore, in order to control the first microswitch 68, a first boss 67 is provided on the side of the first cover 63 corresponding to the first microswitch 68. The first boss 67 contacts the first microswitch 68, pressing the first microswitch 68, and the first infrared sensor 65 and the second infrared sensor 66 are turned off; the first boss 67 moves away from the first microswitch 68, releasing the first microswitch 68, and the first infrared sensor 65 and the second infrared sensor 66 are turned on and start working.
[0070] In actual application, when the first rocker arm 61 and the second rocker arm 62 extend forward of the frame 12 , the first boss 67 separates from the first micro switch 68 , releasing the first micro switch 68 , and the first infrared sensor 65 and the second infrared sensor 66 are activated.
[0071] In this embodiment, the control PCB board 72 is further provided with a current sensing element for detecting the current of the driving motor 7 , thereby realizing a second safety protection function of the control panel 11 to prevent fingers from being pinched or foreign objects from being pinched.
[0072] Specifically, the current sensing element is electrically connected to the drive motor 7 to detect the current of the drive motor 7 in real time. When a hand or other obstacle is accidentally clamped when the control panel 11 is flipped and retracted; when the drive motor 7 encounters resistance during rotation and the rotation is blocked (as in the case of a stall test), the drive motor 7 will generate an increase in current. At this time, the current sensing element in the control PCB board 72 detects the increase in the current of the drive motor 7 and sends a stop instruction to the drive motor 7; thereby realizing the second safety protection function of the control panel 11 to prevent fingers or foreign objects from being clamped.
[0073] In this embodiment, the control panel 11 is also provided with a hard limit; Figure 15 As shown, the first cover plate 63 and the second cover plate 64 are both equipped with a limiting rod 69. When the first rocker arm 61 and the second rocker arm 62 extend forward of the frame 12, the limiting rod 69 contacts the frame 12 to perform hard limiting.
[0074] In this embodiment, a control panel 11 is further provided for retracting a hard limit; a stop frame 60 is provided at the rear end of the first sliding frame 21 and the second sliding frame 22. When the first rocker arm 61 and the second rocker arm 62 are retracted to the rear of the frame 12, the first sliding frame 21 and the second sliding frame 22 contact the stop frame 60 for hard limiting.
[0075] In this embodiment, the control panel 11 is also provided with a soft limiter; Figure 8 As shown, a second microswitch 99 is installed at one end of the second synchronous wheel bracket 421, and a third microswitch 98 is installed at the other end; the second microswitch 99 and the third microswitch 98 are both electrically connected to the drive motor 7; in the actual connection process, the second microswitch 99 and the third microswitch 98 are electrically connected to the drive motor 7 through the control PCB board 72; when the first rocker arm 61 and the second rocker arm 62 extend toward the front of the frame 12, the second connecting shaft 94 contacts the second microswitch 99, controlling the drive motor 7 to stop rotating; and performing extension soft limit.
[0076] In this embodiment, a control panel 11 is also provided for retracting the soft limit; when the first rocker arm 61 and the second rocker arm 62 are retracted to the rear of the frame 12, the second connecting shaft 94 contacts the third micro switch 98, controlling the drive motor 7 to stop rotating and retract the soft limit.
[0077] Furthermore, in this embodiment, the flip angle of the control panel 11 can be adjusted by adjusting the positions of the second microswitch 99 and the third microswitch 98. It is generally set at 90°, but it can be increased or decreased on the above angle, so that it is suitable for kitchen appliances of various capacities and has a wide range of applications.
[0078] Furthermore, by adjusting the installation positions of the first infrared sensor 65 and the second infrared sensor 66, the travel range of the infrared sensor to start protection and shut down and flip the structure can be achieved, which is flexible, convenient, reliable and safe to use.
[0079] Furthermore, by adjusting the current sensing element's response value, the amount of resistance encountered by the control panel 11 during its rotation, such as when a hand or obstacle blocks the control panel 11, can be adjusted to trigger a stop command for the drive motor 7. This allows for the use of different kitchen appliances by replacing drive motor 7 models with different speeds and torques.
[0080] The control panel 11 flips over to close the function:
[0081] like Figure 13 and Figure 14 As shown, the control PCB board 72 controls the drive motor 7 to rotate counterclockwise, and after deceleration by the reduction gear set 71, drives the synchronous transmission shaft 5 to rotate counterclockwise; the synchronous transmission shaft 5 drives the first synchronous wheel 412 and the second synchronous wheel 422 to rotate counterclockwise;
[0082] The first synchronous wheel 412 and the second synchronous wheel 422 respectively drive the first synchronous belt 413 and the second synchronous wheel 422 to move linearly backward; the first pushing block 414 on the first synchronous belt 413 pushes the first sliding frame 21 to move linearly backward; the second pushing block 424 on the second synchronous wheel 422 pushes the second sliding frame 22 to move linearly backward;
[0083] The first sliding frame 21 and the second sliding frame 22 slide linearly backward along the first slide rail 91 and the second slide rail 92 respectively, so that the first rocker arm 61 and the second rocker arm 62 retract toward the rear of the frame 12, driving the control panel 11 to flip and close around the rotating shaft 14.
[0084] When the first rocker arm 61 and the second rocker arm 62 retract to the rear of the frame 12, the second connecting shaft 94 contacts the third micro switch 98, controlling the driving motor 7 to stop rotating, and the flip-closing action of the control panel 11 stops.
[0085] Similarly, if Figure 15 and Figure 16 As shown, the flip-open function of the control panel 11 is exactly the opposite of the closing function, which will not be described in detail here.
[0086] Example 2
[0087] like Figures 1 to 16 As shown, this embodiment provides a cooking device, including the flip mechanism of the control panel described in the first embodiment.
[0088] In this embodiment, the cooking device can be an integrated stove, oven, steamer, disinfection cabinet or steam-bake combination machine, and of course it can also be other electrical equipment with a control panel 11. More preferably, the cooking device in this embodiment is preferably embedded.
[0089] The above embodiments are preferred implementation methods of the present invention, but the implementation methods of the present invention are not limited to the above embodiments. Any other changes, modifications, substitutions, combinations, and simplifications that do not deviate from the spirit and principles of the present invention should be considered as equivalent replacement methods and are included in the scope of protection of the present invention.
Claims
1. A flip mechanism for a control panel, characterized in that: The invention comprises a control panel (11) mounted on a frame (12), wherein the control panel (11) is connected to the frame (12) via a rotating shaft (14), an upper plate (13) is mounted on one side of the control panel (11), a first rocker arm (61) is mounted on one side of the upper plate (13), and a second rocker arm (62) is mounted on the other side; one end of the first rocker arm (61) and the second rocker arm (62) pass through the frame (12) and are connected to the control panel (11), and the other end of the first rocker arm (61) and the second rocker arm (62) are respectively mounted on the first sliding frame (21) and the second sliding frame (22); A sliding frame (21) slides linearly along a first slide rail (91), and a second sliding frame (22) slides linearly along a second slide rail (92); the first sliding frame (21) and the second sliding frame (22) are also synchronously connected via a synchronous transmission shaft (5); the synchronous transmission shaft (5) is driven by an external force to make the first sliding frame (21) and the second sliding frame (22) slide linearly, and the first rocker arm (61) and the second rocker arm (62) extend toward the front of the frame (12), driving the control panel (11) to perform a flipping motion around the rotating shaft (14).
2. The flip mechanism of a control panel according to claim 1, characterized in that: The first rocker arm (61) is connected to the first sliding frame (21) via a first connecting shaft (93), the second rocker arm (62) is connected to the second sliding frame (22) via a second connecting shaft (94), and supporting balls are provided between the first sliding frame (21) and the first slide rail (91), and between the second sliding frame (22) and the second slide rail (92).
3. The flip mechanism of a control panel according to claim 2, characterized in that: A first synchronous wheel assembly (41) is installed on one side of the first slide rail (91), and a second synchronous wheel assembly (42) is installed on one side of the second slide rail (92). The first synchronous wheel assembly (41) is connected to the first rocker arm (61) in a transmission manner, and the second synchronous wheel assembly (42) is connected to the second rocker arm (62) in a transmission manner. The first synchronous wheel assembly (41) and the second synchronous wheel assembly (42) are connected to each other in a synchronous transmission shaft (5); the synchronous transmission shaft (5) is connected to the driving motor (7), and the driving motor (7) drives the synchronous transmission shaft (5) to rotate, and respectively drives the first sliding frame (21) and the first rocker arm (61) to move linearly through the first synchronous wheel assembly (41), and the second synchronous wheel assembly (42) drives the second sliding frame (22) and the second rocker arm (62) to move linearly, thereby driving the control panel (11) to perform a flipping movement around the rotating shaft (14).
4. The control panel flip mechanism according to claim 3, characterized in that: The first synchronous wheel assembly (41) includes a first synchronous wheel bracket (411) connected to the upper plate (13), a first synchronous wheel (412) installed at both ends of the first synchronous wheel bracket (411), a first synchronous belt (413) sleeved on the first synchronous wheel (412), and a first pushing block (414) installed on the first synchronous belt (413), wherein the end of the first pushing block (414) is connected to the first sliding frame (21); the second synchronous wheel assembly (42) includes a first synchronous wheel bracket (411) connected to the upper plate (13), a first synchronous wheel (412) installed at both ends of the first synchronous wheel bracket (411), and a first synchronous belt (413) sleeved on the first synchronous wheel (412). A second synchronous wheel bracket (421), a second synchronous wheel (422) mounted at both ends of the second synchronous wheel bracket (421), a second synchronous belt (423) sleeved on the second synchronous wheel (422), and a second pushing block (424) mounted on the second synchronous belt (423), wherein the end of the second pushing block (424) is connected to the second sliding frame (22); one end of the synchronous transmission shaft (5) is mounted with the first synchronous wheel (412), and the other end is mounted with the second synchronous wheel (422), thereby realizing synchronous transmission connection.
5. The control panel flip mechanism according to claim 4, characterized in that: A reduction gear set (71) is installed at the end of the drive motor (7), and the reduction gear set (71) is meshed and connected with the transmission gear (51) on the synchronous transmission shaft (5); a control PCB board (72) is also installed on the upper plate (13), and the control PCB board (72) is electrically connected to the drive motor (7) to control the output of the drive motor (7).
6. The flip mechanism of a control panel according to claim 4, characterized in that: The first rocker arm (61) is provided with a first cover plate (63) on the outside, and the second rocker arm (62) is provided with a second cover plate (64) on the outside. The first cover plate (63) is provided with a first infrared sensor (65), and the second cover plate (64) is provided with a second infrared sensor (66). When the first rocker arm (61) and the second rocker arm (62) are extended toward the front of the frame (12), the first infrared sensor (65) and the second infrared sensor (66) start to work and emit and receive signals from each other.
7. The control panel flip mechanism according to claim 6, characterized in that: A first micro switch (68) is installed on one side of the first cover plate (63), and the first micro switch (68) is fixedly installed on the frame (12). The first micro switch (68) is electrically connected to the first infrared sensor (65) and the second infrared sensor (66) respectively; a first boss (67) is provided on the side corresponding to the first cover plate (63) and the first micro switch (68), and the first boss (67) contacts the first micro switch (68), and when the first micro switch (68) is pressed, the first infrared sensor (65) and the second infrared sensor (66) are turned off; when the first rocker arm (61) and the second rocker arm (62) extend toward the front of the frame (12), the first boss (67) separates from the first micro switch (68), and the first micro switch (68) is released, and the first infrared sensor (65) and the second infrared sensor (66) are started.
8. The control panel flip mechanism according to claim 7, characterized in that: The first cover plate (63) and the second cover plate (64) are both provided with a limit rod (69). When the first rocker arm (61) and the second rocker arm (62) extend toward the front of the frame (12), the limit rod (69) contacts the frame (12) to perform hard limiting. The rear ends of the first sliding frame (21) and the second sliding frame (22) are provided with a stop frame (60). When the first rocker arm (61) and the second rocker arm (62) retract toward the rear of the frame (12), the first sliding frame (21) and the second sliding frame (22) contact the stop frame (60) to perform hard limiting. One end of the second synchronous wheel bracket (421) A second micro switch (99) is installed at one end, and a third micro switch (98) is installed at the other end; the second micro switch (99) and the third micro switch (98) are both electrically connected to the drive motor (7); when the first rocker arm (61) and the second rocker arm (62) extend toward the front of the frame (12), the second connecting shaft (94) contacts the second micro switch (99), controlling the drive motor (7) to stop rotating; when the first rocker arm (61) and the second rocker arm (62) retract toward the rear of the frame (12), the second connecting shaft (94) contacts the third micro switch (98), controlling the drive motor (7) to stop rotating.
9. The flip mechanism of a control panel according to claim 1, characterized in that: The control panel (11) comprises a first locking hook (15) hingedly connected to a first rocker arm (61) on one side and a second locking hook (16) hingedly connected to a second rocker arm (62) on the other side; a first control button (17) is provided on the front side of the control panel (11) and a second control button (18) is provided on the rear side; a first rotating shaft (141) is provided on one side of the control panel (11) and a second rotating shaft (142) is provided on the other side; a first panel fixing frame (121) is provided on one side of the frame (12) and a second panel fixing frame (122) is provided on the other side; the first rotating shaft (141) is inserted into the interior of the first panel fixing frame (121) and the second rotating shaft (142) is inserted into the interior of the second panel fixing frame (122); the first panel fixing frame (121) and the second panel fixing frame (122) are both L-shaped.
10. A cooking device, characterized in that: A flip mechanism comprising a control panel as claimed in any one of claims 1 to 9.
Citation Information
Patent Citations
Household appliance with turnable control panel
CN210842706U