CN112842087B - A control panel structure and steaming cooking equipment for cooking equipment - Google Patents

A control panel structure and steaming cooking equipment for cooking equipment Download PDF

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Publication number
CN112842087B
CN112842087B CN202110119204.7A CN202110119204A CN112842087B CN 112842087 B CN112842087 B CN 112842087B CN 202110119204 A CN202110119204 A CN 202110119204A CN 112842087 B CN112842087 B CN 112842087B
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China
Prior art keywords
control panel
guide
locking piece
screw rod
mounting
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CN202110119204.7A
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CN112842087A (en
Inventor
王黎喆
杨均
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Ningbo Fotile Kitchen Ware Co Ltd
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Ningbo Fotile Kitchen Ware Co Ltd
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Publication of CN112842087A publication Critical patent/CN112842087A/en
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J36/00Parts, details or accessories of cooking-vessels
    • A47J36/32Time-controlled igniting mechanisms or alarm devices
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/04Cooking-vessels for cooking food in steam; Devices for extracting fruit juice by means of steam ; Vacuum cooking vessels
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J27/00Cooking-vessels
    • A47J27/04Cooking-vessels for cooking food in steam; Devices for extracting fruit juice by means of steam ; Vacuum cooking vessels
    • A47J2027/043Cooking-vessels for cooking food in steam; Devices for extracting fruit juice by means of steam ; Vacuum cooking vessels for cooking food in steam

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Power-Operated Mechanisms For Wings (AREA)

Abstract

The invention relates to a control panel structure for cooking equipment and steaming cooking equipment, which comprises a control panel and a surface lining plate, wherein the upper end of the surface lining plate is provided with a mounting window matched with the control panel in size, and the rear side of the surface lining plate is horizontally provided with a water tank. The water tank is characterized by further comprising a driving motor, a screw rod, a sliding block and a locking guide mechanism with a first locking piece and a second locking piece, wherein the driving motor and the screw rod are arranged above the water tank, the screw rod extends in the front-back direction, an output shaft of the driving motor is fixed at the rear end of the screw rod, the front end of the screw rod is rotatably connected with the rear surface of the surface lining plate, and the sliding block is in threaded connection with the screw rod and forms a spiral transmission pair with the screw rod. Compared with the prior art, the control panel can be hidden behind the surface lining plate more conveniently, and the moving-out and resetting of the control panel can be realized more conveniently.

Description

A control panel structure and steaming cooking equipment for cooking equipment
Technical Field
The invention relates to the field of cooking equipment, in particular to a control panel structure for cooking equipment and steaming cooking equipment.
Background
The steam cooking equipment such as the electric steam box, the steam-baking all-in-one machine and the like is generally provided with a water tank, water is conveyed to a steam generator through the water tank, the water entering the steam generator is evaporated to generate steam, and the steam enters an inner container and is used for cooking food. The water tank of the existing partial steaming cooking equipment is arranged above the inner container, such as the cooking equipment structures disclosed in the Chinese utility model patent with the patent number ZL201920524986.0 (with the publication number CN210842640U) and the Chinese invention patent with the application number CN201811053331.6 (with the publication number CN 110881861A).
Compared with the traditional right water tank, the upper water tank has the advantage of small occupied space, and is generally matched with the overturning of a control panel so as to be convenient for a user to take and place the water tank. Water tank and control panel generally link among the prior art, the release of water tank promptly with push with control panel's upset synchronous motion, it is higher to water tank action orbit and control panel action orbit design requirement like this to need accurate design link gear between them, however, even through these handles, the control panel still can cause the interference to the action of water tank, influence user's use and experience.
Disclosure of Invention
The first technical problem to be solved by the present invention is to provide a control panel structure for cooking equipment, which can completely avoid the control panel interfering with the water tank to take and place.
A second technical problem to be solved by the present invention is to provide a control panel structure for a cooking apparatus, which is convenient for moving and resetting the control panel.
A third technical problem to be solved by the present invention is to provide a control panel structure for a cooking apparatus, in which a control panel is conveniently turned over.
A fourth technical problem to be solved by the present invention is to provide a control panel structure of a cooking apparatus, which is capable of self-locking during a turning process of the control panel.
A fifth technical problem to be solved by the present invention is to provide a steaming cooking apparatus having the above control panel structure.
The technical scheme adopted by the invention for solving at least one technical problem is as follows: a control panel structure for cooking equipment comprises a control panel and a surface lining board, wherein the upper end of the surface lining board is provided with a mounting window matched with the size of the control panel, the rear side of the surface lining board is horizontally provided with a water tank which can extend out of the mounting window,
the water tank is characterized by also comprising a driving motor, a screw rod and a sliding block, wherein the driving motor and the screw rod are arranged above the water tank, the screw rod extends along the front-back direction, an output shaft of the driving motor is fixed at the rear end of the screw rod, the front end of the screw rod is rotationally connected with the rear surface of the surface lining plate, the sliding block is in threaded connection with the screw rod and forms a screw transmission pair with the screw rod,
the control panel is characterized by further comprising a locking guide mechanism with a first locking piece and a second locking piece, and the control panel has at least two states under the action of the locking guide mechanism: in the first state, the control panel is positioned at the rear side of the mounting window of the surface lining plate, the first locking piece and the second locking piece are relatively static to horizontally lock the control panel above the water tank, and the control panel can move back and forth along the screw rod through the sliding block; in the second state, the side edge of the control panel is overlapped with the opening edge of the mounting window of the facing plate, and the first locking piece and the second locking piece relatively act to enable the control panel to downwards rotate relative to the first rotating shaft until the control panel is vertically embedded in the mounting window.
Furthermore, the first locking piece is linked with the sliding block, the second locking piece is linked with the first rotating shaft, and the second locking piece can drive the first rotating shaft to rotate under the relative action state of the first locking piece and the second locking piece. Like this at control panel along lead screw round trip movement's in-process first locking piece and second locking piece can lock control panel at the horizontality all the time, and through first locking piece and the first pivot of second locking piece locking, can lock control panel better, can make control panel rotate through triggering first pivot simultaneously to can change between the locking and the trigger rotation state to control panel more conveniently.
Further, the locking guide mechanism also comprises a guide trigger piece and a guide rail, wherein the guide trigger piece can enable the first locking piece and the second locking piece to move relatively, the first end of the guide trigger piece is connected with the sliding block, the second end of the guide trigger piece can slide back and forth along the guide rail, the guide rail comprises a first guide section and a second guide section which are continuously arranged and arranged in parallel with the screw rod, an included angle is formed between the first guide section and the second guide section, when the guide trigger piece slides to the junction of the first guide section and the second guide section, the side edge of the control panel is superposed with the opening edge of the mounting window of the surface lining plate, the guide trigger piece triggers the first locking piece and the second locking piece to move relatively, when the guide trigger piece slides to the tail end of the second guide section, the first locking piece and the second locking piece are relatively static, and the control panel is vertically embedded in the mounting window, thereby enabling the control panel to stably shield the installation window. Therefore, the guide trigger part slides along the guide rail, namely, the relative rest and relative motion of the first locking part and the second locking part can be converted, and further the conversion between the locking and the overturning of the control panel is realized.
Furthermore, the middle part of the guide trigger part is provided with a linkage part which can be linked with the first locking part, when the guide trigger part slides along the first guide section, the linkage part is connected with the first locking part and is relatively static, and when the guide trigger part slides along the second guide section, the linkage part drives the first locking part to move horizontally so that the second locking part drives the first rotating shaft to rotate. So that the relative movement between the first locking element and the second locking element can be better triggered by the linkage part on the guide trigger element.
Further, the first locking member is a rack extending in the front-rear direction, the second locking member is a first gear mounted on the first rotating shaft and engaged with a tooth surface of the rack, and the linkage portion of the guide trigger member is a second gear engaged with the tooth surface of the rack. Therefore, the horizontal state of the control panel can be locked by the meshing of the rack and the first gear, and when the locked control panel moves horizontally, because the second gear and the rack act along the first guide section along with the sliding block synchronously, the two gears are relatively static, the rack and the first gear are relatively static, when the guide trigger piece slides from the first guide section to the second guide section, the second gear rotates relative to the rack, the first gear is driven to rotate relative to the rack, so that the control panel is overturned relative to the horizontal plane, and in the overturning process of the control panel, the control panel can be automatically locked at any required angle by controlling the opening and closing of the driving motor, the meshing between the screw rod and the sliding block, the meshing between the second gear and the rack and the meshing between the first gear and the rack, and the control panel can stably shield the mounting window of the panel lining plate.
Furthermore, the first end of the guide trigger piece is a second rotating shaft which horizontally extends along the left-right direction and is rotatably connected with the sliding block, the linkage part is arranged on the second rotating shaft, the second end of the guide trigger piece is a sliding wheel embedded in the guide rail, and the sliding wheel is connected with the second rotating shaft through a crank. Therefore, the sliding wheel can smoothly move along the guide rail through the movement of the sliding block along the screw rod, and the linkage part and the first locking piece can be switched between relative rest and relative action.
Furthermore, the bottom of the sliding block is fixed with a mounting bracket, the front end of the mounting bracket is rotatably connected with the control panel through the first rotating shaft, and the mounting bracket is provided with a mounting groove for mounting the first locking piece. Thereby set up the firm setting of being connected and the first locking piece of realizing control panel and sliding block, in addition, realize the synchronous linkage of linkage portion and the first locking piece along with the sliding block of direction trigger.
Furthermore, be fixed with the installation piece on control panel's the rear surface, the one end of this installation piece is connected through first pivot rotation with the front end of above-mentioned installing support to make control panel can rotate with the sliding block more firmly and be connected.
Furthermore, the mounting block is fixed at the upper end of the rear surface of the control panel, the upper end of the mounting block protrudes out of the control panel and is connected with the mounting bracket, so that the control panel can be turned over relative to the horizontal plane better, and the second guide section is formed by bending the front end of the first guide towards the front lower part. Like this when the movable pulley of direction trigger piece by first direction section slip second direction section time, the linkage portion of direction trigger piece drives first locking piece level and moves towards the back, and then drives first locking piece clockwise rotation, and second locking piece drives first pivot clockwise rotation like this, drives control panel then and rotates clockwise down by the horizontality.
Further comprises a mounting rack horizontally arranged above the water tank, the mounting rack is U-shaped and is opened forwards, the front end of the mounting rack is fixed with the rear surface of the surface lining board, the guide rail is fixed at one side of the mounting rack, the driving motor is arranged on the motor rack and positioned at the rear side of the mounting rack, and the bottom of the rear end of the mounting rack is provided with three mounting shaft sleeves extending along the front-back direction at intervals along the left-right direction, guide shafts extending along the front-back direction are respectively arranged in the mounting shaft sleeves positioned at two sides in a penetrating way, the rear end of each guide shaft is respectively fixed with the motor frame, the front end of each guide shaft is respectively fixed with the rear surface of the surface lining plate, the middle part of the sliding block is provided with a mounting screw hole, the left end and the right end are respectively provided with a guide hole, the screw rod is connected in the mounting screw hole in a threaded manner, and the rear end of the screw rod penetrates through the mounting shaft sleeve positioned in the middle to be fixed with an output shaft of the driving motor. The mounting structure that enables the sliding block like this is more firm, can more steadily follow the lead screw round trip movement at the mating reaction of guiding hole and guiding axle simultaneously.
The technical solution adopted to further solve the fifth technical problem is as follows: a steaming cooking device having the control panel structure as described above.
Compared with the prior art, the invention has the advantages that: the control panel can be hidden at the rear side of the mounting window of the face liner and horizontally positioned above the water tank, so that the mounting window is fully exposed, a user can conveniently take and place the water tank from the mounting window, and the control panel is prevented from interfering the taking and placing of the water tank. In addition, the control panel can be locked in a horizontal state through the first locking piece and the second locking piece, so that the interference of the control panel on the taking and placing of the water tank is avoided, the control panel in the horizontal state can move back and forth along the screw rod through the sliding block, and the control panel can rotate relative to the first rotating shaft through the relative action of the first locking piece and the second locking piece to shield the installation window again. Therefore, the control panel can be hidden behind the surface lining plate conveniently, and the control panel can be moved out and reset conveniently.
Drawings
Fig. 1 is a schematic structural diagram of a control panel structure in an embodiment of the invention (in a completely hidden state of the control panel);
fig. 2 is a schematic structural view of the control panel structure in another state according to the embodiment of the present invention (the side edge of the control panel is overlapped with the opening edge of the installation window and the control panel is in a horizontal state);
fig. 3 is a schematic structural diagram of a control panel structure in an embodiment of the present invention during a flipping process;
fig. 4 is a schematic structural diagram of the control panel structure in still another state (in a state where the control panel completely covers the installation window) according to the embodiment of the present invention;
fig. 5 is a schematic partial structural diagram of a control panel structure according to an embodiment of the invention (in a state where the control panel is completely hidden); FIG. 6 is a schematic view of the structure of FIG. 5 in another direction;
FIG. 7 is a partial exploded view of a control panel structure according to an embodiment of the present invention;
FIG. 8 is an enlarged view of portion A of FIG. 1;
FIG. 9 is an enlarged view of portion B of FIG. 2;
FIG. 10 is an enlarged view of portion C of FIG. 3;
FIG. 11 is an enlarged view of portion D of FIG. 4;
FIG. 12 is a schematic view of a guide trigger according to an embodiment of the present invention;
FIG. 13 is a schematic structural diagram of a slider according to an embodiment of the present invention.
Detailed Description
The invention is described in further detail below with reference to the following examples of the drawings.
As shown in fig. 1 to 13, a steaming cooking device, such as an electric steamer, a steaming and baking integrated machine, includes an inner container (not shown), a water tank 2 and a control panel structure, wherein an upper mounting plate 1 is disposed above the inner container, and the water tank 2 is horizontally disposed on an upper surface of the upper mounting plate 1. The control panel 4 structure comprises a control panel 4 and a surface lining plate 3, the upper end of the surface lining plate 3 is provided with a mounting window 31 matched with the size of the control panel 4, the rear side of the surface lining plate 3 is horizontally provided with a water tank 2, and the water tank 2 can extend out of the mounting window 31.
Further, the water tank cleaning device further comprises a driving motor 51, a screw rod 52, a sliding block 6 and a locking guide mechanism 7 with a first locking piece 71 and a second locking piece 72, wherein the driving motor 51 and the screw rod 52 are both arranged above the water tank 2, the screw rod 52 extends along the front-back direction, an output shaft of the driving motor 51 is fixed at the rear end of the screw rod 52, the front end of the screw rod 52 is rotatably connected with the rear surface of the surface lining plate 3, and the sliding block 6 is in threaded connection with the screw rod 52 and forms a screw transmission pair with the screw rod 52. The control panel 4 has at least two states under the action of the locking guide mechanism 7: in the first state, the control panel 4 is located at the rear side of the mounting window 31 of the panel lining 3, and the first locking member 71 and the second locking member 72 are stationary relative to each other to horizontally lock the control panel 4 above the water tank 2, so that the control panel 4 can be hidden at the rear side of the panel lining 3, and the control panel 4 can move back and forth along the screw rod 52 through the slide block 6. In the second state, the side edge of the control panel 4 overlaps the opening edge of the mounting window 31 of the facing plate 3, and the first locking member 71 and the second locking member 72 are relatively operated to rotate the control panel 4 downward with respect to the first rotating shaft 40 until the control panel 4 is vertically fitted in the mounting window 31.
Therefore, in the invention, the control panel 4 can be hidden behind the mounting window 31 of the panel lining plate 3 and horizontally positioned above the water tank 2, so that the mounting window 31 is fully exposed, a user can conveniently take and place the water tank 2 from the mounting window 31, and the control panel 4 is prevented from interfering with the taking and placing of the water tank 2. In addition, in the present invention, the control panel 4 can be locked in a horizontal state by the first locking member 71 and the second locking member 72, so as to avoid interference of the control panel 4 on taking and placing the water tank 2, and the control panel 4 in the horizontal state can move back and forth along the screw rod 52 by the sliding block 6, and can rotate relative to the first rotating shaft 40 to re-shield the installation window 31 by the relative action of the first locking member 71 and the second locking member 72. Therefore, the control panel 4 can be hidden behind the surface lining plate 3 more conveniently, and the moving-out and resetting of the control panel 4 can be realized more conveniently.
In this embodiment, a mounting bracket 8 is horizontally disposed above the water tank 2, the mounting bracket 8 is U-shaped and opened forward, the front end of the mounting bracket 8 is fixed to the rear surface of the surface lining plate 3, the guide rail 74 is fixed to one side of the mounting bracket 8, the driving motor 51 is mounted on a motor frame 511 and located at the rear side of the mounting bracket 8, three mounting shaft sleeves 81 extending in the front-rear direction are respectively disposed at intervals in the left-right direction at the bottom of the rear end of the mounting bracket 8, guide shafts 82 extending in the front-rear direction are respectively inserted into the mounting shaft sleeves 81 located at both sides, the rear end of each guide shaft 82 is fixed to the motor frame 511, the front end of each guide shaft 82 is fixed to the rear surface of the surface lining plate 3, a mounting screw hole 61 is formed in the middle of the mounting bracket 6, guide holes 63 are respectively formed at the left and right ends of the mounting bracket, the lead screw 52 is screwed into the mounting screw hole 61, and the rear end of the lead screw passes through the mounting shaft sleeve 81 located in the middle and is fixed to the output of the driving motor 51 The shaft is fixed and the front end is pivotally connected to the rear surface of the panel 3. This makes the mounting structure of the slide block 6 more stable, and at the same time, the guide hole 63 and the guide shaft 82 can move back and forth along the screw 52 more smoothly.
In this embodiment, the first locking member 71 is linked with the sliding block 6, the second locking member 72 is linked with the first rotating shaft 40, and the second locking member 72 can drive the first rotating shaft 40 to rotate under the relative action state of the first locking member 71 and the second locking member 72. Therefore, the control panel 4 can be always locked in the horizontal state by the first locking piece 71 and the second locking piece 72 in the process that the control panel 4 moves back and forth along the screw rod 52, the first rotating shaft 40 is locked by the first locking piece 71 and the second locking piece 72, the control panel 4 can be better locked, and meanwhile, the control panel 4 can be rotated by triggering the first rotating shaft 40, so that the control panel 4 can be conveniently switched between the locking state and the triggering rotating state.
Further, the lock guide mechanism 7 further includes a guide trigger 73 and a guide rail 74, which are capable of relatively moving the first lock member 71 and the second lock member 72, wherein a first end of the guide trigger 73 is connected to the slide block 6, a second end thereof is capable of sliding back and forth along the guide rail 74, the guide rail 74 includes a first guide section 741 and a second guide section 742 which are continuously disposed and disposed in parallel with the screw 52, an included angle is formed between the first guide section 741 and the second guide section 742, and the included angle formed between the first guide section 741 and the second guide section 742 is 120 degrees. When the guide trigger 73 slides to the boundary between the first guide section 741 and the second guide section 742, the side edge of the control panel 4 overlaps the edge of the mounting window 31 of the panel 3, the guide trigger 73 triggers the first locking member 71 and the second locking member 72 to move relative to each other, and when the guide trigger 73 slides to the end of the second guide section 742, the first locking member 71 and the second locking member 72 are relatively stationary, and the control panel 4 is vertically fitted into the mounting window 31, so that the control panel 4 can stably shield the mounting window 31. Thus, the sliding of the guide trigger 73 along the guide rail 74 can switch between the relative rest and relative movement of the first locking member 71 and the second locking member 72, and thus switch between the locking and the turning of the control panel 4.
Still further, the middle portion of the guide trigger 73 is provided with a linkage portion 733 which is capable of linking with the first locking member 71, and when the guide trigger 73 slides along the first guide section 741, the linkage portion 733 is connected with the first locking member 71 and is relatively stationary, and when the guide trigger 73 slides along the second guide section 742, the linkage portion 733 drives the first locking member 71 to move horizontally and the second locking member 72 drives the first rotating shaft 40 to rotate, so that the linkage portion 733 on the guide trigger 73 can better trigger the relative motion between the first locking member 71 and the second locking member 72.
Specifically, in the present embodiment, the first lock member 71 is a rack extending in the front-rear direction, the second lock member 72 is a first gear attached to the first rotary shaft 40 and engaged with a tooth surface of the rack, and the interlocking portion 733 of the guide trigger 73 is a second gear engaged with a tooth surface of the rack. Thus, the locking of the horizontal state of the control panel 4 can be realized through the meshing of the rack and the first gear, and when the locked control panel 4 moves horizontally, since the second gear and the rack move along the first guide section 741 in synchronization with the slide block 6, they are relatively stationary, the rack and the first gear are relatively stationary, and when the guide trigger 73 slides from the first guide section 741 into the second guide section 742, the second gear rotates relative to the rack, the first gear is driven to rotate relative to the rack, so that the control panel 4 is turned over relative to the horizontal plane, in addition, in the process of overturning the control panel 4, the control panel 4 can be self-locked at any required angle by controlling the opening and closing of the driving motor 51, the meshing between the screw rod 52 and the sliding block 6, the meshing between the second gear and the rack and the meshing between the first gear and the rack, and the control panel 4 can stably shield the installation window 31 of the facing lining plate 3. Further, a first end of the guide trigger 73 is a second rotating shaft 731 horizontally extending in the left-right direction and rotatably connected to the slide block 6, the interlocking part 733 is attached to the second rotating shaft 731, a second end of the guide trigger 73 is a slide wheel 732 fitted in the guide rail 74, and the slide wheel 732 is connected to the second rotating shaft 731 via a crank 734. Accordingly, the slide wheel 732 can be smoothly moved along the guide rail 74 by the movement of the slide block 6 along the screw 52, and the interlocking part 733 and the first lock 71 can be switched between the relative stationary state and the relative movement. In this embodiment, the guide rail 74 is vertically disposed in a frame-shaped configuration, the annular sliding groove 7321 is circumferentially formed in the wheel surface of the pulley 732, the upper and lower side walls of the guide rail 74 are respectively engaged with the annular sliding groove 7321, and the pulley 732 slides along the guide rail 74 through the annular sliding groove 7321.
In the present embodiment, a mounting bracket 62 is fixed to the bottom of the slide block 6, the front end of the mounting bracket 62 is rotatably connected to the control panel 4 via the first rotating shaft 40, and a mounting groove 621 for mounting the first locking member 71 is provided in the mounting bracket 62. Therefore, the control panel 4 and the sliding block 6 are firmly connected, the first locking piece 71 is firmly arranged, and the linkage part 733 of the guide trigger piece 73 and the first locking piece 71 are synchronously linked with the sliding block 6. Further, a mounting block 41 is fixed on the rear surface of the control panel 4, and one end of the mounting block 41 is rotatably connected to the front end of the mounting bracket 62 through the first rotating shaft 40, so that the control panel 4 can be more stably rotatably connected to the sliding block 6. Preferably, the mounting block 41 is fixed to an upper end of a rear surface of the control panel 4, and the upper end of the mounting block 41 protrudes out of the control panel 4 and is connected to the mounting bracket 62, so that the control panel 4 can be further tilted with respect to a horizontal plane, and the second guide section 742 is formed by bending a front end of the first guide section 741 downward and forward. Thus, when the sliding wheel 732 of the guiding trigger 73 slides from the first guiding section 741 into the second guiding section 742, the linkage 733 of the guiding trigger 73 drives the first locking member 71 to move horizontally backward, and further drives the first locking member 71 to rotate clockwise, so that the second locking member 72 drives the first rotating shaft 40 to rotate clockwise, and further drives the control panel 4 to rotate clockwise from a horizontal state.
The working process of the invention is as follows:
in an initial state, the control panel 4 is vertically shielded on the mounting window 31 of the panel lining 3, the sliding block 6 is located at the front end of the screw rod 52, the sliding wheel 732 is located at the lowermost end of the second guide section 742, and the screw rod 52 and the sliding block 6, the first locking member 71 and the linkage part 733, and the first locking member 71 and the second locking member 72 are locked, respectively, so that the control panel 4 can stably shield the mounting window 31, as shown in fig. 4 and 11. When the user needs to take the water tank 2, the driving motor 51 rotates, the sliding block 6 moves backwards along the screw rod 52 to drive the second rotating shaft to rotate anticlockwise, so that the linkage part 733 rotates anticlockwise, the first locking piece 71 moves forwards to drive the second locking piece 72 to rotate anticlockwise, so that the first rotating shaft 40 rotates anticlockwise, the control panel 4 turns upwards, and at the moment, the sliding wheel 732 moves upwards along the second guide section 742. When the control panel 4 is turned to the horizontal state, the sliding wheel 732 moves to the boundary between the second guiding section 742 and the first guiding section 741. With the continuous rotation of the driving motor 51, at this time, the first locking member 71 moves synchronously with the sliding block 6, the second locking member 72 and the first locking member 71, and the linkage part 733 and the first locking member 71 respectively move relatively still and are locked, the control panel 4 keeps a stable horizontal state and moves backwards with the screw rod 52, after moving to a certain position, the driving motor 51 stops working, the control panel 4 is stably hidden at the rear side of the surface lining plate 3 in a horizontal state, at this time, the mounting window 31 is completely exposed, and a user can conveniently take the water tank 2 through the mounting window 31, as shown in fig. 1 and 8.
After the user pushes the water tank 2 horizontally into the proper position, the driving motor 51 starts to operate and rotate in the opposite direction, the control panel 4 moves forward along the screw rod 52 in a horizontal state, and simultaneously the sliding wheel 732 moves horizontally along the first guiding section 741, at this time, the second locking member 72 and the first locking member 71 and the linkage portion 733 and the first locking member 71 are still stationary and locked, respectively. When the sliding wheel 732 slides to the boundary between the first guide section 741 and the second guide section 742, the top edge (front edge in the state of the water tank 2) of the control panel 4 overlaps the lower opening edge of the mounting window 31 of the facing plate 3. The sliding wheel 732 continues to slide along the second guiding section 742, and at this time, the linkage part 733 drives the first locking member 71 to move backward, so as to drive the second locking member 72 to rotate clockwise, and further drive the first rotating shaft 40 to rotate clockwise, so that the control panel 4 is turned downward from a horizontal state. When the sliding wheel 732 slides to the end of the second guide section 742, the first locking member 71 and the second locking member 72 are again stationary, the control panel 4 is rotated to the vertical direction and is fitted into the mounting window 31, and the driving motor 51 stops rotating, so that the control panel 4 can be stably shielded on the mounting window 31 of the facing plate 3 by the mutual engagement between the screw 52 and the sliding block 6, the mutual engagement between the first locking member 71 and the interlocking part 733, and the mutual engagement between the first locking member 71 and the second locking member 72.

Claims (7)

1. A control panel structure for cooking equipment comprises a control panel (4) and a surface lining board (3), wherein the upper end of the surface lining board (3) is provided with a mounting window (31) matched with the size of the control panel (4), and the rear side of the surface lining board (3) is horizontally provided with a water tank (2),
the water tank is characterized by further comprising a driving motor (51), a screw rod (52) and a sliding block (6), wherein the driving motor (51) and the screw rod (52) are arranged above the water tank (2), the screw rod (52) extends in the front-back direction, an output shaft of the driving motor (51) is fixed at the rear end of the screw rod (52), the front end of the screw rod (52) is rotatably connected with the rear surface of the surface lining plate (3), the sliding block (6) is in threaded connection with the screw rod (52) and forms a screw transmission pair with the screw rod (52),
the control panel also comprises a locking guide mechanism (7) with a first locking piece (71) and a second locking piece (72), and the control panel (4) has at least two states under the action of the locking guide mechanism (7): in the first state, the control panel (4) is positioned at the rear side of the mounting window (31) of the surface lining plate (3), the first locking piece (71) and the second locking piece (72) are relatively static to horizontally lock the control panel (4) above the water tank (2), and the control panel (4) can move back and forth along the screw rod (52) through the sliding block (6); in the second state, the side edge of the control panel (4) is overlapped with the opening edge of the mounting window (31) of the facing lining plate (3), the first locking piece (71) and the second locking piece (72) relatively act to enable the control panel (4) to rotate downwards relative to the first rotating shaft (40) until the control panel (4) is vertically embedded in the mounting window (31),
the first locking piece (71) is linked with the sliding block (6), the second locking piece (72) is linked with the first rotating shaft (40), and the second locking piece (72) can drive the first rotating shaft (40) to rotate under the relative action state of the first locking piece (71) and the second locking piece (72),
the locking guide mechanism (7) further comprises a guide trigger (73) and a guide rail (74) which enable the first locking piece (71) and the second locking piece (72) to move relatively, a first end of the guide trigger (73) is connected with the sliding block (6), a second end of the guide trigger can slide back and forth along the guide rail (74), the guide rail (74) comprises a first guide section (741) and a second guide section (742) which are continuously arranged and arranged in parallel with the screw rod (52), an included angle is formed between the first guide section (741) and the second guide section (742), when the guide trigger (73) slides to the junction of the first guide section (741) and the second guide section (742), the side edge of the control panel (4) is overlapped with the opening edge of the mounting window (31) of the surface lining plate (3), and the guide trigger (73) triggers the first locking piece (71) and the second locking piece (72) to move relatively, when the guide trigger piece (73) slides to the tail end of the second guide section (742), the first locking piece (71) and the second locking piece (72) are relatively static, the control panel (4) is vertically embedded in the mounting window (31),
a linkage part (733) which can be linked with the first locking piece (71) is arranged in the middle of the guide trigger piece (73), when the guide trigger piece (73) slides along the first guide section (741), the linkage part (733) is connected with the first locking piece (71) and is relatively static, when the guide trigger piece (73) slides along the second guide section (742), the linkage part (733) drives the first locking piece (71) to horizontally move to enable the second locking piece (72) to drive the first rotating shaft (40) to rotate,
the first locking member 71 is a rack extending in the front-rear direction, the second locking member 72 is a first gear attached to the first shaft 40 and engaged with a tooth surface of the rack, and the interlocking part 733 of the guide trigger 73 is a second gear engaged with the tooth surface of the rack.
2. A control panel structure as claimed in claim 1, wherein a first end of the guide trigger member (73) is horizontally extended in a right and left direction and rotatably connected to the sliding block (6) to form a second rotating shaft (731), the interlocking part (733) is installed on the second rotating shaft (731), a second end of the guide trigger member (73) is a sliding wheel (732) which is embedded in the guide rail (74), and the sliding wheel (732) is connected to the second rotating shaft (731) through a crank (734).
3. A control panel structure as claimed in claim 1 or 2, wherein a mounting bracket (62) is fixed to the bottom of the sliding block (6), the front end of the mounting bracket (62) is rotatably connected to the control panel (4) through the first rotating shaft (40), and a mounting groove (621) for mounting the rack is formed on the mounting bracket (62).
4. A control panel structure as claimed in claim 3, wherein a mounting block (41) is fixed to a rear surface of the control panel (4), and one end of the mounting block (41) is rotatably connected to a front end of the mounting bracket (62) by a first rotating shaft (40).
5. A control panel structure as claimed in claim 4, wherein the mounting block (41) is fixed to an upper end of a rear surface of the control panel (4), and the upper end of the mounting block (41) protrudes from the control panel (4) and is connected to the mounting bracket (62), and the second guide section (742) is formed by bending a front end of the first guide section (741) downward and forward.
6. A control panel structure as claimed in claim 1 or 2, further comprising a mounting bracket (8) horizontally disposed above the water tank (2), wherein the mounting bracket (8) has a U-shaped configuration and is open forward, a front end of the mounting bracket (8) is fixed to a rear surface of the panel (3), the guide rail (74) is fixed to one side of the mounting bracket (8), the driving motor (51) is mounted on a motor frame (511) and is disposed at a rear side of the mounting bracket (8), three mounting bosses (81) extending in a front-rear direction are formed at a left-right interval at a bottom of a rear end of the mounting bracket (8), guide shafts (82) extending in a front-rear direction are respectively inserted into the mounting bosses (81) at both sides, a rear end of each guide shaft (82) is fixed to the motor frame (511) and a front end thereof is fixed to a rear surface of the panel (3), the middle part of the sliding block (6) is provided with an installation screw hole (61), the left end and the right end of the sliding block are respectively provided with a guide hole (63), the screw rod (52) is in threaded connection with the installation screw hole (61), and the rear end of the screw rod penetrates through an installation shaft sleeve (81) positioned in the middle to be fixed with an output shaft of the driving motor (51).
7. A steaming cooking apparatus having a control panel structure as claimed in any one of claims 1 to 6.
CN202110119204.7A 2021-01-28 2021-01-28 A control panel structure and steaming cooking equipment for cooking equipment Active CN112842087B (en)

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