CN114081333A - A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment - Google Patents

A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment Download PDF

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Publication number
CN114081333A
CN114081333A CN202010859784.9A CN202010859784A CN114081333A CN 114081333 A CN114081333 A CN 114081333A CN 202010859784 A CN202010859784 A CN 202010859784A CN 114081333 A CN114081333 A CN 114081333A
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CN
China
Prior art keywords
frying pan
output shaft
wok
shaft
cooking
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Pending
Application number
CN202010859784.9A
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Chinese (zh)
Inventor
何光
何青
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shanghai Aican Robot Group Co Ltd
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Shanghai Aican Robot Group Co Ltd
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Application filed by Shanghai Aican Robot Group Co Ltd filed Critical Shanghai Aican Robot Group Co Ltd
Priority to CN202010859784.9A priority Critical patent/CN114081333A/en
Publication of CN114081333A publication Critical patent/CN114081333A/en
Pending legal-status Critical Current

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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
    • A47J27/00Cooking-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
    • A47J36/00Parts, details or accessories of 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
    • A47J36/00Parts, details or accessories of cooking-vessels
    • A47J36/06Lids or covers for 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
    • A47J47/00Kitchen containers, stands or the like, not provided for in other groups of this subclass; Cutting-boards, e.g. for bread
    • A47J47/01Kitchen containers, stands or the like, not provided for in other groups of this subclass; Cutting-boards, e.g. for bread with dispensing devices

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Frying-Pans Or Fryers (AREA)

Abstract

The invention relates to the technical field of intelligent household appliances, and discloses a wok component suitable for cooking equipment, which comprises a wok and a driving device, wherein a rotating shaft of the wok is fixedly connected to the bottom of the wok in a coaxial line manner, an output shaft of the driving device is a hollow shaft, and the lower end of the rotating shaft extends downwards and penetrates through the hollow shaft to be fixedly connected with the output shaft through a quick-dismounting connection structure.

Description

A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment
Technical Field
The invention relates to the technical field of intelligent household appliances, in particular to a frying pan component, a frying pan device and an intelligent cooker for cooking equipment.
Background
The frying pan of current machine of cooking need change the frying pan after using longer time, and the frying pan device possesses removable frying pan function and becomes indispensable demand.
The applicant discloses a detachable wok device (with the patent application number of CN201711081102.0, the name: a wok combination device) which comprises a wok, a driving device, a first flange and a second flange, wherein the first flange is connected to the bottom of the wok, the second flange is rotatably connected to the driving device, the first flange is detachably connected to the second flange, the side surface of the first flange is provided with at least one bayonet, the side surface of the second flange is provided with at least one bayonet, and the bayonet is clamped with the bayonet. The applicant has found that the following disadvantages exist for a detachable connection by means of flanges or the like:
1. adopt flange joint's detachable connection structure between frying pan and the drive arrangement, at the rotatory process of drive frying pan, can't guarantee that frying pan and drive shaft coaxial line are rotatory, and the frying pan can produce the eccentric motion of great skew drive shaft center pin, causes to fry the dish in-process frying pan and rocks seriously.
2. All on several points of bayonet lock and bayonet socket joint through flange joint back stress point, can't carry out radial and ascending powerful support to the frying pan, need set up other devices simultaneously and support the frying pan, lead to whole frying pan structure complicated, and probably produce mechanical noise because of the friction.
Disclosure of Invention
The invention aims to solve the technical problem of providing a frying pan component, a frying pan device and an intelligent cooking machine for cooking equipment, wherein the frying pan component, the frying pan device and the intelligent cooking machine can ensure that a frying pan does not shake when rotating and can be replaced quickly.
In order to solve the technical problems, the technical scheme of the invention is as follows:
the utility model provides a frying pan subassembly for cooking equipment, includes frying pan and drive arrangement, the axis of rotation of frying pan is in with the mode rigid coupling of this frying pan coaxial line the frying pan bottom, drive arrangement's output shaft is the hollow shaft, the lower extreme downwardly extending of axis of rotation passes the hollow shaft is with quick assembly disassembly connection structure and this output shaft rigid coupling.
Preferably, the vertical distance between the upper end of the output shaft and the bottom of the wok is not more than 5 mm.
Preferably, the quick-assembly-disassembly connecting structure is composed of an inner pin hole arranged on the rotating shaft, an outer pin hole arranged on the output shaft and a pin, and the pin penetrates through the inner pin hole and the outer pin hole to connect the rotating shaft and the output shaft together.
Preferably, the outer pin hole is located at a lower portion of the output shaft.
Preferably, the driving device is a horizontal motor assembly, and comprises a driving motor, a turbine transmission assembly and the output shaft, and a power transmission shaft of the driving motor transmits power to the output shaft through the turbine transmission assembly.
Preferably, the turbine transmission assembly comprises an upper shell, a lower shell, a turbine, a worm, a ball bearing and a tapered roller bearing, wherein the upper shell and the lower shell are respectively provided with an upper shaft hole and a lower shaft hole, the turbine and the worm are arranged in an inner cavity formed by the upper shell and the lower shell in a meshing connection mode, the outer end of the worm is connected with the power transmission shaft, the output shaft is fixedly connected in a central hole in the turbine, the ball bearing and the tapered roller bearing are respectively arranged on the upper side and the lower side of the turbine, inner rings of the ball bearing and the tapered roller bearing are fixedly connected on the output shaft, and the upper end and the lower end of the output shaft respectively penetrate through the upper shaft hole and the lower shaft hole to extend outwards.
Preferably, the driving device is a direct drive motor.
Preferably, the direct-drive motor comprises a bottom shell, an outer rotor, a stator coil, a bearing, an upper cover plate and the output shaft, the upper cover plate supports the bearing sleeved on the output shaft so that the output shaft can rotate relatively, the outer rotor is accommodated in an accommodating cavity formed after the bottom shell is connected with the upper cover plate, the stator coil is accommodated in the outer rotor and fixedly connected to the upper cover plate, the lower end of the output shaft penetrates through coaxial through holes in the central positions of the bottoms of the outer rotor and the bottom shell to extend downwards, the output shaft is fixedly connected with the outer rotor, and after the stator coil is electrified, the outer rotor rotates to drive the output shaft to rotate.
According to the invention, the rotating shaft which is coaxially connected with the frying pan is nested in the hollow output shaft of the driving device for detachable connection, so that the driving device directly supports the frying pan and simultaneously realizes coaxial driving of the frying pan, the phenomenon of eccentric motion in the rotating process of the frying pan is avoided, and meanwhile, the output shaft and the rotating shaft are detachably connected in a bolt mode, so that the frying pan is simple in structure and convenient to detach.
The invention also provides a frying pan device of the cooking equipment, which comprises a furnace body for heating a frying pan, a frying pan component and a bottom cover, wherein the frying pan component is the frying pan component, the frying pan in the frying pan component is arranged in the furnace body, the driving device is arranged at the bottom of the furnace body, an output shaft of the driving device penetrates through the bottom of the furnace body and is detachably connected with a rotating shaft of the frying pan, the bottom cover is arranged at the bottom of the furnace body to accommodate the driving device, and the bottom cover is provided with a detachable spiral cover.
The frying pan device of the cooking equipment combines the frying pan component with the furnace body and the bottom cover, heats a frying pan in the frying pan component through the furnace body, fixedly installs the driving device, and protects the driving device through the bottom cover in a waterproof and moisture-proof manner, so that the cooking function of the frying pan device of the cooking equipment is realized, and the overall performance of the frying pan device is improved.
The invention also provides an intelligent cooking machine which comprises a shell, a frying pan device arranged in the shell, an auxiliary cooking system and a control system, wherein the frying pan device is the frying pan device, the auxiliary cooking system comprises a blanking device, a pan cover device, an auxiliary material device and an oil smoke treatment device, the blanking device is arranged right above the frying pan device, the pan cover device is arranged on the upper part of the rack on the back of the frying pan device and is inclined towards the rear lower part, the auxiliary material device is arranged below the frying pan device, the oil smoke treatment device is arranged above the back of the frying pan device, and the auxiliary cooking system is matched with the frying pan device to perform automatic cooking under the control of the control system.
The intelligent cooker of the invention can realize full-automatic cooking function by using the frying pan device and combining the auxiliary cooking system and the control system, and simultaneously improve the overall performance of the intelligent cooker.
Drawings
Fig. 1 is an exploded view of the components of a wok 1 in a first embodiment of the invention;
FIG. 2 is a sectional view of the components of the wok 1 in the first embodiment of the present invention;
FIG. 3 is an enlarged view at A in FIG. 2;
FIG. 4 is an exploded view of the horizontal motor of the present invention;
FIG. 5 is a schematic view of a second embodiment of the quick release structure of the present invention;
FIG. 6 is a schematic view of the drive device of the wok assembly of the present invention being a direct drive motor;
FIG. 7 is an exploded view of the rotor drive of the direct drive motor of the present invention;
FIG. 8 is a cross-sectional view of the outer rotor of the direct drive motor of the present invention;
FIG. 9 is an exploded view of the outer rotor of the direct drive motor of the present invention;
FIG. 10 is a schematic view of the structure of the frying pan device of the present invention;
FIG. 11 is an exploded view of the wok device of the present invention;
FIG. 12 is a schematic structural diagram of the intelligent cooker of the invention;
in the figure, a frying pan 1; a rotating shaft 21; inner pin holes 212; an elastic clip member 215; an output shaft 22; outer pin holes 221; an outer bayonet 222; the pin 23; a latch 231; a horizontal motor assembly 24; a drive motor 241; a power transmission shaft 2411; a turbine drive assembly 242; an upper case 243; an upper shaft hole 2431; a lower housing 244; a lower shaft hole 2441; a turbine 245; a scroll bar 246; a ball bearing 247; a tapered roller bearing 248; a direct drive motor 25; an upper cover 251; a lower cover 252; a stator 253; a rotor core 254; a first bearing 256; a second bearing 257; a bottom case 261; an outer rotor 262; a through hole 2621; a stator coil 263; an upper bearing 264; a lower bearing 265; a support sleeve 266; an upper cover plate 267; a barrel portion 2671; magnetic steel 268; a bearing cap 269; a circular hole 2691; an annular boss 223; a furnace body 3; a bottom cover 41; a removal hole 413; a bayonet 414; a screw cap 42; a latch 421; a housing chamber 422; a frying pan device 100; a chassis 200; a blanking device 300; an oil fume treatment device 400; an auxiliary device 500; a lid means 600.
Detailed Description
Firstly, the invention relates to a wok component (hereinafter referred to as wok component) for cooking equipment.
The frying pan component is an important component of an automatic frying pan device, can realize that the frying pan 1 and a driving device rotate coaxially, and can realize that the frying pan 1 can be disassembled and replaced.
As shown in fig. 1-9, the wok assembly comprises a wok 1, a driving device and a quick-assembly-disassembly connecting structure.
1. Frying pan 1
The upper end of the frying pan 1 is open, the upper part (the paper surface of the frying pan component in figure 2 is taken as a reference direction, the opening direction of the frying pan 1 is upward, the opposite direction of the opening is downward, and the same is true below) is cylindrical, the lower part is an arc body, and the bottom surface is a plane.
Frying pan 1 is used for cooking the material of stir-fry eating, and it is iron pan, and the rigid coupling has a axis of rotation 21 on 1 bottom surface of frying pan, and this axis of rotation 21 and 1 coaxial arrangement of frying pan, the upper end fixed connection of axis of rotation 21 is on frying pan 1, and its lower extreme downwardly extending.
The coaxial connection between the rotating shaft 21 and the frying pan 1 is realized by the following methods:
1) the upper end of axis of rotation 21 is equipped with one along the outside circular chimb that extends of central line vertical direction, circular chimb and axis of rotation 21 integrated into one piece realize axis of rotation 21 and 1 coaxial line location of frying pan through frock tool, are fixed in 1 bottom of frying pan with axis of rotation 21 through the welding again, increase axis of rotation 21 and 1 area of being connected of frying pan through circular boss for axis of rotation 21 is connected the atress with frying pan 1 and is more stable, realizes the coaxial line connection of axis of rotation 21 and frying pan 1 through frock tool simultaneously.
2) A cylinder type recess with 1 coaxial line of frying pan is seted up to 1 bottom surface of frying pan, the recess is used for the location installation axis of rotation 21 makes axis of rotation 21 and 1 coaxial line of frying pan, axis of rotation 21 is arranged in through the welding in the recess, set up the recess through 1 bottom surface of frying pan and can make axis of rotation 21's location installation more simple and convenient.
2. Drive device
An output shaft 22 of the driving device is a hollow shaft with an axial channel, the rotating shaft 21 is inserted into and penetrates through the axial channel to be fixedly connected with the output shaft 22 through a quick-assembly-disassembly connecting structure, and the vertical distance between the upper end of the output shaft 22 and the bottom surface of the wok 1 or the vertical distance between the upper end of the output shaft 22 and the bottom surface of the wok 1 is not more than 5 mm.
Because the rotating shaft 21 is mostly arranged in the axial channel, the rotating shaft 21 and the output shaft 22 can be regarded as an integral structure, thereby ensuring that the frying pan 1 and the output shaft 22 rotate coaxially, and meanwhile, the output shaft 22 also plays a supporting role for the frying pan 1.
The driving device has the following structures:
1) the driving device is a horizontal motor assembly 24 (speed reducing motor).
As shown in fig. 3 and 4, the horizontal motor assembly 24 includes a driving motor 241, a turbine transmission assembly 242, and an output shaft 22 of the driving device, and a power transmission shaft 2411 of the driving motor 241 transmits power to the output shaft 22 through the turbine transmission assembly 242.
The turbine transmission assembly 242 is composed of an upper casing 243, a lower casing 244, a turbine 245, a worm 246, a ball bearing 247 and a tapered roller bearing 248, wherein the upper casing 243 and the lower casing 244 are respectively provided with an upper shaft hole 2431 and a lower shaft hole 2441, the turbine 245 and the worm 246 are arranged in an inner cavity formed by the upper casing 243 and the lower casing 244 in a meshing connection mode, the outer end of the worm 246 is connected with the power transmission shaft 2411, the output shaft 22 is fixedly connected in a central hole of the turbine 245, the ball bearing 247 and the tapered roller bearing 248 are respectively arranged on the upper side and the lower side of the turbine 245, inner rings of the ball bearing 247 and the tapered roller bearing 248 are fixedly connected on the output shaft 22, and the upper end and the lower end of the output shaft 22 respectively penetrate through the upper shaft hole 2431 and the lower shaft hole 2441 to extend outwards.
The ball bearing 247 and the tapered roller bearing 248 are fixed to the output shaft 22, and are used for receiving the load applied to the frying pan 1 in addition to the purpose of smoothly rotating the output shaft 22. The ball bearing 247 can bear larger radial load capacity, while the tapered roller bearing can bear larger radial load and axial load, and the whole load of the frying pan 1 falls on the output shaft under the influence of gravity, so that the tapered roller bearing 248 and the ball bearing 247 are respectively arranged below and above the turbine 245 in order to better bear the load of the frying pan 1 under the condition of not influencing the normal rotation of the output shaft 22.
Through the staggered transmission arrangement of the driving motor 241 and the turbine transmission assembly 242 (namely, the power transmission shaft 2411 of the driving motor 241 is arranged perpendicular to the output shaft 22), the space occupied by the driving device in the vertical direction is reduced, and the structure is more reasonable.
2) Direct drive motor 25
The direct drive motor 25 has the following two driving modes:
the first is inner rotor drive: as shown in fig. 6 and 7, the direct drive motor is composed of a housing, a stator 253, a rotor core 254, a first bearing 256, a second bearing 257 and the output shaft 22 of the driving device, wherein the housing is divided into an upper cover 251 and a lower cover 252, the output shaft 22 penetrates through the rotor core 254 and is fixedly connected with the rotor core 254 coaxially, the stator 253 is arranged at the periphery of the rotor core 254 and is fixedly installed in an accommodating cavity formed after the upper cover 251 and the lower cover 252 are connected in a closed manner, and the upper end and the lower end of the output shaft 22 respectively penetrate through shaft holes arranged on the upper cover 251 and the lower cover 252 and extend outwards.
Preferably, the first bearing 256 is a ball bearing, the second bearing 257 is a tapered roller bearing, and the ball bearing 247 and the tapered roller bearing 248 are both fixed to the output shaft 22 for receiving the load applied to the frying pan 1 in addition to the smooth rotation of the output shaft 22. The ball bearing 247 can bear larger radial load capacity, while the tapered roller bearing can bear larger radial load and axial load, and the whole load of the frying pan 1 falls on the output shaft under the influence of gravity, therefore, in order to better bear the load of the frying pan 1 under the condition of not influencing the normal rotation of the output shaft 22, the tapered roller bearing 248 and the ball bearing 247 are respectively arranged below and above the rotor core 254. .
When stator 253 is energized, rotor core 254 rotates with output shaft 22.
The second type is outer rotor drive:
as shown in fig. 6, 8 and 9, the direct drive motor is composed of a bottom shell 261, an outer rotor 262, a stator coil 263, an upper bearing 264, a lower bearing 265, a supporting sleeve 266, an upper cover 267 and an output shaft 22 of the driving device, wherein the outer rotor 262 is in a cylindrical structure with an open upper end, magnetic steels 268 are uniformly distributed on the inner side edge of the cylindrical structure, the outer rotor 262 is sleeved in the bottom shell 261, a coaxial through hole 2621 is formed at the center position of the bottom shell 261 and the outer rotor 262, the upper cover 267 is covered above the bottom shell 261 and fixedly connected with the top end of the bottom shell 261, a cylindrical portion 2671 extending towards the bottom shell 261 is arranged on the inner side surface of the upper cover 267, the stator coil 263 is arranged in the outer rotor 262 and sleeved on the outer wall of the cylindrical portion 2671, the upper end of the output shaft 22 extends upwards through the cylindrical portion 2671, the lower end of the output shaft 22 extends downwards through the through hole 2621 formed on the outer rotor 262 and the bottom shell 261, the output shaft 22 is fixedly connected with the outer rotor 262, so that the outer rotor 262 is suspended in the bottom case 261, and the output shaft 22 can rotate relative to the bottom case 261.
An annular boss 223 is provided on the upper portion of the output shaft 22, the inner rings of the upper bearing 264 and the lower bearing 265 are fixedly connected to the output shaft 22, the lower end of the annular boss 223 abuts against the upper end of the inner ring of the lower bearing 265, the lower end of the inner ring of the upper bearing 254 abuts against the upper end of the annular boss 223, a support sleeve 266 is provided between the two outer rings of the bearings, the inner diameter and the outer diameter of the support sleeve 266 are the same as those of the two outer rings of the bearings, both of which are provided in the drum portion 2671, the outer rings of the two bearings are fixed to the inner wall of the drum portion 2671, the support sleeve 266 is used for supporting the upper bearing 264 and transmitting the load received by the outer ring of the upper bearing 264 to the drum portion 2671, and the two bearings are supported by the upper cover 267 so that the output shaft 22 can rotate smoothly.
Preferably, the upper bearing 264 is a ball bearing and the lower bearing 265 is a tapered roller bearing.
A removable bearing cap 269 is provided at the top of the barrel portion 2671 of the upper lid 267, and the upper end of the output shaft 22 extends outwardly through a circular aperture 2691 in the bearing cap 269.
After stator coil 263 circular telegram, outer rotor 262 is rotatory, and then drives the output shaft 22 of rather than the rigid coupling rotatory, realizes power transmission, on the basis that does not change original frying pan 1 drive connection structure, makes output shaft 22 maintain original structure size with frying pan 1 is connected, utilizes outer rotor driven advantage to provide more space for stator coil 263 installs simultaneously and adjusts the progression of stator coil 263, satisfies the drive requirement.
3. Quick assembly disassembly connection structure
The quick assembly disassembly structure has following several:
1) as shown in fig. 1 to 3, the quick-release connecting structure is composed of an inner pin hole 212 respectively disposed in the rotating shaft 21, an outer pin hole 221 disposed in the output shaft 22, and a pin 23, wherein when the rotating shaft 21 is sleeved in the output shaft 22, the outer pin hole 221 is communicated with the inner pin hole 212, and the pin 23 passes through the inner pin hole 212 and the outer pin hole 221 to connect the rotating shaft 21 and the output shaft 22 together.
In order to prevent the pin column 23 from falling off in the rotating process of the frying pan 1, the pin column 23 is preferably a flat-head pin column 23 with holes, one end of each pin column 23 with holes penetrates out of the inner pin hole 212 and the outer pin hole 221, a bolt 231 is installed in each hole of the pin column 23, the rotating shaft 21 is stably connected with the output shaft 22, when the frying pan 1 needs to be replaced, the bolt 231 only needs to be pulled out, the pin column 23 is taken out, the rotating shaft 21 can be separated from the output shaft 22, and the frying pan 1 can be replaced.
To increase the torque that the pin 23 can withstand, the pin 23 can be made of 45 gauge steel or an alloy.
The number of the outer pin holes 221 is at least one, the number of the corresponding inner pin holes 212 is at least one, when the number of the outer pin holes 221 and the number of the corresponding inner pin holes 212 are multiple, the horizontal planes where the central axes of the two adjacent outer pin holes 221 are located are parallel and do not overlap, the central line of the output shaft 22 is perpendicular to the central lines of the two adjacent outer pin holes 221, and the number of the outer pin holes 221 and the number of the corresponding inner pin holes 212 can be set according to practical requirements.
2) As shown in fig. 5, the quick-detachable connection structure includes two outer bayonets 222 disposed on the output shaft 22 and symmetrical along the central axis of the output shaft 22 and two elastic clamping members 215 disposed on the rotation shaft 21 and symmetrical along the central axis of the rotation shaft 21, when the rotation shaft 21 is sleeved in the output shaft 22, the elastic clamping members 215 are clamped in the outer bayonets 222, so as to connect the rotation shaft 21 and the output shaft 22, and when the wok 1 needs to be replaced, the separation of the rotation shaft 21 and the output shaft 22 can be realized only by pressing the elastic clamping members 215 to separate from the bayonets, so as to replace the wok 1.
The elastic force of the elastic clamping piece 215 is greater than the torque force between the rotating shaft 21 and the output shaft 22, and the elastic clamping piece 215 can be an elastic bead or other structural pieces with elasticity and can be pressed.
The outer pin hole 221 or the outer bayonet 222 is located at a lower portion of the output shaft 22, and the inner pin hole 212 or the elastic clamping member 215 is located at a lower portion of the rotating shaft 21.
The quick assembly and disassembly structure is arranged at the lower parts of the output shaft 22 and the rotating shaft 21, and has the following two advantages:
1) when the frying pan 1 needs to be replaced, the frying pan 1 is convenient to disassemble and assemble.
2) The structural strength of the output shaft 22 is prevented from being damaged by mounting the quick assembling and disassembling structure on the upper part of the output shaft 22, and meanwhile, the driving moment is increased to influence the stability due to the fact that the length of the upper part of the output shaft 22 is increased for reserving the mounting position.
In the wok component suitable for cooking equipment, the wok 1 is directly sleeved on the rotating shaft 21 connected with the wok 1 through the output shaft 22 of the driving device for connection, so that the wok 1 can be directly supported by the driving device, meanwhile, the wok 1 is directly subjected to power transmission through the driving device, further, the rotating shaft 21 is coaxially connected with the wok 1, so that the wok 1 and the output shaft 22 can do coaxial positive and negative rotating motion under the action of the driving device, the phenomenon that the wok 1 generates eccentric motion in the driving process due to the complicated connecting structure between the output shaft 22 and the wok 1 is avoided, meanwhile, the rotating shaft 21 and the output shaft 22 are detachably connected with the outer pin hole 221 through the inner pin hole 212 is avoided, and when the wok 1 is replaced, only the inner pin hole 212 and the outer pin hole 221 need to be quickly detached, the separation of the frying pan 1 and the driving device can be completed, thereby realizing the quick replacement of the frying pan 1.
Frying pan device 100
The wok device 100 is an improvement over the wok assembly of the present invention.
Please refer to fig. 10 and fig. 11, which are schematic structural diagrams of the wok device 100, and include a furnace body 3 for heating the wok 1, a wok assembly and a bottom cover 41, wherein the wok assembly is the wok assembly as described above, the wok 1 in the wok assembly is installed in the furnace body 3, a driving device is installed at the bottom of the furnace body 3, an output shaft 22 passes through the bottom of the furnace body 3 and is detachably connected with a rotating shaft 21 of the wok 1 to drive the wok 1 to rotate, the bottom cover 41 is installed at the bottom of the furnace body 3 to accommodate the driving device, and a detachable screw cap 42 is disposed on the bottom cover 41 corresponding to the quick-dismounting structure.
Connection mode of the screw cap 42 and the bottom cover 41:
the bottom of the bottom cover 41 is provided with a dismounting hole 413, the screw cap 42 is provided with at least one bayonet 421, the periphery of the dismounting hole 413 is correspondingly provided with at least one bayonet 414, the bayonet 421 is detachably connected with the bayonet 414, so that the screw cap 42 is detachably connected with the bottom cover 41, the screw cap 42 is internally provided with an accommodating cavity 422, when the bottom cover 41 is arranged at the bottom of the furnace body 3, the outer pin hole 221 of the output shaft 22 and the inner pin hole 212 of the rotating shaft 21 are accommodated in the accommodating cavity 422 of the screw cap 42, when the frying pan 1 needs to be replaced, the outer pin hole 221 of the output shaft 22 and the inner pin hole 212 of the rotating shaft 21 can be detached only by detaching the screw cap 42, and the frying pan 1 can be taken out for replacement.
According to the wok device 100 of the cooking equipment, the wok component is combined with the furnace body 3 and the bottom cover 41, the wok 1 in the wok component is heated through the furnace body 3, the driving device is fixedly installed, and the driving device is protected by the bottom cover 41 in a waterproof and moisture-proof manner, so that the cooking function of the wok device of the cooking equipment is realized, and the overall performance of the wok device is improved.
Three, intelligent cooking machine
Please refer to fig. 2, which is a schematic structural diagram of an intelligent cooking machine provided by the present invention, including a casing 200, the above-mentioned wok device 100 disposed in the casing 200, an auxiliary cooking system and a control system, wherein the auxiliary cooking system includes a blanking device 300, a wok cover device 600, an auxiliary material device 500 and an oil smoke processing device 400, the blanking device 300 is installed over the wok device 100, the wok cover device 600 is installed on a rack with the back of the wok device 100 inclined toward the rear lower side, the auxiliary material device 500 is installed under the wok device 100, the oil smoke processing device 400 is installed over the wok cover device 600, and the auxiliary cooking system cooperates with the wok device 100 to perform automatic cooking under the control of the control system.
The intelligent cooker of the invention utilizes the frying pan device 100, combines with an auxiliary cooking system and a control system to realize a full-automatic cooking function, and simultaneously improves the overall performance of the intelligent cooker.

Claims (10)

1. The utility model provides a frying pan subassembly for cooking equipment, includes frying pan and drive arrangement, its characterized in that, axis of rotation (21) of frying pan (1) are in with the mode rigid coupling of this frying pan (1) coaxial line frying pan (1) bottom, drive arrangement's output shaft (22) are the hollow shaft, the lower extreme downwardly extending of axis of rotation (21) passes the hollow shaft is with quick assembly disassembly connection structure and this output shaft (22) rigid coupling.
2. Wok assembly for a cooking device according to claim 1, characterized in that the upper end of the output shaft (22) is at a vertical distance of not more than 5mm from the bottom of the wok (1).
3. The wok assembly for a cooking apparatus according to claim 2, wherein the quick-release coupling structures are respectively composed of an inner pin hole (212) provided on the rotating shaft (21), an outer pin hole (221) provided on the output shaft (22), and a pin post (23), and the pin post (23) passes through the inner pin hole (212) and the outer pin hole (221) to couple the rotating shaft (21) and the output shaft (22) together.
4. The wok assembly for a cooking apparatus according to claim 3, wherein the outer pin hole (221) is located at a lower portion of the output shaft (22).
5. The wok assembly for a cooking device according to claim 4, wherein the driving means is a horizontal motor assembly (24) comprising a driving motor (241), a turbine transmission assembly (242) and the output shaft (22), and the power transmission shaft (2411) of the driving motor (241) transmits power to the output shaft (22) through the turbine transmission assembly (242).
6. The wok assembly for cooking equipment as claimed in claim 5, wherein the turbine transmission assembly (242) is composed of an upper casing (243), a lower casing (244), a turbine (245), a worm (246), a ball bearing (247) and a tapered roller bearing (248), the upper casing (243) and the lower casing (244) are respectively provided with an upper shaft hole (2431) and a lower shaft hole (2441), the turbine (245) and the worm (246) are mounted in an inner cavity formed by the upper casing (243) and the lower casing (244) in a meshing connection manner, the outer end of the worm (246) is connected with the power transmission shaft (2411), the output shaft (22) is fixedly connected in a central hole of the turbine (245), the ball bearing (247) and the tapered roller bearing (248) are respectively arranged at the upper side and the lower side of the turbine (245), and inner rings of the ball bearing (247) and the tapered roller bearing (248) are fixedly connected on the output shaft (22), the upper end and the lower end of the output shaft (22) respectively penetrate through the upper shaft hole (2431) and the lower shaft hole (2441) to extend outwards.
7. Wok assembly for a cooking device according to claim 4, characterized in that the drive means is a direct drive motor (25).
8. Wok assembly for a cooking device according to claim 7, characterized in that the direct drive motor (25) comprises a bottom shell (261), an outer rotor (262), a stator coil (263), the upper cover plate (267) supports the bearing sleeved on the output shaft (22) to enable the output shaft (22) to rotate relatively, the outer rotor (262) is accommodated in an accommodating cavity formed after the bottom shell (261) and the upper cover plate (267) are connected, the stator coil (263) is accommodated in the outer rotor (262) and fixedly connected to the upper cover plate (267), the lower end of the output shaft (22) penetrates through coaxial through holes (2621) in the center positions of the bottoms of the outer rotor (262) and the bottom shell (261) to extend downwards, the output shaft (22) is fixedly connected with the outer rotor (262), and after the stator coil (263) is electrified, the outer rotor (262) rotates to drive the output shaft (22) to rotate.
9. A frying pan device of cooking equipment, including the furnace body, frying pan subassembly and the end cover that are used for heating the frying pan, characterized in that, the frying pan subassembly of claim any one in 1-8, frying pan (1) among the frying pan subassembly is installed in furnace body (3), and drive arrangement installs in furnace body (3) bottom, and the output shaft (22) of this drive arrangement pass furnace body (3) bottom and can dismantle with axis of rotation (21) of frying pan (1) and be connected, end cover (41) install in furnace body (3) bottom with the holding drive arrangement, just be equipped with detachable spiral cover (42) on end cover (41).
10. The utility model provides an intelligence cooking machine, includes the casing, sets up frying pan device, supplementary culinary art system and control system in the casing, its characterized in that, the frying pan device be claim 9 frying pan device (100), supplementary culinary art system includes unloader (300), pot cover device (600), auxiliary material device (500) and oil smoke processing apparatus (400), unloader (300) are installed directly over frying pan device (100), and pot cover device (600) are installed on the inclined plane of frying pan device (100) back frame upper portion and slope to the back below, and auxiliary material device (500) are installed in frying pan device (100) below, oil smoke processing apparatus (400) are installed in frying pan device (100) back top, supplementary culinary art system is in cooperation under control system's the control frying pan device (100) carry out automatic cooking.
CN202010859784.9A 2020-08-24 2020-08-24 A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment Pending CN114081333A (en)

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CN202010859784.9A CN114081333A (en) 2020-08-24 2020-08-24 A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment

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CN202010859784.9A CN114081333A (en) 2020-08-24 2020-08-24 A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102075050A (en) * 2009-11-25 2011-05-25 佛山市南海区东唐电机厂 Outer rotor DC brushless motor
CN103126513A (en) * 2013-02-28 2013-06-05 许锦标 Wok washing device applicable to full-automatic cooker
CN203436164U (en) * 2013-06-24 2014-02-19 广东伊立浦电器股份有限公司 Commercial electromagnetic intelligent cooking machine
CN203724410U (en) * 2014-02-24 2014-07-23 宁波韩尚电子科技有限公司 Low noise fat thin body fitness device
CN105747823A (en) * 2014-12-13 2016-07-13 广东夏野日用电器有限公司 Full-automatic electromagnetic cooker
CN209186343U (en) * 2018-10-12 2019-08-02 青岛新艺花生机械有限公司 The multi-functional frying pan of roasted seeds and nuts
CN212521498U (en) * 2020-08-24 2021-02-12 上海爱餐机器人(集团)有限公司 A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102075050A (en) * 2009-11-25 2011-05-25 佛山市南海区东唐电机厂 Outer rotor DC brushless motor
CN103126513A (en) * 2013-02-28 2013-06-05 许锦标 Wok washing device applicable to full-automatic cooker
CN203436164U (en) * 2013-06-24 2014-02-19 广东伊立浦电器股份有限公司 Commercial electromagnetic intelligent cooking machine
CN203724410U (en) * 2014-02-24 2014-07-23 宁波韩尚电子科技有限公司 Low noise fat thin body fitness device
CN105747823A (en) * 2014-12-13 2016-07-13 广东夏野日用电器有限公司 Full-automatic electromagnetic cooker
CN209186343U (en) * 2018-10-12 2019-08-02 青岛新艺花生机械有限公司 The multi-functional frying pan of roasted seeds and nuts
CN212521498U (en) * 2020-08-24 2021-02-12 上海爱餐机器人(集团)有限公司 A frying pan subassembly, frying pan device and intelligent machine of cooking for cooking equipment

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