CN213821048U - Sealed stirring assembly of frying pan - Google Patents

Sealed stirring assembly of frying pan Download PDF

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Publication number
CN213821048U
CN213821048U CN202022620517.4U CN202022620517U CN213821048U CN 213821048 U CN213821048 U CN 213821048U CN 202022620517 U CN202022620517 U CN 202022620517U CN 213821048 U CN213821048 U CN 213821048U
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assembly
stirrer
planetary
main
driving
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CN202022620517.4U
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Chinese (zh)
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蔡新华
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Chengdu Greatwall E Machinery Co ltd
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Chengdu Greatwall E Machinery Co ltd
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Abstract

The utility model discloses a sealed stirring assembly of a frying pan, which comprises a pan body with a discharge port at the bottom, a turnover arm which can turn over, and a sealed stirring mechanism arranged in the pan body; the sealing and stirring mechanism comprises a driving device, a stirrer assembly, a driving assembly and a sealing assembly; the stirrer comprises a main stirrer and a planetary stirrer; the driving device is arranged at one end of the turnover arm; the stirrer assembly, the driving assembly and the sealing assembly are arranged at the other end of the turnover arm; the driving device is in transmission connection with the driving assembly through the transmission device, the driving assembly drives the main stirrer and the planetary stirrer to rotate, and the sealing assembly is used for plugging the discharge hole. The utility model respectively arranges the components in the sealing and stirring mechanism at the two ends of the turnover arm, so that the turnover arm is more uniform when frying materials, and the service life of the turnover arm is prolonged; and meanwhile, the reasonable utilization of space is realized.

Description

Sealed stirring assembly of frying pan
Technical Field
The utility model relates to a frying pan technical field particularly, relates to a sealed stirring assembly of frying pan.
Background
The existing lower discharging type frying pan is provided with a turnover arm which can turn over, and a stirring mechanism and a sealing mechanism are arranged on the turnover arm, and the stirring mechanism and the sealing mechanism are driven to be far away from or close to a pan body through the turnover of the turnover arm, so that the basic material stirring function is realized. Patent document with publication number CN204033060U discloses an intelligent seasoning frying pan, which comprises a boiler part, a stirring part, a discharging part, a heating part and a control part, wherein the boiler part comprises a boiler body and a pan body, the pan body is arranged in the boiler body, the cross section of the outer side of the boiler body is of a square structure, the cross section of the inner side of the boiler body is of a circular shape, a sewage discharge groove is arranged on a cooking range between the upper part of the boiler body and an opening of the pan body, and the periphery of the sewage discharge groove surrounds the opening of the pan body. However, in practical applications, it is found that since the stirring mechanism for stirring the material, the sealing mechanism for sealing the discharge hole, and the motor for driving the stirring mechanism to rotate are all disposed at the same end of the turnover arm, and the motor itself is relatively heavy, the stress applied to the turnover arm is concentrated on the end of the turnover arm. And when the turnover arm operates, the turnover arm bears the force from the stirring sealing mechanism and also bears the resistance given to the stirring sealing mechanism by the materials, so that the turnover arm is easy to damage when the turnover arm operates, and the service life of the turnover arm is shortened.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a sealed stirring assembly of frying pan through setting up drive arrangement in the one end of upset arm to with the other part setting at the other end of upset arm, thereby reduce the power that a certain end of upset arm receives, make the atress on the upset arm more even, thereby reduce the possibility of upset arm damage, improve the life of upset arm.
The embodiment of the utility model discloses a realize through following technical scheme:
a sealed stirring assembly of a frying pan comprises a pan body, a turnover arm and a sealed stirring mechanism, wherein a discharge hole is formed in the bottom of the pan body; the sealing and stirring mechanism comprises a driving device, a stirrer assembly, a driving assembly and a sealing assembly; the stirrer assembly comprises a main stirrer and a planetary stirrer; the driving device is arranged at one end of the turnover arm; the stirrer assembly, the driving assembly and the sealing assembly are arranged at the other end of the turnover arm; the driving device is in transmission connection with the driving component through a transmission device, the driving component drives the main stirrer and the planetary stirrer to rotate, and the sealing component is used for plugging the discharge hole.
The driving device of the sealed stirring mechanism is arranged at one end of the turnover arm, and the stirrer assembly, the driving assembly and the sealing assembly are arranged at the other end of the turnover arm together, so that the force borne by the turnover arm is more uniform, the turnover arm is not easy to damage in the actual material frying process, and the service life of the turnover arm is prolonged; meanwhile, the sealing and stirring mechanism arranged on the turnover arm is more compact in structure by adopting the arrangement, and the reasonable utilization of space is realized.
Optionally, the driving assembly includes a rotating shaft and a gear box, and the rotating shaft passes through the gear box and is fixedly connected with the gear box; a main gear which rotates coaxially with the rotating shaft and a planetary gear which is meshed with the main gear are arranged in the gear box; a planetary stirring shaft is inserted in the planetary gear, and one end of the planetary stirring shaft extends out of the gear box and is connected with the planetary stirrer; the planetary stirring shaft is rotationally connected with the gear box; the main stirrer is fixedly connected with the gear box; the main stirrer is fixedly connected with the gear box;
drive arrangement includes the motor, transmission includes the action wheel, follows driving wheel and belt, the output of motor with the action wheel transmission is connected, locate from the driving wheel cover the outer wall of rotation axis, the action wheel with pass through from between the driving wheel the belt transmission is connected.
Optionally, the driving assembly further comprises a main sleeve and an auxiliary sleeve, the main sleeve is fixedly connected with the turnover arm, and the auxiliary sleeve is fixedly connected with the gear box; the rotating shaft comprises a main shaft and an auxiliary shaft, the driven wheel is sleeved on the main shaft, one end of the main shaft penetrates through the main sleeve and the gear box in sequence and then is in transmission connection with one end of the auxiliary shaft, and the main shaft is in rotating connection with the main sleeve; the other end of the auxiliary shaft extends into the auxiliary sleeve and is in rotary connection with the auxiliary sleeve; the main stirrer is fixedly connected with the auxiliary sleeve, and the main gear is sleeved on the auxiliary shaft.
Optionally, the sealing assembly includes a lifting device, a connecting rod, and a sealing head, and the lifting device is mounted on the overturning arm; one end of the connecting rod piece is in transmission connection with the lifting device, and the other end of the connecting rod piece penetrates through the driving assembly and then is connected with the sealing head; the lifting device is used for driving the sealing head to reciprocate in the vertical direction, and the sealing head is used for sealing the discharge hole.
Optionally, a planetary sleeve is further arranged on the gear box, the planetary stirring shaft penetrates through the planetary sleeve and then is fixedly connected with the planetary stirrer, and the planetary stirring shaft is rotatably connected with the planetary sleeve.
Optionally, the belt between the driving wheel and the driven wheel is in a horizontal state.
The utility model discloses technical scheme has following advantage and beneficial effect at least:
the embodiment of the utility model provides a sealed stirring assembly, through setting up the constitution part in the sealed stirring mechanism respectively at the both ends of upset arm, make the upset arm receive more evenly when stir-fry the material, improve the life of upset arm; meanwhile, the sealing and stirring mechanism is reasonably arranged on the turnover arm, so that the structure of each component on the turnover arm is more compact, and the reasonable utilization of space is realized.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention, and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
Fig. 1 is a schematic structural diagram of a sealed stirring assembly provided in an embodiment of the present invention;
fig. 2 is a schematic partial structure diagram of the sealed stirring mechanism provided by the embodiment of the present invention.
Icon: 1-pot body, 101-discharge port, 2-turnover arm, 3-turnover mechanism, 4-driving device, 5-stirrer component, 501-main stirrer, 502-planetary stirrer, 6-driving component, 601-rotating shaft, 6011-main shaft, 6012-auxiliary shaft, 602-gear box, 603-main gear, 604-planetary gear, 605-planetary stirring shaft, 606-planetary sleeve, 607-main sleeve, 608-auxiliary sleeve, 7-sealing component, 701-lifting device, 702-connecting rod piece, 703-sealing head, 8-transmission device, 801-driving wheel, 802-driven wheel and 803-belt.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
In the description of the present invention, it should be noted that, if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the position or positional relationship based on the position or positional relationship shown in the drawings, or the position or positional relationship which is usually placed when the product of the present invention is used, the description is only for convenience of description and simplification, but the indication or suggestion that the device or element to be referred must have a specific position, be constructed and operated in a specific position, and thus, cannot be understood as a limitation of the present invention.
Referring to fig. 1 and 2, a sealed stirring assembly of a frying pan comprises a pan body 1 with a discharge port 101 at the bottom, a turnover arm 2 which can turn over, and a sealed stirring mechanism arranged in the pan body 1; in an embodiment, the discharge port 101 is arranged at the center of the bottom of the pot body 1, and the turnover arm 2 is driven by the turnover mechanism 3 to turn over; specifically, the sealing and stirring mechanism comprises a driving device 4, a stirrer assembly 5, a driving assembly 6 and a sealing assembly 7; the stirrer assembly 5 comprises a main stirrer 501 and a planetary stirrer 502, and during actual stirring, a stirring surface formed by matching the main stirrer 501 and the planetary stirrer 502 covers the stir-frying surface in the pot body 1; wherein, the driving device 4 is arranged at one end of the turnover arm 2; the stirrer assembly 5, the driving assembly 6 and the sealing assembly 7 are arranged at the other end of the turnover arm 2 together; meanwhile, the driving device 4 is in transmission connection with the driving component 6 through the transmission device 8, and the driving component 6 drives the main stirrer 501 and the planetary stirrer 502 to rotate; the main stirrer 501 and the planetary stirrer 502 are driven to rotate by the driving device 4, so that the stirring surface formed by the cooperation of the main stirrer 501 and the planetary stirrer 502 covers the stir-frying surface in the pot body 1, and the stir-frying quality is ensured. The sealing component 7 is used for blocking the discharge hole 101 in the process of frying the materials, so that the materials are prevented from overflowing from the discharge hole 101.
The driving device 4 of the sealed stirring mechanism is arranged at one end of the turnover arm 2, and the stirrer assembly 5, the driving assembly 6 and the sealing assembly 7 are arranged at the other end of the turnover arm 2 together, so that the force borne by the turnover arm 2 is more uniform, the turnover arm 2 is not easy to damage in the actual material frying process, and the service life of the turnover arm 2 is prolonged; meanwhile, the sealing and stirring mechanism arranged on the turnover arm 2 is more compact in structure by adopting the arrangement, and the reasonable utilization of space is realized.
In the embodiment, in order to make the device structure more compact, the reasonable utilization of the installation space is realized at the same time. The driving assembly 6 includes a rotating shaft 601 and a gear box 602, wherein the rotating shaft 601 passes through the gear box 602 and is fixedly connected to the gear box 602, so as to drive the gear box 602 to rotate while the rotating shaft 601 rotates. It should be noted that the above-mentioned penetrating may be through the gear box 602, or may extend to the inside of the gear box 602 after penetrating through the top surface of the gear box 602, and the penetrating gear box 602 adopted in this embodiment is disposed; meanwhile, a main gear 603 which rotates coaxially with the rotating shaft 601 and a planetary gear 604 which is engaged with the main gear 603 are arranged inside the gear box 602; a planetary stirring shaft 605 is inserted in the planetary gear 604, and one end of the planetary stirring shaft 605 extends out of the gear box 602 and is connected with the planetary stirrer 502; the planetary stirring shaft 605 is rotationally connected with the gear box 602; the main agitator 501 is fixedly connected to the gear box 602. Through the arrangement, when the rotating shaft 601 rotates, the gear box 602 and the main gear 603 inside the gear box 602 can be driven to coaxially rotate, so that the main stirrer 501 is driven to rotate by the rotation of the gear box 602 to form a stirring surface; in addition, the rotation of the main gear 603 can drive the rotating wheel of the planetary gear 604, so that the planetary stirrer 502 can revolve around the rotating shaft 601 under the drive of the gear box 602 while rotating, and another stirring surface is formed; therefore, the stir-frying surface formed by the main stirrer 501 and the planetary stirrer 502 covers the stir-frying surface in the pan body 1, and the stir-frying effect is improved. In addition, in order to reduce the friction between the planetary stirring shaft 605 and the gear box 602, the transmission performance of the planetary stirring shaft 605 is improved. The gear box 602 is further provided with a planetary sleeve 606, the planetary stirring shaft 605 passes through the planetary sleeve 606 and then is fixedly connected with the planetary stirrer 502, and the planetary stirring shaft 605 is rotatably connected with the planetary sleeve 606 through a bearing.
In addition, the above-mentioned driving device 4 includes a motor, the transmission device 8 includes a driving wheel 801, a driven wheel 802 and a belt 803, an output end of the motor is in transmission connection with the driving wheel 801, the driven wheel 802 is sleeved on an outer wall of the rotating shaft 601, and the driving wheel 801 and the driven wheel 802 are in transmission connection through the belt 803. Drive action wheel 801 through the motor and rotate and utilize belt 803 transmission to drive to rotate from driving wheel 802, realize utilizing belt transmission's mode to drive rotation axis 601 to rotate, will reduce the power that upset arm 2 middle zone received, improve the stability of upset arm 2 in stir-fry material in-process, the maintenance and the belt 803 of changing the damage of the later stage of being convenient for simultaneously. Meanwhile, compared with the existing gear transmission, the belt transmission can play the roles of buffering impact, damping and the like, so that the transmission process is more stable, and the noise in operation is reduced, so that the comprehensive performance of the frying pan is improved. In one embodiment, the belt 803 between the driving wheel 801 and the driven wheel 802 is horizontal, so that the transmission process is more stable and efficient.
In the present embodiment, in order to further improve the transmission effect of the rotating shaft 601, the influence of external factors on the transmission performance of the rotating shaft 601 is reduced as much as possible. The driving assembly 6 further comprises a main sleeve 607 and an auxiliary sleeve 608, wherein the main sleeve 607 is fixedly connected with the turnover arm 2, and the auxiliary sleeve 608 is fixedly connected with the gear box 602; the rotating shaft 601 comprises a main shaft 6011 and an auxiliary shaft 6012, a driven wheel 802 is sleeved on the main shaft 6011, one end of the main shaft 6011 penetrates through a main sleeve 607 and a gear box 602 in sequence and then is in transmission connection with one end of the auxiliary shaft 6012, and the main shaft 6011 is in rotation connection with the main sleeve 607 through a bearing; the other end of the secondary shaft 6012 extends into the interior of the secondary sleeve 608 and is rotatably connected with the secondary sleeve 608 through a bearing; the main agitator 501 is fixedly connected to the sub-sleeve 608, and the main gear 603 is sleeved on the sub-shaft 6012. Through the above, the rotating shaft 601 is divided into the main shaft 6011 and the auxiliary shaft 6012, when the main shaft 6011 or the auxiliary shaft 6012 is damaged in the later period, only the damaged main shaft 6011 or auxiliary shaft 6012 needs to be replaced independently, the whole rotating shaft 601 does not need to be replaced, the whole maintenance process is simpler and faster, and the cost of maintenance investment is reduced. In addition, it can be found through the above arrangement that there is no part of the main shaft 6011 and the auxiliary shaft 6012 exposed to the external environment, that is, in actual operation, dust and impurities in the external environment can be effectively prevented from adhering to the main shaft 6011 or the auxiliary shaft 6012, the transmission performance of the main shaft 6011 or the auxiliary shaft 6012 is prevented from being affected, and meanwhile, the service life of the main shaft 6011 or the auxiliary shaft 6012 is prolonged.
In this embodiment, the sealing assembly 7 includes a lifting device 701, a connecting rod 702 and a sealing head 703, the lifting device 701 is mounted on the invert arm 2, and the lifting device 701 in this embodiment is mounted on the top of the invert arm 2; one end of the connecting rod 702 is in transmission connection with the lifting device 701, and the other end of the connecting rod penetrates through the driving assembly 6 and then is connected with the sealing head 703; the lifting device 701 is used for driving the sealing head 703 to reciprocate along the vertical direction, and the sealing head 703 is used for sealing the discharge hole 101. Specifically, the lifting device 701 may employ a conventional linear driving device such as an air cylinder, an electric push rod, or a hydraulic cylinder, which is not limited herein. After the turnover arm 2 is turned over to enable the stirrer assembly 5 to be located inside the pot body 1, the lifting device 701 drives the sealing head 703 to move downwards along the vertical direction, so that the sealing head 703 is inserted into the discharging port 101, and the discharging port 101 is sealed. By adopting the arrangement, the structure of the sealing component 7, the driving component 6 and the stirrer component 5 at the end part of the turnover arm 2 is more compact, and the space utilization rate is higher.
The above is only a preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes will occur to those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. A sealed stirring assembly of a frying pan comprises a pan body, a turnover arm and a sealed stirring mechanism, wherein a discharge hole is formed in the bottom of the pan body; the sealing and stirring mechanism comprises a driving device, a stirrer assembly, a driving assembly and a sealing assembly; the stirrer assembly comprises a main stirrer and a planetary stirrer; the method is characterized in that: the driving device is arranged at one end of the turnover arm; the stirrer assembly, the driving assembly and the sealing assembly are arranged at the other end of the turnover arm; the driving device is in transmission connection with the driving component through a transmission device, the driving component drives the main stirrer and the planetary stirrer to rotate, and the sealing component is used for plugging the discharge hole.
2. The sealed stirring assembly of frying pan of claim 1, wherein: the driving assembly comprises a rotating shaft and a gear box, and the rotating shaft penetrates through the gear box and is fixedly connected with the gear box; a main gear which rotates coaxially with the rotating shaft and a planetary gear which is meshed with the main gear are arranged in the gear box; a planetary stirring shaft is inserted in the planetary gear, and one end of the planetary stirring shaft extends out of the gear box and is connected with the planetary stirrer; the planetary stirring shaft is rotationally connected with the gear box; the main stirrer is fixedly connected with the gear box;
drive arrangement includes the motor, transmission includes the action wheel, follows driving wheel and belt, the output of motor with the action wheel transmission is connected, locate from the driving wheel cover the outer wall of rotation axis, the action wheel with pass through from between the driving wheel the belt transmission is connected.
3. The sealed stirring assembly of frying pan of claim 2, wherein: the driving assembly further comprises a main sleeve and an auxiliary sleeve, the main sleeve is fixedly connected with the turnover arm, and the auxiliary sleeve is fixedly connected with the gear box; the rotating shaft comprises a main shaft and an auxiliary shaft, the driven wheel is sleeved on the main shaft, one end of the main shaft penetrates through the main sleeve and the gear box in sequence and then is in transmission connection with one end of the auxiliary shaft, and the main shaft is in rotating connection with the main sleeve; the other end of the auxiliary shaft extends into the auxiliary sleeve and is in rotary connection with the auxiliary sleeve; the main stirrer is fixedly connected with the auxiliary sleeve, and the main gear is sleeved on the auxiliary shaft.
4. The sealed stirring assembly of frying pan of claim 1, wherein: the sealing assembly comprises a lifting device, a connecting rod piece and a sealing head, and the lifting device is arranged on the turnover arm; one end of the connecting rod piece is in transmission connection with the lifting device, and the other end of the connecting rod piece penetrates through the driving assembly and then is connected with the sealing head; the lifting device is used for driving the sealing head to reciprocate in the vertical direction, and the sealing head is used for sealing the discharge hole.
5. The sealed stirring assembly of frying pan of claim 2, wherein: the gearbox is also provided with a planetary sleeve, the planetary stirring shaft penetrates through the planetary sleeve and then is fixedly connected with the planetary stirrer, and the planetary stirring shaft is rotatably connected with the planetary sleeve.
6. The sealed stirring assembly of frying pan of claim 2, wherein: the belt between the driving wheel and the driven wheel is in a horizontal state.
CN202022620517.4U 2020-07-30 2020-11-12 Sealed stirring assembly of frying pan Active CN213821048U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2020215534233 2020-07-30
CN202021553423 2020-07-30

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CN213821048U true CN213821048U (en) 2021-07-30

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Application Number Title Priority Date Filing Date
CN202022620517.4U Active CN213821048U (en) 2020-07-30 2020-11-12 Sealed stirring assembly of frying pan

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CN (1) CN213821048U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114010052A (en) * 2021-10-26 2022-02-08 江苏大学 Automatic central kitchen cooking equipment and use method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114010052A (en) * 2021-10-26 2022-02-08 江苏大学 Automatic central kitchen cooking equipment and use method thereof
CN114010052B (en) * 2021-10-26 2022-10-28 江苏大学 Automatic central kitchen cooking equipment and use method thereof

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