Double-shaft linkage cooking stirring appliance
By using a dual-axis linkage mixing appliance, which utilizes a motor-driven rotating disc and planetary gear system to make the mixing components revolve and rotate within the pot, the problem of low efficiency in stir-frying food is solved, thus improving cooking efficiency and food quality.
Patent Information
- Application Number
- CN202520315397.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-26
AI Technical Summary
Existing cooking equipment has low efficiency in stir-frying food, which affects cooking efficiency and food quality.
The mixing appliance uses a dual-shaft linkage. The motor drives the rotating disc and planetary gear system, which makes the mixing components revolve and rotate within the pot, achieving a compound motion and enhancing the stir-frying effect on food.
It improves the efficiency and cooking effect of stir-frying food, and enhances the even heating and taste of food.
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Figure CN223944249U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of cooking equipment, concretely relates to a cooking machine. BACKGROUND
[0002] The cooking equipment is provided with a heat source and a pot, the heat source heats the pot, and the food in the pot is stirred-fried, so that the food is rapidly and comprehensively heated, and the cooking efficiency and food quality are improved. SUMMARY
[0003] The utility model solves the technical problem that: provide a kind of stir-frying appliance of food in pot, which can improve the cooking efficiency.
[0004] To solve the above technical problems, the utility model provides the following technical scheme: double-shaft linkage's cooking stirring appliance, including the motor being installed on support arm, the rotating disc being connected with motor shaft, the first stirring piece being connected with rotating disc, rotating disc is hinged in fixed casing, fixed casing is connected with the support arm, the top of first stirring piece is equipped with autorotation shaft, autorotation shaft is hinged in rotating disc, fixedly set with internal gear ring in fixed casing, internal gear ring is engaged with planetary gear, and planetary gear is installed on autorotation shaft.
[0005] Fixed casing is installed on support arm by threaded connection, and support arm supports motor and fixed casing.Under the drive of motor, rotating disc rotates, and all autorotation shafts on rotating disc rotate synchronously, autorotation shaft drives first stirring piece to rotate synchronously, so that first stirring piece revolves around motor shaft.At the same time, planetary gear rotates on internal gear ring, drives autorotation shaft to rotate, and autorotation shaft drives first stirring piece to rotate.
[0006] Bearing is arranged between rotating disc and fixed casing, and is fixedly arranged on the inner side wall of fixed casing.
[0007] The lower portion of fixed casing is equipped with movable casing, and movable casing is fixedly connected with rotating disc by threaded connection, the curved bottom of movable casing is equipped with hinge hole position, autorotation shaft is connected with first stirring piece by universal joint, and first stirring piece is fitted in the hinge hole position.
[0008] The curved bottom of movable casing is equipped with positioning hole, and second stirring piece is fitted in the positioning hole, and second stirring piece and first stirring piece are distributed along the circumference of casing.
[0009] First stirring piece and second stirring piece all include cylinder piece and rod piece, stirring blade is arranged at the bottom end of cylinder piece, axial slot is arranged on the side wall of cylinder piece, pin hole is arranged on the rod piece, pin is fitted in the pin hole, and rod piece is movably fitted in cylinder piece, and pin is fitted in axial slot.Cylinder piece can be telescopic within a certain range relative to rod piece, so that stirring blade can be attached to the inner wall of pot.
[0010] The utility model provides a kind of double-shaft linkage's cooking stirring appliance, the stirring member of this stirring appliance can rotate while revolving in utensil, it is beneficial to promote the efficiency of cooking food and food quality. BRIEF DESCRIPTION OF DRAWINGS
[0011] The utility model is further described below in conjunction with drawings:
[0012] Figure 1 It is the schematic diagram of double-shaft linkage's cooking stirring appliance;
[0013] Figure 2 It is Figure 1 It is the schematic diagram of double-shaft linkage's cooking stirring appliance in left side observation;
[0014] Figure 3 It is the explosion drawing of double-shaft linkage's cooking stirring appliance.
[0015] Explanation of symbols in drawing:
[0016] 10, support arm;
[0017] 20, motor;
[0018] 30, rotating disc;
[0019] 40, first stirring member;41, rotation axis;42, universal joint;43, second stirring member;44, cylinder;441, axial strip-shaped hole;45, rod;451, pin hole;46, stirring blade;
[0020] 51, fixed housing;52, inner gear ring;53, planetary gear;54, bearing;55, movable housing;551, pivot connection hole;552, positioning hole. DETAILED DESCRIPTION
[0021] Reference Figures 1 to 3 Double-shaft linkage's cooking stirring appliance, including the motor 20 of installation on support arm 10, with motor shaft connection's rotating disc 30, with the first stirring member 40 of rotating disc connection, rotating disc is pivoted in fixed housing 51, fixed housing is connected the support arm, first stirring member top is equipped with rotation axis 41, rotation axis is pivoted on rotating disc 30, fixed housing is fixedly provided with inner gear ring 52, inner gear ring is engaged with planetary gear 53, and planetary gear is installed on rotation axis.
[0022] Bearing 54 is equipped between rotating disc 30 and fixed housing 51.
[0023] The lower of fixed housing 51 is equipped with movable housing 55, and movable housing is connected with rotating disc 30, and the curved bottom of movable housing is equipped with pivot connection hole 551, and rotation axis 41 is connected with first stirring member 40 through universal joint 42, and first stirring member is fitted in the pivot connection hole.
[0024] The curved bottom of the movable shell 55 is provided with a positioning hole 552, in which a second stirring member 43 is fitted, and the first and second stirring members are distributed along the circumference of the movable shell.
[0025] The first and second stirring members 40 and 43 each comprise a cylinder member 44 and a rod member 45, a stirring blade 46 is arranged at the bottom end of the cylinder member, an axial strip-shaped hole 441 is arranged on the side wall of the cylinder member, a pin hole 451 is arranged on the rod member, a pin is fitted in the pin hole, the rod member is movably fitted in the cylinder member, and the pin is fitted in the axial strip-shaped hole.
[0026] The fixed shell 51 is mounted on the support arm 10 through a threaded connecting member, and the support arm supports the motor 20 and the fixed shell 51. Under the driving of the motor, the rotating disc 30 and the movable shell 55 rotate as a whole, which drives all the revolution axes 41, the first stirring member 40 and the second stirring member 43 to rotate synchronously, so that the first and second stirring members revolve around the motor shaft. At the same time, the planetary gear 53 rotates in the inner ring gear 52 to drive the revolution axis 41 to revolve, and the revolution axis drives the first stirring member 40 to revolve. Under the action of centrifugal force and gravity, the stirring blade 46 of the telescopic stirring member tightly abuts against the inner wall of the pot.
[0027] The above is only the preferred embodiment of the present application, and for those skilled in the art, the specific embodiment and application range can be changed according to the idea of the present application, and the content of the specification should not be understood as the limitation of the present application.
Claims
1. A dual-shaft linkage cooking and mixing appliance, comprising a motor (20) mounted on a support arm (10), a rotating disk (30) connected to the motor shaft, and a first mixing element (40) connected to the rotating disk, the rotating disk being pivotally connected to a fixed housing (51), the fixed housing being connected to the support arm, characterized in that: The first stirring component is provided with a rotating shaft (41) at the top, which is pivotally connected to the rotating disk (30). An internal gear ring (52) is fixedly installed in the fixed housing. The internal gear ring meshes with a planetary gear (53), which is mounted on the rotating shaft.
2. The dual-axis linkage cooking and mixing appliance as described in claim 1, characterized in that: A bearing (54) is provided between the rotating disk (30) and the fixed housing (51).
3. The dual-axis linkage cooking and mixing appliance as described in claim 1, characterized in that: A movable housing (55) is provided below the fixed housing (51). The movable housing is connected to the rotating disk (30). The curved bottom of the movable housing is provided with a pivot hole (551). The self-rotating shaft (41) is connected to the first stirring member (40) through a universal joint (42). The first stirring member is fitted in the pivot hole.
4. The dual-axis linkage cooking and mixing appliance as described in claim 1, characterized in that: The curved bottom of the movable shell (55) is provided with a positioning hole (552), and a second stirring element (43) is fitted in the positioning hole. The second stirring element and the first stirring element are distributed along the circumference of the movable shell.
5. The dual-axis linkage cooking and mixing appliance as described in claim 4, characterized in that: Both the first stirring component (40) and the second stirring component (43) include a cylinder (44) and a rod (45). The stirring blade (46) is located at the bottom of the cylinder. An axial strip hole (441) is provided on the side wall of the cylinder. A pin hole (451) is provided on the rod. A pin is fitted in the pin hole. The rod is movably fitted in the cylinder, and the pin is fitted in the axial strip hole.