CN213899781U - Multifunctional gear type planetary egg beater - Google Patents

Multifunctional gear type planetary egg beater Download PDF

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Publication number
CN213899781U
CN213899781U CN202022499151.XU CN202022499151U CN213899781U CN 213899781 U CN213899781 U CN 213899781U CN 202022499151 U CN202022499151 U CN 202022499151U CN 213899781 U CN213899781 U CN 213899781U
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gear
shaft
transmission
machine head
stirring
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CN202022499151.XU
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Chinese (zh)
Inventor
谢顺和
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Xinmai Machinery China Co Ltd
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Sinmag Equipment China Co ltd
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Abstract

The utility model relates to a multifunctional gear type planet eggbeater, which comprises a frame, a machine body is vertically arranged at the end part above the frame, a machine head is arranged at the top end of the machine body, the frame, the machine body and the machine head jointly form a C-shaped structure, a lifting and holding mechanism is arranged in the middle of the inner side surface of the machine body, and a stirring cylinder is supported by the lifting and holding mechanism; the power mechanism is arranged in the machine head, the bottom surface of the machine head extends downwards to form an output shaft, the front side surface of the machine head extends forwards to form a power output port, and the power mechanism is driven by the gear assembly and simultaneously transmits power to the output shaft and the power output port; the gear shifting mechanism is arranged on the side wall of the machine head, and the transmission in the gear assembly is adjusted through the gear shifting mechanism so as to change the rotating speed of the output shaft; the utility model discloses a gear assembly is provided with tertiary gear shifting to power output port can be for outside meat grinder, vegetable-chopper etc. provide power, and the replacement of stirring subassembly is applicable to the mixture of different materials, and the function is various, convenient to use, and energy-conservation, the practicality is good.

Description

Multifunctional gear type planetary egg beater
Technical Field
The utility model belongs to the technical field of egg beater technique and specifically relates to a multi-functional gear formula planet egg beater.
Background
In the prior art, the egg beater has a single function and is only provided with a port for outputting a deceleration speed for beating egg liquid; however, in practical use, the rotating output can be used for stirring stuffing, dough or batter, and the rotating speeds required by different objects are different, so that kitchen appliances with different rotating speed ranges are required to meet the cooking requirements of rotating or stirring, and the multifunctional electric cooker not only occupies a large variety of occupied spaces, but also is inconvenient to manage and poor in practicability.
SUMMERY OF THE UTILITY MODEL
The applicant provides a rational-structured multifunctional gear type planetary egg beater aiming at the defects in the prior art, so that two power outputs are arranged for synchronous use on the basis of three-gear adjustment, and the multifunctional gear type planetary egg beater has multiple functions, good energy conservation and good practicability.
The utility model discloses the technical scheme who adopts as follows:
a multifunctional gear type planetary egg beater comprises a base, wherein a machine body is vertically arranged at the end part above the base, a machine head is arranged at the top end of the machine body, the base, the machine body and the machine head jointly form a C-shaped structure, a lifting and clasping mechanism is arranged in the middle of the inner side surface of the machine body, and a stirring cylinder is supported by the lifting and clasping mechanism; the power mechanism is arranged in the machine head, the bottom surface of the machine head extends downwards to form an output shaft, the front side surface of the machine head extends forwards to form a power output port, and the power mechanism is driven by the gear assembly and simultaneously transmits power to the output shaft and the power output port; the gear shifting mechanism is arranged on the side wall of the machine head, and the transmission in the gear assembly is adjusted through the gear shifting mechanism so as to change the rotating speed of the output shaft.
As a further improvement of the above technical solution:
the structure of the gear assembly is as follows: the gear shifting mechanism comprises a driving shaft connected with a power mechanism, wherein an intermediate shaft, a gear shaft and an output shaft are arranged outside the side surface of the driving shaft in parallel; a driving gear fixedly connected with the middle part of the driving shaft is in meshing transmission with a middle large gear fixedly connected with the middle part of the middle shaft, and a middle pinion and a middle gear are also arranged on the middle shaft above and below the middle large gear; the gear shaft is sequentially provided with a transmission large gear, a transmission small gear and a transmission middle gear from top to bottom, the transmission large gear, the transmission small gear and the transmission middle gear are in one-to-one correspondence with and meshed with the middle small gear, the middle large gear and the middle gear on the middle shaft, and one of the transmission large gear, the transmission small gear and the transmission middle gear transmits the rotating speed to the gear shaft through the gear shifting mechanism.
The transmission large gear is fixedly arranged on the gear shaft through an overrunning clutch, and the clutch is sleeved on the gear shaft between the transmission small gear and the transmission middle gear; under the shifting of the gear shifting mechanism, the clutch is positioned at the middle neutral gear position, or moves upwards to be meshed with the transmission pinion, or moves downwards to be meshed with the transmission middle gear.
The structure of the gear shifting mechanism is as follows: the clutch comprises a U-shaped frame fixedly arranged on the circumferential outer wall surface of the clutch, a cam is assembled in the lateral opening end of the U-shaped frame, and a handle is fixedly arranged in the middle of the cam through a connecting shaft; the handle is arranged outside the side wall of the machine head and drives the cam to rotate, and then the U-shaped frame is pushed upwards or downwards by the circumferential surface of the cam.
And a driving bevel gear is sleeved on the gear shaft between the transmission big gear and the transmission small gear and is meshed with a driven bevel gear at the inner end of the power output port.
An internal gear is fixedly arranged on the gear shaft below the transmission middle gear, an output gear is sleeved on the upper portion of the output shaft, and the internal gear is meshed with the output gear.
The lifting clasping mechanism is structurally characterized in that: the horn-shaped mixing machine comprises a horn piece which is slidably arranged on the inner side surface of a machine body, the opening end of the horn piece faces forwards and surrounds the circumference of a mixing tank, a nut is welded on the rear side surface of the horn piece, a screw rod penetrates through the nut up and down and is assembled in a screw pair, the top end of the screw rod is fixedly provided with a first small bevel gear, the first small bevel gear is engaged and assembled with a second small bevel gear, and the middle part of the second small bevel gear is provided with a hand wheel through a shaft; the hand wheel is arranged outside the side wall of the machine body and drives the small bevel gear II to rotate, and the screw rod is driven to rotate through meshing transmission with the small bevel gear I, so that the ox horn piece moves up and down; and clamping blocks are symmetrically arranged at the end parts of two arms of the opening end of the ox horn piece.
The power mechanism is a motor, and the output end of the motor drives the gear assembly to transmit through the belt transmission structure.
The output shaft is positioned right above the stirring cylinder, the bottom end of the output shaft is provided with a stirring assembly, and the stirring assembly extends downwards into the stirring cylinder; and a safety net of an outward-expanding horn-shaped structure is further mounted on the bottom surface of the machine head positioned at the circumferential outer part of the stirring assembly.
The stirring component is a stirring fan, a stirring ball or a stirring hook.
The utility model has the advantages as follows:
the utility model discloses compact structure, reasonable, convenient operation is provided with three rotational speeds through the gear assembly and adjusts to be provided with the power take-off mouth of two differences in order to supply synchronous use, the function is diversified, has strengthened the practicality greatly, convenient to use, and energy-conservation nature is good, and small in size, and user experience is good.
The utility model discloses still include following advantage:
when the clutch is in the middle neutral position, a middle pinion above the middle shaft is meshed with a transmission gear wheel above the gear shaft, and the transmission gear wheel transmits the rotating speed to the gear shaft and then drives the output shaft to rotate to output the rotating speed; when the clutch is pulled up, the clutch is clamped with a transmission pinion in the middle of the gear shaft, a middle large gear in the middle of the middle shaft is meshed with the transmission pinion in the middle of the gear shaft, and the transmission pinion transmits the rotating speed to the gear shaft and finally outputs the rotating speed; when the clutch is shifted downwards, the clutch is clamped with a transmission middle gear below the gear shaft, a middle gear below the middle shaft is meshed with the transmission middle gear below the gear shaft, and the rotation speed is transmitted to the gear shaft by the transmission middle gear and finally output; thereby realizing three-stage speed regulation.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an installation diagram of the power mechanism and the gear assembly of the present invention.
Fig. 3 is a schematic structural view of the gear assembly of the present invention.
Fig. 4 is an exploded view (another perspective) of fig. 3.
Fig. 5 is a schematic structural view of the lifting clasping mechanism of the present invention.
Wherein: 1. a machine base; 2. a body; 3. a lifting clasping mechanism; 4. a machine head; 5. a gear shifting mechanism; 6. a power output port; 7. a safety net; 8. a stirring assembly; 9. a mixing tank;
11. a motor; 12. a belt drive structure; 13. a drive shaft; 14. an intermediate shaft; 15. a gear shaft; 16. an output shaft; 131. a driving gear; 141. an intermediate pinion gear; 142. a middle bull gear; 143. an intermediate middle gear; 151. a driving gearwheel; 152. a drive bevel gear; 153. a drive pinion; 154. a clutch; 155. a middle transmission gear; 156. an internal gear; 161. an output gear;
31. a hand wheel; 32. a small bevel gear II; 33. a first bevel pinion; 34. a screw rod; 35. a clamping block; 36. a horn piece; 51. a handle; 52. a cam; 53. a U-shaped frame; 61. a driven bevel gear.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1, the multifunctional gear type planetary egg beater of the present embodiment includes a base 1, a machine body 2 is vertically installed at an end portion above the base 1, a machine head 4 is installed at a top end of the machine body 2, the base 1, the machine body 2 and the machine head 4 together form a C-shaped structure, a lifting clasping mechanism 3 is installed in a middle portion of an inner side surface of the machine body 2, and a stirring cylinder 9 is supported by the lifting clasping mechanism 3; a power mechanism is arranged in the machine head 4, the bottom surface of the machine head 4 extends downwards to form an output shaft 16, the front side surface of the machine head 4 extends forwards to form a power output port 6, and the power mechanism is driven by a gear assembly to simultaneously transmit power to the output shaft 16 and the power output port 6; the gear shifting mechanism 5 is arranged on the side wall of the machine head 4, and the gear shifting mechanism 5 is used for adjusting the transmission in the gear assembly so as to change the rotating speed of the output shaft 16; be provided with three through the gear assembly and keep off rotational speed regulation to be provided with two different power take off in order to supply synchronous use, the function is diversified.
As shown in fig. 2, 3 and 4, the gear assembly has the following structure: the gear shifting mechanism comprises a driving shaft 13 connected with a power mechanism, wherein an intermediate shaft 14, a gear shaft 15 and an output shaft 16 are arranged outside the side surface of the driving shaft 13 in parallel; a driving gear 131 fixedly connected with the middle part of the driving shaft 13 is in meshing transmission with a middle big gear 142 fixedly connected with the middle part of the middle shaft 14, and a middle pinion 141 and a middle gear 143 are also arranged on the middle shaft 14 above and below the middle big gear 142; the gear shaft 15 is sequentially provided with a large transmission gear 151, a small transmission gear 153 and a middle transmission gear 155 from top to bottom, the large transmission gear 151, the small transmission gear 153 and the middle transmission gear 155 are in one-to-one correspondence with and meshed with the middle pinion 141, the middle large gear 142 and the middle gear 143 on the middle shaft 14, and one of the large transmission gear 151, the small transmission gear 153 and the middle transmission gear 155 transmits the rotating speed to the gear shaft 15 through the gear shifting mechanism 5.
The large transmission gear 151 is fixedly arranged on the gear shaft 15 through an overrunning clutch, and a clutch 154 is sleeved on the gear shaft 15 between the small transmission gear 153 and the middle transmission gear 155; when the gearshift mechanism 5 is shifted, the clutch 154 is in the neutral position, and is moved up to engage with the pinion gear 153 or moved down to engage with the pinion gear 155.
When the clutch 154 is in the middle neutral position, the middle pinion 141 above the middle shaft 14 is meshed with the large transmission gear 151 above the gear shaft 15, and the large transmission gear 151 transmits the rotating speed to the gear shaft 15 to drive the output shaft 16 to rotate and output the rotating speed; when the clutch 154 is pulled up, the clutch is clamped with the transmission pinion 153 in the middle of the gear shaft 15, the middle big gear 142 in the middle of the middle shaft 14 is meshed with the transmission pinion 153 in the middle of the gear shaft 15, and the rotation speed is transmitted to the gear shaft 15 by the transmission pinion 153 and finally output; when the clutch 154 is shifted down, the clutch is clamped with a middle transmission gear 155 below the gear shaft 15, the middle transmission gear 143 below the middle shaft 14 is meshed with the middle transmission gear 155 below the gear shaft 15, and the middle transmission gear 155 transmits the rotating speed to the gear shaft 15 and finally outputs the rotating speed; thereby realizing three-stage speed regulation
The structure of the gear shifting mechanism 5 is as follows: the clutch comprises a U-shaped frame 53 fixedly arranged on the circumferential outer wall surface of a clutch 154, a cam 52 is assembled in the lateral opening end of the U-shaped frame 53, and a handle 51 is fixedly arranged in the middle of the cam 52 through a connecting shaft; the handle 51 is installed outside the sidewall of the handpiece 4, the handle 51 drives the cam 52 to rotate, and then the U-shaped frame 53 is pushed upwards or downwards by the circumferential surface of the cam 52, and the U-shaped frame 53 drives the clutch 154 to move upwards or downwards.
The gear shaft 15 between the driving gearwheel 151 and the driving pinion 153 is sleeved with a driving bevel gear 152, the driving bevel gear 152 is meshed with a driven bevel gear 61 at the inner end of the power output port 6, and the power output port 6 can be connected with an external meat grinder, a vegetable cutter and the like, so that synchronous and simultaneous working is realized.
An internal gear 156 is fixedly arranged on the gear shaft 15 below the middle transmission gear 155, an output gear 161 is sleeved on the upper portion of the output shaft 16, and the internal gear 156 is meshed with the output gear 161.
As shown in fig. 5, the lifting clasping mechanism 3 has the structure: the device comprises a horn piece 36 which is slidably arranged on the inner side surface of a machine body 2, wherein the opening end of the horn piece 36 faces forwards and surrounds the circumference of a stirring cylinder 9, a nut is welded on the rear side surface of the horn piece 36, a screw rod 34 is arranged in a manner of penetrating through the nut in a screw pair up and down, the top end of the screw rod 34 is fixedly provided with a first bevel pinion 33, a second bevel pinion 32 is arranged on the first bevel pinion 33 in a meshing manner, and the middle part of the second bevel pinion 32 is provided with a hand wheel 31 through a shaft; the hand wheel 31 is arranged outside the side wall of the machine body 2, the hand wheel 31 drives the second bevel pinion 32 to rotate, and the screw rod 34 is driven to rotate through the meshing transmission with the first bevel pinion 33, so that the horn piece 36 moves up and down; the two arm ends of the opening end of the horn 36 are symmetrically provided with clamping blocks 35, and the two clamping blocks 35 move towards each other under the action of external force so as to clamp the stirring cylinder 9.
The power mechanism is a motor 11, and the output end of the motor 11 drives the gear assembly to transmit through a belt transmission structure 12.
The output shaft 16 is positioned right above the stirring cylinder 9, the stirring component 8 is arranged at the bottom end of the output shaft 16, and the stirring component 8 extends downwards into the stirring cylinder 9; and a safety net 7 with an outward flared horn structure is also arranged on the bottom surface of the machine head 4 positioned at the circumferential outer part of the stirring assembly 8.
The stirring component 8 is a stirring fan, a stirring ball or a stirring hook.
In the utility model, the force is applied to the handle 51, the cam 52 is driven to swing through the rotation of the handle 51, so that the U-shaped frame 53 is pushed upwards or downwards, the clutch 154 is driven to move upwards or downwards, the clutch 154 is in a middle neutral gear or is clamped and connected with one of the transmission pinion 153 and the transmission middle gear 155, the gear shaft 15 is driven to rotate by one of the transmission big gear 151, the transmission pinion 153 and the transmission middle gear 155, and the rotation speed is adjusted;
the lower part of the gear shaft 15 drives the output shaft 16 to rotate and output power through the meshing of the inner gear 156 and the output gear 161, meanwhile, the gear shaft 15 also outputs power through the power output port 6 through the meshing of the upper driving bevel gear 152 and the driven bevel gear 61, and the two power output ends can be synchronously used at the same time, and can also provide power for an external meat grinder, a vegetable cutter and the like while being connected with the stirring component 8;
the stirring component 8 can be replaced among the stirring fans, the stirring balls or the stirring hooks according to different stirring objects, so that the stirring component is suitable for mixing or stirring different materials.
The utility model discloses the small and exquisite compactness of structure, easy operation, the function is various, has effectively promoted the practicality to energy-conservation, user experience is good.
The above description is for the purpose of explanation and not limitation of the invention, which is defined in the claims, and any modifications may be made within the scope of the invention.

Claims (10)

1. The utility model provides a multi-functional gear formula planet eggbeater, includes frame (1), and fuselage (2) are vertically installed to the tip of frame (1) top, and aircraft nose (4) are installed on fuselage (2) top, frame (1), fuselage (2) and aircraft nose (4) constitute C type structure, its characterized in that jointly: the middle part of the inner side surface of the machine body (2) is provided with a lifting clasping mechanism (3), and a stirring cylinder (9) is supported by the lifting clasping mechanism (3); the power mechanism is arranged in the machine head (4), the bottom surface of the machine head (4) extends downwards to form the output shaft (16), the front side surface of the machine head (4) extends forwards to form the power output port (6), and the power mechanism is driven by the gear assembly to simultaneously transmit power to the output shaft (16) and the power output port (6); the gear shifting mechanism (5) is arranged on the side wall of the machine head (4), and the transmission in the gear assembly is adjusted through the gear shifting mechanism (5) so as to change the rotating speed of the output shaft (16).
2. The multi-functional gear-type planetary egg beater of claim 1, wherein: the structure of the gear assembly is as follows: the gear shifting mechanism comprises a driving shaft (13) connected with a power mechanism, wherein an intermediate shaft (14), a gear shaft (15) and an output shaft (16) are arranged outside the side surface of the driving shaft (13) in parallel; a driving gear (131) fixedly connected with the middle part of the driving shaft (13) is in meshing transmission with a middle large gear (142) fixedly connected with the middle part of the middle shaft (14), and a middle small gear (141) and a middle gear (143) are also arranged on the middle shaft (14) above and below the middle large gear (142); the gear shaft (15) is sequentially provided with a transmission large gear (151), a transmission small gear (153) and a transmission middle gear (155) from top to bottom, the transmission large gear (151), the transmission small gear (153) and the transmission middle gear (155) are in one-to-one correspondence with and meshed with the middle small gear (141), the middle large gear (142) and the middle gear (143) on the middle shaft (14), and one of the transmission large gear (151), the transmission small gear (153) and the transmission middle gear (155) is enabled to transmit the rotating speed to the gear shaft (15) through the gear shifting mechanism (5).
3. The multi-functional gear-type planetary egg beater of claim 2, wherein: the transmission large gear (151) is fixedly arranged on the gear shaft (15) through an overrunning clutch, and the clutch (154) is sleeved on the gear shaft (15) between the transmission small gear (153) and the transmission middle gear (155); when the gear shifting mechanism (5) is shifted, the clutch (154) is located at the middle neutral position, or moves upwards to be meshed with the transmission pinion (153) or moves downwards to be meshed with the transmission middle gear (155).
4. The multi-functional gear-type planetary egg beater of claim 3, wherein: the structure of the gear shifting mechanism (5) is as follows: the clutch comprises a U-shaped frame (53) fixedly arranged on the circumferential outer wall surface of a clutch (154), a cam (52) is assembled in the lateral opening end of the U-shaped frame (53), and a handle (51) is fixedly arranged in the middle of the cam (52) through a connecting shaft; the handle (51) is arranged outside the side wall of the machine head (4), the handle (51) drives the cam (52) to rotate, and then the U-shaped frame (53) is pushed upwards or downwards by the circumferential surface of the cam (52).
5. The multi-functional gear-type planetary egg beater of claim 2, wherein: a driving bevel gear (152) is sleeved on the gear shaft (15) between the driving gearwheel (151) and the driving pinion (153), and the driving bevel gear (152) is meshed with a driven bevel gear (61) at the inner end of the power output port (6).
6. The multi-functional gear-type planetary egg beater of claim 2, wherein: an internal gear (156) is fixedly arranged on the gear shaft (15) below the middle transmission gear (155), an output gear (161) is sleeved on the upper portion of the output shaft (16), and the internal gear (156) is meshed with the output gear (161).
7. The multi-functional gear-type planetary egg beater of claim 1, wherein: the lifting clasping mechanism (3) is structurally characterized in that: the device comprises a horn piece (36) which is slidably arranged on the inner side surface of a machine body (2), wherein the opening end of the horn piece (36) faces forwards and surrounds the circumference of a stirring cylinder (9), a nut is welded on the rear side surface of the horn piece (36), a screw rod (34) is arranged in a screw pair mode by penetrating through the nut from top to bottom, a first bevel pinion (33) is fixedly arranged at the top end of the screw rod (34), a second bevel pinion (32) is arranged in a meshing mode through the first bevel pinion (33), and a hand wheel (31) is arranged in the middle of the second bevel pinion (32) through a shaft; the hand wheel (31) is arranged outside the side wall of the machine body (2), the hand wheel (31) drives the small bevel gear II (32) to rotate, and the lead screw (34) is driven to rotate through meshing transmission with the small bevel gear I (33), so that the horn piece (36) moves up and down; and clamping blocks (35) are symmetrically arranged at the end parts of two arms of the opening end of the horn piece (36).
8. The multi-functional gear-type planetary egg beater of claim 1, wherein: the power mechanism is a motor (11), and the output end of the motor (11) drives the gear assembly to transmit through a belt transmission structure (12).
9. The multi-functional gear-type planetary egg beater of claim 1, wherein: the output shaft (16) is positioned right above the stirring cylinder (9), the stirring component (8) is installed at the bottom end of the output shaft (16), and the stirring component (8) extends downwards into the stirring cylinder (9); and a safety net (7) with an outward-expanding horn-shaped structure is further mounted on the bottom surface of the machine head (4) positioned at the circumferential outer part of the stirring component (8).
10. The multi-functional gear-type planetary egg beater of claim 9, wherein: the stirring component (8) is a stirring fan, a stirring ball or a stirring hook.
CN202022499151.XU 2020-11-02 2020-11-02 Multifunctional gear type planetary egg beater Active CN213899781U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022499151.XU CN213899781U (en) 2020-11-02 2020-11-02 Multifunctional gear type planetary egg beater

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022499151.XU CN213899781U (en) 2020-11-02 2020-11-02 Multifunctional gear type planetary egg beater

Publications (1)

Publication Number Publication Date
CN213899781U true CN213899781U (en) 2021-08-06

Family

ID=77116296

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022499151.XU Active CN213899781U (en) 2020-11-02 2020-11-02 Multifunctional gear type planetary egg beater

Country Status (1)

Country Link
CN (1) CN213899781U (en)

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CP01 Change in the name or title of a patent holder

Address after: 214191 No. 312 youbei Road, Xishan Economic Development Zone, Wuxi, Jiangsu.

Patentee after: Xinmai Machinery (China) Co., Ltd.

Address before: 214191 No. 312 youbei Road, Xishan Economic Development Zone, Wuxi, Jiangsu.

Patentee before: SINMAG EQUIPMENT (CHINA) CO.,LTD.

CP01 Change in the name or title of a patent holder