CN114176240A - Cake raw material processing system based on automatic production - Google Patents

Cake raw material processing system based on automatic production Download PDF

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Publication number
CN114176240A
CN114176240A CN202111395914.9A CN202111395914A CN114176240A CN 114176240 A CN114176240 A CN 114176240A CN 202111395914 A CN202111395914 A CN 202111395914A CN 114176240 A CN114176240 A CN 114176240A
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CN
China
Prior art keywords
stirring
cylinder
shaft
fixed
support
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Pending
Application number
CN202111395914.9A
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Chinese (zh)
Inventor
张毅
王志亮
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.)
Hunan Jiangrenmin Food Co ltd
Original Assignee
Hunan Jiangrenmin Food Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Hunan Jiangrenmin Food Co ltd filed Critical Hunan Jiangrenmin Food Co ltd
Priority to CN202111395914.9A priority Critical patent/CN114176240A/en
Publication of CN114176240A publication Critical patent/CN114176240A/en
Pending legal-status Critical Current

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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23PSHAPING OR WORKING OF FOODSTUFFS, NOT FULLY COVERED BY A SINGLE OTHER SUBCLASS
    • A23P30/00Shaping or working of foodstuffs characterised by the process or apparatus
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
    • A23L5/00Preparation or treatment of foods or foodstuffs, in general; Food or foodstuffs obtained thereby; Materials therefor
    • A23L5/10General methods of cooking foods, e.g. by roasting or frying

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Health & Medical Sciences (AREA)
  • Nutrition Science (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

The invention provides a cake raw material processing system based on automatic production, which comprises a bearing bracket, wherein the top of the bearing bracket is provided with a limiting joist, the edges of two sides of the bearing bracket are fixedly provided with vertically upward side frames, a top beam is arranged between the tops of the two side frames, the bottom of the top beam is provided with a vertically downward lifting cylinder, the bottom of the lifting cylinder is provided with a stirring frame, two ends of the bottom of the top beam are fixedly provided with vertically downward lifting guide pillars, and the lower parts of the lifting guide pillars are movably inserted into the stirring frame; the stirring unit is arranged on the stirring frame. Rational in infrastructure, excellent in use effect after this scheme of adoption.

Description

Cake raw material processing system based on automatic production
Technical Field
The invention relates to the technical field of food processing, in particular to a cake raw material processing system based on automatic production.
Background
Cake-like food is broadly called "flour cake" or "cake", or "biscuit". According to different making processes, genres and making styles, the method can be divided into the following steps: turning-over cakes, homely cakes, palace cakes, wedding cakes, steamed cakes, baked cakes, pancake cakes, milk cakes and other food cakes. The raw materials of cake food need to be fried in advance under most circumstances, and the tradition adopts the frying pan to fry, and its stir-fry mode is single, is heated unevenly, and is inefficient.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides a cake raw material processing system based on automatic production, which is reasonable in structure and good in using effect.
In order to achieve the purpose, the technical scheme provided by the invention is as follows: a cake raw material processing system based on automatic production comprises a bearing bracket, wherein limiting support beams are mounted at the top of the bearing bracket, vertically upward side frames are fixed at the edges of two sides of the bearing bracket, a top beam is mounted between the tops of the two side frames, a vertically downward lifting cylinder is mounted at the bottom of the top beam, a stirring frame is mounted at the bottom of the lifting cylinder, vertically downward lifting guide pillars are fixed at two ends of the bottom of the top beam, and the lower parts of the lifting guide pillars are movably inserted into the stirring frame; the stirring unit is arranged on the stirring frame; the ground outside the output end of the limiting supporting beam is fixedly provided with a positioning frame, the top of the positioning frame in the output direction is fixedly provided with a lower hinge plate, the top of the positioning frame in the input direction is vertically fixedly provided with a supporting column, one end of the supporting bracket is hinged with the output end of the positioning frame, the other end of the supporting bracket is supported by the supporting column, a material pouring cylinder is arranged between the supporting bracket and the supporting column, and the output end of the supporting bracket is provided with a limiting stop plate.
The support bracket is in an H shape when being overlooked, the vertical arms at two sides of the support bracket are support arms, the length direction of the support arms is consistent with the conveying direction of the positioning frame, and one end of the material pouring cylinder is hinged with the bottom of a cross arm of the support bracket; the two support columns are respectively fixed on two sides of the same end of the positioning frame, the fixed support columns are positioned under the support arms, a support column beam is connected between the middle parts of the two support columns, and the other end of the material pouring cylinder is hinged with the middle part of the support column beam; the top of the output direction of the positioning frame is fixed with a lower hinge plate, the inner side of the end part of the supporting arm of the output direction of the positioning frame is fixed with an upper hinge plate, the upper hinge plate is hinged with the lower hinge plate, a synchronizing shaft is connected between the two upper hinge plates, a cylinder plate is arranged between the synchronizing shaft and the cross arm of the bearing bracket, the end part of the cylinder plate is connected with the corresponding supporting arm, a limiting cylinder is hinged on the cylinder plate, the middle part of a limiting stop plate is provided with a sleeve hole, the sleeve hole is sleeved with the middle part of the synchronizing shaft, a piston rod of the limiting cylinder is hinged with the bottom of the limiting stop plate, and the top of the limiting stop plate is a limiting end.
The stirring unit comprises an outer stirring cylinder and an inner stirring shaft, wherein the middle part of the outer stirring cylinder is movably arranged at the lower part of the stirring frame through an outer bearing ring, two lateral supporting rods are respectively fixed at two sides of the lower part of the outer peripheral surface of the outer stirring cylinder, anti-sticking scraping rods are arranged at the bottoms of the lateral supporting rods, the anti-sticking scraping rods are U-shaped, corners of the anti-sticking scraping rods adopt straight-edge corners or arc smooth transition, scraping rod insertion holes are formed in the bottoms of the lateral supporting rods, the upper parts of the side walls at two sides of the anti-sticking scraping rods are movably sleeved in the scraping rod insertion holes, and the anti-sticking scraping rods are locked through corresponding supporting rod bolts after being sleeved; an inner stirring shaft is movably sleeved in the outer stirring cylinder, inner stirring blades with the number larger than 4 are installed on the lower portion of the inner stirring shaft, the inner stirring blades are distributed on the outer peripheral surface of the inner stirring shaft in a spiral shape, the length of the inner stirring blades is gradually shortened from bottom to top, a power unit is installed on the stirring frame, and the inner stirring shaft and the outer stirring cylinder are driven to operate by the power unit.
The power unit comprises an outer cylinder toothed ring, an inner shaft toothed ring, a stirring motor and a power shaft, wherein the power shaft is vertically arranged on a stirring frame outside an outer stirring cylinder, the stirring motor is arranged at the top of the stirring frame, a transmission shaft of the installed stirring motor is downwards connected with the top of the power shaft, a lower power gear is arranged at the lower part of the power shaft, an upper power gear is arranged at the upper part of the power shaft, the outer cylinder toothed ring is fixed on the outer peripheral surface of the top of the outer stirring cylinder, the fixed outer cylinder toothed ring is meshed with the lower power gear, the middle part of the inner stirring shaft is connected with the outer stirring cylinder through a middle bearing ring, the lower part of the inner stirring shaft downwards penetrates through the outer cylinder toothed ring to form stirring ends, and the stirring ends are provided with inner stirring blades with the number larger than 2 from top to bottom; the top of the inner stirring shaft penetrates through the outer stirring cylinder upwards to be connected with the inner shaft gear ring, a middle gear is arranged on the stirring frame between the inner shaft gear ring and the upper power gear, and two sides of the middle gear are respectively meshed with the upper power gear and the inner shaft gear ring.
The center of the top of the support bracket is fixed with two T-shaped support beams which are respectively connected between the end parts of the two limiting support beams, and the support bracket between the two T-shaped support beams is provided with a heater.
After the scheme is adopted, the limiting supporting beam is used for limiting and supporting the raw material tank, the lifting cylinder is used for lifting the stirring frame, the heater is used for heating, the power unit drives the inner stirring shaft and the outer stirring cylinder to synchronously run, the rotating direction of the inner stirring shaft is opposite to that of the outer stirring cylinder under the action of the intermediate gear, and through the reverse motion of the inner stirring shaft and the outer stirring cylinder, the raw material in the raw material tank is stirred and fried, after the frying is finished, the raw material tank enters the supporting bracket, and the raw material is poured out of the raw material tank through the stretching of the corresponding cylinder in the supporting bracket.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
FIG. 2 is a schematic view of the T-shaped support beam connection of the present invention.
Fig. 3 is a schematic view of the positioning frame of the present invention.
Fig. 4 is a schematic diagram of the hinge of the spacing cylinder of the present invention.
FIG. 5 is a schematic view of the inner stirring blade structure of the present invention.
Detailed Description
The invention will be further described with reference to the accompanying drawings, in which preferred embodiments of the invention are: referring to fig. 1 to 5, the cake material processing system based on automatic production according to the embodiment includes a support bracket 301, a limit joist 304 is installed on the top of the support bracket 301, a T-shaped support beam 303 is fixed at the center of the top of the support bracket 301, two T-shaped support beams 303 are respectively connected between the ends of the two limit joists 304, and a heater is installed on the support bracket 301 between the two T-shaped support beams 303. Vertical upward side frames are fixed at the edges of the two sides of the support bracket 301, a top beam is installed between the tops of the two side frames, a vertical downward lifting cylinder 305 is installed at the bottom of the top beam, a stirring frame 306 is installed at the bottom of the lifting cylinder 305, vertical downward lifting guide pillars are fixed at the two ends of the bottom of the top beam, and the lower parts of the lifting guide pillars are movably inserted into the stirring frame 306; the stirring frame 306 is provided with a stirring unit; a positioning frame 401 is fixed on the ground outside the output end of the limiting joist 304, a lower hinge plate 403 is fixed at the top of the positioning frame 401 in the output direction, a support column 404 is vertically fixed at the top of the positioning frame 401 in the input direction, one end of a support bracket 402 is hinged with the output end of the positioning frame 401, the other end of the support bracket is supported by the support column 404, a material pouring cylinder 405 is arranged between the support bracket 402 and the support column 404, and a limiting stop plate 409 is installed at the output end of the support bracket 402.
The support bracket 402 is in an H shape in plan view, vertical arms on two sides of the support bracket 402 are support arms, the length direction of the support arms is consistent with the conveying direction of the positioning frame 401, and one end of the material pouring cylinder 405 is hinged with the bottom of a cross arm of the support bracket 402; two support columns 404 are respectively fixed on two sides of the same end of the positioning frame 401, the fixed support columns 404 are positioned under the support arms, a support column beam is connected between the middle parts of the two support columns 404, and the other end of the material pouring cylinder 405 is hinged with the middle part of the support column beam; the top of the output direction of the positioning frame 401 is fixed with a lower hinge plate 403, the inner side of the end part of the supporting arm of the output direction of the positioning frame 401 is fixed with an upper hinge plate 406, the upper hinge plate 406 is hinged with the lower hinge plate 403, a synchronizing shaft 408 is connected between the two upper hinge plates 406, an air cylinder plate 407 is arranged between the synchronizing shaft 408 and the cross arm of the supporting bracket 402, the end part of the air cylinder plate 407 is connected with the corresponding supporting arm, a limiting air cylinder 410 is hinged on the air cylinder plate 407, the middle part of a limiting stop plate 409 is provided with a sleeve hole, the sleeve hole is sleeved with the middle part of the synchronizing shaft 408, the piston rod of the limiting air cylinder 410 is hinged with the bottom of the limiting stop plate 409, and the top of the limiting stop plate 409 is a limiting end.
The stirring unit comprises an outer stirring cylinder 308 and an inner stirring shaft 311, wherein the middle part of the outer stirring cylinder 308 is movably arranged at the lower part of the stirring frame 306 through an outer bearing ring 307, two sides of the lower part of the outer peripheral surface of the outer stirring cylinder 308 are respectively fixed with a lateral support rod 309, the bottom of the lateral support rod 309 is provided with an anti-sticking scraping rod 310, the anti-sticking scraping rod 310 is U-shaped, the corner adopts straight-edge corner or arc smooth transition, the bottom of the lateral support rod 309 is provided with a scraping rod insertion hole, the upper parts of the side walls at two sides of the anti-sticking scraping rod 310 are movably sleeved in the scraping rod insertion hole, and the anti-sticking scraping rod is locked through corresponding support rod bolts after being sleeved; an inner stirring shaft 311 is movably sleeved in the outer stirring cylinder 308, inner stirring blades 312 with the number larger than 4 are installed at the lower part of the inner stirring shaft 311, the inner stirring blades 312 are spirally distributed on the outer peripheral surface of the inner stirring shaft 311, the length of the inner stirring blades 312 is gradually shortened from bottom to top, a power unit is installed on the stirring frame 306, and the inner stirring shaft 311 and the outer stirring cylinder 308 are driven by the power unit to operate.
The power unit comprises an outer cylinder toothed ring 313, an inner shaft toothed ring 314, a stirring motor 315 and a power shaft 317, wherein the power shaft 317 is vertically arranged on a stirring frame 306 outside an outer stirring cylinder 308, the stirring motor 315 is arranged at the top of the stirring frame 306, a transmission shaft of the installed stirring motor 315 is downwards connected with the top of the power shaft 317, a lower power gear 318 is arranged at the lower part of the power shaft 317, an upper power gear 319 is arranged at the upper part of the power shaft 317, the outer cylinder toothed ring 313 is fixed on the outer peripheral surface of the top of the outer stirring cylinder 308, the fixed outer cylinder toothed ring 313 is meshed with the lower power gear 318, the middle part of an inner stirring shaft 311 is connected with the outer stirring cylinder 308 through a middle bearing ring, the lower part of the inner stirring shaft 311 downwards penetrates through the outer cylinder toothed ring 313 to form stirring ends, and the stirring ends are provided with inner stirring blades 312 with the number more than 2 from top to bottom; the top of the inner stirring shaft 311 passes through the outer stirring cylinder 308 upwards to be connected with the inner shaft gear ring 314, a middle gear 320 is installed on the stirring frame 306 between the inner shaft gear ring 314 and the upper power gear 319, and two sides of the middle gear 320 are respectively meshed with the upper power gear 319 and the inner shaft gear ring 314.
Interior stirring vane comprises pressing material blade 212, throwing blade 213, stirring shaft outer peripheral face lower part including throwing blade 213 installation, throwing blade 213 after the installation all inclines on the surface and forms the face of shedding, press material blade 212 to install on the interior (mixing) shaft outer peripheral face of throwing blade 213 top, press material blade 212 to be two or four, in four directions of the same horizontal plane of stirring shaft including the installation, press material blade 212 after the installation all inclines on the surface and forms the pressure face, press the material face opposite with the incline direction of the face of shedding, the lower one end of the face of shedding is located interior (mixing) shaft direction of rotation front side.
The inner stirring blade has the following functions: the installation mode of the anti-sticking scraping rod is the same as that of the throwing blade, so that the raw material at the lower part of the inner cavity of the tank is shoveled, the throwing blade throws the raw material while stirring the raw material to prevent local overheating, the pressing blade presses down the thrown and overhigh raw material to prevent the raw material from splashing out of the tank body, the raw material is controlled to be at a certain height by adopting a low-throwing high-pressure mode, the heat emission can be effectively reduced, the energy consumption is reduced, and meanwhile, the inclined throwing surface is adopted, so that the raw material loosening effect is higher during stir-frying, the caking is prevented, and the local overheating is prevented;
the C-shaped positioning sleeves at the bottoms of the raw material tanks on two sides of the bottom of the raw material tank are embedded with corresponding limiting joists, the embedded raw material tank is supported and limited by the limiting joists, the heights of an inner stirring shaft and an anti-sticking scraping rod are adjusted according to the stirring depth of the raw material tank, a lifting cylinder drives a stirring frame to descend, so that the inner stirring blade and the anti-sticking scraping rod enter the raw material tank, a stirring motor operates to drive a power shaft to rotate, the power shaft synchronously drives an upper power gear and a lower power gear to rotate, the lower power gear drives an outer stirring barrel to rotate through an outer barrel gear ring, the upper power gear drives an intermediate gear to rotate, the intermediate gear drives an inner shaft gear ring to rotate, the inner shaft gear ring drives an inner stirring shaft to rotate, the inner stirring shaft and the outer stirring barrel to rotate after transition through the intermediate gear, the rotating directions of the inner stirring shaft and the outer stirring barrel are opposite, so that the inner stirring blade and a lateral strut move reversely, and the raw material is sheared and mixed through the acting force of the reverse rotation, thereby increasing the stirring effect and simultaneously ensuring that the stir-frying is heated more uniformly;
the bottom of the input end of the supporting arm in the original state is supported by the supporting column, the input end of the supporting arm is over against the output end of the limiting supporting beam, after the raw material in the raw material tank is fried, the raw material is continuously fed through the forklift, the fried raw material tank is pushed by the raw material tank on the forklift to move downwards to the output end of the limiting supporting beam and finally moves to the supporting bracket, when the raw material tank moves to the supporting bracket, the C-shaped positioning sleeve at the bottom of the raw material tank is embedded with the supporting arm (the positioning sleeve can slide on the supporting arm), the piston rod of the limiting cylinder extends out to drive the lower part of the limiting stop plate to move, the limiting end at the upper part of the limiting stop plate moves upwards to enable the limiting stop plate to be in a vertical state and stand in the output direction of the positioning frame, after the raw material tank completely moves to the supporting bracket (the outer side wall of the lower part of the raw material tank in the output direction is contacted with the limiting stop plate, the limiting stop plate is limited by the limiting stop plate), the piston rod of the material pouring cylinder extends out to drive the supporting bracket to rotate (the upper hinge plate, The pin joint of lower hinge plate is rotatory for the center), the input of support bracket goes upward and begins to incline, the support bracket drives the synchronous slope of head tank, thereby make the raw materials pour out from the head tank, the piston rod shrink of pouring the material cylinder after pouring out drives the support bracket and resets (the support bracket is the horizontality), the piston rod shrink of spacing cylinder, drive spacing board action (make spacing board that ends be in the horizontality basically), the head tank that the system was fried is when getting into the trailing arm, the empty can that will pour out the raw materials is released from the trailing arm, get into the outside track of feeding, rational in infrastructure after this scheme of adoption, excellent in use effect, with the cooperation of external control system, can effectively realize crisp intelligent control of yolk and automated production.
The above-mentioned embodiments are merely preferred embodiments of the present invention, and the scope of the present invention is not limited thereto, so that the changes in the shape and principle of the present invention should be covered within the protection scope of the present invention.

Claims (5)

1. The utility model provides a cake raw materials processing system based on automated production, it is including bearing frame (301), its characterized in that: the top of the support bracket (301) is provided with a limiting joist (304), the edges of two sides of the support bracket (301) are fixed with vertically upward side frames, a top beam is arranged between the tops of the two side frames, the bottom of the top beam is provided with a vertically downward lifting cylinder (305), the bottom of the lifting cylinder (305) is provided with a stirring frame (306), two ends of the bottom of the top beam are fixed with vertically downward lifting guide pillars, and the lower parts of the lifting guide pillars are movably inserted into the stirring frame (306); the stirring frame (306) is provided with a stirring unit; the subaerial locating rack (401) that is fixed with in spacing joist (304) output side, locating rack (401) output direction top is fixed with down hinge plate (403), the vertical support post (404) that is fixed with in locating rack (401) input direction top, support bracket (402) wherein one end is articulated with locating rack (401) output end, the other end is by support post (404) bearing, be equipped with between support bracket (402) and support post (404) and expect cylinder (405), spacing board (409) are installed to support bracket (402) output.
2. The cake material processing system based on automatic production as claimed in claim 1, wherein: the support bracket (402) is H-shaped in plan view, the vertical arms at two sides of the support bracket (402) are support arms, the length direction of the support arms is consistent with the conveying direction of the positioning frame (401), and one end of the material pouring cylinder (405) is hinged with the bottom of a cross arm of the support bracket (402); two support columns (404) are respectively fixed on two sides of the same end of the positioning frame (401), the fixed support columns (404) are positioned under the support arm, a support column beam is connected between the middle parts of the two support columns (404), and the other end of the material pouring cylinder (405) is hinged with the middle part of the support column beam; the top of the output direction of the positioning frame (401) is fixed with a lower hinge plate (403), the inner side of the end part of the supporting arm of the output direction of the positioning frame (401) is fixed with an upper hinge plate (406), the upper hinge plate (406) is hinged with the lower hinge plate (403), a synchronizing shaft (408) is connected between the two upper hinge plates (406), a cylinder plate (407) is arranged between the synchronizing shaft (408) and the cross arm of the bearing bracket (402), the end part of the cylinder plate (407) is connected with the corresponding supporting arm, a limiting cylinder (410) is hinged on the cylinder plate (407), the middle part of the limiting stop plate (409) is provided with a trepanning, the trepanning is sleeved with the middle part of the synchronizing shaft (408), the piston rod of the limiting cylinder (410) is hinged with the bottom of the limiting stop plate (409), and the top of the limiting stop plate (409) is a limiting end.
3. The cake material processing system based on automatic production as claimed in claim 1, wherein: the stirring unit comprises an outer stirring cylinder (308) and an inner stirring shaft (311), wherein the middle part of the outer stirring cylinder (308) is movably arranged at the lower part of the stirring frame (306) through an outer bearing ring (307), two sides of the lower part of the outer peripheral surface of the outer stirring cylinder (308) are respectively fixed with a lateral supporting rod (309), the bottom of the lateral supporting rod (309) is provided with an anti-sticking scraping rod (310), the anti-sticking scraping rod (310) is U-shaped, the corner of the anti-sticking scraping rod adopts a straight-edge corner or arc smooth transition, the bottom of the lateral supporting rod (309) is provided with a scraping rod jack, the upper parts of the side walls at two sides of the anti-sticking scraping rod (310) are movably sleeved in the scraping rod jack, and are locked through corresponding supporting rod bolts after being sleeved; an inner stirring shaft (311) is movably sleeved in the outer stirring cylinder (308), inner stirring blades (312) with the number larger than 4 are installed on the lower portion of the inner stirring shaft (311), the inner stirring blades (312) are distributed on the outer peripheral surface of the inner stirring shaft (311) in a spiral shape, the length of the inner stirring blades (312) is gradually shortened from bottom to top, a power unit is installed on the stirring frame (306), and the inner stirring shaft (311) and the outer stirring cylinder (308) are driven to operate by the power unit.
4. The cake material processing system based on automatic production as claimed in claim 1, wherein: the power unit comprises an outer cylinder gear ring (313), an inner shaft gear ring (314), a stirring motor (315) and a power shaft (317), the stirring device comprises a power shaft (317), a stirring motor (315), an upper power gear (319), an outer cylinder toothed ring (313), a lower stirring shaft (313), inner stirring shafts (311), stirring ends and inner stirring blades (312), wherein the power shaft (317) is vertically arranged on a stirring frame (306) on the outer side of an outer stirring cylinder (308), the transmission shaft of the installed stirring motor (315) is downwards connected with the top of the power shaft (317), the lower parts of the power shaft (317) are provided with the lower power gear (318), the upper parts of the power shaft (317) are provided with the upper power gear (319), the outer cylinder toothed ring (313) is fixed on the outer peripheral surface of the top of the outer stirring cylinder (308), the fixed outer cylinder toothed ring (313) is meshed with the lower power gear (318), the middle parts of the inner stirring shafts (311) are connected with the outer stirring cylinder (308) through a middle bearing ring, the lower parts of the inner stirring shafts (311) downwards penetrate through the outer cylinder toothed ring (313) to form stirring ends, and the stirring ends are provided with the inner stirring blades (312) with the number larger than 2 from top to bottom; the top of the inner stirring shaft (311) upwards penetrates through the outer stirring cylinder (308) to be connected with the inner shaft gear ring (314), the stirring frame (306) between the inner shaft gear ring (314) and the upper power gear (319) is provided with a middle gear (320), and two sides of the middle gear (320) are respectively meshed with the upper power gear (319) and the inner shaft gear ring (314).
5. The cake material processing system based on automatic production as claimed in claim 1, wherein: t-shaped supporting beams (303) are fixed at the center of the top of the supporting bracket (301), two T-shaped supporting beams (303) are respectively connected between the end parts of the two limiting joists (304), and a heater is arranged on the supporting bracket (301) between the two T-shaped supporting beams (303).
CN202111395914.9A 2021-11-23 2021-11-23 Cake raw material processing system based on automatic production Pending CN114176240A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202111395914.9A CN114176240A (en) 2021-11-23 2021-11-23 Cake raw material processing system based on automatic production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111395914.9A CN114176240A (en) 2021-11-23 2021-11-23 Cake raw material processing system based on automatic production

Publications (1)

Publication Number Publication Date
CN114176240A true CN114176240A (en) 2022-03-15

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CN202111395914.9A Pending CN114176240A (en) 2021-11-23 2021-11-23 Cake raw material processing system based on automatic production

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CN (1) CN114176240A (en)

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US20030209283A1 (en) * 2002-05-13 2003-11-13 Fabry Carl J. Labor saving, high speed, high volume, liquid filling machine, for palletized containers
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KR101461429B1 (en) * 2014-10-02 2014-11-20 박준서 The mixer to make a cracker and bread that have a stir tool lifting apparatus
CN105480308A (en) * 2016-01-14 2016-04-13 张勇 Freight compartment tilting dump door
CN210084473U (en) * 2019-05-21 2020-02-18 陕西中烟工业有限责任公司 Pneumatic turning box feeding device for flake smoke box
CN110813146A (en) * 2019-12-10 2020-02-21 冯国防 Two-way agitating unit that wood industry glue was used
CN212881925U (en) * 2020-06-15 2021-04-06 苏如婷 Based on biological technology raw materials device of prewetting
CN112791644A (en) * 2021-04-13 2021-05-14 烟台瑞华食品有限公司 Mixing preparation equipment for sandy stuffing and using method thereof
CN213193655U (en) * 2020-06-17 2021-05-14 郭庆军 New forms of energy graphite alkene processing equipment

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US20030209283A1 (en) * 2002-05-13 2003-11-13 Fabry Carl J. Labor saving, high speed, high volume, liquid filling machine, for palletized containers
CN101077265A (en) * 2006-05-22 2007-11-28 深圳市繁兴科技有限公司 Fliping tool used for cooking equipment
KR101461429B1 (en) * 2014-10-02 2014-11-20 박준서 The mixer to make a cracker and bread that have a stir tool lifting apparatus
CN105480308A (en) * 2016-01-14 2016-04-13 张勇 Freight compartment tilting dump door
CN210084473U (en) * 2019-05-21 2020-02-18 陕西中烟工业有限责任公司 Pneumatic turning box feeding device for flake smoke box
CN110813146A (en) * 2019-12-10 2020-02-21 冯国防 Two-way agitating unit that wood industry glue was used
CN212881925U (en) * 2020-06-15 2021-04-06 苏如婷 Based on biological technology raw materials device of prewetting
CN213193655U (en) * 2020-06-17 2021-05-14 郭庆军 New forms of energy graphite alkene processing equipment
CN112791644A (en) * 2021-04-13 2021-05-14 烟台瑞华食品有限公司 Mixing preparation equipment for sandy stuffing and using method thereof

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李川 张美霞, 中国地质大学出版社 *

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