CN2925123Y - Food pre-powdering equipment - Google Patents

Food pre-powdering equipment Download PDF

Info

Publication number
CN2925123Y
CN2925123Y CNU2006200615115U CN200620061511U CN2925123Y CN 2925123 Y CN2925123 Y CN 2925123Y CN U2006200615115 U CNU2006200615115 U CN U2006200615115U CN 200620061511 U CN200620061511 U CN 200620061511U CN 2925123 Y CN2925123 Y CN 2925123Y
Authority
CN
China
Prior art keywords
rotating shaft
raw material
foraminous conveyer
travelling gear
motor
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Fee Related
Application number
CNU2006200615115U
Other languages
Chinese (zh)
Inventor
彭德权
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.)
Individual
Original Assignee
Individual
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.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CNU2006200615115U priority Critical patent/CN2925123Y/en
Application granted granted Critical
Publication of CN2925123Y publication Critical patent/CN2925123Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Screw Conveyors (AREA)

Abstract

The utility model relates to a food pre-rolling machine in starch belonging to the field of food processing mechanism and equipment, which comprises a machine frame, the left and right foraminous conveyer, a raw material recovery conveyer, a spiral elevating charging barrel, a raw material recovery conveying barrel, an undulating revolving barrel and a transmission mechanism. In detail, the utility model modifies current technologies and adopts lift-up and turn-over rolling in starch to ensure all-around even contact between products to be processed and powder materials. For the blower device of original machine is discarded, the utility model avoids powder flying along wind during operation and improves working environment. Moreover, excessive powder can be recovered by the raw material recovery conveying barrel for reuse, thus saving raw materials, beautifying environment and promoting work efficiency and economic benefit.

Description

The pre-starching machine of food
Technical field
The utility model belongs to field of food processing machinery and equipment, the pre-starching machine of particularly a kind of food.
Background technology
At present; many factories are the processing of aquatic products industry particularly; employed fried food crust parcel process equipment; because design exists many defectives; cause the both inconvenient nor enough safety of operation; particularly its raw material carries recovery of circulatory system comparatively complicated, and its air-blast device usually can be dried and the mutual contradiction that clashes of air draft.Therefore, flour or crumbs dance in the air in machine with the wind during operation, have so not only caused the waste of raw material but also have polluted environment, bring many inconvenience to operating worker.
Summary of the invention
The purpose of this utility model is unreasonable in order to overcome prior art design, inconvenient operation, and shortcomings such as the big and contaminated environment of material loss provide a kind of not only conservation but also free from environmental pollution, and the pre-starching machine of easy to operate food.
For achieving the above object, technical solution adopted in the utility model is: the pre-starching machine of this food comprises that frame, left and right foraminous conveyer, raw material reclaim foraminous conveyer, spiral lifting feed cylinder, raw material recovery transport tube, undaform rotating cylinder and transmission mechanism, described raw material reclaims foraminous conveyer and is assemblied in the frame, raw material reclaims the foraminous conveyer top and tilts to install a undaform rotating cylinder, and its below is a screen cloth; Spiral lifting feed cylinder is installed on a side of frame, and facing to worn-out mouthful of the top of undaform rotating cylinder, its charging aperture connects loading hopper by transmitting bucket to its discharging opening by feed pipe; The below that raw material reclaims conveyer belt is provided with raw material recovery transport tube, and connects the transmission bucket; Left and right foraminous conveyer is located at two of frame respectively, respectively the below and the top of corresponding undaform rotating cylinder; Each foraminous conveyer, raw material reclaim transport tube and the undaform rotating cylinder is connected with transmission mechanism respectively.
Described undaform rotating cylinder external diameter is provided with two circle friction transitions, is equipped with rotating shaft by bearing block on the frame, and two pairs of friction gear wheels are housed respectively in the rotating shaft, and the friction transition is turned round on the friction gear wheel.
Described raw material reclaims the foraminous conveyer transmission mechanism and is made of rotating shaft, runner, travelling gear, driving-chain and motor, main runner and runner are installed on the frame by main shaft and rotating shaft respectively, raw material reclaims foraminous conveyer and assembles on it, main shaft connects main drive gear, the rotating shaft of motor connects the motor travelling gear, and driving-chain connects main drive gear and motor travelling gear;
Left side foraminous conveyer transmission mechanism is made of rotating shaft, runner and motor, and main runner and runner are installed on the frame by main shaft and rotating shaft respectively, and left foraminous conveyer assembles on it, and motor shaft connects main shaft;
Right foraminous conveyer transmission mechanism is made of rotating shaft, runner, travelling gear, driving-chain and motor, main runner and runner are installed on the frame by main shaft and rotating shaft respectively, right foraminous conveyer assembles on it, and main shaft is equipped with travelling gear, and the motor drive is connected with travelling gear by driving-chain;
Raw material reclaims the transport tube transmission mechanism and is made of rotating shaft, travelling gear, driving-chain and motor, and rotating shaft is provided with helical blade, and rotating shaft one end is equipped with travelling gear, is connected with the motor travelling gear by driving-chain.
One countershaft one head of described undaform rotating cylinder is equipped with travelling gear respectively, one two-sided driver is housed on the frame, travelling gear is equipped with in two rotating shafts of two-sided driver respectively, and a travelling gear of two travelling gears in the rotating shaft of undaform rotating cylinder and two-sided driver links to each other by driving-chain.
Described spiral feed cylinder is in a vertical cylinder vertical rotating shaft to be housed, and rotating shaft is provided with screw blade, and the top of rotating shaft is connected with a motor, and the upper and lower of spiral feed cylinder has discharging opening and charging aperture.
The utility model is that the pre-starching machine to prior art improves, because the air-blast device of having given up former technology, the method of the landfill when food is gone up powder changes the last powder method of lifting upset into, and it is very even to make product processed can both fully contact powder up and down all around.Owing to removed air-blast device, the phenomenon that powder waves with the wind when having avoided operation improves working environment.In addition, unnecessary powder reclaims transport tube by raw material and is utilized again, has not only saved raw material but also purified environment, has improved operating efficiency and economic benefit.
Description of drawings
Fig. 1 is the utility model structural representation;
Fig. 2 is the utility model internal structure schematic diagram;
Fig. 3 is another angle schematic diagram of the utility model internal structure;
Fig. 4 is each foraminous conveyer transmission mechanism schematic diagram.
The specific embodiment
As shown in Figures 1 to 4, the pre-starching machine of the utility model food comprises frame, left and right sides foraminous conveyer, raw material reclaims foraminous conveyer, spiral lifting feed cylinder, raw material reclaims transport tube, undaform rotating cylinder and transmission mechanism, described raw material reclaims foraminous conveyer 15 and is assemblied in the frame 1, the main runner 17 of its transmission mechanism and runner 19 are installed on the frame 1 by main shaft 16 and rotating shaft 18 respectively, raw material reclaims foraminous conveyer 15 and is assemblied on main runner 17 and the runner 19, main shaft 16 connects main drive gear 51, the rotating shaft 45 of motor 44 connects motor travelling gear 46, and driving-chain 47 connects main drive gear 51 and motor travelling gear 46 and interior travelling gear 49.
Above raw material recovery foraminous conveyer 15, tilt to install a undaform rotating cylinder 35, screen cloth 36 is processed in the below of this undaform rotating cylinder, its external diameter two ends are provided with two circle friction transitions 37,38, on frame 1, assemble two rotating shafts 54,59 by two pairs of bearing blocks 52,53,57,58, two pairs of friction gear wheels 55 are housed respectively in the rotating shaft 54,59,56,60,61 (see figure 2)s, the transition 37,38 that rubs moves and 35 rotations of drive undaform rotating cylinder on the friction gear wheel.One of described rotating shaft 54,59 is equipped with travelling gear 68,69, as shown in Figure 3, one two-sided driver 62 is housed on the frame 1, wherein a rotating shaft 63 connects a travelling gear 64, another root rotating shaft 65 connects a travelling gear 66, described two travelling gears 68,69 and travelling gear 66 link to each other by driving-chain 67, and travelling gear 64 is by the travelling gear 48 in the rotating shaft 40 of outer driving-chain 50 connection raw materials recovery transport tubes 39.
Spiral lifting feed cylinder 2 is installed on a side of frame 1, it is that vertical rotating shaft 5 is housed in vertical cylinder, rotating shaft 5 is provided with screw blade, and the top of rotating shaft 5 is connected with a motor 3, and the upper and lower of spiral feed cylinder 2 has discharging opening 8 and charging aperture 7.Described discharging opening 8 is connected with feed pipe 70, and the feeding port 71 of feed pipe 70 is facing to worn-out mouthful of the top of undaform rotating cylinder 35; Below charging aperture 7 links to each other with loading hopper 42 by transmitting bucket 9.Enter the bottom of spiral lifting feed cylinder 2 after raw material (powder) adds from loading hopper 42, be promoted to discharging opening 8 through screw blade 6, to feeding port 71, powder just falls into undaform rotating cylinder 53 one after another through feed pipe 70.An end that reclaims on the foraminous conveyer 15 at raw material has a raw material recovery mouth 43, the below that this raw material reclaims mouth 43 is provided with raw material recovery transport tube 39, and connection loading hopper 42, raw material reclaims in the transport tube 39 and is equipped with rotating shaft 40, screw blade 41 is housed in the rotating shaft 40, one of rotating shaft 40 is equipped with outer drive gears 48 and interior travelling gear 49, and interior travelling gear 49 is connected with main drive gear 51 and motor travelling gear 46 by main transmission chain 47.Outer drive gears 48 is connected with the travelling gear 64 of two-sided driver 62 by outer driving-chain 50.
Above-described raw material reclaims foraminous conveyer 15, undaform rotating cylinder 35 and raw material recovery transport tube 39 and all drives operation by motor 44 by transmission mechanism.
As shown in Figure 1, the left side in frame 1 is equipped with left foraminous conveyer 20 by fixed mount 72,73, main runner 22 and runner 24 are installed on the frame 1 by main shaft 21 and rotating shaft 23 respectively, left side foraminous conveyer 20 is assemblied on main runner 22 and the runner 24, the rotating shaft of motor 30 connects main shaft 21, and motor 30 starts and drives left foraminous conveyer 20 operations.Right foraminous conveyer 10 is installed by fixed mount 74,76 in the right in frame 1, all has adjustment hole 78,79 on the fixed mount 74,76, and is provided with adjusting control ear 75,77, therefore can regulate the height of right foraminous conveyer 10.Main runner 12 and runner 14 are installed on the frame 1 by main shaft 11 and rotating shaft 13 respectively, right foraminous conveyer 10 is assemblied on main runner 12 and the runner 14, main shaft 11 is equipped with travelling gear 29, the rotating shaft 26 of motor 25 connects a drive 27, by driving-chain 28 travelling gear 29 is linked to each other with drive 27.Motor 25 starts and drives right foraminous conveyer operation.
Successively connect the power supply of motor 44,3,25,30 during operation, motor 44 rotates and drive rotating shaft 45 and main drive gear 46, drive driving-chain 47 operations by main drive gear 46, driving-chain 47 operation backs drive travelling gear 49,51 and rotate simultaneously, main drive gear 51 rotation backs drive main shaft 16 rotations, main shaft 16 rotation backs drive main runner 17 runnings, drive raw material by main driving wheel 17 and reclaim foraminous conveyer 15 operations, reclaim foraminous conveyer 15 by raw material then and drive rotating shaft 18 and runner 19 runnings.And travelling gear 49 rotation backs drive rotating shaft 40 and travelling gear 48 rotates together, drive screw blade 41 by rotating shaft 40 and do circulating operation, drive driving-chain 50 by travelling gear 48, driving-chain 50 drives the travelling gear 64 and rotating shaft 63 rotations of two-sided driver 62, rotate by the bar rotating shaft in addition 65 that rotating shaft 63 drives in the two-sided driver 62, rotating shaft 65 rotation backs drive travelling gear 66 rotations and drive driving-chain 67 operations, driving-chain 67 operation backs drive travelling gear 68,69 runnings, travelling gear 68 running backs drive rotating shaft 54 and top friction gear wheel 55 and 56 turns round together, and travelling gear 69 running backs drive rotating shaft 59 and top friction gear wheel 60 thereof, 61 runnings together, by friction gear wheel 55,60 modes by friction drive right friction transition 37, and friction runner 56,61 same drive left side friction transitions 38 go through transition 37 by friction, 38 screen cloth 36 runnings that drive undaform rotating cylinder 35 and be connected together.
And motor 3 rotates back drive rotating shaft 4 rotations, drives rotating shaft 5 then, drives screw blades 6 rotations by rotating shaft 5.
Motor 25 rotates the back and drives rotating shaft 26 rotations, and rotating shaft 26 rotation backs drive main drive gear 27 rotations, and main drive gear 27 rotation backs drive driving-chain 28 operations.Drive travelling gear 29 by driving-chain 28, drive main shaft 11 and main driving wheel 12 rotations, drive right foraminous conveyer 10 operations by main driving wheel 12 by travelling gear 29.Right foraminous conveyer 10 operation backs drive drive 14 and power transmission shaft 13 rotations.
And motor 30 rotates the back and drives main shaft 21 rotations of left foraminous conveyer by speed regulator 31 and transmission case 32, drives main driving wheel 22 rotations above it by main shaft 21, and main driving wheel 22 rotation backs drive left foraminous conveyer 20 operations.Drive runner 24 and rotating shaft 23 rotations by left foraminous conveyer 20 then.
After moving fully, above equipment just can begin operation.Earlier powder is poured in the loading hopper 42 during operation, powder can enter in the spiral lifting feed cylinder 2 along transmitting bucket 9 like this, and the screw blade 6 in the rotation can be sent powder to discharging opening 8 continuously and falls into undaform rotating cylinder 35 the insides through feed pipes 70 from feeding port 71 under the effect of urceolus, at this moment the product that powder is gone up in needs processing put into continuously right foraminous conveyer 10 above, operating right foraminous conveyer 10 just can advance undaform rotating cylinder 35 the insides to product tape, when product enters undaform rotating cylinder 35 the insides, just covered by powder at once and along with powder together by 35 upsets of undaform rotating cylinder, because the undaform rotating cylinder has certain length, product is by after the upset several times, just can be wrapped up tightly by powder, because being, undaform rotating cylinder 35 tilts to install, product is sent to the left side while being wrapped in the undaform rotating cylinder 35 that powder is being rotated again within it, unnecessary powder just can drop out from the mesh of screen cloth and enter raw material recovery foraminous conveyer 15 the insides above it when the product of last intact powder passes through screen cloth 36, operating like this raw material reclaims foraminous conveyer 15 and just can reclaim the powder that falls down and be delivered in the raw material recovery mouth 43, the powder that is recovered fell in the raw material recovery transport tube 39 once entering raw material recovery mouth in 43 o'clock, the spiral leaf 41 that is rotated is sent an end of raw material recovery transport tube 39 and is transmitted bucket 9 by powder and enters once more in the spiral raw material lifting feed cylinder 2, circulates and recycles repeatedly.Gone up product behind the powder and from screen cloth 36, produced just to fall in the left foraminous conveyer 20 and and send out, entered other procedures after the collection by operating left foraminous conveyer 20.
It is recycling repeatedly though the pre-starching machine of this food its powder when operation can be recovered, but after converted products is wrapped up by powder, its powder can reduce gradually along with the increase of converted products, so when operation, must often from loading hopper 42, add certain powder, proceed to keep operation.

Claims (5)

1, the pre-starching machine of a kind of food, comprise that frame, left and right foraminous conveyer, raw material reclaim foraminous conveyer, spiral lifting feed cylinder, raw material recovery transport tube, undaform rotating cylinder and transmission mechanism, it is characterized in that: described raw material reclaims foraminous conveyer (15) and is assemblied in the frame (1), raw material reclaims the foraminous conveyer top and tilts to install a undaform rotating cylinder (35), and its below is screen cloth (36); Spiral lifting feed cylinder (2) is installed on a side of frame (1), and facing to worn-out mouthful of the top of undaform rotating cylinder (35), its charging aperture (7) connects loading hopper (42) by transmitting bucket (9) to its discharging opening (8) by feed pipe (70); The below that raw material reclaims foraminous conveyer (15) is provided with raw material recovery transport tube (39), and connects transmission bucket (9); Left and right foraminous conveyer (20,10) is located at two of frame (1) respectively, respectively the below and the top of corresponding undaform rotating cylinder (35); Each foraminous conveyer, raw material reclaim transport tube and the undaform rotating cylinder is connected with transmission mechanism respectively.
2, according to the pre-starching machine of the described food of claim 1, it is characterized in that: described undaform rotating cylinder (35) external diameter is provided with two circle friction transitions (37,38), frame (1) goes up and is equipped with rotating shaft (54,59) by bearing block (52,53,57,58), two pairs of friction gear wheels (55,56,60,61) are housed respectively in the rotating shaft (54,59), and the friction transition is turned round on the friction gear wheel.
3, according to the pre-starching machine of the described food of claim 1, it is characterized in that:
Described raw material reclaims the foraminous conveyer transmission mechanism and is made of rotating shaft, runner, travelling gear, driving-chain and motor, main runner (17) and runner (19) are installed on the frame (1) by main shaft (16) and rotating shaft (18) respectively, raw material reclaims foraminous conveyer (15) and assembles on it, main shaft (16) connects main drive gear (51), the rotating shaft of motor (44) connects motor travelling gear (46), and driving-chain (47) connects main drive gear (51) and motor travelling gear (46);
Left side foraminous conveyer transmission mechanism is made of rotating shaft, runner and motor, and main runner (22) and runner (24) are installed on the frame (1) by main shaft (21) and rotating shaft (23) respectively, and left foraminous conveyer (20) assembles on it, and motor shaft connects main shaft (21);
Right foraminous conveyer transmission mechanism is made of rotating shaft, runner, travelling gear, driving-chain and motor, main runner (12) and runner (14) are installed on the frame (1) by main shaft (11) and rotating shaft (13) respectively, right foraminous conveyer (10) assembles on it, main shaft (11) is equipped with travelling gear (29), and motor drive (27) is connected with travelling gear (29) by driving-chain (28);
Raw material reclaims the transport tube transmission mechanism and is made of rotating shaft, travelling gear, driving-chain and motor, and rotating shaft (40) is provided with helical blade (41), and rotating shaft (40) one ends are equipped with travelling gear (49), are connected with motor travelling gear (46) by driving-chain (47).
4, according to the pre-starching machine of the described food of claim 2, it is characterized in that: a countershaft of described undaform rotating cylinder (35) (54,59) one head is equipped with travelling gear (68,69) respectively, one two-sided driver (62) is housed on the frame (1), travelling gear (64,66) is equipped with in two rotating shafts (63,65) of two-sided driver respectively, and two travelling gears (68,69) in the undaform rotating cylinder rotating shaft (54,59) and a travelling gear (66) of two-sided driver link to each other by driving-chain (67).
5, according to the pre-starching machine of the described food of claim 1, it is characterized in that: described spiral feed cylinder (2) is in a vertical cylinder vertical rotating shaft (5) to be housed, rotating shaft is provided with screw blade (6), the top of rotating shaft (5) is connected with a motor (3), and the upper and lower of spiral feed cylinder (2) has discharging opening (8) and charging aperture (7).
CNU2006200615115U 2006-07-07 2006-07-07 Food pre-powdering equipment Expired - Fee Related CN2925123Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2006200615115U CN2925123Y (en) 2006-07-07 2006-07-07 Food pre-powdering equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2006200615115U CN2925123Y (en) 2006-07-07 2006-07-07 Food pre-powdering equipment

Publications (1)

Publication Number Publication Date
CN2925123Y true CN2925123Y (en) 2007-07-25

Family

ID=38279342

Family Applications (1)

Application Number Title Priority Date Filing Date
CNU2006200615115U Expired - Fee Related CN2925123Y (en) 2006-07-07 2006-07-07 Food pre-powdering equipment

Country Status (1)

Country Link
CN (1) CN2925123Y (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2471014A (en) * 2009-06-08 2010-12-15 Spice Applic Systems Ltd Coating apparatus with article inverter
CN102715631A (en) * 2012-06-27 2012-10-10 济南好为尔机械有限公司 Food starching machine
CN108339810A (en) * 2018-02-12 2018-07-31 浙江野马电池股份有限公司 Rotate the device of falling powder
GB2577282A (en) * 2018-09-19 2020-03-25 Polar Systems Ltd System for processing foodstuff
CN111542231A (en) * 2017-12-22 2020-08-14 马瑞奥深加工私人有限公司 Coating food articles with particulate coating materials

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2471014A (en) * 2009-06-08 2010-12-15 Spice Applic Systems Ltd Coating apparatus with article inverter
GB2471014B (en) * 2009-06-08 2016-04-06 Spice Applic Systems Ltd Coating delivery method and apparatus
CN102715631A (en) * 2012-06-27 2012-10-10 济南好为尔机械有限公司 Food starching machine
CN111542231A (en) * 2017-12-22 2020-08-14 马瑞奥深加工私人有限公司 Coating food articles with particulate coating materials
CN111542231B (en) * 2017-12-22 2021-12-24 马瑞奥深加工私人有限公司 Coating food articles with particulate coating materials
CN108339810A (en) * 2018-02-12 2018-07-31 浙江野马电池股份有限公司 Rotate the device of falling powder
GB2577282A (en) * 2018-09-19 2020-03-25 Polar Systems Ltd System for processing foodstuff
WO2020058703A1 (en) * 2018-09-19 2020-03-26 Polar Systems Limited System for processing foodstuff
GB2577282B (en) * 2018-09-19 2020-10-07 Polar Systems Ltd System for processing foodstuff
US11974593B2 (en) 2018-09-19 2024-05-07 Polar Systems Limited System for processing foodstuff

Similar Documents

Publication Publication Date Title
CN2925123Y (en) Food pre-powdering equipment
CN206243983U (en) A kind of ribbon conveyer tilting expects clearly scrapper conveyor
CN215709779U (en) Building templates conveyor
CN210522725U (en) Coal powder preparation device for steelmaking
CN205771655U (en) A kind of transmission equipment
CN112110176A (en) Spare collection device for flow water conveying
CN106903458A (en) It is a kind of to add core apparatus for welding wire manufacture
CN206735161U (en) A kind of gravel conveyer
CN201552261U (en) Feeding device of numerical-control reinforcement cage forming machine
CN218637519U (en) Automatic device and grinding system that adds of drum-type rinding body
CN207170206U (en) A kind of semi-coke transports screening plant
CN206587889U (en) A kind of Feed Manufacturing corn automatic feeding production line
CN217576952U (en) Full-automatic metal crushed aggregates water conveyer
CN218143880U (en) Movable pneumatic belt feeding machine
CN205973035U (en) Automatic change feed system device
CN2680453Y (en) Powdered scrap rolling moulding machine
CN216573389U (en) Multistage ball-milling breaker of high-purity fine iron powder
CN215665652U (en) Roller type low-resistance feeding machine
CN219688339U (en) Belt rack convenient to disassemble
CN209177480U (en) A kind of clear device for coal for belt feeder
CN212441437U (en) Energy-saving ball mill with forced feeding function
CN221317951U (en) Mortar raw and other materials screw conveyer
CN110294293B (en) Multi-station wing-shaped rotary transition device
CN212309841U (en) Efficient, energy-saving and environment-friendly integrated processing equipment for deironing and grinding cement
CN221472108U (en) Raw material crusher for brickmaking

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20070725

Termination date: 20140707

EXPY Termination of patent right or utility model