CN210901246U - Bidirectional flour washing machine - Google Patents

Bidirectional flour washing machine Download PDF

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Publication number
CN210901246U
CN210901246U CN201921748607.2U CN201921748607U CN210901246U CN 210901246 U CN210901246 U CN 210901246U CN 201921748607 U CN201921748607 U CN 201921748607U CN 210901246 U CN210901246 U CN 210901246U
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China
Prior art keywords
agitator
fixedly connected
stirring
gear
opening
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CN201921748607.2U
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Chinese (zh)
Inventor
宋宪刚
宋宪龙
宋宪虎
李宪伟
马爱玲
宋庆朋
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Shandong Tianlong Cooker Machinery Co ltd
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Shandong Tianlong Cooker Machinery Co ltd
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Abstract

The utility model discloses a two-way flour-washing machine relates to wheaten food processing machinery, aims at solving the current not good problem of effect is emptyd to flour-washing machine starch water, and its technical scheme main points are: the automatic stirring device comprises a frame, rotate the driving motor who connects in the agitator and the fixed connection of frame in the frame, the agitator is open structure, wear to be equipped with two (mixing) shafts rather than being parallel in the agitator, (mixing) shaft fixedly connected with stirring vane, (mixing) shaft one end is rotated and is connected in the inner wall of agitator, the other end of (mixing) shaft is worn out the agitator and is rotated and connect in the agitator, the tip fixedly connected with gear one that the agitator was worn out to the (mixing) shaft, the lateral part of agitator is rotated and is connected with gear two that meshes in gear one, two gear fixed connection in driving motor's output shaft, the lateral part fixedly connected with shroud of agitator, driving motor's output. The utility model discloses can make starch water empty relatively less to the interference of washing one's face.

Description

Bidirectional flour washing machine
Technical Field
The utility model relates to a face examination processing machinery, more specifically says that it relates to a two-way face washing machine.
Background
Gluten is a vegetable protein, consisting of gliadins and glutenins. Adding a proper amount of water and a little of salt into the flour, uniformly stirring the mixture to be strong to form dough, repeatedly rubbing and washing the dough with clear water, completely washing off starch and other impurities in the dough, and obtaining the remaining gluten. The traditional method is to manually knead and wash the face, the efficiency is relatively low, and the labor intensity is relatively large.
In order to solve the problem in the prior art, a flour washing machine is often adopted for kneading dough and washing face, and the existing flour washing machine mainly comprises a single-shaft flour washing machine and a double-shaft flour washing machine. The stirring device mainly comprises a frame, a stirring barrel, a stirring shaft, stirring blades and a driving motor. The agitator fixed connection is in the frame, and stirring vane fixed connection penetrates in the agitator at the (mixing) shaft, and driving motor's output shaft fixed connection is in the tip of (mixing) shaft. The double-shaft stirring effect is relatively good, so that the double-shaft stirring device is widely applied.
And the stirring effect of biax is better relatively, but because its agitator can not overturn, the opening sets up in the lower part of agitator, opens and close through valve control for when the stirring, in flour etc. entered into the opening easily, it is inconvenient to wash, influences the stirring effect.
SUMMERY OF THE UTILITY MODEL
To the deficiency that prior art exists, the utility model aims to provide a two-way face washing machine, it can be comparatively convenient empty starch water and can not too influence the stirring effect relatively.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides a two-way face washing machine, includes the frame, rotates to be connected in the agitator of frame and fixed connection in the driving motor of frame, the agitator is open structure, wear to be equipped with two (mixing) shafts that are on a parallel with its central axis in the agitator, (mixing) shaft fixedly connected with stirring vane, (mixing) shaft one end is rotated and is connected in the inner wall of agitator, the agitator is worn out and rotate to be connected in the agitator to the other end of (mixing) shaft, the tip fixedly connected with gear that the agitator was worn out to the (mixing) shaft is first, the lateral part of agitator rotates and is connected with gear two that mesh in two gears one, two fixed connection in driving motor's output shaft of gear, the lateral part fixedly connected with of agitator covers gear one and gear two, driving motor's output shaft passes the shroud, the shroud.
Through adopting the above-mentioned technical scheme, when needs pour out the starch water in the agitator, only need to rotate the agitator, make the starch water in the agitator pour out through its opening can, be carrying out the agitator simultaneously, driving motor passes through two drive two gears of gear and rotates, so that two (mixing) shafts in the agitator rotate, stir the flour slurry in the agitator, it is relatively better to compare in unipolar stirring effect, compare with the biax stirring simultaneously, need not set up the opening in the agitator lower part and through empting of valve control starch water, make flour or flour slurry concentrate in the opening, influence stirring effect, consequently, compare in ordinary unipolar and biax stirring, the utility model discloses possess certain stirring effect and empty starch water simultaneously and can not influence the stirring.
The utility model discloses further set up to: and a speed reducing mechanism for reducing speed is arranged between the driving motor and the second gear.
Through adopting above-mentioned technical scheme, reduction gears can effectually carry out the speed reduction increase distance to the power of driving motor output, can reduce the probability that stirring in-process (mixing) shaft and stirring vane are stuck, can effectually reduce the rotational speed of (mixing) shaft simultaneously, reduce because of the rotational speed is too high and influence stirring effect.
The utility model discloses further set up to: the speed reducing mechanism comprises a rotating shaft, a first sheave, a second sheave and a belt, the rotating shaft is fixedly connected to the second gear, the first sheave and the second sheave are sleeved with the belt, the rotating shaft is rotatably connected to the rack, the rotating shaft penetrates through the cover cap, the end, penetrating out of the cover cap, of the rotating shaft is fixedly connected to the first sheave, the second sheave is fixedly connected to an output shaft of the driving motor, and the diameter of the first sheave is larger than that of the second sheave.
Through adopting above-mentioned technical scheme, when stirring, driving motor's output shaft drives sheave one and rotates, and pivoted sheave one drives sheave two and rotates, because the diameter of sheave one is greater than the diameter of sheave two for the rotational speed of sheave one can be lower than the rotational speed of sheave two, thereby plays the effect that slows down and increases the distance, with the probability that reduces stirring shaft and stirring vane by the card in the stirring process, reduces the rotational speed of (mixing) shaft simultaneously.
The utility model discloses further set up to: one side of the cover cap, which is deviated from the stirring barrel, is fixedly connected with a first rotating pipe and a second rotating pipe respectively, a first bearing is sleeved in the first rotating pipe, the first bearing is sleeved on the rotating shaft, a second bearing is sleeved outside the second rotating pipe, and the outer ring of the second bearing is fixedly connected to the rack.
Through adopting above-mentioned technical scheme for agitator and shroud rotate through a rotating pipe one and a rotating pipe two and connect in the frame, can reduce the hindrance that receives when rotating the agitator through bearing one and bearing two simultaneously.
The utility model discloses further set up to: the rotating pipe II is fixedly connected with a worm wheel which is the same with the rotating pipe II in the central axis direction, and the rack is fixedly connected with a worm which is meshed with the worm wheel.
Through adopting above-mentioned technical scheme, when needs rotate the agitator, only need rotate the worm and drive the worm wheel and rotate to drive the agitator and rotate, can pass through worm gear's auto-lock performance simultaneously, can effectually reduce in the use, the agitator probability of rotating by oneself.
The utility model discloses further set up to: one end of the worm is fixedly connected with a handle used for rotating the worm.
Through adopting above-mentioned technical scheme, the handle can assist and rotate the worm for the process of rotating the worm is more laborsaving relatively.
The utility model discloses further set up to: the opening that extends along its central axis length direction is seted up at the opening border of agitator, the open-ended row of agitator outside one side fixedly connected with adaptation material funnel, the sieve that is connected with rather than the adaptation can be dismantled at the opening border.
Through adopting above-mentioned technical scheme, when needs pour starch water, starch water can flow through the opening at agitator pivoted in-process, and the existence of sieve can block gluten and dough in the agitator simultaneously, reduces gluten or dough and is poured the outer probability of agitator at the in-process that starch water poured.
The utility model discloses further set up to: encircle the annular has been seted up at the opening border, the annular opening is the side opening towards agitator inboard and annular, the side opening of annular is towards open-ended center, the sieve passes through bolted connection in the annular towards the cell surface of indoor one side and the face of sieve towards indoor one side is less than the inner wall of agitator.
Through adopting above-mentioned technical scheme, can be so that when empting starch water, the sieve hinders the outflow of starch water.
The utility model discloses further set up to: the stirring blades are spiral stirring blades, and the rotating directions of the two stirring blades are opposite.
Through adopting above-mentioned technical scheme, because the rotation direction of two (mixing) shafts is the same, stirring vane's rotation is opposite, can make the dough paste form the convection current in the agitator, reduces the probability of dough or dough gathering in certain position in the agitator.
To sum up, the utility model discloses following beneficial effect has:
1. when the starch water needs to be poured out, the worm is driven to rotate only by rotating the handle, the worm is driven to rotate by the worm, so that the stirring barrel rotates around the central axis of the first rotating pipe and the second rotating pipe, the starch water can flow out through the opening, the sieve plate can block gluten or dough flowing along with the starch water, and the opening is not required to be formed in the lower portion of the stirring barrel to pour out the starch water, so that the stirring effect is influenced;
2. be provided with the biax stirring in the agitator, stirring vane is helical stirring vane simultaneously, and two stirring vane's soon to opposite, can make the face thick liquid can form the convection current in the agitator, possess better stirring effect relatively, set up simultaneously in gear one that the agitator tip was worn out to the (mixing) shaft, gear one drives through gear two, and gear two is passed through pivot fixed connection in reduction gears, can make the utility model discloses the agitator still can rotate when possessing the stirring effect of relative preferred and emptys starch water to reduce and emptys starch water to stirring effect's influence.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of a part of the structure of the present invention, which is mainly used for showing the structure of the speed reducing mechanism;
fig. 3 is a schematic diagram of the explosion structure of the present invention, which is mainly used to show the structure inside the cover and the structure inside the opening;
fig. 4 is a partial cross-sectional view of the present invention, which is mainly used for showing the structure of the mixing tank and the ring groove.
In the figure: 1. a frame; 11. a drive motor; 2. a stirring barrel; 21. a stirring shaft; 211. a stirring blade; 212. a first gear; 213. a second gear; 22. a guide cover; 23. a cover; 231. rotating a first pipe; 232. a first bearing; 233. a third bearing; 24. rotating the second pipe; 241. a second bearing; 242. a worm gear; 243. a worm; 2431. a handle; 25. an opening; 251. a discharge hopper; 252. a sieve plate; 253. a ring groove; 3. a speed reduction mechanism; 31. a rotating shaft; 32. a first grooved wheel; 33. a second grooved wheel; 34. a belt; 35. a shield.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and examples.
A bidirectional noodle washing machine, referring to fig. 1 and 2, comprises a frame 1, a stirring barrel 2 rotatably connected to the frame 1 and a driving motor 11 fixedly connected to the frame 1. The mixing tank 2 is of an upper opening structure, the central axis of the mixing tank is horizontal, and the driving motor 11 is fixedly connected to the rack 1.
Two stirring shafts 21 parallel to the central axis of the stirring barrel 2 penetrate through the stirring barrel 2, and the two stirring shafts 21 are positioned at the lower part of the stirring barrel 2. The stirring shaft 21 is fixedly connected with a stirring blade 211, wherein the stirring blade 211 is a spiral stirring blade and has the same central axis, and the rotation directions of the two stirring blades 211 are opposite.
Wherein, the lateral part of the mixing drum 2 is fixedly connected with a cover 23 which has the same central axis with the mixing drum 2, and the cover 23 is of an open-side structure and the opening of the cover faces the mixing drum 2.
Referring to fig. 2 and 3, one end of the stirring shaft 21 is rotatably connected to the stirring barrel 2, the other end of the stirring shaft 21 penetrates through the stirring barrel 2 and extends toward the cover 23, and the end of the stirring shaft 21 penetrating through the stirring barrel 2 is rotatably connected to the stirring barrel 2. The end part of the stirring shaft penetrating through the stirring barrel 2 is fixedly connected with a first gear 212, and the side part of the stirring barrel 2 is fixedly connected with a second gear 213 meshed with the first gears 212.
The second gear 213 is fixedly connected with a speed reducing mechanism 3, and the driving motor 11 drives the second gear 213 to rotate through the speed reducing mechanism 3.
The speed reducing mechanism 3 comprises a rotating shaft 31 fixedly connected to the second gear 213, a first sheave 32, a second sheave 33 and a belt 34 sleeved on the first sheave 32 and the second sheave 33. Belt 34 is fitted over sheave one 32 and sheave two 33. The belt 34 is a V-belt and the first 32 and second 33 sheaves are V-belt sheaves.
One end of the rotating shaft 31 passes through the cover 23, the other end of the rotating shaft 31 is fixedly connected to the first sheave 32, and the second sheave 33 is fixedly connected to the output shaft of the driving motor 11. The sheave I32 is d1, the diameter of the sheave II 33 is d2, wherein 7 is more than or equal to d 1: d2 is more than or equal to 3. The frame 1 is fixedly connected with a shield 35 which covers the first sheave 32 and the second sheave 33.
In order to make the stirring barrel 2 rotate relatively more labor-saving, a first rotating pipe 231 and a second rotating pipe 24 are fixedly connected to one sides of the cover 23 and the stirring barrel 2 which are deviated from each other respectively, a first bearing 232 is sleeved in the first rotating pipe 231, and the first bearing 232 is sleeved on the rotating shaft 31. Wherein the first rotating pipe 231 and the second rotating pipe 24 are coaxial.
The second rotating pipe 24 is externally sleeved with a second bearing 241, and the outer ring of the second bearing 241 is fixedly connected to the frame 1. A bearing III 233 is sleeved outside the rotating pipe I231, and the outer ring of the bearing III 233 is fixedly connected to the frame 1.
When the starch pouring device is used, the starch water is poured only by rotating the stirring barrel 2 to rotate around the central axes of the first rotating pipe 231 and the second rotating pipe 24, so that the starch water can be poured out through the opening of the stirring barrel 2; be provided with two (mixing) shaft 21 and stirring vane 211 in the agitator 2 simultaneously, two stirring vane 211 are spiral stirring vane and rotation between them is opposite, and (mixing) shaft 21's direction of rotation is the same, can make the flour paste circulate in agitator 2 when stirring and face washing to reduce the condition emergence of the gathering of flour paste in a part, make the stirring effect better relatively.
In order to prevent the stirring barrel 2 from rotating randomly during the stirring process, manual support is needed. The second rotating pipe 24 is fixedly connected with a worm wheel 242 which is coaxial with the second rotating pipe, and the machine frame 1 is fixedly connected with a worm 243 meshed with the worm wheel 242. The worm 243 is horizontally arranged, one end of the worm 243 is rotatably connected to the frame 1, the other end of the worm 243 extends towards the direction away from the central axis of the stirring barrel 2, and the end part of the worm 243 away from the stirring barrel 2 is fixedly connected with a handle 2431 for rotating the worm 243, wherein the handle 2431 can be a plum blossom handle.
Due to the self-locking property of the worm wheel 242 and the worm 243, the mixer drum 2 can be rotated when not needed, i.e., when the flour paste is mixed. Can effectually reduce the random pivoted probability of agitator 2, when needs pour the starch water in agitator 2, only need rotate worm 243 through handle 2431, pivoted worm 243 passes through worm wheel 242 and drives agitator 2 and rotate to can pour the starch water in agitator 2.
Referring to fig. 3 and 4, an opening 25 extending along the length direction of the central axis of the agitator 2 is formed at the opening edge of the agitator 2, and the opening 25 is formed inside and outside the agitator 2.
Annular groove 253 is seted up around the opening border of agitator 2, and annular groove 253's opening still is the side open structure towards the inside of agitator 2 and annular groove 253, and the side opening of annular groove 253 is towards the center one side of opening 25. The ring groove 253 is internally provided with a sieve plate 252 matched with the opening 25, and the sieve plate 252 is fixedly connected to the edge of the opening 25 through bolts.
The outer edge of the opening 25 is fixedly connected with a guide cover 22 matched with the opening, the guide cover 22 is of a funnel structure, and the large-end opening covers the outer edge of the opening 25. A discharge funnel 251 for pouring out the precipitation water is fixedly connected to the small end edge of the guide cover 22, and the discharge funnel 251 is a square funnel and has a large end opening fixedly connected to the guide cover 22.
It is above only the utility model discloses a preferred embodiment, the utility model discloses a scope of protection does not only confine above-mentioned embodiment, the all belongs to the utility model discloses a technical scheme under the thinking all belongs to the utility model discloses a scope of protection. It should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (9)

1. The utility model provides a two-way flour-washing machine which characterized in that: comprises a frame (1), a stirring barrel (2) which is rotationally connected with the frame (1) and a driving motor (11) which is fixedly connected with the frame (1), wherein the stirring barrel (2) is of an upper opening structure, two stirring shafts (21) which are parallel to the central axis of the stirring barrel (2) are arranged in the stirring barrel in a penetrating way, the stirring shafts (21) are fixedly connected with stirring blades (211), one end of each stirring shaft (21) is rotationally connected with the inner wall of the stirring barrel (2), the other end of each stirring shaft (21) penetrates out of the stirring barrel (2) and is rotationally connected with the stirring barrel (2), the stirring shafts (21) penetrate out of a first end part fixedly connected with a first gear (212), the lateral part of the stirring barrel (2) is rotationally connected with a second gear (213) which is meshed with the first gears (212), and the second gear (213) is fixedly connected with an output shaft of, the side part of the stirring barrel (2) is fixedly connected with a cover (23) which covers the first gear (212) and the second gear (213), an output shaft of the driving motor (11) penetrates through the cover (23), and the cover (23) is rotatably connected to the rack (1).
2. The bi-directional noodle washing machine according to claim 1, characterized in that: and a speed reducing mechanism (3) for reducing speed is arranged between the driving motor (11) and the second gear (213).
3. The bi-directional noodle washing machine according to claim 2, characterized in that: the speed reducing mechanism (3) comprises a rotating shaft (31) fixedly connected to a second gear (213), a first sheave (32), a second sheave (33) and a belt (34) sleeved on the first sheave (32) and the second sheave (33), the rotating shaft (31) is rotatably connected to the frame (1) and the rotating shaft (31) penetrates through the cover cap (23), the end part, penetrating out of the cover cap (23), of the rotating shaft (31) is fixedly connected to the first sheave (32), the second sheave (33) is fixedly connected to an output shaft of the driving motor (11), and the diameter of the first sheave (32) is larger than that of the second sheave (33).
4. The bi-directional noodle washing machine according to claim 3, characterized in that: one side that shroud (23) and agitator (2) deviate from mutually is fixedly connected with rotating pipe one (231) and rotating pipe two (24) respectively, rotating pipe one (231) endotheca has bearing one (232), bearing one (232) overcoat in pivot (31), rotating pipe two (24) overcoat has bearing two (241), the outer lane fixed connection of bearing two (241) in frame (1).
5. The bi-directional noodle washing machine according to claim 4, wherein: the rotating pipe II (24) is fixedly connected with a worm wheel (242) which is the same with the rotating pipe II in central axis, and the rack (1) is fixedly connected with a worm (243) which is meshed with the worm wheel (242).
6. The bi-directional noodle washing machine according to claim 5, wherein: one end of the worm (243) is fixedly connected with a handle (2431) used for rotating the worm.
7. The bi-directional noodle washing machine according to claim 6, wherein: opening (25) that extend along its central axis length direction are seted up to the opening border of agitator (2), discharge funnel (251) of agitator (2) outside one side fixedly connected with adaptation opening (25), opening (25) border can be dismantled and be connected with sieve (252) rather than the adaptation.
8. The bi-directional noodle washing machine according to claim 7, characterized in that: encircle opening (25) border has seted up annular (253), annular (253) opening is the side opening towards agitator (2) inboard and annular (253), the side opening of annular (253) is towards the center of opening (25), screen plate (252) are less than the inner wall of agitator (2) through bolted connection in annular (253) towards the cell surface of indoor one side and screen plate (252) towards the face of indoor one side.
9. The bi-directional noodle washing machine of claim 8, wherein: the stirring blades (211) are spiral stirring blades, and the rotating directions of the two stirring blades (211) are opposite.
CN201921748607.2U 2019-10-16 2019-10-16 Bidirectional flour washing machine Active CN210901246U (en)

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Application Number Priority Date Filing Date Title
CN201921748607.2U CN210901246U (en) 2019-10-16 2019-10-16 Bidirectional flour washing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921748607.2U CN210901246U (en) 2019-10-16 2019-10-16 Bidirectional flour washing machine

Publications (1)

Publication Number Publication Date
CN210901246U true CN210901246U (en) 2020-07-03

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Application Number Title Priority Date Filing Date
CN201921748607.2U Active CN210901246U (en) 2019-10-16 2019-10-16 Bidirectional flour washing machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113083097A (en) * 2021-03-24 2021-07-09 韩学涛 Preparation facilities of compound saprophytic acid soil restoration agent of pie
CN116617888A (en) * 2023-05-05 2023-08-22 南京照扬文化传媒有限公司 Printing ink recovery processing device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113083097A (en) * 2021-03-24 2021-07-09 韩学涛 Preparation facilities of compound saprophytic acid soil restoration agent of pie
CN116617888A (en) * 2023-05-05 2023-08-22 南京照扬文化传媒有限公司 Printing ink recovery processing device

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