Dough mixer capable of controlling dough softness
Technical Field
The invention belongs to the technical field of food processing, and particularly relates to a dough mixing machine capable of controlling dough softness
Background
Flour and water are uniformly mixed, the flour in a cylinder is continuously pushed, pulled, kneaded and pressed to be fully stirred and quickly mixed, so that dry flour obtains uniform hydration, gluten is expanded to form dough with certain elasticity, flexibility and uniform flowing, the use of manpower is saved, wheaten food cakes are favorite food of many people, people are more and more willing to self-prepare wheaten food at home along with the improvement of life quality, however, the dough kneading is a very delicate and tiring process, the quality of dough kneading is directly related to the subsequent fermentation and the mouthfeel of wheaten food, and the dough kneading becomes a difficult problem for people who want to make delicious cakes by returning to home and waiting for the fermentation of wheaten food. The mixed flour contains CO2The amount of the flour affects the preparation of different wheaten foods, and different doughs are needed from chewiness to steamed bread to soft bread.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides the dough which can enable the flour and the water to absorb the air while stirring in the dough kneading process, and the content of carbon dioxide in the air is 0.03 percent, and the dough can be obtained by stirring and mixing to obtain required dough with different carbon dioxide contents, so that the dough can be used for making various wheaten foods by families.
In order to achieve the purpose, the invention adopts the following technical scheme: the utility model provides a steerable dough soft flour-mixing machine, includes organism, cover, fixed starting switch, tertiary speed governing switch, the insurance that sets up in organism lateral wall bottom, its characterized in that: the automatic cleaning machine also comprises a machine cover screen fixedly arranged on the machine cover, a second internal rotation track fixedly arranged on the lower surface of the machine cover, a sliding block arranged on the second internal rotation track in a sliding manner, a scraping panel fixedly arranged below the sliding block, a second sliding block fixedly arranged below the scraping panel, a slurry baffle rotatably arranged at the lower end of the machine cover, a motor fixedly arranged on a second chassis, a stirring shaft fixedly arranged at the output end of the motor, a baffle fixedly arranged above the stirring shaft, a forward rotation thread fixedly arranged on the stirring shaft, a reverse selection thread fixedly arranged on the stirring shaft, a rotating device rotatably arranged on the stirring shaft and a collecting device rotatably arranged on the stirring shaft; the collecting device further comprises a first chassis, a second chassis, a sleeve, a first internal rotation track, a track cover, a spring, a first sliding block and a sleeve, wherein the first chassis is rotatably arranged in the machine body, the second chassis is fixedly arranged at the lower end of the first chassis, the sleeve is fixedly arranged on the first chassis, the first internal rotation track is fixedly arranged on the upper surface of the first chassis, the track cover is arranged on the side wall of the first internal rotation track, the spring is fixedly arranged on the track cover, the first sliding block is slidably arranged in the first internal rotation track, and the sleeve on the second chassis is rotatably arranged on the reverse rotation threads.
The rotating device comprises a rotating wheel, a wind wheel, a dense screen, a cavity vent, a rotating shaft channel and a stirring component, wherein the rotating wheel is rotatably arranged on the stirring shaft, the wind wheel is fixedly arranged on the rotating wheel, the dense screen is fixedly arranged on the upper surface of the rotating wheel, the cavity is arranged below the wind wheel, the cavity vent is arranged on the inner surface of the cavity, the rotating shaft is rotatably arranged on the outer surface of the rotating wheel, the rotating shaft channel is fixedly arranged on the rotating shaft, and the stirring component is rotatably arranged on the rotating shaft.
The stirring component comprises a stirring rod fixedly arranged on a rotating shaft, a stirring shaft arranged on the stirring rod, a rotating rod rotatably arranged on the stirring shaft, a ventilating pipeline arranged on the stirring shaft, and a blowing channel arranged on the rotating rod.
The sliding block, scrape panel, second sliding block are direction of height fixed connection, it is anti-L style of calligraphy to scrape the panel.
The three pulp baffles are rotatably arranged at the lower end of the cover, and are distributed in the circumferential direction, and rotate to move on the lower end face of the cover to rotate by the rotating device. In summary, the invention has the following advantages: the device is simple in mechanism, can increase the content of air in the machine body through the absorption of the wind wheel, is integrated into the dough paddle through the output of the stirring rod along with the stirring operation, increases the content of carbon dioxide lumps after the stirring is finished, and is suitable for different kinds of wheaten food requirements of families.
Drawings
Fig. 1 is a front view of the present invention.
Fig. 2 is a sectional view taken along line a-a in fig. 1.
Fig. 3 is an enlarged view of fig. 2 at F.
Fig. 4 is a sectional view taken at B-B in fig. 1.
Fig. 5 is an enlarged view at I in fig. 4.
Fig. 6 is an enlarged view of fig. 4 at H.
Fig. 7 is an enlarged view of fig. 4 at G.
Fig. 8 is an enlarged view of fig. 1 at C.
Fig. 9 is an enlarged view of fig. 1 at D.
Fig. 10 is an enlarged view of fig. 1 at E.
Fig. 11 is a cross-sectional view of the canopy of the present invention.
Fig. 12 is a schematic view of the track cover structure of the present invention.
Detailed Description
As shown in fig. 1-12, a dough mixer capable of controlling dough softness, comprising a machine body 1, a machine cover 2, a starting switch 14 fixedly arranged at the bottom of the side wall of the machine body 1, a three-stage speed regulating switch 15 and a safety switch 16, characterized in that: the automatic cleaning machine further comprises a machine cover screen 211 fixedly arranged on the upper surface of the machine cover 2, a second internal rotation rail 5 fixedly arranged on the lower surface of the machine cover 2, a sliding block 611 slidably arranged on the second internal rotation rail 5, a scraping panel 6 fixedly arranged below the sliding block 611, a second sliding block 612 fixedly arranged below the scraping panel 6, a slurry baffle 7 rotatably arranged at the lower end of the machine cover 2, a motor 8 fixedly arranged on the second chassis 4, a stirring shaft 9 fixedly arranged at the output end of the motor, a blocking block 911 fixedly arranged on the stirring shaft 9, a forward rotation thread 912 fixedly arranged on the stirring shaft 9, a reverse selection thread 913 fixedly arranged on the stirring shaft 9, a rotating device rotatably arranged on the stirring shaft 9 and a collecting device 3 rotatably arranged on the stirring shaft 9; the collecting device 3 further comprises a first chassis 3 rotatably arranged in the machine body 1, a second chassis 4 fixedly arranged at the lower end of the first chassis 3, a fixedly arranged spiral sleeve 311, an internal rotation first internal rotation track 312 fixedly arranged on the upper surface of the first chassis 3, a track cover 3121 arranged on the side wall of the first internal rotation track 312, a spring 3122 fixedly arranged on the track cover 3121, a first slide block 313 slidably arranged in the first internal rotation track, and the sleeve 311 on the second chassis 3 rotatably arranged on the reverse rotation thread 913.
When dough kneading needs to be carried out, flour and water which are well proportioned are poured into the dough kneading machine body 1, the machine cover 2 is covered, the machine cover 2 drives the three pulp baffles 7 to be inserted into the periphery of the rotating device, the pulp baffles 7 are distributed at intervals in the circumferential direction (as shown in figure 8), the starting switch 14 is pressed to start the motor 8, after the motor 8 is started, the stirring shaft 9 is driven to rotate clockwise, and the rotating wheel 10 at the top end of the stirring shaft 9 rotates clockwise along with the positive rotation thread 913 and moves downwards.
The rotating device comprises a rotating wheel 10 rotatably arranged on the stirring shaft 9, a wind wheel 101 fixedly arranged on the rotating wheel 10, a dense screen 102 fixedly arranged on the upper surface of the rotating wheel 10, a cavity 103 arranged below the wind wheel 101, a cavity ventilation opening 104 arranged on the inner surface of the cavity 103, a rotating shaft 105 rotatably arranged on the outer surface of the rotating wheel 10, a rotating shaft channel 1051 fixedly arranged on the rotating shaft 105, and a stirring component rotatably arranged on the rotating shaft 105.
When the rotor 10 rotates clockwise along with the positive rotation thread 913 to drive the wind wheel 101 to rotate simultaneously, the wind wheel 101 sucks air through the cover screen 211, the air sucked by the wind wheel 101 enters the cavity 103, passes through the cavity vent 104 through the cavity 103, and flows through the rotating shaft channel 1051.
The stirring components comprise a triangular stirring rod 11 rotatably arranged on the rotating shaft 105, a stirring shaft 12 arranged on the stirring rod 11, and a rotating rod 13 rotatably arranged on the stirring shaft 12; the ventilating duct 121 is arranged on the stirring shaft 12, and the blowing channel 131 is arranged on the rotating rod 13.
The rotating wheel 10 drives the rotating shaft 105 to rotate simultaneously, the stirring rod 11 connected to the rotating shaft 10 rotates simultaneously, the streamline corner edge reduces the resistance of the surface paddle during rotation, the top end of the stirring rod 11 is lifted under the centrifugal effect, the stirring rod 11 cannot touch the first chassis 3 under the driving of the downward movement of the rotation of the rotating wheel 10, the stirring rod 11 during rotation drives the baffle plate 7 to rotate simultaneously, the stirring shaft 12 on the stirring rod 11 is driven simultaneously, the rotating rod 13 rotating on the stirring shaft 12 is triangular, the rotation can be realized along with the revolution of the stirring shaft 12, the air flowing through the rotating shaft channel 1051 enters the ventilating pipeline 121 in the stirring shaft 12, the air entering the ventilating pipeline 121 is blown out by the blowing channel 131 on the rotating rod 13, three vent holes 131 are distributed on each surface of the three rotating rods 13, when the rotating rod 13 rotates, the vent holes 131 are matched with the rotating shaft channel 1051, and are blown out from the back of the rotating rod 13 rotating clockwise, the carbon dioxide content in the flour paste is increased, and the air blown out by the flour paste can also realize self-cleaning of the vent holes 13.
When the rotating wheel works, the speed of the rotating wheel 10 is adjusted by controlling the three-level speed adjusting switch 15 to be low-speed, medium-speed and high-speed, so that the air sucked by the wind wheel is adjusted, the carbon dioxide content in the flour paste is different by stirring at different rotating speeds, the flour paste of different kinds of wheaten foods is obtained, and the requirements of various cake wheaten foods are met.
The sliding block 611, the scraping plate 6 and the second sliding block 612 are fixedly connected in the height direction, and the scraping plate is in a reverse L shape.
When the kneading is finished and the motor 8 is adjusted to be reversed, the reversed motor 8 drives the stirring shaft 9 to be anticlockwise rotated, the anticlockwise rotating shaft 9 drives the rotating wheel 10 to rotate to move upwards, the rotating wheel 10 matched with the slurry baffle 7 extrudes the surface inside the slurry baffle 7, the stirring 11 arranged on the rotating shaft rotates in the gap of the slurry baffle 7 along with the ascending contraction of the rotating wheel, and the rotating wheel 10 contracts to arrange the top end of the stirring shaft 9.
The fender board 7 rotates and sets up in cover 2 lower extreme, distribute with the circumferencial direction when thick liquid board 7, when thick liquid board 7 rotary motion in cover 2 lower extreme face, it is rotatory to be driven by rotary device.
When (mixing) shaft 9 anticlockwise rotation, drive sleeve 311 of fixed mounting on first chassis 3 and be anticlockwise rotary motion, drive sliding block 611 through track frictional force and be interior rotary motion, extrude track lid 3121 inwards when the sliding block is interior rotary, track lid 3121 prevents that flour-mixing machine during operation face thick liquid from flowing into the track the sliding block is located and is scraped panel 6 under can not flow into face thick liquid along with the motion, sets up three and scrape panel 6 on sliding block 611 and be clockwise internal rotation along the track, extrudees the inside anti-L shape of track lid 3121 during the internal rotation and scrapes panel 6 limit end angle of inclination 45 degrees, scrapes the face with obtaining on 1 inner wall of organism and first chassis 3 along with scraping the internal rotation of panel 6 and sweeps totally, scrapes to first internal rotation track 312 end and cut apart into the triplex use after sweeping totally.
The motor 8, the starting switch 14, the three-level speed regulating switch 15 and the fuse 16 are all in the prior art, and therefore, the detailed description is omitted.