CN217954405U - Multi-station dough mixing machine for yeast fermentation force detection - Google Patents

Multi-station dough mixing machine for yeast fermentation force detection Download PDF

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Publication number
CN217954405U
CN217954405U CN202221492033.9U CN202221492033U CN217954405U CN 217954405 U CN217954405 U CN 217954405U CN 202221492033 U CN202221492033 U CN 202221492033U CN 217954405 U CN217954405 U CN 217954405U
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China
Prior art keywords
stirring
station
accommodating
detecting
dough mixer
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CN202221492033.9U
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Chinese (zh)
Inventor
秦磊磊
韩淑君
张小骥
李艳丽
谢聪
徐梦
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Three Gorges Public Inspection And Testing Center
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Three Gorges Public Inspection And Testing Center
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Abstract

A dough mixer for multi-station yeast fermentation force detection comprises a base, wherein a stirring device and a plurality of accommodating devices are arranged on the base, the stirring device comprises a support arranged on the base, one end of a stirring part is movably arranged on the support, and the other end of the stirring part extends into the accommodating devices; the accommodating device comprises a heating device fixedly installed on the base, and the accommodating barrel is provided with a driving device and is installed on the base in a rotating mode. The heating device is annular, holds the bucket and installs in heating device's centre to surround the outer peripheral face that holds the bucket, because during the flour stirring, all the adhesion is at the ladle wall, when the outer peripheral face of ladle wall was surrounded by heating device, it is more even to hold the bucket heating heat preservation, and the effect is better. Be equipped with agitating unit and a plurality of accommodate device on the frame, the stirring portion stirs respectively or stirs simultaneously a plurality of buckets that hold, forms line production, improves detection efficiency.

Description

Multi-station dough mixing machine for yeast fermentation force detection
Technical Field
The utility model relates to a yeast detects technical field, specifically is a multistation yeast fermentation power detects uses flour-mixing machine.
Background
In the yeast fermentation capacity testing process, higher requirements are placed on the characteristics of dough forming time, dough temperature and the like for fermentation. The conventional dough kneading equipment is a single stirring barrel at present, the dough kneading efficiency is low, the rapid detection of various different batches cannot be met, the conventional heating device is positioned at the bottom of the stirring barrel, the heating surface is unbalanced, the bottom is easy to overheat, the upper temperature is insufficient, the central temperature of the finally formed dough cannot meet the detection requirement, the final detection data is influenced, and meanwhile, certain damage is caused to other precise equipment in a laboratory by dust generated in the dough kneading process.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is: the problem of exist among the above-mentioned background art is solved, a multistation flour detects flour-mixing machine that heating heat preservation is even, detection efficiency is high, can carry out dust control is provided.
In order to realize the technical characteristics, the purpose of the utility model is realized as follows: a dough mixer for multi-station yeast fermentation force detection comprises a base, wherein a stirring device and a plurality of accommodating devices are arranged on the base, the stirring device comprises a support arranged on the base, one end of a stirring part is movably arranged on the support, and the other end of the stirring part extends into the accommodating devices; the accommodating device comprises a heating device fixedly arranged on the base, and the accommodating barrel is provided with a driving device and is rotatably arranged on the base; the heating device is annular, and the accommodating barrel is arranged in the middle of the heating device and surrounds the peripheral surface of the accommodating barrel; the stirring portion stirs a plurality of buckets respectively or stirs simultaneously.
The driving device is installed at the bottom of the machine base, and the output shaft is connected with the bottom of the containing barrel.
The bottom of the containing barrel is provided with a coupler, an upper end flange of the coupler is connected with the containing barrel, and a lower end shaft sleeve is connected with an output shaft of the driving device.
The driving device is a motor reducer, a stepping motor or a servo motor.
The support is tubular, a longitudinal notch is formed in the pipe wall of the upper end face of the support, and the opening of the notch corresponds to the containing barrel; the stirring part comprises a fixed rod, one end of a connecting rod is connected to the fixed rod, the other end of the connecting rod extends into the containing barrel, and a stirring sheet is arranged at the end part of the connecting rod extending into the containing barrel; the fixing rod is inserted into the support, and one end of the connecting rod, which is close to the support, is placed into the notch.
Be equipped with a plurality of connecting rods on the dead lever, a plurality of connecting rods correspond a plurality of buckets that hold respectively.
Stirring piece one end is connected with the connecting rod, and the other end is equipped with the corner, the corner direction is the same with the direction of rotation that holds the bucket.
The machine base is also provided with a controller which controls the heating device and the driving device.
Still include the dust cover, the dust cover can cover agitating unit and accommodate device.
The dust cover is provided with an observation window.
The utility model discloses there is following beneficial effect:
1. be equipped with agitating unit and a plurality of accommodate device on the frame, stirring portion stirs respectively or stirs simultaneously a plurality of buckets that hold, forms the line production, improves detection efficiency, and heating device is the annular to surround the outer peripheral face that holds the bucket, it is more even to hold bucket heating heat preservation, and the effect is better.
2. The support is tubular, the pipe wall of the upper end surface is provided with a longitudinal notch, and the opening of the notch corresponds to the containing barrel; the stirring part comprises a fixed rod, one end of a connecting rod is connected to the fixed rod, the other end of the connecting rod extends into the accommodating barrel, and a stirring sheet is arranged at the end part of the connecting rod extending into the accommodating barrel; the dead lever inserts in the support, and the one end that the connecting rod is close to the support is placed in the notch and is carried out spacing fixed, simple structure, and convenient to use still is convenient for stir the washing of portion.
3. Be equipped with a plurality of connecting rods on the dead lever, a plurality of connecting rods correspond a plurality of buckets that hold respectively, can stir a plurality of buckets that hold simultaneously, improve and detect efficiency of software testing.
4. The tip of stirring piece is equipped with the corner, and the corner direction is the same with the direction of rotation that holds the bucket, and the quick stirring of the flour of being convenient for is conglomerated.
5. The controller can control each driving device independently through the switch, can also control and display temperature and time independently or simultaneously for each heating device, and also has timing and reminding functions.
6. Still be equipped with the dust cover on the frame, agitating unit and accommodate device can be covered to the dust cover, prevent that the during operation from holding and getting into debris in the bucket, influence detection data, can prevent the harm of dust to other precision instruments in laboratory simultaneously.
Drawings
Fig. 1 is a schematic view of the three-dimensional structure of the present invention.
Fig. 2 is a schematic view of the bottom three-dimensional structure of the present invention.
Fig. 3 is a schematic view of the structure of the present invention.
Fig. 4 isbase:Sub>A schematic view of the cross-sectional structurebase:Sub>A-base:Sub>A in fig. 3.
Fig. 5 is a schematic view of the structure of the support of the present invention.
Fig. 6 is a schematic view of a first structure of the stirring portion of the present invention.
Fig. 7 is another schematic structural diagram of the stirring part of the present invention.
Fig. 8 is a schematic view of the installation dust cover structure of the present invention.
Reference numerals are as follows: the stirring device comprises a machine base 10, a containing device 20, a containing barrel 21, a heating device 22, a driving device 23, a coupler 24, a stirring device 30, a support 31, a notch 311, a stirring part 32, a fixing rod 321, a connecting rod 322, a stirring sheet 323, a controller 40, a dust cover 50 and an observation window 51.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1-7, a multi-station dough mixer for yeast fermentation force detection comprises a machine base 10, wherein a stirring device 30 and two accommodating devices 20 are arranged on the machine base 10, the stirring device 30 comprises a support 31 mounted on the machine base 10, one end of a stirring part 32 is movably mounted on the support 31, and the other end of the stirring part extends into the accommodating device 20; the accommodating device 20 comprises a heating device 22 fixedly arranged on the machine base 10, and the accommodating barrel 21 is provided with a driving device 23 and is rotatably arranged on the machine base 10; the heating device 22 is annular, and the accommodating barrel 21 is arranged in the middle of the heating device 22 and surrounds the outer peripheral surface of the accommodating barrel 21; the stirring section 32 stirs the two storage tanks 21 separately or simultaneously. Be equipped with agitating unit 30 and two accommodate device 20 on frame 10, stirring portion 32 stirs or stirs simultaneously respectively two buckets 21, when adopting as the stirring portion 32 that fig. 6 shows, two accommodate device 20's the bucket 21 that holds can be through a drive arrangement 23 simultaneous drive when rotatory, stirring portion 32 can carry out solitary stirring to two buckets 21 respectively, also can adopt as the stirring portion 32 that fig. 7 shows stirs two buckets 21 simultaneously. In the present embodiment, as shown in fig. 2 and 4, each of the containers 21 is independently provided with a driving device 23, so that when one container 21 is stirring, the other container 21 can be stopped, and operations such as adding flour or taking out dough can be performed, thereby forming a flow process and improving the detection efficiency. Heating device 22 is the annular, holds bucket 21 and installs in heating device 22's centre to surround the outer peripheral face that holds bucket 21, because during the flour stirring, all adhesion is at the ladle wall, when the ladle wall outer peripheral face was surrounded by heating device 22, it is more even to hold bucket 21 heating heat preservation, and the effect is better. The heating device 22 may be a ring-shaped resistance wire, or may be a graphene heating material.
In a preferred embodiment, referring to fig. 2, the driving means 23 is mounted on the bottom of the frame 10, and the output shaft is connected to the bottom of the receiving tub 21. Simple structure, compact structure practices thrift the space.
In a preferred scheme, referring to fig. 4, the bottom of the accommodating barrel 21 is provided with a coupling 24, the upper end flange of the coupling 24 is connected with the accommodating barrel 21, and the lower end shaft sleeve is connected with an output shaft of the driving device 23. Facilitating connection with the drive means 23.
Specifically, the driving device 23 is a motor reducer, a stepping motor or a servo motor. Can be selected according to different size structures or stirring precision of the dough mixing machine. In the embodiment, because flour is detected in the dough kneading process, the flour consumption is less, a stepping motor is preferably selected, the structure is simple, and the speed regulation is convenient.
Specifically, referring to fig. 1 and 5, the support 31 is tubular, a longitudinal notch 311 is formed in the upper end surface of the tubular wall, and an opening of the notch 311 corresponds to the accommodating barrel 21; the stirring part 32 comprises a fixed rod 321, one end of a connecting rod 322 is connected to the fixed rod 321, the other end of the connecting rod 322 extends into the accommodating barrel 21, and a stirring sheet 323 is arranged at the end part of the connecting rod 322 extending into the accommodating barrel 21; the fixing rod 321 is inserted into the holder 31, and one end of the connecting rod 322 near the holder 31 is placed in the notch 311. Simple structure and convenient use. When the stirring part 32 shown in fig. 6 is used, the holding barrel 21 needs to be stirred, the fixing rod 321 is lifted, one end of the stirring piece 323 is placed in the holding barrel 21, and when the fixing rod 321 falls, one end of the connecting rod 322 close to the support 31 is placed in the corresponding notch 311 for fixing, so that the use is convenient, and the cleaning of the stirring part 32 is also convenient.
In another embodiment, be equipped with two connecting rods 322 on the dead lever 321, two connecting rods correspond two respectively and hold bucket 21, can stir two bucket 21 that hold simultaneously, improve and detect efficiency of software testing.
In a preferred scheme, referring to fig. 6 and 7, one end of the stirring plate 323 is connected to the connecting rod 322, and the other end of the stirring plate 323 is provided with a corner, the direction of the corner is the same as the rotation direction of the accommodating barrel 21, and the end of the stirring plate 323 is provided with a corner, the direction of the corner is the same as the rotation direction of the accommodating barrel 21, so that the flour can be rapidly stirred into a dough.
In a preferred embodiment, referring to fig. 1, the housing 10 is further provided with a controller 40, and the controller 40 controls the heating device 22 and the driving device 23. The controller 40 can control each driving device 23 individually through a switch, can control and display each heating device 22 individually or simultaneously for heating, adjusting and constant temperature, accurately test data, and has timing and reminding functions. For example, a multifunctional time temperature controller with a Kedibo brand and a WK-004 model is adopted to realize temperature, timing and alarm control.
The accommodating device 20 can be arranged in a plurality of circular arrays around the support 31, for example, four or six circular arrays are uniformly distributed, and the detection efficiency is higher.
In a preferred embodiment, see fig. 8, a dust cover 50 is further included, said dust cover 50 being capable of covering the stirring device 30 and the containing device 20. Prevent that the during operation holds and gets into debris in the bucket 21, influence the measuring data.
Further, the dust cover 50 is provided with a viewing window 51. The internal and surface conditions can be observed conveniently from the outside.
The utility model discloses a working process and principle:
appropriate amount of flour, water, yeast and the like is added into the containing barrel 21, one end of the stirring sheet 323 is placed into the corresponding containing barrel 21, the fixing rod 321 is dropped and inserted into the upper end of the support 31, one end of the connecting rod 322 close to the support 31 is placed into the corresponding notch 311, and the whole stirring part 32 is limited and fixed. When it is necessary to stir the flour in the next receiving tub 21, the fixing lever 321 is lifted up, and one end of the stirring blade 323 is placed in the next receiving tub 21, thereby positioning the stirring.
Also can be equipped with a plurality of connecting rods 322 on the dead lever 321 of stirring portion 32, a plurality of connecting rods 322 correspond a plurality of buckets 21 that hold respectively, can stir a plurality of buckets 21 that hold simultaneously, improve and detect efficiency of software testing. When it is necessary to stop that accommodating tub 21, the switch corresponding to the driving device 23 of the accommodating tub 21 is turned off.

Claims (10)

1. The utility model provides a multistation yeast fermentation power detects uses flour-mixing machine, includes frame (10), its characterized in that: the stirring device (30) and the accommodating devices (20) are arranged on the base (10), the stirring device (30) comprises a support (31) arranged on the base (10), one end of the stirring part (32) is movably arranged on the support (31), and the other end of the stirring part extends into the accommodating devices (20); the accommodating device (20) comprises a heating device (22) fixedly arranged on the machine base (10), and the accommodating barrel (21) is provided with a driving device (23) and is rotatably arranged on the machine base (10); the heating device (22) is annular, and the accommodating barrel (21) is arranged in the middle of the heating device (22) and surrounds the outer peripheral surface of the accommodating barrel (21); the stirring section (32) stirs the plurality of storage tanks (21) individually or simultaneously.
2. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 1, wherein: the driving device (23) is arranged at the bottom of the machine base (10), and the output shaft is connected with the bottom of the containing barrel (21).
3. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 2, wherein: the bottom of the accommodating barrel (21) is provided with a coupler (24), an upper end flange of the coupler (24) is connected with the accommodating barrel (21), and a lower end shaft sleeve is connected with an output shaft of the driving device (23).
4. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 2 or 3, wherein: the driving device (23) is a motor reducer, a stepping motor or a servo motor.
5. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 1, wherein: the support (31) is tubular, a longitudinal notch (311) is formed in the pipe wall of the upper end face, and an opening of the notch (311) corresponds to the accommodating barrel (21); the stirring part (32) comprises a fixed rod (321), one end of a connecting rod (322) is connected to the fixed rod (321), the other end of the connecting rod (322) extends into the accommodating barrel (21), and a stirring sheet (323) is arranged at the end part of the connecting rod (322) extending into the accommodating barrel (21); the fixing rod (321) is inserted into the support (31), and one end of the connecting rod (322) close to the support (31) is placed into the notch (311).
6. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 5, wherein: be equipped with a plurality of connecting rods (322) on dead lever (321), a plurality of connecting rods correspond a plurality of buckets (21) respectively.
7. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 5 or 6, wherein: stirring piece (323) one end is connected with connecting rod (322), and the other end is equipped with the corner, the corner direction is the same with the direction of rotation who holds bucket (21).
8. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 1, wherein: the machine base (10) is further provided with a controller (40), and the controller (40) controls the heating device (22) and the driving device (23).
9. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 1, wherein: also comprises a dust cover (50), wherein the dust cover (50) can cover the stirring device (30) and the containing device (20).
10. The dough mixer for detecting the fermentation capacity of the multi-station yeast according to claim 9, wherein: the dust cover (50) is provided with an observation window (51).
CN202221492033.9U 2022-06-15 2022-06-15 Multi-station dough mixing machine for yeast fermentation force detection Active CN217954405U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221492033.9U CN217954405U (en) 2022-06-15 2022-06-15 Multi-station dough mixing machine for yeast fermentation force detection

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221492033.9U CN217954405U (en) 2022-06-15 2022-06-15 Multi-station dough mixing machine for yeast fermentation force detection

Publications (1)

Publication Number Publication Date
CN217954405U true CN217954405U (en) 2022-12-02

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ID=84215814

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221492033.9U Active CN217954405U (en) 2022-06-15 2022-06-15 Multi-station dough mixing machine for yeast fermentation force detection

Country Status (1)

Country Link
CN (1) CN217954405U (en)

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