CN223697970U - Rotary flour mill for spina date seeds - Google Patents
Rotary flour mill for spina date seedsInfo
- Publication number
- CN223697970U CN223697970U CN202423179977.2U CN202423179977U CN223697970U CN 223697970 U CN223697970 U CN 223697970U CN 202423179977 U CN202423179977 U CN 202423179977U CN 223697970 U CN223697970 U CN 223697970U
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- flour mill
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- rotary
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Abstract
The application relates to the technical field of flour mills, in particular to a rotary flour mill for spina date seeds, which comprises a machine base, wherein a shell is arranged right above the machine base, a feed hopper is arranged at the top of the shell, a discharge hopper is arranged at one side of the shell, a feeding component capable of continuously and quantitatively feeding materials into the shell is vertically arranged at the top of the shell, and a flour milling component capable of carrying out grinding, crushing and rotary discharging operations on the spina date seeds in the shell is vertically arranged at the bottom of the shell.
Description
Technical Field
The application relates to the technical field of flour mills, in particular to a rotary flour mill for spina date seeds.
Background
In the existing grinding technology, high-efficiency and continuous grinding treatment of the spina date seeds still has a plurality of challenges, and the traditional grinding machine often has the problems of uneven blanking, low grinding efficiency, easy blockage and the like, and the problems not only affect the quality and the yield of the spina date seed powder, but also increase the production cost and the equipment maintenance difficulty.
Particularly, the control of the blanking amount is a key link in the milling process, if the blanking amount is too small, the production capacity of the milling machine can not be fully utilized, so that the production efficiency is reduced, and if the blanking amount is too large, the internal blocking of the milling machine is easily caused, even equipment is damaged, so that how to realize the accurate control of the blanking amount of the spina date seeds becomes a key for improving the performance of the milling machine.
Disclosure of utility model
The application aims to solve the problems that the existing flour mill for the spina date seeds has excessive or insufficient blanking amount and is difficult to effectively control in the use process, so that the grinding efficiency is low or the flour milling is blocked.
In order to solve the technical problems, the application provides a rotary flour mill for spina date seeds, which comprises a machine base, wherein a shell is arranged right above the machine base, a feed hopper is arranged at the top of the shell, a discharge hopper is arranged at one side of the shell, a feeding component capable of continuously and quantitatively feeding materials into the shell is vertically arranged at the top of the shell, and a flour milling component capable of carrying out grinding and crushing and rotary discharging operations on the spina date seeds in the shell is vertically arranged at the bottom of the shell.
Because the rotary flour mill is provided with the feeding component and the flour milling component, continuous blanking, powder and discharging operations of the spina date seeds can be realized through the combination of the feeding component and the flour milling component, the production efficiency is improved, and the problems that the blanking amount is too large or too small to be effectively controlled in the using process of the flour mill for the spina date seeds in the prior art, so that the grinding efficiency is low or the flour milling is blocked are solved.
Drawings
Fig. 1 is a schematic perspective view of an embodiment.
Fig. 2 is a schematic diagram of the front view structure of the embodiment.
Fig. 3 is a schematic top view of an embodiment.
Fig. 4 is a schematic view of the structure of the feed assembly.
Fig. 5 is a schematic structural view of the pulverizing assembly.
The device comprises a feeding hopper, a feeding component, a shell, a discharging hopper, a 5, a grinding component, a 6, a base, a 7, a first motor, a 8, a first shaft lever, a 9, a first material plate, a 10, a connecting rod, a 11, a second material plate, a 12, a disturbance plate, a 13, a grinding plate, a 14, a screen plate, a 15, a scraper, a 16, a second shaft lever, a 17 and a second motor.
Detailed Description
The following description of the embodiments of the present application will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present application, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to be within the scope of the application.
Examples
The application relates to a rotary flour mill for spina date seeds, which comprises a machine base 6, wherein a shell 3 is arranged right above the machine base 6, a feed hopper 1 is arranged at the top of the shell 3, the feed hopper 1 is arranged in a shape of large upper part and small lower part in an inclined manner, the blanking of the spina date seeds is facilitated, a discharge hopper 4 is arranged at one side of the shell 3, the discharge hopper 4 is arranged in an inclined manner, the outflow of powder is facilitated, a feeding component 2 is vertically arranged at the top of the shell 3, the feeding component 2 can continuously and quantitatively feed the inside of the shell 3, a flour milling component 5 is vertically arranged at the bottom of the shell 3, the flour milling component 5 can grind and rotationally discharge the spina date seeds in the shell, and the continuous blanking, powder and discharging operations of the spina date seeds are realized through the combination of the feeding component 2 and the flour milling component 5, and the production efficiency is improved.
The feeding component 2 comprises a first shaft rod 8, a first motor 7 and a material plate, so that uniform and quantitative feeding of the spina date seeds is realized, the first shaft rod 8 is vertically arranged inside the feeding hopper 1, the first motor 7 connected with the first shaft rod 8 is arranged at the top of the feeding hopper 1, the first motor 7 drives the first shaft rod 8 to rotate, the material plate is driven to move, the material plate is of a spiral structure, the surface of the material plate surrounding the first shaft rod 8 is vertically downwards arranged, and the structure is favorable for smooth falling and dispersion of the spina date seeds.
The flitch divide into first flitch 9 and second flitch 11, be connected through connecting rod 10 between first flitch 9 and the first axostylus axostyle 8, through connecting rod 10's arrangement, leave the flow gap of spina date seed between first flitch 9 and the first axostylus axostyle 8, this kind of design can enough avoid the spina date seed to bond each other at the feeding in-process, can ensure the even whereabouts of spina date seed again, second flitch 11 and the laminating of first axostylus axostyle 8 are arranged, its effect is to carrying out quantitative blanking to the spina date seed, ensure that the spina date seed volume that falls into milling component 5 at every turn keeps unanimous, thereby improve milling quality and efficiency.
In actual operation, first motor 7 is started at first, drive first axostylus axostyle 8 is rotatory, and the rotation of first axostylus axostyle 8 drives the flitch motion, because the flitch is spiral structure, consequently can carry the spine date seed downwards from the top of feeder hopper 1 effectively, in the transportation process, first flitch 9 carries out disturbance dispersion to the spine date seed through the clearance between connecting rod 10 and first axostylus axostyle 8, avoids its mutual bonding, simultaneously, second flitch 11 carries out quantitative blanking to the spine date seed, ensures that the spine date seed volume that falls into milling component 5 at every turn is unanimous.
The grinding assembly 5 comprises a second shaft 16, a second motor 17, a disturbing plate 12, a screen 14, a grinding plate 13 and a scraping plate 15, wherein the second shaft 16 is vertically arranged in the shell 3 and serves as a core supporting structure of the whole grinding assembly 5, the function of connecting and driving other parts is also guaranteed, the stability and reliability of the whole structure are guaranteed, the second motor 17 connected with the second shaft 16 is arranged in the machine base 6, the motor is an efficient and low-noise electric motor, stable and continuous power output can be provided, stable and continuous operation of the second shaft 16 and all parts connected with the second shaft is guaranteed, the disturbing plate 12 is arranged on the upper portion of the second shaft 16 and is close to the position of the second material plate 11, when the second shaft 16 rotates, the disturbing plate 12 rotates along with the rotation of the second shaft, the circumferential disturbance is generated on a spine date seed, the structure effectively prevents the bonding phenomenon of the spine date seed in the grinding process, and the grinding efficiency and the grinding effect are guaranteed.
The screen plate 14 transversely arranged in the shell 3 has the dual functions of grinding and sieving, fine meshes are distributed on the surface of the screen plate, only the spine date seed powder ground to enough fineness is allowed to pass through the screen plate, the design ensures grinding quality, production efficiency is improved, the grinding plate 13 is an important grinding part connected with the second shaft rod 16 and is positioned on the upper portion of the screen plate 14, when the second shaft rod 16 rotates, the grinding plate 13 and spine date seeds rub and roll, so that the grinding effect is achieved, the scraping plate 15 is also connected with the second shaft rod 16, the lower portion of the screen plate 14 circularly rotates, and the spine date seed powder is mainly used for hanging the ground spine date seed powder positioned on the lower portion of the screen plate 14 to the discharge hopper 4, and the discharge hopper 4 positioned below the screen plate 14 is used for guiding the spine date seed powder to conduct centralized collection operation.
When the second motor 17 is started, the second shaft 16 starts to rotate, the interference plate 12 firstly performs circumferential disturbance on the spina date seeds to prevent the spina date seeds from being bonded, then the grinding plate 13 and the net plate 14 start to grind and crush the spina date seeds until the spina date seeds reach enough fineness and pass through the net plate 14, and finally the ground spina date seed powder is pushed to the discharge hopper 4 by the scraping plate 15 to be collected.
During the use, evenly pour the semen Ziziphi Spinosae that will grind into feeder hopper 1 into, take care of and do not pour too much in order to avoid blockking up once only, observe the spiral structure of flitch and whether effectively carry the semen Ziziphi Spinosae downwards, first flitch 9 should go on disturbing the semen Ziziphi Spinosae through the clearance between connecting rod 10 and the first axostylus axostyle 8, avoid its mutual bonding, second flitch 11 then through the unloading volume of rotation control semen Ziziphi Spinosae, when the semen Ziziphi Spinosae falls into the grinding region from feed assembly 2, the interference board 12 can begin to produce circumferential disturbance to it, prevent to bond, observe the cooperation grinding condition of grinding board 13 and otter board 14, ensure that the semen Ziziphi Spinosae after grinding is fully broken and ground, otter board 14 can filter out the semen Ziziphi Spinosae powder after grinding, and bigger granule can continue grinding, the semen Ziziphi Spinosae powder after grinding can fall into out hopper 4 through the effect of scraper blade 15, use suitable container to collect.
Generally, terms should be understood at least in part by use in the context. For example, the term "one or more" as used herein may be used to describe any feature, structure, or characteristic in a singular sense, or may be used to describe a combination of features, structures, or characteristics in a plural sense, at least in part depending on the context. Similarly, terms such as "a" or "an" may also be understood to convey a singular usage or a plural usage, depending at least in part on the context.
It should be readily understood that "on," "above," and "above" in this disclosure should be interpreted in the broadest sense so that "on" means not only "directly on something," but also includes the meaning of "on something" with intermediate features or layers therebetween, and "on" or "above" includes the meaning of not only "on something" or "above," but also "above" and may include the meaning of "on something" or "above" with no intermediate features or layers therebetween (i.e., directly on something).
Further, spatially relative terms, such as "below," "beneath," "above," "over," and the like, may be used herein for ease of description to describe one element or feature's relationship to another element or feature as illustrated. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. The device may have other orientations (rotated 90 degrees or at other orientations), and the spatially relative descriptors used herein interpreted accordingly.
It should be noted that the above embodiments are merely for illustrating the technical solution of the present application and not for limiting the same, and although the present application has been described in detail with reference to the above embodiments, it should be understood by those skilled in the art that the technical solution described in the above embodiments may be modified or some or all of the technical features may be equivalently replaced, and these modifications or substitutions do not make the essence of the corresponding technical solution deviate from the scope of the technical solution of the embodiments of the present application.
Claims (9)
1. A rotary flour mill for spina date seeds comprises a machine base and is characterized in that a shell is arranged right above the machine base, a feed hopper is arranged at the top of the shell, a discharge hopper is arranged on one side of the shell, a feeding component capable of continuously and quantitatively feeding materials into the shell is vertically arranged at the top of the shell, and a flour milling component capable of carrying out grinding and crushing and rotary discharging operations on the spina date seeds in the shell is vertically arranged at the bottom of the shell.
2. The rotary pulverizer of claim 1, wherein the feeding assembly comprises a first shaft, a first motor and a material plate, the first shaft is vertically arranged inside the feeding hopper, the first motor connected with the first shaft is arranged at the top of the feeding hopper, and the material plate is vertically downwards arranged around the surface of the first shaft.
3. The rotary flour mill for spina date seeds of claim 2, wherein the material plate is divided into a first material plate and a second material plate, the first material plate is connected with the first shaft rod through a connecting rod, and the second material plate is attached to the first shaft rod.
4. The rotary flour mill for semen Ziziphi Spinosae of claim 2, wherein the material plate has spiral structure.
5. The rotary flour mill for semen Ziziphi Spinosae of claim 3, wherein a flow gap is left between the first material plate and the first shaft.
6. The rotary flour mill for spina date seeds of claim 1, wherein the flour mill assembly comprises a second shaft rod, a second motor and a disturbing plate, the second shaft rod is vertically arranged in the shell, the second motor connected with the second shaft rod is arranged in the machine base, and the disturbing plate is arranged at the upper part of the second shaft rod and close to the second material plate.
7. The rotary flour mill for semen Ziziphi Spinosae as claimed in claim 6, wherein the flour mill comprises a screen plate and a grinding plate, the screen plate for grinding and sieving is transversely arranged in the shell, and the grinding plate is connected with the second shaft and matched with the screen plate for rubbing and rolling semen Ziziphi Spinosae is arranged on the upper part of the screen plate.
8. The rotary flour mill for wild jujube seeds of claim 7 wherein the flour mill assembly comprises a scraper, the lower part of the screen is connected with the second shaft, and the milled wild jujube seeds are pushed to the scraper of the discharge hopper by circulating rotation.
9. The rotary flour mill for semen Ziziphi Spinosae of claim 7, wherein the surface of the mesh plate is provided with fine mesh holes which only allow semen Ziziphi Spinosae powder to pass through.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423179977.2U CN223697970U (en) | 2024-12-23 | 2024-12-23 | Rotary flour mill for spina date seeds |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423179977.2U CN223697970U (en) | 2024-12-23 | 2024-12-23 | Rotary flour mill for spina date seeds |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223697970U true CN223697970U (en) | 2025-12-23 |
Family
ID=98065379
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202423179977.2U Active CN223697970U (en) | 2024-12-23 | 2024-12-23 | Rotary flour mill for spina date seeds |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223697970U (en) |
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2024
- 2024-12-23 CN CN202423179977.2U patent/CN223697970U/en active Active
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