CN204769551U - Tea seed and shell piece -rate system - Google Patents
Tea seed and shell piece -rate system Download PDFInfo
- Publication number
- CN204769551U CN204769551U CN201520308607.6U CN201520308607U CN204769551U CN 204769551 U CN204769551 U CN 204769551U CN 201520308607 U CN201520308607 U CN 201520308607U CN 204769551 U CN204769551 U CN 204769551U
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- CN
- China
- Prior art keywords
- tea seed
- shell
- screening bucket
- rate system
- shell piece
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- 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
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Abstract
The utility model belongs to the technical field of the processing of tea fruit and specifically relates to a tea seed and shell piece -rate system. The utility model provides a tea seed and shell piece -rate system can carry out further broken shell to the shell to separate tea seed and shell. The utility model provides a tea seed and shell piece -rate system, including screening barrel, support frame, central screw axis, power device, what screening barrel was rotatable installs on the support frame, and what central screw axis was rotatable installs on screening barrel, last feed inlet, inlayer screen cloth, the outer screen cloth of being equipped with of screening barrel is equipped with the inlayer sieve mesh on the inlayer screen cloth, outer screen cloth is equipped with outer sieve mesh, and outer sieve mesh hole is less than inlayer sieve mesh hole, and inlayer screen cloth, outer screen cloth are arranged to outward in serving as reasons, the center screw axis includes center pin and blade, is equipped with the blade top on the blade and is equipped with flexible piece, and the flexible piece and the feed cylinder at blade top have broken shell clearance, power device and screening barrel, central rotation axis are connected.
Description
Technical field
The utility model relates to tea fruit manufacture field, especially a kind of tea seed and shell piece-rate system.
Background technology
Camellia oil unsaturated fatty acid content is high, has the title of east olive oil.Need separation tea seed and shell just can carry out follow-up oil expression processing after the broken shell of camellia fruit, but conventional method uses manual sorting, needs at substantial time and human resources, production efficiency is low.
Utility model content
In order to solve the problem needing manual sorting that above-mentioned prior art exists, the utility model provides a kind of tea seed and shell piece-rate system, can carry out further broken shell, and be separated with shell tea seed shell.
A kind of tea seed in the utility model and shell piece-rate system, comprise screening bucket, bracing frame, center convolution axle, power set, bucket is rotating is arranged on bracing frame in screening, and center convolution axle is rotating to be arranged on screening bucket; Screening bucket is provided with charging aperture, inner screen, outer screen, and inner screen is provided with internal layer sieve aperture, and outer screen is provided with outer sieve aperture, and outer sieve aperture hole is less than internal layer sieve aperture hole, and inner screen, outer screen are for arrange from inside to outside; Described center convolution axle comprises central shaft and blade, and blade is provided with vane tip and is provided with flexible sheets, and the flexible sheets of vane tip and barrel have broken shell gap; Described power set are connected with screening bucket, centre rotational axis.Tea seed and shell material enter screening bucket from charging aperture, first carry out further skin breaking by center convolution axle, then filter larger shell by the inner screen on screening bucket, then be separated less shell and tea seed by outer screen, separative efficiency is high, saves artificial.
As preferably, described screening bucket is contrary with center convolution rotational axis direction.Tea seed and shell good separating effect, production efficiency is high.
As preferably, described screening bucket also comprises feed back plate, and described feed back plate is arranged between inner screen and outer screen, and feed back plate is inclined upwardly along feedstock direction.Automatically can be flow back into the feed entrance point of screening bucket by the shell of inner screen and tea seed, production efficiency of equipment is high, saves artificial.
As preferably, the gap between described screening bucket and bracing frame is less than 1mm.Bracing frame can remove the shell blocked, less sieve pore blockade, improves screening effeciency.
As preferably, comprise multiple screening bucket, the screening internal layer sieve aperture of bucket and the size of outer sieve aperture become large respectively successively along feedstock direction.By multiple screening bucket sizing screening, shell is separated more thorough with tea seed.
As preferably, described blade is divided into broken shell blade, front leaf-pushing plate.As preferably, described blade also after leaf-pushing plate.As preferably, described front leaf-pushing plate and pusher blade quantity are 2:1.Broken shell blade carries out broken shell processing to tea fruit and shell, and front leaf-pushing plate drives tea fruit to travel forward, and rear leaf-pushing plate drives tea fruit to move backward, and tea fruit moves back and forth, and tea fruit enters 2 steps and moves back 1 step, repeatedly broken shell, and pipelining, production efficiency is high.
As preferably, described flexible sheets is sheet rubber, flexible plastic sheet, Cowhells sheet or leather sheet.Cost is low, easy to process.
As preferably, described flexible sheets top is provided with flexible sheets groove.Flexible sheets top is flexible sheets fillet, is convenient to carry out broken shell to little tea fruit.
Accompanying drawing explanation
Fig. 1 is a kind of tea seed and shell piece-rate system perspective view.
Fig. 2 is screening bucket perspective view.
Fig. 3 is screening bucket front view.
Fig. 4 is A-A cross section view in Fig. 3.
Helical axis perspective view centered by Fig. 5.
Fig. 6 is blade construction schematic diagram.
Mark in figure: 1, screening bucket, 2, bracing frame, 3, first motor, 4, first conveyer belt, 5, center convolution axle, 6, second motor, 7, second conveyer belt, 101, first screening bucket, 102, second screening bucket, 103, three screening bucket, 104, drive, 105, drive groove, 106, inner screen, 107, outer screen, 108, internal layer sieve aperture, 109, outer sieve aperture, 110, feed back plate, 111, charging aperture, 21, first hopper, 22, second hopper, 23, 3rd hopper, 24, 4th hopper, 25, positive stop strip, 51, central shaft, 52, blade, 53, sheet rubber, 54, rubber film trap.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described in further detail, but this should be interpreted as that the scope of above-mentioned theme of the present utility model is only limitted to above-described embodiment.
As shown in Figure 1, a kind of tea seed and shell piece-rate system, comprise screening bucket 1, bracing frame 2, first motor 3, conveyer belt 4, center convolution axle 5, second motor 6, second conveyer belt 7, bucket 1 is rotating is arranged on bracing frame 2 in screening, center convolution axle 5 is rotating to be arranged on screening bucket 1, bracing frame 2 is provided with the first hopper 21, second hopper 22, 3rd hopper 23, 4th hopper 24, first hopper 21, second hopper 22, 3rd hopper 23 is positioned at screening bucket tea seed discharging opening position, for collecting tea seed, 4th hopper 24 is positioned at below screening bucket 1, collect shell, bracing frame 2 is provided with positive stop strip 25, and positive stop strip 25 is circular arc, and screening bucket 1 rotates along positive stop strip 25, the one the first motor 3, second motors 6 are arranged on bracing frame 2, and the one the first motors 3 are connected with the drive 104 of three screening bucket 103 by the first conveyer belt 4, drive drive rotation, second motor 6 is connected with center convolution axle 5 by the second driving-belt 7, drives center convolution axle 5 to rotate, and the rotation direction of center convolution axle 5 and screening bucket 1 is contrary.
As seen in figs. 5-6, center convolution oar 5 comprises central shaft 51, blade 52, blade 52 comprises sheet rubber 53, sheet rubber 53 top is provided with rubber film trap 54, sheet rubber 53 top is rubber arrow gauge, can carry out broken shell to less tea fruit, sheet rubber 53 also can with other flexible materials as flexiplast, Cowhells, leather etc. be made; Have broken shell gap between center convolution axle 5 and screening bucket 1, broken shell gap is less than tea fruit diameter.Blade 52 is divided into broken shell blade, front leaf-pushing plate, and front leaf-pushing plate drives the feeding forward of shell material in rotation process, and broken shell blade carries out further skin breaking to shell.
As in Figure 2-4, screening bucket 1 comprises the first screening bucket 101, second and screens bucket 102, three screening bucket 103, drive 104, and screening bucket 1 is provided with charging aperture 111, and drive 104 is provided with drive groove for installing conveyer belt 4; Three screening bucket 103 is provided with inner screen 106, feed back plate 110, outer screen 107 from inside to outside successively, three screening bucket 103 afterbody has tea seed discharging opening, inner screen 106 is provided with internal layer sieve aperture 108, described internal layer sieve aperture 108 is circular, oval or square, for separating of larger shell or tea seed; Outer screen 107 is provided with outer sieve aperture 109, and outer sieve aperture 109 is strip, for being separated with shell by tea seed; The hole of outer sieve aperture 109 is less than the hole of internal layer sieve aperture 108, and feed back plate 110 is arranged from low to high along feedstock direction, for offering seed tea and shell flows back to, then is separated with shell through outer screen 107 pairs of tea seeds; First screening bucket 101, second screens bucket 102, three screening bucket 103 structure is similar, intermediate connection, and internal layer sieve aperture and the ascending change respectively of outer sieve aperture, classification is separated with shell tea fruit.
During work, tea seed and shell material enter screening bucket 1, second motor 6 from charging aperture 111 and drive center convolution axle 5 to rotate, and sheet rubber 53 carries out further broken shell to large shell, and sub-argument goes out remaining tea seed, and the blade installed that leans forward drives material feeding forward; First motor 3 drives screening bucket 1 to rotate, tea seed and shell rotate along with screening bucket 1, less tea seed and shell first sift out from the internal layer sieve aperture 108 of the inner screen 106 of the first screening bucket 101, outer screen 107 is flow to through feed back plate 110, then carry out tea seed by the outer sieve aperture 109 in outer screen 107 to be separated with shell, shell size is smaller to flow out from outer sieve aperture 109, collect through the 4th feed hopper 24, the tea seed stayed flows out from the discharge opening of screening bucket afterbody to be collected through the first hopper 21; Large tea seed and shell then flow to the second screening bucket 102 and carry out similar separation, and tea seed is collected through the second hopper 22, is separated finally by three screening bucket.After multi-stage separation, most tea seed can be collected, and improves seed-producing rate.
Claims (8)
1. tea seed and a shell piece-rate system, comprise screening bucket, bracing frame, center convolution axle, power set, bucket is rotating is arranged on bracing frame in screening, and center convolution axle is rotating to be arranged on screening bucket; Screening bucket is provided with charging aperture, inner screen, outer screen, and inner screen is provided with internal layer sieve aperture, and outer screen is provided with outer sieve aperture, and outer sieve aperture hole is less than internal layer sieve aperture hole, and inner screen, outer screen are for arrange from inside to outside; Described center convolution axle comprises central shaft and blade, and blade is provided with vane tip and is provided with flexible sheets, and the flexible sheets of vane tip and barrel have broken shell gap; Described power set are connected with screening bucket, centre rotational axis.
2. a kind of tea seed as claimed in claim 1 and shell piece-rate system, is characterized in that: described screening bucket is contrary with center convolution rotational axis direction.
3. a kind of tea seed as claimed in claim 1 and shell piece-rate system, it is characterized in that: described screening bucket also comprises feed back plate, described feed back plate is arranged between inner screen and outer screen, and feed back plate is inclined upwardly along feedstock direction.
4. a kind of tea seed as claimed in claim 1 and shell piece-rate system, is characterized in that: the gap between described screening bucket and bracing frame is less than 1mm.
5. a kind of tea seed as claimed in claim 1 and shell piece-rate system, is characterized in that: described screening bucket is that multiple screening bucket is formed by connecting, and the internal layer sieve aperture of multiple screening bucket and the size of outer sieve aperture become large respectively successively along feedstock direction.
6. a kind of tea seed as claimed in claim 1 and shell piece-rate system, is characterized in that: described blade is divided into front leaf-pushing plate, broken shell blade.
7. a kind of tea seed as claimed in claim 6 and shell piece-rate system, is characterized in that: also comprise rear leaf-pushing plate.
8. a kind of tea seed as claimed in claim 1 and shell piece-rate system, is characterized in that: described flexible sheets top is provided with flexible sheets groove.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520308607.6U CN204769551U (en) | 2015-05-14 | 2015-05-14 | Tea seed and shell piece -rate system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520308607.6U CN204769551U (en) | 2015-05-14 | 2015-05-14 | Tea seed and shell piece -rate system |
Publications (1)
Publication Number | Publication Date |
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CN204769551U true CN204769551U (en) | 2015-11-18 |
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CN201520308607.6U Expired - Fee Related CN204769551U (en) | 2015-05-14 | 2015-05-14 | Tea seed and shell piece -rate system |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106563641A (en) * | 2016-11-14 | 2017-04-19 | 杭州知加网络科技有限公司 | Molding powder classifying device |
CN106612745A (en) * | 2016-12-15 | 2017-05-10 | 湖南利诺生物药业有限公司 | Nut seed ball mill |
-
2015
- 2015-05-14 CN CN201520308607.6U patent/CN204769551U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106563641A (en) * | 2016-11-14 | 2017-04-19 | 杭州知加网络科技有限公司 | Molding powder classifying device |
CN106563641B (en) * | 2016-11-14 | 2019-12-10 | 永康市初心工贸有限公司 | mould powder grading plant |
CN106612745A (en) * | 2016-12-15 | 2017-05-10 | 湖南利诺生物药业有限公司 | Nut seed ball mill |
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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: 20151118 Termination date: 20200514 |
|
CF01 | Termination of patent right due to non-payment of annual fee |