CN205109727U - Novel maize is smashed device - Google Patents

Novel maize is smashed device Download PDF

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Publication number
CN205109727U
CN205109727U CN201520680221.8U CN201520680221U CN205109727U CN 205109727 U CN205109727 U CN 205109727U CN 201520680221 U CN201520680221 U CN 201520680221U CN 205109727 U CN205109727 U CN 205109727U
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China
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plate
fixedly connected
framework
montant
crushing wheel
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Expired - Fee Related
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CN201520680221.8U
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Chinese (zh)
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周午贤
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Individual
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Individual
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Abstract

The utility model provides a novel maize is smashed device includes the bottom plate, the framework, a fixing device, the reducing mechanism, feed divider and rotary device, the bottom plate includes first support, the framework includes material collecting plate, elastic plate and three hornblocks, fixing device includes first down tube, the second support, first horizontal pole, first montant and second montant, the reducing mechanism includes a grinding wheel, first crushing tooth, the 2nd grinding wheel, the tooth is smashed to the second, the tooth is smashed to the 3rd grinding wheel and third, feed divider is including dividing the material net, the through -hole, divide flitch and filter screen, rotary device includes the motor, the apparatus further comprises a rotating shaft, the carousel, swash plate and third montant, the one end of first support and the side fixed connection of framework, the face is connected with the interior fixed surface of framework on one side of three hornblocks. The utility model discloses simple structure, convenient to use can carry out abundant smashing to the maize, has reduced manufacturing cost to can filter the maize after smashing, reduced artifical intensity of labour, make whole crushing operation high -efficient, quick.

Description

A kind of novel corn reducing mechanism
Technical field
The present invention relates to agricultural machinery technological field, particularly relate to a kind of novel corn reducing mechanism.
Background technology
At present, along with the development of science and technology, agricultural machinery processing is widely used with the advantage of its uniqueness, but still there is certain problem, complex structure in traditional crush maize machine for agricultural machinery processing, designs not science, operating process is loaded down with trivial details, it is large that volume occupies greatly space, and service behaviour is unstable, and operating efficiency is not high.
Therefore, need to provide a kind of new technical scheme to solve the problems of the technologies described above.
Summary of the invention
The object of this invention is to provide a kind of novel corn reducing mechanism that can effectively solve the problems of the technologies described above.
In order to solve the problems of the technologies described above, the present invention adopts following technical scheme:
A kind of novel corn reducing mechanism, described crush maize device comprises base plate, framework, be positioned at the fixture of the described framework left and right sides, be positioned at the reducing mechanism of described framework inside, the whirligig being positioned at the feeding-distribution device immediately below described reducing mechanism and being positioned at immediately below described feeding-distribution device, described base plate comprises the first support being positioned at described plate upper surface, and described framework comprises the plate that gathers materials being positioned at described framework inner surface, gather materials described in being positioned at the elastic plate of plate upper surface and the corner block of the plate lower surface that gathers materials described in being positioned at, and described fixture comprises the first brace being positioned at described framework side, be positioned at the second support of described first side face, be positioned at the first cross bar of described framework side, be positioned at the first montant of described first cross bar lower surface and be positioned at the second montant of described first rack upper surface, described reducing mechanism comprises the first crushing wheel being positioned at the left and right sides, be positioned at the first crushing tooth of described first crushing wheel upper surface, at described the second crushing wheel gathered materials between plate, be positioned at second crushing tooth on described second crushing wheel surface, be positioned at the 3rd crushing wheel of the left and right sides and be positioned at the 3rd crushing tooth on described first crushing wheel surface, described feeding-distribution device comprises the sub-material net being positioned at described corner block side, be positioned at the through hole of described sub-material end off the net, be positioned at the cutting plate on described sub-material surface off the net and be positioned at the screen pack of described cutting plate lower surface, described whirligig comprises the motor of described plate upper surface, be positioned at the rotating shaft of described motor upper end, be positioned at the rotating disk of described screen pack inside, the swash plate being positioned at described plate upper surface and the 3rd montant being positioned at described plate upper surface.
Described base plate is cuboid, described floor level is placed, described first support is L-type, described framework is hollow cuboid, and described framework is vertically placed, and one end of described first support is fixedly connected with the side of described framework, the described plate upper surface that gathers materials is skewed, described elastic plate is bending, and the cross section of described corner block is triangular in shape, and described corner block one side is fixedly connected with the inner surface of described framework.
Described first brace is skewed, described second support is concave shape, one end of described second support is fixedly connected with the side of described framework, the lower end of described first brace is fixedly connected with the upper surface of described second support, described first cross bar is horizontal, and described first cross bar one end is fixedly connected with described first brace.
Described first montant is cuboid, described first montant is vertically placed, described first montant lower end is fixedly connected with the upper surface of described second support, described second montant is vertical shape, described second montant upper end is fixedly connected with described second support, and described second montant lower end is fixedly connected with described first support.
Described first crushing wheel is cylinder, described first crushing wheel horizontal positioned, described first crushing tooth is fixedly connected with described first crushing wheel, described first crushing wheel is positioned at immediately below described elastic plate, and described second crushing wheel is cylinder, described second crushing wheel horizontal positioned, described second crushing tooth is fixedly connected with described second crushing wheel, described 3rd crushing wheel is cylinder, described 3rd crushing wheel horizontal positioned, and described 3rd crushing tooth is fixedly connected with described 3rd crushing wheel.
Described sub-material is held on the net and is fixedly connected with described corner block, and described cutting plate is hollow round table-like, and described screen pack is hollow cylinder.
Described rotating shaft is cylinder, described rotating shaft is vertically placed, described rotating disk is cylinder, described rotating disk horizontal positioned, the inner surface of described rotating disk side and described screen pack is slidably connected, and described swash plate cross section is L-type, and described swash plate one end is fixedly connected with the lower surface of described rotating disk, described 3rd montant is vertical shape, and described 3rd montant upper end is fixedly connected with described swash plate.
After adopting technique scheme, tool of the present invention has the following advantages:
Novel corn reducing mechanism structure of the present invention is simple, easy to use, can pulverize fully corn, good crushing effect and efficiency is high, reduces production cost, and can filter the corn after pulverizing, the corn satisfied the demands is collected, without the need to artificially collecting, reducing hand labor intensity, making whole comminution process efficient, quick.
Accompanying drawing explanation
Be described further below in conjunction with the detailed description of the invention of accompanying drawing to novel corn reducing mechanism of the present invention:
Fig. 1 is the structural representation of novel corn reducing mechanism of the present invention;
Detailed description of the invention
As shown in Figure 1, novel corn reducing mechanism of the present invention comprises base plate 1, framework 2, the fixture 3 being positioned at described framework 2 left and right sides, the reducing mechanism 4 being positioned at described framework 2 inside, the whirligig 6 that is positioned at the feeding-distribution device 5 immediately below described reducing mechanism 4 and is positioned at immediately below described feeding-distribution device 5.
As shown in Figure 1, described base plate 1 comprises the first support 11 being positioned at described base plate 1 upper surface, described base plate 1 is in cuboid, described base plate 1 horizontal positioned, described first support 11 is provided with two, described first support 11 lays respectively at the left and right sides, and described first support 11 is in L-type, and one end of described first support 11 is fixedly connected with the upper surface of described base plate 1.
As shown in Figure 1, described framework 2 comprises the plate 21 that gathers materials being positioned at described framework 2 inner surface, gather materials described in being positioned at the elastic plate 22 of plate 21 upper surface and the corner block 23 of plate 21 lower surface that gathers materials described in being positioned at, described framework 2 is in hollow cuboid, described framework 2 is vertically placed, one end of described first support 11 is fixedly connected with the side of described framework 2, the described plate 21 that gathers materials is provided with two, the described plate 21 that gathers materials lays respectively at the left and right sides, described plate 21 1 side that gathers materials is fixedly connected with the inner surface of described framework 2, described plate 21 upper surface that gathers materials is skewed, the described plate 21 that gathers materials is conducive to corn to concentrate on centre, described elastic plate 22 is in bending, described elastic plate 22 one end is fixedly connected with the described upper surface gathering materials plate 21, described corner block 23 cross section is triangular in shape, described corner block 23 upper end is fixedly connected with the described lower surface gathering materials plate 21, described corner block 23 1 side is fixedly connected with the inner surface of described framework 2.
As shown in Figure 1, described fixture 3 comprises the first brace 31 being positioned at described framework 2 side, be positioned at the second support 32 of described first support 11 side, be positioned at the first cross bar 33 of described framework 2 side, be positioned at the first montant 34 of described first cross bar 33 lower surface and be positioned at the second montant 35 of described first support 11 upper surface, described fixture 3 is positioned at the left and right sides of described framework 2, described first brace 31 is in skewed, described first brace 31 upper end is fixedly connected with the side of described framework 2, described second support 32 is in concave shape, described second support 32 one end is fixedly connected with the side of described first framework 11, described second support 32 other end is fixedly connected with the side of described framework 2, the lower end of described first brace 31 is fixedly connected with the upper surface of described second support 32, described first cross bar 33 is horizontal, described first cross bar 33 one end is fixedly connected with described first brace 31, described first cross bar 33 other end is fixedly connected with the side of described framework 2, described first montant 34 is in cuboid, described first montant 34 is vertically placed, described first montant 34 upper end is fixedly connected with the lower surface of described first cross bar 33, described first montant 34 lower end is fixedly connected with the upper surface of described second support 32, described second montant 35 is in vertical shape, described second montant 35 upper end is fixedly connected with described second support 32, described second montant 35 lower end is fixedly connected with described first support 11.
As shown in Figure 1, described reducing mechanism 4 comprises the first crushing wheel 41 being positioned at the left and right sides, be positioned at the first crushing tooth 411 of described first crushing wheel 41 upper surface, at described the second crushing wheel 42 gathered materials between plate 21, be positioned at second crushing tooth 421 on described second crushing wheel 42 surface, be positioned at the 3rd crushing wheel 43 of the left and right sides and be positioned at the 3rd crushing tooth 431 on described first crushing wheel 43 surface, described reducing mechanism 4 is positioned at the inside of described framework 2, described first crushing wheel 41 is provided with two, described first crushing wheel 41 lays respectively at the left and right sides, described first crushing wheel 41 is in cylinder, described first crushing wheel 41 horizontal positioned, described first crushing tooth 411 is provided with several, described first crushing tooth 411 is evenly distributed on the surface of described first crushing wheel 41, described first crushing tooth 411 is fixedly connected with described first crushing wheel 41, described first crushing wheel 41 is positioned at immediately below described elastic plate 22, described second crushing wheel 42 is in cylinder, described second crushing wheel 42 horizontal positioned, described second crushing tooth 421 is provided with some, described second crushing tooth 421 is evenly distributed on the surface of described second crushing wheel 42, described second crushing tooth 421 is fixedly connected with described second crushing wheel 42, described 3rd crushing wheel 43 is provided with two, described 3rd crushing wheel 43 is respectively in the left and right sides, described 3rd crushing wheel 43 is in cylinder, described 3rd crushing wheel 43 horizontal positioned, described 3rd crushing tooth 431 is provided with several, described 3rd crushing tooth 431 is evenly distributed on the surface of described 3rd crushing wheel 43, described 3rd crushing tooth 431 is fixedly connected with described 3rd crushing wheel 43.
As shown in Figure 1, described feeding-distribution device 5 comprises the sub-material net 51 being positioned at described corner block 23 side, be positioned at the through hole 511 of described sub-material net 51 lower end, be positioned at the cutting plate 52 of described sub-material net 51 lower surface and be positioned at the screen pack 53 of described cutting plate 52 lower surface, described feeding-distribution device 5 is positioned at immediately below described reducing mechanism 4, described sub-material net 51 is in hollow round table-like, described sub-material net 51 upper end is fixedly connected with described corner block 23, described sub-material net 51 lower end is provided with through hole 511, described sub-material net 51 has filtration, described cutting plate 52 is in hollow round table-like, described cutting plate 52 upper end is fixedly connected with the lower surface of described sub-material net 51, described screen pack 53 is in hollow cylinder, described screen pack 53 upper end is fixedly connected with the lower surface of described cutting plate 52.
As shown in Figure 1, described whirligig 6 comprises the motor 61 of described base plate 1 upper surface, be positioned at the rotating shaft 62 of described motor 61 upper end, be positioned at the rotating disk 63 of described screen pack 53 inside, be positioned at the swash plate 64 of described base plate 1 upper surface and be positioned at the 3rd montant 65 of described base plate 1 upper surface, described whirligig 6 is positioned at immediately below described feeding-distribution device 5, described motor 61 lower surface is fixedly connected with the upper surface of described base plate 1, described rotating shaft 62 is in cylinder, described rotating shaft 62 is vertically placed, described rotating shaft 62 lower end is connected with described motor 61, described motor 61 is made to drive described rotating shaft 62 to rotate, described rotating disk 63 is in cylinder, described rotating disk 63 horizontal positioned, described rotating disk 63 is contained in the inside of described screen pack 53, the inner surface of described rotating disk 63 side and described screen pack 53 is slidably connected, described swash plate 64 cross section is L-type, described swash plate 64 one end is fixedly connected with the upper surface of described base plate 1, described swash plate 64 other end is fixedly connected with the lower surface of described rotating disk 63, described 3rd montant 65 is in vertical shape, described 3rd montant 65 upper end is fixedly connected with described swash plate 64, described 3rd montant 65 lower end is fixedly connected with the upper surface of described base plate 1.
As shown in Figure 1, when described crush maize device uses, first will the corn pulverized be needed to put in framework 2, then between the effect next part centre to centre of elastic plate 22, then at 41 first crushing wheels, 42 second crushing wheels, under the effect of 43 the 3rd crushing wheels, it is pulverized, then drop on sub-material net 51, then a part enters into below after the filtration of sub-material net 51, then slide on base plate 1 through swash plate 64, another part drops on rotating disk 63 through through hole 511, then starter motor 61, rotating disk 63 is rotated, the corn on rotating disk 63 is made to be thrown on screen pack 53, drop on after the filtration of screen pack 53 on swash plate 64, then drop on base plate 1, thus complete comminution process.So far, use procedure of the present invention is described.
The above; be only the specific embodiment of the present invention, but protection scope of the present invention is not limited thereto, any those skilled in the art are in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection scope of the present invention.Therefore, protection scope of the present invention should be as the criterion with the protection domain of described claim.

Claims (7)

1. a novel corn reducing mechanism, is characterized in that: described crush maize device comprises base plate, framework, be positioned at the fixture of the described framework left and right sides, be positioned at the reducing mechanism of described framework inside, the whirligig being positioned at the feeding-distribution device immediately below described reducing mechanism and being positioned at immediately below described feeding-distribution device, described base plate comprises the first support being positioned at described plate upper surface, and described framework comprises the plate that gathers materials being positioned at described framework inner surface, gather materials described in being positioned at the elastic plate of plate upper surface and the corner block of the plate lower surface that gathers materials described in being positioned at, and described fixture comprises the first brace being positioned at described framework side, be positioned at the second support of described first side face, be positioned at the first cross bar of described framework side, be positioned at the first montant of described first cross bar lower surface and be positioned at the second montant of described first rack upper surface, described reducing mechanism comprises the first crushing wheel being positioned at the left and right sides, be positioned at the first crushing tooth of described first crushing wheel upper surface, at described the second crushing wheel gathered materials between plate, be positioned at second crushing tooth on described second crushing wheel surface, be positioned at the 3rd crushing wheel of the left and right sides and be positioned at the 3rd crushing tooth on described first crushing wheel surface, described feeding-distribution device comprises the sub-material net being positioned at described corner block side, be positioned at the through hole of described sub-material end off the net, be positioned at the cutting plate on described sub-material surface off the net and be positioned at the screen pack of described cutting plate lower surface, described whirligig comprises the motor of described plate upper surface, be positioned at the rotating shaft of described motor upper end, be positioned at the rotating disk of described screen pack inside, the swash plate being positioned at described plate upper surface and the 3rd montant being positioned at described plate upper surface.
2. novel corn reducing mechanism according to claim 1, it is characterized in that: described base plate is cuboid, described floor level is placed, described first support is L-type, described framework is hollow cuboid, described framework is vertically placed, one end of described first support is fixedly connected with the side of described framework, the described plate upper surface that gathers materials is skewed, described elastic plate is bending, the cross section of described corner block is triangular in shape, and described corner block one side is fixedly connected with the inner surface of described framework.
3. novel corn reducing mechanism according to claim 2, it is characterized in that: described first brace is skewed, described second support is concave shape, one end of described second support is fixedly connected with the side of described framework, the lower end of described first brace is fixedly connected with the upper surface of described second support, described first cross bar is horizontal, and described first cross bar one end is fixedly connected with described first brace.
4. novel corn reducing mechanism according to claim 3, it is characterized in that: described first montant is cuboid, described first montant is vertically placed, described first montant lower end is fixedly connected with the upper surface of described second support, described second montant is vertical shape, described second montant upper end is fixedly connected with described second support, and described second montant lower end is fixedly connected with described first support.
5. novel corn reducing mechanism according to claim 4, it is characterized in that: described first crushing wheel is cylinder, described first crushing wheel horizontal positioned, described first crushing tooth is fixedly connected with described first crushing wheel, described first crushing wheel is positioned at immediately below described elastic plate, described second crushing wheel is cylinder, described second crushing wheel horizontal positioned, described second crushing tooth is fixedly connected with described second crushing wheel, described 3rd crushing wheel is cylinder, described 3rd crushing wheel horizontal positioned, described 3rd crushing tooth is fixedly connected with described 3rd crushing wheel.
6. novel corn reducing mechanism according to claim 5, is characterized in that: described sub-material is held on the net and is fixedly connected with described corner block, and described cutting plate is hollow round table-like, and described screen pack is hollow cylinder.
7. novel corn reducing mechanism according to claim 6, it is characterized in that: described rotating shaft is cylinder, described rotating shaft is vertically placed, described rotating disk is cylinder, described rotating disk horizontal positioned, and the inner surface of described rotating disk side and described screen pack is slidably connected, described swash plate cross section is L-type, described swash plate one end is fixedly connected with the lower surface of described rotating disk, and described 3rd montant is vertical shape, and described 3rd montant upper end is fixedly connected with described swash plate.
CN201520680221.8U 2015-09-05 2015-09-05 Novel maize is smashed device Expired - Fee Related CN205109727U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105057022A (en) * 2015-09-05 2015-11-18 周午贤 Novel maize grinding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105057022A (en) * 2015-09-05 2015-11-18 周午贤 Novel maize grinding device

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20160330

Termination date: 20160905