CN215029888U - Little ecological feed raw materials reducing mechanism - Google Patents
Little ecological feed raw materials reducing mechanism Download PDFInfo
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- CN215029888U CN215029888U CN202120651533.1U CN202120651533U CN215029888U CN 215029888 U CN215029888 U CN 215029888U CN 202120651533 U CN202120651533 U CN 202120651533U CN 215029888 U CN215029888 U CN 215029888U
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- rubbing crusher
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Abstract
The utility model relates to a little ecological feed raw materials reducing mechanism relates to feed reducing mechanism's field, and it includes the frame, and the rubbing crusher body sets up in the one end of frame, and the rubbing crusher body is provided with the feed inlet, and the frame is provided with the inlet pipe in the feed inlet department of rubbing crusher body, and the inlet pipe is removable to be set up in the one end of feed inlet, and the frame is provided with the feed cylinder in the other end lift of inlet pipe. This application drives the rising of inlet pipe through the rising of a feeding section of thick bamboo to make the volume increase of inlet pipe, be convenient for increase feed ingredient's load capacity, and then increase feed ingredient's input speed, make the efficiency that feed ingredient was smashed to the rubbing crusher body higher.
Description
Technical Field
The application relates to the field of fodder reducing mechanism, especially relate to a little ecological feed raw materials reducing mechanism.
Background
At present, the microecological feed is used as a novel feeding product, the microecological feed is scientifically fed in a mode of leading in probiotics, the mode is more scientific, the safety is higher, the meat quality safety of livestock can be guaranteed, the pollution of livestock excrement and the like to the environment can be greatly reduced, the green feeding concept is really embodied, the microecological feed is an important means for leading in green feeding, and the microecological feed raw materials are required to be crushed before the livestock is fed.
The current chinese patent with patent application number CN201922294620.1 provides a feed grinder, including rubbing crusher body, feed hopper, first crushing room, second crushing room, receive material room, large-scale rubbing crusher, driving motor, filter screen cloth a, small-size rubbing crusher, filter screen cloth B and operating panel, rubbing crusher body top is provided with feed hopper, and the inside of rubbing crusher body has set gradually first crushing room, second crushing room and has received the material room from top to bottom, the inside of first crushing room is provided with large-scale rubbing crusher, the large-scale rubbing crusher left end is provided with driving motor, the inside of second crushing room has set gradually filter screen cloth a, small-size rubbing crusher, filter screen cloth B from top to bottom, operating panel electric connection is in rubbing crusher body outer wall.
With respect to the related art in the above, the inventors consider that there are the following drawbacks: in the process of crushing the feed, the feed hopper has a fixed volume, so that the feed feeding speed is low, and the feed crushing efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model provides a little ecological feed raw materials reducing mechanism for improving the fixed lower problem that leads to fodder crushing efficiency of feed hopper's volume.
The application provides a little ecological feed raw materials reducing mechanism adopts following technical scheme:
the utility model provides a little ecological feed raw materials reducing mechanism, includes the frame, the rubbing crusher body set up in the one end of frame, the rubbing crusher body is provided with the feed inlet, the frame is provided with the inlet pipe in the feed inlet department of rubbing crusher body, the inlet pipe removable set up in the one end of feed inlet, the frame in the other end lift of inlet pipe is provided with a feeding section of thick bamboo.
Through adopting above-mentioned technical scheme, before the rubbing crusher body smashes feed ingredient, install the one end of inlet pipe in the feed inlet department of rubbing crusher body, the ascending other end altitude mixture that drives the inlet pipe of a feed section of thick bamboo, the altitude mixture of inlet pipe makes the volume increase of inlet pipe, thereby increase feed ingredient's load capacity, and then increase feed ingredient's input speed, it is higher to make the efficiency that feed ingredient was smashed to the rubbing crusher body, the rubbing crusher body smashes feed ingredient, make the surface area increase of little ecological feed, thereby make the nutrition of little ecological feed be convenient for absorb more.
Optionally, the inlet pipe is close to the one end of rubbing crusher body and the feed inlet of rubbing crusher body are fixed with the first mounting flange of mutual adaptation respectively, two a plurality of first installation screws are worn to be equipped with by the feed flange.
Through adopting above-mentioned technical scheme, the mutual butt of two first mounting flanges, rotatory first installation screw to the one end that makes the inlet pipe is installed in the feed inlet department of rubbing crusher body, and first flange makes the inlet pipe be convenient for install and dismantle on the rubbing crusher body with first installation screw.
Optionally, the inlet pipe is close to the one end of a feeding section of thick bamboo with a feeding section of thick bamboo is fixed with the second mounting flange of mutual adaptation respectively, two a plurality of second installation screws are worn to be equipped with by the second mounting flange.
Through adopting above-mentioned technical scheme, two mutual butts of second mounting flange, rotatory second installation screw makes two second mounting flanges reciprocal anchorages to make the other end of inlet pipe install in a feeding section of thick bamboo department, second flange and second installation screw make be convenient for install and dismantle between inlet pipe and the feeding section of thick bamboo.
Optionally, the frame is provided with a lifting rod, and two ends of the lifting rod are respectively and fixedly connected to the ground and the feeding cylinder.
Through adopting above-mentioned technical scheme, the lifter goes up and down in the frame, drives a feeding section of thick bamboo and goes up and down in the frame to the high production of a feeding section of thick bamboo of being convenient for changes.
Optionally, a tightening screw penetrates through the periphery of the lifting rod, and one end of the tightening screw abuts against the rack.
Through adopting above-mentioned technical scheme, when the height of lifter reached and predetermine the height, rotatory tight screw that supports makes to support the displacement that tight screw restriction lifter produced in frame department to highly restricting the lifter.
Optionally, a guide rod parallel to the lifting rod is fixed at the other end of the feeding cylinder.
Through adopting above-mentioned technical scheme, when the inlet pipe goes up and down along with the lifter, the guide bar leads the inlet pipe, and the skew that the restriction inlet pipe produced at the lift in-process makes the inlet pipe more stable.
Optionally, one end of the feeding cylinder, which is far away from the feeding pipe, is clamped with a baffle plate.
Through adopting above-mentioned technical scheme, the striker plate shelters from the upper end of a feeding section of thick bamboo, reduces the quantity that feed ingredient threw away, makes the fodder smash efficiency higher.
Optionally, the feed tube is provided as a hose.
Through adopting above-mentioned technical scheme, when the inlet pipe was the hose, made the volume of inlet pipe be convenient for increase to increase feed ingredient's load capacity.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the feed raw materials are crushed by the crusher body, and the surface area of the micro-ecological feed is increased, so that the nutrition of the micro-ecological feed is more convenient to absorb;
2. the feeding cylinder rises to drive the feeding pipe to rise, the height of the feeding pipe rises to increase the volume of the feeding pipe, and the pulverizer body pulverizes the feed raw materials to increase the surface area of the microecological feed, so that the nutrition of the microecological feed is more convenient to absorb;
3. the lifting rod is lifted on the frame to drive the feeding cylinder to lift on the frame, so that the height of the feeding cylinder is convenient to change.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present application;
fig. 2 is a schematic view of the overall structure of the retainer plate lifted in this embodiment.
Reference numerals: 1. a frame; 11. a support bar; 2. a pulverizer body; 21. a feed inlet; 3. a feed pipe; 31. a first mounting flange; 32. a first mounting screw; 4. a feeding cylinder; 41. a second mounting flange; 42. a second mounting screw; 5. a lifting rod; 51. tightly abutting the screw; 52. a guide bar; 53. a support plate; 6. a striker plate; 61. positioning blocks; 62. and (6) positioning a groove.
Detailed Description
The present application is described in further detail below with reference to figures 1-2.
The embodiment of the application discloses little ecological feed raw materials reducing mechanism. Referring to fig. 1, little ecological feedstuff reducing mechanism includes frame 1, frame 1 includes a plurality of bracing pieces 11, the quantity of bracing piece 11 is two in this embodiment, the quantity of bracing piece 11 is three and above in other embodiments, two bracing pieces 11 are parallel to each other, two bracing pieces 11's material is the same promptly, and the extending direction is parallel to each other, the one end of a plurality of bracing pieces 11 welds in ground, rubbing crusher body 2 sets up in the one end of frame 1, rubbing crusher body 2 is provided with feed inlet 21, feed inlet 21 is the fill type, the opening part of feed inlet 21 upper end sets up to circularly, make feed inlet 21 department be convenient for expand and increase.
Referring to fig. 1, frame 1 is provided with inlet pipe 3 in the feed inlet 21 department of rubbing crusher body 2, and inlet pipe 3 sets up to the hose, and the volume of inlet pipe 3 is convenient for increase along with the increase of length is limited thereupon, and inlet pipe 3 removable sets up in the one end of feed inlet 21.
Referring to fig. 1, in order to facilitate the disassembly of the feeding pipe 3, first mounting flanges 31 adapted to each other are respectively fixed at one end of the feeding pipe 3 close to the pulverizer body 2 and the feed port 21 of the pulverizer body 2, the threaded holes of the two first mounting flanges 31 correspond to each other, one of the first mounting flanges 31 is welded at the feed port 21 of the pulverizer body 2, the other first mounting flange 31 is welded at one end of the feeding pipe 3 through screws, a plurality of first mounting screws 32 are arranged in the two first mounting flanges 31 in a penetrating manner, the first mounting screws 32 are respectively arranged in the two first mounting screws 32 in a penetrating manner and extend out of the first mounting flanges 31 in a threaded manner, a nut (not marked in the drawing) is arranged at one end extending out of the first mounting flanges 31 in a penetrating manner, so that the feed port 21 is connected and installed through the first mounting flanges 31 and the first mounting screws 32.
Referring to fig. 1, frame 1 is provided with a feed cylinder 4 in the other end lift of inlet pipe 3, a feed cylinder 4 sets up to the steel drum, the one end that inlet pipe 3 is close to feed cylinder 4 is fixed with the second mounting flange 41 of mutual adaptation respectively with feed cylinder 4, a plurality of second mounting screws 42 are worn to be equipped with by two second mounting flanges 41, second mounting flange 41 is the flange the same with first mounting flange 31, first mounting flange 31 welds respectively in the both ends of inlet pipe 3 with second mounting flange 41, another second mounting flange 41 welds and is close to the one end of inlet pipe 3 with feed cylinder 4, make feed cylinder 4 and inlet pipe 3 be convenient for carry out interconnect and installation.
Referring to fig. 1, in order to make feeding section of thick bamboo 4 be convenient for rise and descend, frame 1 is provided with lifter 5, both ends difference fixed connection in ground and feeding section of thick bamboo 4 of lifter 5, it is equipped with lifter 5 to overlap respectively on two bracing pieces 11, the inside of lifter 5 is the cavity shape, lifter 5 uses the axis of feeding section of thick bamboo 4 to be axisymmetric setting as the symmetry axis, lifter 5's one end welded connection is in the periphery wall of feeding section of thick bamboo 4, thereby restrict the position of feeding section of thick bamboo 4, feeding section of thick bamboo 4 ear area periphery wall is fixed with backup pad 53 promptly, the one end welded connection who keeps away from feeding section of thick bamboo 4 of backup pad 53 is in the upper end of lifter 5, make lifter 5 support and fix feeding section of thick bamboo 4.
Referring to fig. 1, a tightening screw 51 is inserted through the periphery of the lifting rod 5, one end of the tightening screw 51 is pressed against the frame 1, that is, a plurality of screw holes are formed in the periphery of the lifting rod 5, the tightening screw 51 is inserted into the screw holes, the tightening screw 51 is rotated to extend in the screw holes, one end of the extended lifting rod 5 is pressed against the support rod 11, and the height of the lifting rod 5 on the support rod 11 is limited.
Referring to fig. 1, a guide rod 52 parallel to the lifting rod 5 is fixed at the other end of the feeding cylinder 4, the guide rod 52 and the lifting rod 5 are arranged in an axial symmetry manner, the symmetry axis is the central axis of the feeding cylinder 4, a support plate 53 is welded on the upper end face of the guide rod 52, the other end of the support plate 53 is welded on the other side of the peripheral wall of the feeding cylinder 4, and the guide rod 52 reduces the offset generated in the lifting process of the feeding cylinder 4.
Referring to fig. 1, the one end joint that feed cylinder 4 kept away from inlet pipe 3 is provided with striker plate 6, and striker plate 6 is the steel plectane, and the diameter size of striker plate 6 is the same with the diameter size of inlet pipe 3, makes striker plate 6 can carry out the shutoff to the upper end opening of inlet pipe 3, reduces the loss of feed ingredient in crushing in-process production.
Referring to fig. 1 and 2, in order to realize the joint setting of striker plate 6 on feed cylinder 4, reduce the skew that striker plate 6 produced, the one end that striker plate 6 is close to feed cylinder 4 is provided with locating piece 61, locating piece 61 sets up to rectangular steel cubic, the locating slot 62 has been seted up to the upper end opening part of feed cylinder 4 corresponding locating piece 61, locating piece 61 pegs graft and sets up in locating slot 62 department, the cross section that makes locating slot 62 sets up to the rectangle the same with locating piece 61, when locating piece 61 wears to locate in locating slot 62, locating piece 61 and locating slot 62 reduce the skew that striker plate 6 produced on feed cylinder 4.
The implementation principle of little ecological feed raw materials reducing mechanism of this application embodiment is: before rubbing crusher body 2 smashes feed ingredient, install the one end of inlet pipe 3 through first mounting flange 31 and first installation screw 32 in the feed inlet 21 department of rubbing crusher body 2, manual operation lifter 5 rises, the lift of lifter 5 rises and drives the high increase of the inlet pipe 3 other end, the other end of inlet pipe 3 highly increases the volume increase that makes inlet pipe 3, rotatory tight screw 51 that supports, make lifter 5 highly fixed in frame 1 department, make the high increase after-fixing of inlet pipe 3, thereby increase feed ingredient's load capacity, and then increase feed ingredient's input speed, the efficiency that makes rubbing crusher body 2 smash feed ingredient is higher, rubbing crusher body 2 smashes feed ingredient, make the surface area increase of little ecological feed, thereby make the nutrition of little ecological feed be convenient for absorb more.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides a little ecological feed raw materials reducing mechanism which characterized in that: including frame (1), rubbing crusher body (2) set up in the one end of frame (1), rubbing crusher body (2) are provided with feed inlet (21), frame (1) is provided with inlet pipe (3) in feed inlet (21) department of rubbing crusher body (2), inlet pipe (3) removable set up in the one end of feed inlet (21), frame (1) in the other end lift of inlet pipe (3) is provided with feeding section of thick bamboo (4).
2. The micro-ecological raw feed material crushing device according to claim 1, characterized in that: the one end that inlet pipe (3) are close to rubbing crusher body (2) is fixed with first mounting flange (31), two of mutual adaptation respectively with feed inlet (21) of rubbing crusher body (2) first mounting flange (31) are worn to be equipped with a plurality of first installation screws (32).
3. The micro-ecological raw feed material crushing device according to claim 2, characterized in that: the inlet pipe (3) are close to the one end of a feeding section of thick bamboo (4) with a feeding section of thick bamboo (4) are fixed with second mounting flange (41), two of mutual adaptation respectively a plurality of second installation screws (42) are worn to be equipped with by second mounting flange (41).
4. The micro-ecological raw feed material crushing device according to claim 1, characterized in that: the machine frame (1) is provided with a lifting rod (5), and two ends of the lifting rod (5) are respectively and fixedly connected to the ground and the feeding cylinder (4).
5. The micro-ecological feedstuff crushing device according to claim 4, characterized in that: and a tightening screw (51) penetrates through the periphery of the lifting rod (5), and one end of the tightening screw (51) is abutted against the rack (1).
6. The micro-ecological feedstuff crushing device according to claim 4, characterized in that: and a guide rod (52) parallel to the lifting rod (5) is fixed at the other end of the feeding cylinder (4).
7. The micro-ecological raw feed material crushing device according to claim 1, characterized in that: a feeding section of thick bamboo (4) department joint is provided with striker plate (6), striker plate (6) are close to the one end of a feeding section of thick bamboo (4) is provided with locating piece (61), a feeding section of thick bamboo (4) correspond locating piece (61) have seted up constant head tank (62), locating piece (61) peg graft set up in constant head tank (62) department.
8. The micro-ecological raw feed material crushing device according to claim 1, characterized in that: the feeding pipe (3) is a hose.
Priority Applications (1)
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CN202120651533.1U CN215029888U (en) | 2021-03-30 | 2021-03-30 | Little ecological feed raw materials reducing mechanism |
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CN202120651533.1U CN215029888U (en) | 2021-03-30 | 2021-03-30 | Little ecological feed raw materials reducing mechanism |
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CN215029888U true CN215029888U (en) | 2021-12-07 |
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CN202120651533.1U Active CN215029888U (en) | 2021-03-30 | 2021-03-30 | Little ecological feed raw materials reducing mechanism |
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2021
- 2021-03-30 CN CN202120651533.1U patent/CN215029888U/en active Active
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