CN212040649U - Wet maize fodder breaker that stores up - Google Patents
Wet maize fodder breaker that stores up Download PDFInfo
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- CN212040649U CN212040649U CN201922213028.4U CN201922213028U CN212040649U CN 212040649 U CN212040649 U CN 212040649U CN 201922213028 U CN201922213028 U CN 201922213028U CN 212040649 U CN212040649 U CN 212040649U
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Abstract
The utility model discloses a wet maize fodder breaker that stores up, including primary broken mechanism, primary conveying mechanism, the broken conveying mechanism of wind-force, ejection of compact conveying mechanism, spraying mechanism and running gear, wherein: the primary crushing mechanism, the primary conveying mechanism and the wind power crushing conveying mechanism are fixedly connected from top to bottom in sequence; the outlet of the wind power crushing conveying mechanism is fixedly connected with the inlet of the discharging conveying mechanism; the wind power crushing and conveying mechanism is fixedly connected to the traveling mechanism; the discharging conveying mechanism comprises a spiral conveying device and a supporting baffle; the two spiral conveying devices are respectively communicated and fixedly connected with the feed inlet and the connecting pipeline; the supporting baffle is fixedly connected to the travelling mechanism; the walking mechanism is fixedly connected with a spraying mechanism; the traveling mechanism is positioned under the wind power crushing and conveying mechanism, the discharging and conveying mechanism and the spraying mechanism. Has the advantages that: reasonable structure, free movement, convenient use, stable operation, high automation degree and excellent crushing effect.
Description
The technical field is as follows:
the invention relates to the field of machinery, in particular to a wet storage corn feed crusher.
Background art:
corn is an annual cross-pollinated plant with the same male and female plants, has tall and big plants and strong stems, is an important food crop and feed crop, is also the crop with the highest total yield all over the world, and has the planting area and the total yield which are second to rice and wheat. Corn has been praised as a long-life food all the time, contains rich protein, fat, vitamins, trace elements, cellulose and the like, and has great potential for developing high-nutrition and high-biological function foods. However, as the inheritance is complex and the variety of the variation is rich, the defects of overlong period, overlarge variation coefficient and influence on the growth and development of filial generation exist in the conventional breeding process, and the modern biological breeding technology not only overcomes the defects and shortcomings, but also improves the breeding speed and quality.
When the wet corn is used as a feed, the harvested wet corn with grains and rods needs to be crushed and smashed, and the wet corn with grains and rods is convenient for cattle, sheep and other livestock to eat after a fermentation process; when the fermentation is carried out, if the outer skin of the wet corn kernels is not broken, the fermentation process cannot be finished; if the livestock eat the corn kernels with incomplete broken kernels, the digestive capacity of the livestock is insufficient to absorb nutrient substances, and the energy is wasted; therefore, the crushing quality of the wet corn kernels and the whole grain size of the corn kernels are particularly critical.
The invention content is as follows:
the invention aims to provide the wet storage corn feed crusher which is reasonable in structure, free to move, convenient to use, stable in operation, high in automation degree, excellent in crushing effect, adjustable in crushing force and power and capable of spraying strains.
The invention is realized by the following technical scheme:
the invention relates to a wet storage corn feed crusher, which comprises a primary crushing mechanism, a primary conveying mechanism, a wind power crushing conveying mechanism, a discharging conveying mechanism, a spraying mechanism and a traveling mechanism, wherein: the primary crushing mechanism, the primary conveying mechanism and the wind power crushing conveying mechanism are fixedly connected from top to bottom in sequence; the outlet of the wind power crushing conveying mechanism is fixedly connected with the inlet of the discharging conveying mechanism; the wind power crushing and conveying mechanism comprises a crushing bin, a hammer mechanism, a bottom screen, a blade wheel, a discharging baffle, a material guiding port, a connecting pipeline and a main motor; the crushing bin is a cylindrical body; the inlet of the crushing bin is communicated and fixedly connected with the outlet of the primary conveying mechanism; the hammer mechanism, the bottom screen, the blade wheel and the discharge baffle are fixed inside the crushing bin; the hammer mechanism is coaxially and movably connected with the crushing bin; the bottom screen is in a semi-cylindrical shape; the bottom screen is movably connected with the crushing bin, and the minimum distance between the bottom screen and the hammer mechanism is zero to three centimeters; the vane wheel is coaxially and fixedly connected with one end of the hammer mechanism; a feed inlet is arranged on the crushing bin and close to the blade wheel; the outlet of the feed inlet is respectively communicated and fixedly connected with the inlet of the connecting pipeline and the discharge conveying mechanism; the outlet of the connecting pipeline is communicated and fixedly connected with the discharging conveying mechanism; a discharge baffle is fixedly connected to the bottom screen at a position between the bottom screen and the blade wheel; the blade wheel is arranged on one surface close to the hammer mechanism, and the blades of the blade wheel are provided with circular arc notches; the hammer mechanism is connected with the main motor in a matching way and rotates along with the rotation of the main motor; the wind power crushing and conveying mechanism is fixedly connected to the traveling mechanism; the discharging conveying mechanism comprises a spiral conveying device and a supporting baffle; the two spiral conveying devices are respectively communicated and fixedly connected with the feed inlet and the connecting pipeline; the supporting baffle is fixedly connected to the travelling mechanism and is positioned right below the spiral conveying device; the walking mechanism is fixedly connected with a spraying mechanism; the traveling mechanism is positioned under the wind power crushing and conveying mechanism, the discharging and conveying mechanism and the spraying mechanism.
The wet storage corn feed crusher comprises: one end of the wind power crushing conveying mechanism, which is far away from the feed port, above the crushing bin is communicated and fixedly connected with an outlet of the primary conveying mechanism; the feed inlet is positioned on the side surface of the crushing bin of the wind power crushing conveying mechanism; the feed inlet is positioned on the rotating plane of the blade wheel and is communicated with the crushing bin to form a complete cavity; a secondary air inlet is arranged on the end surface of the crushing bin far away from the blade wheel; the blades of the blade wheel are vertically arranged with the rotating plane; the arc-shaped gaps of the blades of the blade wheel are arranged in a circumferential array along the central axis of the blade wheel; the discharge baffle is a semicircular ring plate; the discharging baffle is coaxially and fixedly connected with the bottom screen; the discharge baffle is fixedly connected to the end surface of the bottom screen; the diameter of the outer ring of the discharge baffle is larger than that of the bottom screen, and the diameter of the inner ring is smaller than that of the bottom screen.
The wet storage corn feed crusher comprises: the spiral conveying device comprises a discharging auger, a discharging pipeline and a discharging port; the discharging auger is coaxially and fixedly connected inside the discharging pipeline and rotates along the central axis of the discharging auger under the driving of the motor; the discharge port is arranged on the discharge pipeline and is positioned at the tail of one end far away from the wind power crushing and conveying mechanism; the spraying mechanism comprises a liquid storage tank, a pump and a spraying pipeline; the liquid storage tank is fixedly connected to the travelling mechanism; the liquid storage tank is sequentially connected with the pump and the spraying pipeline in a matching way; the spraying pipeline extends from the inside of the liquid storage tank to the discharge ports of the two spiral conveying devices; the spraying pipeline is fixedly connected with the liquid storage tank and the spiral conveying device.
The wet storage corn feed crusher comprises: the primary crushing mechanism comprises a hopper, a crushing roller, a gearbox, a primary motor and a primary crushing bin; a primary crushing bin is fixedly connected below the hopper; the primary crushing bin is a rectangular bin body with an upper part and a lower part which are completely opened; the crushing roller is fixedly connected inside the primary crushing bin; the first-stage motor is connected with the gearbox in a matching way; the gear box is connected with the crushing roller in a matching way through a chain gear; the primary conveying mechanism comprises a conveying bin, a conveying auger, a conveying motor and a primary air inlet; the conveying bin is fixedly connected with the primary crushing bin; the conveying bin is positioned under the primary crushing bin; a conveying auger is fixedly connected inside the conveying bin; a material outlet is arranged at the position of the conveying tail end of the conveying auger on the bottom surface of the conveying bin and is communicated and fixedly connected with the crushing bin of the wind power crushing conveying mechanism; the conveying auger is connected with the conveying motor in a matching way; and a plurality of primary air inlets are arranged on two side surfaces of the conveying bin.
The wet storage corn feed crusher comprises: the walking mechanism comprises a traction frame, a support frame, a front wheel and a rear wheel; the support frame is fixedly connected with the wind power crushing and conveying mechanism, the discharging and conveying mechanism and the spraying mechanism; the supporting frame is positioned under the wind power crushing conveying mechanism, the discharging conveying mechanism and the spraying mechanism; the traction frame and the support frame are positioned on the same plane and fixedly connected with each other; the front end of the traction frame is assembled and connected with a front wheel; a rear wheel is fixedly connected below one end of the support frame, which is far away from the traction frame; the front wheels are steering wheels; the rear wheel is a directional wheel; a plurality of hydraulic supporting legs are fixedly connected to the traction frame and the supporting frame.
The wet storage corn feed crusher comprises: the shell mechanism comprises a main shell, a primary conveying mechanism baffle and a main motor baffle; the main shell comprises a side plate, a front baffle and an upper baffle; the number of the side plates is two, and the side plates are vertically and fixedly connected with the travelling mechanism; the front baffle is vertically and fixedly connected with the travelling mechanism; the upper baffle is vertically and fixedly connected with the side plate and the front baffle and is positioned above the side plate and the front baffle; the two side plates, the front baffle, the upper baffle and the supporting baffle form a rectangular box body with an opening at the lower part, and the wind power crushing and conveying mechanism is positioned in the box body; the baffle of the primary conveying mechanism is a rectangular fence; the baffle of the primary conveying mechanism is fixedly connected to the periphery of the primary conveying mechanism; the main motor baffle is fixedly connected to the side plate of the main shell and is a motor chain baffle.
The wet storage corn feed crusher comprises: the hammer mechanism comprises a hammer shaft and a hammer; a plurality of hammer sheets are uniformly fixed on the hammer sheet shaft along the axial direction in an array manner.
The wet storage corn feed crusher comprises: the crushing roller consists of two rollers; the two rollers of the crushing roller are meshed through gears and rotate oppositely.
The invention has the beneficial effects that: reasonable structure, free movement, convenient use, stable operation, high automation degree, excellent crushing effect, adjustable crushing force and power, and can spray strains and realize different crushing and storage requirements of wet stored corns.
Description of the drawings:
FIG. 1: the invention is a schematic three-dimensional structure;
FIG. 2: another schematic perspective structure of the present invention;
FIG. 3: the invention is a partial structure perspective view;
FIG. 4: the other part of the structure of the invention is a schematic perspective view;
FIG. 5: the cross-sectional view of the invention;
FIG. 6: another cross-sectional view of the present invention;
FIG. 7: the invention discloses a structural schematic diagram of a wind power crushing and conveying mechanism;
in the figure: 1-a primary crushing mechanism, 2-a primary conveying mechanism, 3-a wind power crushing conveying mechanism, 4-a discharging conveying mechanism, 5-a spraying mechanism, 6-a traveling mechanism, 7-a shell mechanism, 8-a hydraulic supporting leg, 11-a hopper, 12-a crushing roller, 13-a gearbox, 14-a first-level motor, 21-a conveying bin, 22-a conveying auger, 23-a conveying motor, 24-a primary air inlet, 31-a hammer mechanism, 32-a bottom screen, 33-a vane wheel, 34-a discharging baffle, 35-a discharging port, 36-a connecting pipeline, 37-a main motor, 41-a spiral conveying device, 42-a supporting baffle, 411-a discharging auger, 412-a discharging pipeline, 413-a discharging port, 61-a traction frame, a conveying bin, 62-support frame, 63-front wheel, 64-rear wheel, 71-main housing, 72-primary conveying mechanism baffle, 73-main motor baffle.
The specific implementation mode is as follows:
the invention is further described with reference to the following figures and detailed description:
example (b): as shown in fig. 1-7, a wet storage corn feed crusher comprises a primary crushing mechanism 1, a primary conveying mechanism 2, a wind power crushing conveying mechanism 3, a discharging conveying mechanism 4, a spraying mechanism 5 and a traveling mechanism 6, wherein: the primary crushing mechanism 1, the primary conveying mechanism 2 and the wind power crushing conveying mechanism 3 are fixedly connected from top to bottom in sequence; the outlet of the wind power crushing and conveying mechanism 3 is fixedly connected with the inlet of the discharging and conveying mechanism 4; the wind power crushing conveying mechanism 3 comprises a crushing bin, a hammer mechanism 31, a bottom screen 32, a vane wheel 33, a discharge baffle 34, a material guiding port 35, a connecting pipeline 36 and a main motor 37; the crushing bin is a cylindrical body; the inlet of the crushing bin is communicated and fixedly connected with the outlet of the primary conveying mechanism 2; the hammer mechanism 31, the bottom screen 32, the vane wheel 33 and the discharge baffle 34 are fixed inside the crushing bin; the hammer mechanism 31 is coaxially and movably connected with the crushing bin; the bottom screen 32 is semi-cylindrical; the bottom screen 32 is movably connected with the crushing bin, and the minimum distance between the bottom screen and the hammer mechanism 31 is zero to three centimeters; the vane wheel 33 is coaxially and fixedly connected with one end of the hammer mechanism 31; a feed inlet 35 is arranged on the crushing bin and close to the vane wheel 33; the outlet of the feed inlet 35 is respectively communicated and fixedly connected with the inlet of the connecting pipeline 36 and the discharge conveying mechanism 4; the outlet of the connecting pipeline 36 is communicated and fixedly connected with the discharging conveying mechanism 4; a discharge baffle 34 is fixedly connected to the bottom screen 32 at a position between the bottom screen 32 and the vane wheel 33; the blade wheel 33 is arranged on one surface close to the hammer mechanism 31, and the blades of the blade wheel are provided with circular arc notches; the hammer mechanism 31 is connected with the main motor 37 in an assembling way and rotates along with the rotation of the main motor; the wind power crushing and conveying mechanism 3 is fixedly connected to the traveling mechanism 6; the discharging conveying mechanism 4 comprises a spiral conveying device 41 and a supporting baffle 42; the number of the spiral conveying devices 41 is two, and the two spiral conveying devices are respectively communicated and fixedly connected with the material guiding port 35 and the connecting pipeline 36; the supporting baffle 42 is fixedly connected to the travelling mechanism 6 and is positioned right below the spiral conveying device 41; the travelling mechanism 6 is fixedly connected with a spraying mechanism 5; the traveling mechanism is positioned right below the wind power crushing and conveying mechanism 3, the discharging and conveying mechanism 4 and the spraying mechanism 5.
Wherein: one end of the wind power crushing conveying mechanism 3, which is above the crushing bin and is far away from the feed port 35, is communicated and fixedly connected with the outlet of the primary conveying mechanism 2; the feed port 35 is positioned on the side surface of the crushing bin of the wind power crushing conveying mechanism 3; the material introducing port 35 is positioned on the rotating plane of the vane wheel 33 and is communicated with the crushing bin to form a complete cavity; a secondary air inlet is arranged on the end surface of the crushing bin far away from the vane wheel 33; the blades of the blade wheel 33 are arranged perpendicular to the plane of rotation; the arc-shaped notches of the blades of the blade wheel 33 are arranged in a circumferential array along the central axis of the blade wheel; the discharge baffle 34 is a semicircular ring plate; the discharge baffle 34 is coaxially and fixedly connected with the bottom screen 32; the discharge baffle 34 is fixedly connected to the end surface of the bottom screen 32; the diameter of the outer ring of the discharge baffle 34 is larger than that of the bottom screen 32, and the diameter of the inner ring is smaller than that of the bottom screen 32.
Wherein: the spiral conveying device 41 comprises a discharging auger 411, a discharging pipeline 412 and a discharging port 413; the discharging auger 411 is coaxially and fixedly connected inside the discharging pipeline 412 and rotates along the central axis of the discharging auger under the driving of a motor; the discharge port 413 is arranged on the discharge pipeline 412 and is positioned at the tail of one end far away from the wind power crushing conveying mechanism 3; the spraying mechanism 5 comprises a liquid storage tank, a pump and a spraying pipeline; the liquid storage tank is fixedly connected to the traveling mechanism 6; the liquid storage tank is sequentially connected with the pump and the spraying pipeline in a matching way; the spraying pipeline extends from the inside of the liquid storage tank to the discharge ports 413 of the two spiral conveying devices 41; the spray pipe is fixedly connected with the reservoir and the screw conveyor 41.
Wherein: the primary crushing mechanism 1 comprises a hopper 11, a crushing roller 12, a gearbox 13, a primary motor 14 and a primary crushing bin; a primary crushing bin is fixedly connected below the hopper 11; the primary crushing bin is a rectangular bin body with an upper part and a lower part which are completely opened; the crushing roller 12 is fixedly connected inside the primary crushing bin; the primary motor 14 is connected with the gearbox 13 in an assembling way; the gear box 13 is connected with the crushing roller 12 in a matching way through a chain gear; the primary conveying mechanism 2 comprises a conveying bin 21, a conveying auger 22, a conveying motor 23 and a primary air inlet 24; the conveying bin 21 is fixedly connected with the primary crushing bin; the conveying bin 21 is positioned right below the primary crushing bin; a conveying auger 22 is fixedly connected inside the conveying bin 21; a material outlet is arranged at the position of the conveying tail end of the conveying auger 22 on the bottom surface of the conveying bin 21 and is communicated and fixedly connected with the crushing bin of the wind power crushing conveying mechanism 3; the conveying auger 22 is connected with a conveying motor 23 in a matching way; a plurality of primary air inlets 24 are provided on both side surfaces of the conveying bin 21.
Wherein: the travelling mechanism 6 comprises a traction frame 61, a support frame 62, a front wheel 63 and a rear wheel 64; the supporting frame 62 is fixedly connected with the wind power crushing and conveying mechanism 3, the discharging and conveying mechanism 4 and the spraying mechanism 5; the supporting frame 62 is positioned right below the wind power crushing and conveying mechanism 3, the discharging and conveying mechanism 4 and the spraying mechanism 5; the traction frame 61 and the support frame 62 are positioned on the same plane and fixedly connected with each other; the front end of the traction frame 61 is assembled and connected with a front wheel 63; a rear wheel 64 is fixedly connected below one end of the support frame 62 far away from the traction frame 61; the front wheels 63 are steering wheels; the rear wheel 64 is a directional wheel; a plurality of hydraulic support legs 8 are fixedly connected to the traction frame 61 and the support frame 62.
Wherein: the housing mechanism 7 includes a main housing 71, a primary conveying mechanism shutter 72, and a main motor shutter 73; the main housing 71 includes side plates, a front baffle, and an upper baffle; the number of the side plates is two, and the side plates are vertically and fixedly connected with the travelling mechanism 6; the front baffle is vertically and fixedly connected with the travelling mechanism 6; the upper baffle is vertically and fixedly connected with the side plate and the front baffle and is positioned above the side plate and the front baffle; the two side plates, the front baffle, the upper baffle and the supporting baffle 42 form a rectangular box body with an opening at the lower part, and the wind power crushing and conveying mechanism 3 is positioned in the box body; the primary transport mechanism barrier 72 is a rectangular enclosure; the primary conveying mechanism baffle 72 is fixedly connected to the periphery of the primary conveying mechanism 2; the main motor baffle 73 is fixedly connected to the side plate of the main housing 71 and is a motor chain baffle.
Wherein: the hammer mechanism comprises a hammer shaft and a hammer; a plurality of hammer sheets are uniformly fixed on the hammer sheet shaft along the axial direction in an array manner.
Wherein: the crushing roller 12 consists of two rollers; the two rollers of the crushing roller 12 are meshed by gears and rotate oppositely.
When in work: the invention is moved to a proper working position by a mode that a traction frame 61 of a walking mechanism 6 is dragged by a power machine, then a plurality of hydraulic support legs 8 are lifted, the invention is jacked up, and the invention enters a standby state.
Then, the power switch of the present invention is turned on to operate the apparatus, and at this time, the material is charged from the hopper 11 of the primary crushing mechanism 1, and the material sequentially passes through the crushing roller 12, the conveying auger 22 of the primary conveying mechanism 2, the hammer mechanism 31 of the wind crushing conveying mechanism 3, the discharge baffle 34, the impeller 33, the material guiding port 35, and the connecting pipe 36, enters the discharge pipes 412 of the two screw conveying devices 41, is lifted by the driving of the discharge auger 411, and is discharged from the discharge port 413.
Wherein, after the material is crushed by the crushing roller 12, the material is primarily crushed, then the material is conveyed to the crushing bin of the wind power crushing mechanism 3 by the primary conveying mechanism 2, and reaches the position of the blade wheel 33 along the hammer mechanism 31 under the negative pressure formed by the rotation of the blade wheel 33, in the process, the material is continuously beaten and crushed to form powder, and the relatively complete material particles are blocked by the discharging baffle plate 34; wherein, the design of blade wheel 33 arc breach, then let the material that the breakage was accomplished more smoothly blow into the draw-in mouth 35 from blade wheel 33 to get into ejection of compact conveying mechanism 4, accomplish breakage, transport action.
The height of the bottom screen 32 is adjusted to adjust the frequency of hammering the material in the crushing bin by the hammer mechanism 31, so that the crushing strength and power can be adjusted.
The primary air inlet 34 is formed in the conveying bin 21, the secondary air inlet is formed in the crushing bin of the wind power crushing and conveying mechanism 3, materials are conveyed by wind power and negative pressure in the wind power crushing and conveying mechanism 3, and the arrangement of the primary air inlet 34 and the secondary air inlet ensures the formation of negative pressure and avoids the blockage of the materials; meanwhile, the primary air inlets 34 and the secondary air inlets are provided with adjustable cover plates to adjust the air inflow.
Wherein, the crushing roller 12 is driven by a first-stage motor to rotate through a gearbox 13; the conveying auger 22 is driven to rotate by a conveying motor 23; the hammer mechanism 31 and the vane wheel 33 are rotated by the main motor.
Finally, if the crushed material needs to be added with bacteria liquid or sprayed with liquid, the pump of the spraying mechanism 5 is turned on, the liquid in the liquid storage tank is conveyed to the position of the discharge port 413 of the spiral conveying device 41 along the spraying pipeline, and the liquid in the liquid storage tank is uniformly sprayed on the material discharged from the discharge port 413 through the spray head, so that the material mixing action is realized.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.
Claims (8)
1. The utility model provides a wet maize fodder breaker that stores up, includes primary broken mechanism (1), primary conveying mechanism (2), the broken conveying mechanism of wind-force (3), ejection of compact conveying mechanism (4), spray mechanism (5) and running gear (6), its characterized in that: the primary crushing mechanism (1), the primary conveying mechanism (2) and the wind power crushing conveying mechanism (3) are fixedly connected from top to bottom in sequence; the outlet of the wind power crushing and conveying mechanism (3) is fixedly connected with the inlet of the discharging and conveying mechanism (4); the wind power crushing and conveying mechanism (3) comprises a crushing bin, a hammer mechanism (31), a bottom screen (32), a blade wheel (33), a discharging baffle plate (34), a material guiding opening (35), a connecting pipeline (36) and a main motor (37); the crushing bin is a cylindrical body; the inlet of the crushing bin is communicated and fixedly connected with the outlet of the primary conveying mechanism (2); the hammer mechanism (31), the bottom screen (32), the blade wheel (33) and the discharging baffle (34) are fixed inside the crushing bin; the hammer mechanism (31) is coaxially and movably connected with the crushing bin; the bottom screen (32) is semi-cylindrical; the bottom screen (32) is movably connected with the crushing bin, and the minimum distance between the bottom screen and the hammer mechanism (31) is zero to three centimeters; the vane wheel (33) is coaxially and fixedly connected with one end of the hammer mechanism (31); a feed inlet (35) is arranged on the crushing bin and close to the blade wheel (33); the outlet of the feed inlet (35) is respectively communicated and fixedly connected with the inlet of the connecting pipeline (36) and the discharge conveying mechanism (4); the outlet of the connecting pipeline (36) is communicated and fixedly connected with the discharging conveying mechanism (4); a discharge baffle (34) is fixedly connected to the bottom screen (32) at a position between the bottom screen (32) and the vane wheel (33); the blade wheel (33) is arranged on one surface close to the hammer mechanism (31), and the blades of the blade wheel are provided with circular arc notches; the hammer mechanism (31) is connected with the main motor (37) in an assembling way and rotates along with the rotation of the hammer mechanism; the wind power crushing and conveying mechanism (3) is fixedly connected to the traveling mechanism (6); the discharging conveying mechanism (4) comprises a spiral conveying device (41) and a supporting baffle (42); the number of the spiral conveying devices (41) is two, and the two spiral conveying devices are respectively communicated and fixedly connected with the material introducing port (35) and the connecting pipeline (36); the supporting baffle (42) is fixedly connected to the travelling mechanism (6) and is positioned right below the spiral conveying device (41); the walking mechanism (6) is fixedly connected with a spraying mechanism (5); the traveling mechanism is positioned under the wind power crushing and conveying mechanism (3), the discharging and conveying mechanism (4) and the spraying mechanism (5).
2. The wet storage corn feed crusher of claim 1, further comprising: one end of the wind power crushing conveying mechanism (3) above the crushing bin and far away from the feed port (35) is communicated and fixedly connected with the outlet of the primary conveying mechanism (2); the feed inlet (35) is positioned on the side surface of the crushing bin of the wind power crushing conveying mechanism (3); the feed port (35) is positioned on the rotating plane of the blade wheel (33) and is communicated with the crushing bin to form a complete cavity; a secondary air inlet is formed in the end face, far away from the blade wheel (33), of the crushing bin; the blades of the blade wheel (33) are arranged perpendicular to the rotating plane; the arc-shaped notches of the blades of the blade wheel (33) are arranged in a circumferential array along the central axis of the blade wheel; the discharge baffle (34) is a semicircular plate; the discharging baffle (34) is coaxially and fixedly connected with the bottom screen (32); the discharge baffle (34) is fixedly connected to the end face of the bottom screen (32); the diameter of the outer ring of the discharging baffle plate (34) is larger than that of the bottom screen (32), and the diameter of the inner ring of the discharging baffle plate is smaller than that of the bottom screen (32).
3. The wet storage corn feed crusher of claim 2, further comprising: the spiral conveying device (41) comprises a discharging auger (411), a discharging pipeline (412) and a discharging hole (413); the discharging auger (411) is coaxially and fixedly connected inside the discharging pipeline (412) and rotates along the central axis of the discharging auger under the driving of the motor; the discharge port (413) is arranged on the discharge pipeline (412) and is positioned at the tail of one end far away from the wind power crushing and conveying mechanism (3); the spraying mechanism (5) comprises a liquid storage tank, a pump and a spraying pipeline; the liquid storage tank is fixedly connected to the traveling mechanism (6); the liquid storage tank is sequentially connected with the pump and the spraying pipeline in a matching way; the spraying pipeline extends from the inside of the liquid storage tank to the discharge holes (413) of the two spiral conveying devices (41); the spraying pipeline is fixedly connected with the liquid storage tank and the spiral conveying device (41).
4. A wet stored corn feed crusher as claimed in claim 3, wherein: the primary crushing mechanism (1) comprises a hopper (11), a crushing roller (12), a gearbox (13), a primary motor (14) and a primary crushing bin; a primary crushing bin is fixedly connected below the hopper (11); the primary crushing bin is a rectangular bin body with an upper part and a lower part which are completely opened; the crushing roller (12) is fixedly connected inside the primary crushing bin; the primary motor (14) is connected with the gearbox (13) in a matching way; the gearbox (13) is connected with the crushing roller (12) in a matching way through a chain gear; the primary conveying mechanism (2) comprises a conveying bin (21), a conveying auger (22), a conveying motor (23) and a primary air inlet (24); the conveying bin (21) is fixedly connected with the primary crushing bin; the conveying bin (21) is positioned right below the primary crushing bin; a conveying auger (22) is fixedly connected inside the conveying bin (21); a material outlet is arranged at the position of the conveying tail end of the conveying auger (22) on the bottom surface of the conveying bin (21) and is communicated and fixedly connected with the crushing bin of the wind power crushing conveying mechanism (3); the conveying auger (22) is connected with a conveying motor (23) in a matching way; and a plurality of primary air inlets (24) are arranged on two side surfaces of the conveying bin (21).
5. A wet stored corn feed crusher as claimed in claim 3, wherein: the travelling mechanism (6) comprises a traction frame (61), a support frame (62), front wheels (63) and rear wheels (64); the support frame (62) is fixedly connected with the wind power crushing and conveying mechanism (3), the discharging and conveying mechanism (4) and the spraying mechanism (5); the support frame (62) is positioned right below the wind power crushing and conveying mechanism (3), the discharging and conveying mechanism (4) and the spraying mechanism (5); the traction frame (61) and the support frame (62) are positioned on the same plane and fixedly connected with each other; the front end of the traction frame (61) is assembled and connected with a front wheel (63); a rear wheel (64) is fixedly connected below one end of the support frame (62) far away from the traction frame (61); the front wheels (63) are steering wheels; the rear wheel (64) is a directional wheel; and the traction frame (61) and the support frame (62) are fixedly connected with a plurality of hydraulic support legs (8).
6. A wet stored corn feed crusher as claimed in claim 3, wherein: the shell mechanism (7) comprises a main shell (71), a primary conveying mechanism baffle (72) and a main motor baffle (73); the main housing (71) comprises side plates, a front baffle and an upper baffle; the number of the side plates is two, and the side plates are vertically and fixedly connected with the travelling mechanism (6); the front baffle is vertically and fixedly connected with the travelling mechanism (6); the upper baffle is vertically and fixedly connected with the side plate and the front baffle and is positioned above the side plate and the front baffle; the two side plates, the front baffle, the upper baffle and the supporting baffle (42) form a rectangular box body with an opening at the lower part, and the wind power crushing conveying mechanism (3) is positioned in the box body; the baffle (72) of the primary conveying mechanism is a rectangular fence; the primary conveying mechanism baffle plates (72) are fixedly connected to the periphery of the primary conveying mechanism (2); the main motor baffle (73) is fixedly connected to a side plate of the main shell (71) and is a motor chain baffle.
7. A wet stored corn feed shredder according to any one of claims 4 to 6, characterised in that: the hammer mechanism comprises a hammer shaft and a hammer; and a plurality of hammer sheets are uniformly fixed on the hammer sheet shaft along the axial direction in an array manner.
8. The wet stored corn feed shredder according to claim 4, wherein: the crushing roller (12) consists of two rollers; the two rollers of the crushing roller (12) are meshed through gears and rotate oppositely.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110841762A (en) * | 2019-12-11 | 2020-02-28 | 宁夏龙海诚农牧机械制造有限公司 | Wet maize fodder breaker that stores up |
CN117358365A (en) * | 2023-12-08 | 2024-01-09 | 河北旭鑫油脂有限公司 | Corn crusher and application method thereof |
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2019
- 2019-12-11 CN CN201922213028.4U patent/CN212040649U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110841762A (en) * | 2019-12-11 | 2020-02-28 | 宁夏龙海诚农牧机械制造有限公司 | Wet maize fodder breaker that stores up |
CN117358365A (en) * | 2023-12-08 | 2024-01-09 | 河北旭鑫油脂有限公司 | Corn crusher and application method thereof |
CN117358365B (en) * | 2023-12-08 | 2024-02-23 | 河北旭鑫油脂有限公司 | Corn crusher and application method thereof |
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