CN203827848U - Feeding vehicle for livestock raising farm - Google Patents
Feeding vehicle for livestock raising farm Download PDFInfo
- Publication number
- CN203827848U CN203827848U CN201420137541.4U CN201420137541U CN203827848U CN 203827848 U CN203827848 U CN 203827848U CN 201420137541 U CN201420137541 U CN 201420137541U CN 203827848 U CN203827848 U CN 203827848U
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- Prior art keywords
- shaft
- differential
- driven
- driven wheel
- discharging
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- 244000144972 livestock Species 0.000 title abstract description 3
- 238000007599 discharging Methods 0.000 claims abstract description 75
- 230000005540 biological transmission Effects 0.000 claims abstract description 38
- 238000009434 installation Methods 0.000 claims description 8
- 238000007789 sealing Methods 0.000 claims description 7
- 238000000034 method Methods 0.000 abstract description 7
- 230000000694 effects Effects 0.000 abstract description 6
- 238000005299 abrasion Methods 0.000 abstract 1
- 238000005265 energy consumption Methods 0.000 abstract 1
- 230000001276 controlling effect Effects 0.000 description 9
- 238000005516 engineering process Methods 0.000 description 3
- 230000002457 bidirectional effect Effects 0.000 description 2
- 230000006378 damage Effects 0.000 description 2
- 238000006073 displacement reaction Methods 0.000 description 2
- 235000013372 meat Nutrition 0.000 description 2
- 239000008267 milk Substances 0.000 description 2
- 210000004080 milk Anatomy 0.000 description 2
- 235000013336 milk Nutrition 0.000 description 2
- 208000027418 Wounds and injury Diseases 0.000 description 1
- 230000004888 barrier function Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 239000012467 final product Substances 0.000 description 1
- 239000004459 forage Substances 0.000 description 1
- 208000014674 injury Diseases 0.000 description 1
- 244000144977 poultry Species 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
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Abstract
The utility model relates to a feeding vehicle for a livestock raising farm. A clutch is adopted to be used as a transmission medium of a driven wheel and a discharging transmission shaft; in the working process, all that is needed is to control the on-off of the clutch through a clutch operating rod, the change of the running state of a discharging conveyer belt can be realized, the operation is simple and convenient, the transmission effect is good, the device is stable in running, and the abrasion of a transmission belt tensioned on a driving wheel and the driven wheel is avoided; a reversing mechanism (comprising a reversing shaft and a reversing poking piece) is arranged on a gear case of a discharging transmission device, two driven bevel gears which are capable of moving in the axial direction and arranged oppositely are arranged on the driven shaft, and the axial movement position of the reversing shaft is adjusted through treading of the discharging reversing pedal, so that a first driven bevel gear or a second driven bevel gear is meshed with a driving bevel gear, the positive rotation or the reverse rotation of the driven shaft can be realized, finally two-way discharging of the feeding vehicle is realized, the over-all structure is concise and compact, the operation is simple and convenient, the work efficiency of the feeding vehicle is greatly improved, and energy consumption is reduced.
Description
Technical field
The utility model relates to livestock and poultry and feeds mechanical field, is a kind of livestock-raising field feeding vehicle specifically.
Background technology
At present, developed countries milk (meat) the ox system of feeding all realizes mechanization and feeds, and mostly is big-and-middle-sized feeding device, is generally applicable to more than 3000 plant and uses; And mostly domesticly be small-sized plant, be generally 300~500 milk (meat) ox, thus domestic use mostly be the small-sized system feeding vehicle of feeding.The existing small-sized system feeding vehicle of feeding, its discharging controlling device fluctuation of service, service life is short, discharging transmission device also can only be realized the Unidirectional of conveyer belt, and therefore feeding vehicle also can only be realized monolateral discharging, complex operation, inefficiency, and energy resource consumption is large.
Utility model content
In order to overcome the defect of above-mentioned prior art, technical problem to be solved in the utility model is to provide a kind of stable, the livestock-raising field feeding vehicle that can realize both sides discharging.
In order to solve the problems of the technologies described above, the technical solution adopted in the utility model is:
A kind of livestock-raising field feeding vehicle, comprises car body, is provided with engine, discharging controlling device, discharging transmission device and discharging conveyer belt on described car body;
Described discharging controlling device comprise driving wheel, driven pulley, clutch, discharging power transmission shaft and be stretched in driving wheel and driven pulley on driving-belt, described driving wheel is connected and is rotated by motor driven with the output of engine, described clutch is arranged on driven pulley, described discharging power transmission shaft is connected with the output shaft of described clutch, described driven pulley is by the rotation of discharging power transmission shaft described in described Clutch Control, described clutch comprises clutch lever, the clutch of clutch described in described clutch lever control;
Described discharging transmission device comprises discharging reverse pedal and reverse box, and described reverse box comprises case lid and casing;
On described case lid, be provided with rotationally driving shaft, one end of described driving shaft is positioned at outside casing and is connected with described discharging power transmission shaft, the other end of described driving shaft stretches in casing and is coaxially arranged with drive bevel gear, and described drive bevel gear is driven and rotated by driving shaft;
On described casing, be provided with driven shaft and reversing shaft, described driven shaft is mutually vertical with driving shaft, and described reversing shaft and driven shaft are parallel to each other, described driven shaft is arranged on rotationally on casing and one end and stretches out that casing is outer to be connected with the drive sprocket axle of discharging conveyer belt, the part that described driven shaft is positioned at casing is coaxially arranged with the first driven wheel of differential and the second driven wheel of differential, described the first driven wheel of differential and the second driven wheel of differential lay respectively at the both sides of described drive bevel gear and arrange in opposite directions, described the first driven wheel of differential, the second driven wheel of differential is synchronizeed and is rotated with driven shaft, described the first driven wheel of differential and the second driven wheel of differential can make the first driven wheel of differential or the second driven wheel of differential be meshed with drive bevel gear along described driven shaft synchronizing moving, described reversing shaft can be arranged on movably vertically on casing and one end and stretch out that casing is outer to be connected with described discharging reverse pedal, the part that described reversing shaft is positioned at casing is provided with commutation plectrum, described commutation plectrum extends and is provided with two actuating arms to driven shaft direction, and described two actuating arms drive described the first driven wheel of differential and the second driven wheel of differential along described driven shaft synchronizing moving along with moving axially of reversing shaft.
Further, on described car body, be also provided with the car body control device that advances, retreats and turn to for the powered control system of control engine start and stop with for controlling feeding vehicle, described powered control system comprises power clutch lever, and described car body control device comprises walking pedal and steering wheel.
Further, between described the first driven wheel of differential and the second driven wheel of differential, be provided with positioning sleeve, described positioning sleeve coordinates location the first driven wheel of differential and the second driven wheel of differential with described two actuating arms.
Further, be distributed with vertically more than one locating hole on described reversing shaft, be provided with reversing self-locking device on described case lid, described reversing self-locking device comprises the backstay matching with described locating hole.
Further, described commutation plectrum is set to the spacing of cabinet wall: when reversing shaft moves and when the first driven wheel of differential is meshed with drive bevel gear vertically, commutation plectrum just in time lean with the cabinet wall of the first driven wheel of differential homonymy on; When reversing shaft moves and when the second driven wheel of differential is meshed with drive bevel gear vertically, commutation plectrum just in time lean with the cabinet wall of the second driven wheel of differential homonymy on.
Further, the one end that is positioned at casing corresponding to described reversing shaft on described cabinet wall is provided with installation base, is provided with reversing shaft and is positioned at the installing hole matching in one end of casing on described installation base.
Further, between described driving shaft and case lid and between driven shaft and casing, be respectively arranged with bearing cap.
Further, one end that described driven shaft stretches out outside casing is also provided with oil sealing, and described oil sealing is positioned at the outside of described bearing cap.
Further, described driven shaft is positioned on the side face of part of casing and is evenly distributed with the more than one groove extending vertically, on the face that described the first driven wheel of differential and the second driven wheel of differential match with driven shaft, be evenly distributed with more than one axially extended fin, described the first driven wheel of differential and the second driven wheel of differential can axially movably be arranged on described driven shaft by the cooperation of described fin and groove.
The utility model compared with prior art, has following beneficial effect:
1, by adopting the driving medium of clutch as driven pulley and discharging power transmission shaft, in the course of work, only need by the clutch of clutch lever solenoidoperated cluthes, can realize the variation of discharging conveyer belt running status, easy and simple to handle, transmission is effective, install stablely, and avoided the wearing and tearing to being stretched in the driving-belt on driving wheel and driven pulley, the service life of therefore also having improved feeding vehicle;
2, by changement (comprise reversing shaft and commutation plectrum) is set on the gear-box at discharging transmission device and on driven shaft, arrange two arrange in opposite directions can axially movable driven wheel of differential, adjust the position that moves axially of reversing shaft by trampling discharging reverse pedal, the first driven wheel of differential or the second driven wheel of differential are meshed with drive bevel gear, can realize the forward or reverse of driven shaft, and then drive discharging conveyer belt to realize bidirectional movement, finally realize the both sides discharging of feeding vehicle, terminal with compact integral structure compactness, simple to operation, greatly improve the operating efficiency of feeding vehicle, reduce energy resource consumption.
Brief description of the drawings
Figure 1 shows that the overall structure schematic diagram of the utility model embodiment.
Figure 2 shows that the structural representation of the discharging controlling device of the utility model embodiment.
Figure 3 shows that the structural representation of the discharging transmission device of the utility model embodiment.
Label declaration:
1, engine; 2, feed bin; 3, power clutch lever; 4, walking pedal;
5, steering wheel; 6, discharging reverse pedal; 20, discharging opening; 61, driving wheel;
62, driven pulley; 63, clutch; 64, discharging power transmission shaft; 65, driving-belt;
630, clutch lever; 71, case lid; 72, casing; 73, driving shaft;
74, drive bevel gear; 75, driven shaft; 76, reversing shaft; 77, the first driven wheel of differential;
78, the second driven wheel of differential; 79, commutation plectrum; 100, actuating arm; 110, positioning sleeve;
120, locating hole; 130, reversing self-locking device; 140, installation base;
150, bearing cap; 160, bearing cap; 170, oil sealing; 180, groove.
Embodiment
By describing technology contents of the present utility model, structural feature in detail, being realized object and effect, below in conjunction with embodiment and coordinate accompanying drawing to be explained in detail.
The main distinction of the utility model and prior art is: 1, adopt the driving medium of clutch as driven pulley and discharging power transmission shaft, for adopting the frequent tensioning of regulating wheel or lax driving-belt, transmission better effects if, operate easier, move more stable, and avoided wearing and tearing and the distortion of driving-belt, device extends service life greatly; 2, on gear-box, be provided with on changement (comprising reversing shaft and commutation plectrum) and driven shaft and be provided with two driven wheels of differential that arrange in opposite directions, by adjusting moving axially position and can changing the rotation direction of driven shaft of reversing shaft, thereby realize both sides discharging.
Refer to shown in Fig. 1 to Fig. 3, the livestock-raising field feeding vehicle of present embodiment, comprises car body, is provided with engine 1, feed bin 2, powered control system, car body control device, discharging conveyer belt, discharging controlling device and discharging transmission device on described car body.
The bottom, the left and right sides of described feed bin 2 is respectively arranged with discharging opening 20, and below and two ends that described discharging conveyer belt is positioned at described feed bin 2 are communicated with discharging opening 20 respectively.
Described engine 1 provides power resources for whole feeding vehicle, described powered control system is for the start and stop of control engine 1, comprise power clutch lever 3, get final product the start and stop of control engine 1 by pulling up and down power clutch lever 3, thereby control the machine open/close state of whole feeding vehicle.
Described car body control device is for controlling advancing, retreat and turning to of feeding vehicle, comprise walking pedal 4 and steering wheel 5, trample described walking pedal 4 by front and back and can control feeding vehicle and advance or retreat, can control feeding vehicle by left-right rotation steering wheel 5 and turn to the left or to the right.
Described discharging controlling device is for controlling the start and stop of discharging conveyer belt, comprise driving wheel 61, driven pulley 62, clutch 63, discharging power transmission shaft 64 and be stretched in the driving-belt 65 on driving wheel 61 and driven pulley 62, described driving wheel 61 is connected with the output of engine 1 and drives rotation by engine 1, described clutch 63 is arranged on driven pulley 62, described discharging power transmission shaft 64 is connected with the output shaft of described clutch 63, described driven pulley 62 is controlled the rotation of described discharging power transmission shaft 64 by described clutch 63, described clutch 63 comprises clutch lever 630, described clutch lever 630 is controlled the clutch of described clutch 63,
Described discharging transmission device comprises discharging reverse pedal 6 and reverse box, and described reverse box comprises case lid 71 and casing 72;
On described case lid 71, be provided with rotationally driving shaft 73, one end of described driving shaft 73 is positioned at outside casing 72 and is connected with described discharging power transmission shaft 64, the other end of described driving shaft 73 stretches in casing 72 and is coaxially arranged with drive bevel gear 74, and described drive bevel gear 74 drives rotation by driving shaft 73;
On described casing 72, be provided with driven shaft 75 and reversing shaft 76, described driven shaft 75 is mutually vertical with driving shaft 73, and described reversing shaft 76 is parallel to each other with driven shaft 75, described driven shaft 75 is arranged on casing 72 rotationally and one end stretches out that casing 72 is outer to be connected with the drive sprocket axle of discharging conveyer belt, the part that described driven shaft 75 is positioned at casing 72 is coaxially arranged with the first driven wheel of differential 77 and the second driven wheel of differential 78, described the first driven wheel of differential 77 and the second driven wheel of differential 78 lay respectively at the both sides of described drive bevel gear 74 and arrange in opposite directions, described the first driven wheel of differential 77, the second driven wheel of differential 78 is synchronizeed rotation with driven shaft 75, described the first driven wheel of differential 77 and the second driven wheel of differential 78 can make the first driven wheel of differential 77 or the second driven wheel of differential 78 be meshed with drive bevel gear 74 along described driven shaft 75 synchronizing movings, described reversing shaft 76 can be arranged on casing 72 vertically movably and one end stretches out that casing 72 is outer to be connected with described discharging reverse pedal 6, the part that described reversing shaft 76 is positioned at casing 72 is provided with commutation plectrum 79, described commutation plectrum 79 extends and is provided with two actuating arms 100 to driven shaft 75 directions, and described two actuating arms 100 drive described the first driven wheel of differential 77 and the second driven wheel of differential 78 along described driven shaft 75 synchronizing movings along with moving axially of reversing shaft 76.
Operation principle of the present utility model is as follows:
1, start: pull power clutch lever 3 first downwards, make engine 1 start to start, trample forward or backward again walking pedal 4, make feeding vehicle start to advance or retreat, if need to change the direct of travel of feeding vehicle, steering wheel rotation 5 to the left or to the right, turns to feeding vehicle to the left or to the right.
2, start/stop feeding: in feeding vehicle traveling process, engine 1 drives driving wheel 61 to rotate, driving wheel 61 drives driven pulley 62 to rotate by driving-belt 65, need to start discharging conveyer belt and carry out feeding time, pull clutch lever 630 downwards, make clutch 63 in engagement state, the power of driven pulley 62 is delivered to discharging power transmission shaft 64 by clutch 63, discharging power transmission shaft 64 starts to rotate and drives driving shaft 73 to rotate, driving shaft 73 drives drive bevel gear 74 to rotate, drive bevel gear 74 drives the first driven wheel of differential 77 or the second driven wheel of differential 78 that are engaged with to rotate, the first driven wheel of differential 77 or the second driven wheel of differential 78 drive driven shaft 75 to rotate, driven shaft 75 drives the drive sprocket axle of discharging conveyer belt to rotate, finally make the transmission of power of engine 1 make it running to discharging conveyer belt, forage etc. is discharged by the discharging opening 20 on left side or right side.While stopping feeding, upwards pull clutch lever 630, make clutch 63 in released state, the power of driven pulley 62 cannot be delivered to discharging power transmission shaft 64 by clutch 63, and therefore discharging conveyer belt stops running, and feeding procedure stops.
3, two-way feeding: in feeding procedure, as shown in Figure 1, taking the side at the first driven wheel of differential 77 places as left side, taking the side at the second driven wheel of differential 78 places as right side, in the time trampling discharging reverse pedal 6 reversing shaft 76 moved to the left, actuating arm 100 promotes the first driven wheel of differential 77 and the second driven wheel of differential 78 also moves to the left, and away from drive bevel gear 74, the second driven wheel of differential 78 is also finally meshed with drive bevel gear 74 near drive bevel gear 74 gradually gradually to make the first driven wheel of differential 77; And in the time trampling discharging reverse pedal 6 reversing shaft 76 moved to the right, actuating arm 100 promotes the first driven wheel of differential 77 and the second driven wheel of differential 78 also moves to the right, and away from drive bevel gear 74, the first driven wheel of differential 78 is also finally meshed with drive bevel gear 74 near drive bevel gear 74 gradually gradually to make the second driven wheel of differential 78.Because the first driven wheel of differential 77 or the second driven wheel of differential 78 arrange in opposite directions, therefore in the time that the first driven wheel of differential 77 is meshed with drive bevel gear 74, the direction of rotation of the rotation direction of driven shaft 75 and the driven shaft 75 in the time that the second driven wheel of differential 78 is meshed with drive bevel gear 74, thereby by trampling discharging reverse pedal 6 to adjust the rotation direction that moves axially position and can change driven shaft 75 of reversing shaft 76, and then drive the drive sprocket axle of discharging conveyer belt to realize bidirectional movement, finally realize the both sides discharging of feeding vehicle.
In the above-described embodiments, continue with reference to shown in Fig. 3, commutation plectrum 79 is bolted on reversing shaft 76, and commutation plectrum 79 moves along with moving axially of reversing shaft 76.Can certainly adopt other known to be fixedly connected with mode as riveted joint, clamping etc., as long as it is mobile along with moving axially of reversing shaft 76 to realize commutation plectrum 79.
In the above-described embodiments, continue with reference to shown in Fig. 3, between described driving shaft 73 and case lid 71, be provided with bearing cap 150, thereby driving shaft 73 is arranged on case lid 71 rotationally, certainly can also adopt other known fit structures, be arranged on rotationally on case lid 71 as long as can realize driving shaft 73.
In the above-described embodiments, continue with reference to shown in Fig. 3, between described driven shaft 75 and casing 72, be provided with bearing cap 160, thereby driven shaft 75 is arranged on casing 72 rotationally, certainly can also adopt other known fit structures, be arranged on rotationally on casing 72 as long as can realize driving shaft 73.Further, one end that described driven shaft 75 stretches out outside casing 72 is also provided with oil sealing 170, and described oil sealing 170 is positioned at the outside of described bearing cap 160.
In the above-described embodiments, continue with reference to shown in Fig. 3, described driven shaft 75 is positioned on the side face of part of casing 72 and is evenly distributed with the more than one groove 180 extending vertically, on the face that described the first driven wheel of differential 77 and the second driven wheel of differential 78 match with driven shaft 75, be evenly distributed with the more than one fin (not shown on figure) extending vertically, described the first driven wheel of differential 77 and the second driven wheel of differential 78 are equipped with on described driven shaft 75 by described fin and groove 180.Adopt the fit structure of above-mentioned fin and groove 180, both can make the first driven wheel of differential 77 and the second driven wheel of differential 87 can not relatively rotate with driven shaft 75, thereby drive driven shaft 75 synchronously to rotate, can make again the first driven wheel of differential 77 and the second driven wheel of differential 78 can be along the moving axially of driven shaft 75, thereby realize with the engagement of drive bevel gear 74 or separate.Certainly,, except adopting above-mentioned preferred fit structure, can also adopt existing known the first driven wheel of differential 77 and the second driven wheel of differential 78 can realized to synchronize with driven shaft 75 and rotate and can be along the axially movable fit structure of driven shaft 75.
In the above-described embodiments, for fear of the first driven wheel of differential 77 with the change of relative position occurs the second driven wheel of differential 78 in moving process and the equipment that affects normally moves, as shown in Figure 1, between described the first driven wheel of differential 77 and the second driven wheel of differential 78, be provided with positioning sleeve 110, described positioning sleeve 110 coordinates location the first driven wheel of differential 77 and the second driven wheel of differential 78 with described two actuating arms 100.Like this under " clamping " effect of positioning sleeve 110 and two actuating arms 100, no matter how the first driven wheel of differential 77 and the second driven wheel of differential 78 move, the relative position of the first driven wheel of differential 77 and the second driven wheel of differential 78 remains constant, thereby guarantee the first driven wheel of differential 77 and the second driven wheel of differential 78 synchronizing movings, guarantee the normal stable operation of equipment.
In the above-described embodiments, in order further to improve the stability of transmission, as shown in Figure 3, on described reversing shaft 76, be distributed with vertically more than one locating hole 120, on described case lid, be provided with reversing self-locking device 130, described reversing self-locking device 130 comprises the backstay (not shown on figure) matching with described locating hole 120.Adjusting after the axial location of reversing shaft 76 like this, by operation reversing self-locking device 130, backstay is inserted in locating hole 120, reversing shaft 76 can be fixed firmly, thereby avoid the first driven wheel of differential 77 or the second driven wheel of differential 78 to change in transmission process with the engagement of drive bevel gear 74, guarantee that transmission is stable, improve service life of equipment.
In the above-described embodiments, the impact injury of generation for the operation of being more convenient for, while preventing that reversing shaft 76 from departing from casing 72 because displacement is excessive and alleviating the first driven wheel of differential 77 or the second driven wheel of differential 78 and be meshed with drive bevel gear 74, described commutation plectrum 79 is set to the spacing of casing 72 inwalls: when reversing shaft 76 slides axially and when the first driven wheel of differential 77 is meshed with drive bevel gear 74, commutation plectrum 79 just in time lean with casing 72 inwalls of the first driven wheel of differential 77 homonymies on; When reversing shaft 76 slides axially and when the second driven wheel of differential 78 is meshed with drive bevel gear 77, commutation plectrum 79 just in time lean with casing 72 inwalls of the second driven wheel of differential 78 homonymies on.Concrete, shown in Fig. 3, still taking the side at the first driven wheel of differential 77 places as left side, taking the side at the second driven wheel of differential 78 places as right side, in the time that the first driven wheel of differential 77 is meshed with drive bevel gear 74, the right-hand member of commutation plectrum 79 just in time (directly or indirectly) leans on the inwall on casing 72 right sides, and in the time that the second driven wheel of differential 78 is meshed with drive bevel gear 74, the left end of commutation plectrum 79 just in time (directly or indirectly) leans on the inwall in casing 72 left sides.Like this, the distance that reversing shaft 76 moves vertically can only be limited in the spacing range of the first driven wheel of differential 77 and the second driven wheel of differential 78, and plectrum 79 can not deviate from the barrier effect of casing 72 inwalls in casing 72 owing to being subject to commutating, as long as also allow commutation plectrum 79 lean the inwall of casing 72 in operating process, represent that the first driven wheel of differential 77 or the second driven wheel of differential 78 are meshed with drive bevel gear 74, when convenient operation, also avoid because reversing shaft 76 displacements are excessive or the mutual collsion damage of overexert the first driven wheel of differential 77 of causing or the second driven wheel of differential 78 and drive bevel gear 74, extend the service life of equipment.
In the above-described embodiments, in order to make reversing shaft 76 installation and operations more stable, as shown in Figure 3, the one end that is positioned at casing 72 corresponding to described reversing shaft 76 on described casing 72 inwalls is provided with installation base 140, is provided with reversing shaft 76 and is positioned at the installing hole (not shown on figure) matching in one end of casing 72 on described installation base 140.By location and the guide effect of installing hole, can make the location of reversing shaft 76 and move axially more steady.
The foregoing is only embodiment of the present utility model; not thereby limit the scope of the claims of the present utility model; every equivalent structure or conversion of equivalent flow process that utilizes the utility model specification and accompanying drawing content to do; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.
Claims (9)
1. a livestock-raising field feeding vehicle, comprises car body, is provided with engine, discharging controlling device, discharging transmission device and discharging conveyer belt on described car body, it is characterized in that:
Described discharging controlling device comprise driving wheel, driven pulley, clutch, discharging power transmission shaft and be stretched in driving wheel and driven pulley on driving-belt, described driving wheel is connected and is rotated by motor driven with the output of engine, described clutch is arranged on driven pulley, described discharging power transmission shaft is connected with the output shaft of described clutch, described driven pulley is by the rotation of discharging power transmission shaft described in described Clutch Control, described clutch comprises clutch lever, the clutch of clutch described in described clutch lever control;
Described discharging transmission device comprises discharging reverse pedal and reverse box, and described reverse box comprises case lid and casing;
On described case lid, be provided with rotationally driving shaft, one end of described driving shaft is positioned at outside casing and is connected with described discharging power transmission shaft, the other end of described driving shaft stretches in casing and is coaxially arranged with drive bevel gear, and described drive bevel gear is driven and rotated by driving shaft;
On described casing, be provided with driven shaft and reversing shaft, described driven shaft is mutually vertical with driving shaft, and described reversing shaft and driven shaft are parallel to each other, described driven shaft is arranged on rotationally on casing and one end and stretches out that casing is outer to be connected with the drive sprocket axle of discharging conveyer belt, the part that described driven shaft is positioned at casing is coaxially arranged with the first driven wheel of differential and the second driven wheel of differential, described the first driven wheel of differential and the second driven wheel of differential lay respectively at the both sides of described drive bevel gear and arrange in opposite directions, described the first driven wheel of differential, the second driven wheel of differential is synchronizeed and is rotated with driven shaft, described the first driven wheel of differential and the second driven wheel of differential can make the first driven wheel of differential or the second driven wheel of differential be meshed with drive bevel gear along described driven shaft synchronizing moving, described reversing shaft can be arranged on movably vertically on casing and one end and stretch out that casing is outer to be connected with described discharging reverse pedal, the part that described reversing shaft is positioned at casing is provided with commutation plectrum, described commutation plectrum extends and is provided with two actuating arms to driven shaft direction, and described two actuating arms drive described the first driven wheel of differential and the second driven wheel of differential along described driven shaft synchronizing moving along with moving axially of reversing shaft.
2. livestock-raising according to claim 1 field feeding vehicle, it is characterized in that: on described car body, be also provided with the car body control device that advances, retreats and turn to for the powered control system of control engine start and stop with for controlling feeding vehicle, described powered control system comprises power clutch lever, and described car body control device comprises walking pedal and steering wheel.
3. livestock-raising according to claim 1 field feeding vehicle, it is characterized in that: between described the first driven wheel of differential and the second driven wheel of differential, be provided with positioning sleeve, described positioning sleeve coordinates location the first driven wheel of differential and the second driven wheel of differential with described two actuating arms.
4. livestock-raising according to claim 1 field feeding vehicle, it is characterized in that: on described reversing shaft, be distributed with vertically more than one locating hole, on described case lid, be provided with reversing self-locking device, described reversing self-locking device comprises the backstay matching with described locating hole.
5. livestock-raising according to claim 1 field feeding vehicle, it is characterized in that: described commutation plectrum is set to the spacing of cabinet wall: when reversing shaft moves and when the first driven wheel of differential is meshed with drive bevel gear vertically, commutation plectrum just in time lean with the cabinet wall of the first driven wheel of differential homonymy on; When reversing shaft moves and when the second driven wheel of differential is meshed with drive bevel gear vertically, commutation plectrum just in time lean with the cabinet wall of the second driven wheel of differential homonymy on.
6. livestock-raising according to claim 1 field feeding vehicle, it is characterized in that: the one end that is positioned at casing corresponding to described reversing shaft on described cabinet wall is provided with installation base, on described installation base, be provided with reversing shaft and be positioned at the installing hole matching in one end of casing.
7. livestock-raising according to claim 1 field feeding vehicle, is characterized in that: between described driving shaft and case lid and between driven shaft and casing, be respectively arranged with bearing cap.
8. livestock-raising according to claim 7 field feeding vehicle, is characterized in that: one end that described driven shaft stretches out outside casing is also provided with oil sealing, and described oil sealing is positioned at the outside of described bearing cap.
9. livestock-raising according to claim 1 field feeding vehicle, it is characterized in that: described driven shaft is positioned on the side face of part of casing and is evenly distributed with the more than one groove extending vertically, on the face that described the first driven wheel of differential and the second driven wheel of differential match with driven shaft, be evenly distributed with more than one axially extended fin, described the first driven wheel of differential and the second driven wheel of differential can axially movably be arranged on described driven shaft by the cooperation of described fin and groove.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201420137541.4U CN203827848U (en) | 2014-03-25 | 2014-03-25 | Feeding vehicle for livestock raising farm |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201420137541.4U CN203827848U (en) | 2014-03-25 | 2014-03-25 | Feeding vehicle for livestock raising farm |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN203827848U true CN203827848U (en) | 2014-09-17 |
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| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN201420137541.4U Expired - Fee Related CN203827848U (en) | 2014-03-25 | 2014-03-25 | Feeding vehicle for livestock raising farm |
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| CN (1) | CN203827848U (en) |
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2014
- 2014-03-25 CN CN201420137541.4U patent/CN203827848U/en not_active Expired - Fee Related
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN107146653A (en) * | 2017-07-14 | 2017-09-08 | 昆山金源光电科技有限公司 | Stranding machine gear case draws the switching mechanism for taking direction |
| CN107810871A (en) * | 2017-11-01 | 2018-03-20 | 伍超群 | A kind of pig farm drawing-in device for preventing that live pig is sick |
| CN108673397A (en) * | 2018-06-26 | 2018-10-19 | 宁波金山行五金有限公司 | Gun-shaped fast-turn construction ratchet screwdriver |
| CN108673397B (en) * | 2018-06-26 | 2023-12-08 | 宁波金山行五金有限公司 | Gun-shaped fast-turn ratcheting screwdriver |
| CN113828586A (en) * | 2021-10-21 | 2021-12-24 | 江苏长寿集团有限公司 | Intelligent glutinous rice cleaning and draining equipment for producing rice dumplings and operation method thereof |
| CN114593309A (en) * | 2022-05-10 | 2022-06-07 | 西南石油大学 | Walking turns to structure and because pipeline robot of this structure |
| CN117284812A (en) * | 2023-11-10 | 2023-12-26 | 山西杏花村汾酒厂股份有限公司 | A self-propelled turning machine |
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