CN216064232U - Special sieving mechanism of feed processing - Google Patents
Special sieving mechanism of feed processing Download PDFInfo
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- CN216064232U CN216064232U CN202121486305.XU CN202121486305U CN216064232U CN 216064232 U CN216064232 U CN 216064232U CN 202121486305 U CN202121486305 U CN 202121486305U CN 216064232 U CN216064232 U CN 216064232U
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Abstract
The utility model discloses a screening device special for feed processing, which belongs to the technical field of feed processing, and particularly relates to a screening device special for feed processing, which comprises a supporting component, a feed screen component and a feed storage box, wherein the top of the supporting component is provided with the feed screen component, the right side of the feed screen component is provided with the feed storage box, the feed screen component comprises four groups of supporting plates, the bottom of the supporting plate at the left front end is fixedly provided with a speed reducing motor, the output end of the speed reducing motor is provided with an eccentric wheel, the top of the supporting plate at the right side is movably provided with an eccentric wheel, the tops of the four groups of eccentric wheels are provided with supporting rods, and the tops of the supporting rods are fixedly connected with material supporting plates. Set up vibrating motor one and vibrate screen cloth one and screen cloth two simultaneously to the convenience is screened the granule of equidimension not, and the biggest granule is stayed two tops of screen cloth, and well granule is stayed screen cloth one top, and the tiny particle is stayed in holding in the palm flitch top, makes things convenient for the not fodder of equidimension in the disposable screening.
Description
Technical Field
The utility model relates to the technical field of feed processing, in particular to a special screening device for feed processing.
Background
The feed is a general term of food of all animals raised by people, a common feed in a narrower sense mainly refers to food of animals raised in agriculture or animal husbandry, the feed comprises feed raw materials of more than ten varieties such as soybean, soybean meal, corn, fish meal, amino acid, miscellaneous meal, whey powder, grease, meat and bone meal, grains, feed additives and the like, the feed is widely used in agricultural breeding, the feed demand of a breeding base is very large, and in feed processing, feeds with different sizes need to be classified to adapt to animal raising which cannot be raised.
The prior art has the following defects: when current fodder adds man-hour, when carrying out the classification of equidimension not to same batch fodder, filter through the shale shaker usually, but traditional shale shaker can't once select the fodder of multiple granule size, needs the repetitive operation shale shaker, and operating procedure is comparatively loaded down with trivial details, inconvenient use.
Therefore, the utility model is necessary to invent a special screening device for feed processing.
SUMMERY OF THE UTILITY MODEL
Therefore, the utility model provides the special screening device for feed processing, the first screen and the second screen are simultaneously vibrated by the first vibrating motor, so that particles with different sizes can be conveniently screened, the largest particles are left at the top of the second screen, the middle particles are left at the top of the first screen, and the small particles are left at the top of the material supporting plate, so that the problem of conveniently screening feeds with various sizes at one time is solved.
In order to achieve the above purpose, the utility model provides the following technical scheme: the utility model provides a special sieving mechanism of feed processing, includes supporting component, fodder screen assembly and fodder containing box, supporting component top installation fodder screen assembly, fodder screen assembly right side is equipped with the fodder containing box, fodder screen assembly includes the backup pad, the backup pad is equipped with four groups, left front end backup pad bottom fixed mounting gear motor, gear motor output end installation eccentric wheel, right side backup pad top movable mounting eccentric wheel, four groups eccentric wheel top erection bracing pole, bracing piece top fixed connection holds in the palm the flitch, hold in the palm flitch top four corners department fixed mounting buffer, buffer top fixed mounting screen cloth one, buffer fixed mounting screen cloth two is passed through at screen cloth one top, screen cloth one left and right sides central point fixed mounting vibrating motor one.
Preferably, the aperture of the first screen is smaller than that of the second screen, fences are arranged on the outer walls of the first screen and the second screen, the depth of each fence is set to be 5-8 cm, and a discharge hole is formed in the right side of each fence.
Preferably, the vibration damper comprises an I-shaped seat, two groups of I-shaped seats are arranged on the upper side and the lower side of the I-shaped seat, a positioning rod is connected between the two groups of I-shaped seats, a spring is sleeved on the outer wall of the positioning rod, and the spring is located between the two groups of I-shaped seats.
Preferably, the supporting component comprises a bottom plate, a cylinder is fixedly installed on the inner wall of the left side of the bottom plate, a support is fixedly installed on the inner wall of the right side of the bottom plate, and driving wheels are movably installed at the bottoms of the support and the cylinder.
Preferably, the support and the top of the cylinder are movably provided with movable blocks, and the bottoms of the movable blocks are connected with the supporting plate.
Preferably, an arc-shaped groove is formed in the top of the bottom plate and is located at the bottom of the feed storage box.
Preferably, the fodder containing box includes the tiny particle case, tiny particle roof portion is equipped with well granule case, well granule roof portion is equipped with the large granule case, well fixed connection is well core rod between tiny particle case, well granule case and the large granule case, tiny particle case right-hand member bottom passes through hinge swing joint with the bottom plate, tiny particle case, well granule case and large granule case right-hand member bottom all are equipped with the discharge opening, the valve is installed to the discharge opening outer wall.
Preferably, a hydraulic rod is movably connected between the bottom of the small particle box and the arc-shaped groove.
Preferably, the feed screen assembly further comprises a second vibration motor, the second vibration motor is fixedly installed on the outer walls of the first screen and the second screen, and the second vibration motor is located above the buffer.
The utility model has the beneficial effects that:
1. the first screen mesh and the second screen mesh are vibrated simultaneously by arranging the first vibrating motor, so that particles with different sizes are conveniently screened, the largest particles are left at the top of the second screen mesh, the middle particles are left at the top of the first screen mesh, and the small particles are left at the top of the material supporting plate, so that feeds with different sizes can be conveniently screened at one time;
2. the feed screen assembly can vibrate vertically and horizontally at the same time conveniently by arranging the speed reducing motor and the vibration motor, so that the screening working efficiency is improved, and the screening speed is increased;
3. through setting up fodder containing box, the fodder after empting the screening that can be quick conveniently bags into bags, improves staff work efficiency.
Drawings
FIG. 1 is a front view of embodiment 1 provided by the present invention;
FIG. 2 is a schematic view of the feed storage box according to embodiment 1 of the present invention;
FIG. 3 is an enlarged view taken at A in FIG. 2 according to the present invention;
FIG. 4 is an enlarged view at B of FIG. 2 according to the present invention;
FIG. 5 is a top view of a second screen panel provided in accordance with the present invention;
fig. 6 is a schematic structural diagram of a second vibration motor in embodiment 2.
In the figure: the feed screen assembly comprises a supporting assembly 100, a bottom plate 110, a bracket 120, an air cylinder 130, a movable block 140, an arc-shaped groove 150, a feed screen assembly 200, a supporting plate 210, a speed reducing motor 220, an eccentric wheel 230, a supporting rod 231, a retainer plate 240, a first screen 250, a second screen 260, a fence 261, a discharge port 262, a first vibrating motor 270, a second vibrating motor 280, a shock absorber 290, an I-shaped seat 291, a spring 292, a positioning rod 293, a feed containing box 300, a small particle box 310, a medium particle box 320, a large particle box 330, a central rod 340, a hydraulic rod 350, a discharge hole 360 and a valve 370.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are described herein for the purpose of illustration and explanation and not limitation.
Example 1:
referring to the attached drawings 1-5, the utility model provides a screening device special for feed processing, which comprises a supporting component 100, a feed screen component 200 and a feed containing box 300, wherein the top of the supporting component 100 is provided with the feed screen component 200, the right side of the feed screen component 200 is provided with the feed containing box 300, the feed screen component 200 comprises supporting plates 210, the supporting plates 210 are provided with four groups, the bottom of the supporting plate 210 at the left front end is fixedly provided with a speed reducing motor 220, the output end of the speed reducing motor 220 is provided with an eccentric wheel 230, the top of the supporting plate 210 at the right side is movably provided with the eccentric wheel 230, the tops of the four groups of eccentric wheels 230 are provided with supporting rods 231, the tops of the supporting rods 231 are fixedly connected with a material supporting plate 240, four corners at the top of the material supporting plate 240 are fixedly provided with a vibration damper 290, the top of the vibration damper 290 is fixedly provided with a screen I250, the top of the screen I250 is fixedly provided with a screen II 260 through the vibration damper 290, and the centers at the left side and the right side of the screen I are fixedly provided with a vibration motor 270, specifically, the supporting plate 210 has the function of mounting the speed reducing motor 220 and the eccentric wheel 230, the speed reducing motor 220 is set to be YLJ500D, the speed reducing motor 220 has the function of conveniently driving the eccentric wheel 230 so as to drive the retainer plate 240 to horizontally reciprocate, so that the vibration sense is conveniently generated to promote the work of the screen I250 and the screen II 260, the speed of screening the feed is improved, the eccentric wheel 230 has the transmission function, the supporting rod 231 has the function of supporting the retainer plate 240, the retainer plate 240 has the function of supporting the screen I250, the vibration damper 290 has the function of movably connecting the screen I250 and the screen II 260, so that the screen I250 and the screen II 260 can conveniently vibrate up and down, the vibration motor 270 is set to be YZS-30-6, and the vibration motor 270 has the function of conveniently driving the screen I250 and the screen II 260 to vibrate;
furthermore, the aperture of the first screen mesh 250 is smaller than that of the second screen mesh 260, the outer walls of the first screen mesh 250 and the second screen mesh 260 are provided with a fence 261, the depth of the fence 261 is set to be 5-8 cm, the right side of the fence 261 is provided with a discharge port 262, specifically, the aperture of the first screen mesh 250 is smaller than that of the second screen mesh 260, so that the effect of conveniently screening feed particles with different sizes is achieved, the fence 261 has the effect of preventing feed at the tops of the first screen mesh 250 and the second screen mesh 260 from being lost, and the discharge port 262 has the effect of conveniently pouring the screened feed into the feed containing box 300;
further, the vibration damper 290 comprises an i-shaped seat 291, two sets of the i-shaped seat 291 are arranged above and below the i-shaped seat 291, a positioning rod 293 is connected between the two sets of the i-shaped seats 291, a spring 292 is sleeved on the outer wall of the positioning rod 293, the spring 292 is located between the two sets of the i-shaped seats 291, specifically, the i-shaped seat 291 has an effect of conveniently mounting the vibration damper 290 on the first screen 250 and the second screen 260, the positioning rod 293 has an effect of guiding and mounting the spring 292, and the spring 292 has an effect of elastically connecting the first screen 250 and the second screen 260;
further, the supporting assembly 100 comprises a bottom plate 110, a cylinder 130 is fixedly mounted on the inner wall of the left side of the bottom plate 110, a support 120 is fixedly mounted on the inner wall of the right side of the bottom plate 110, and driving wheels (not labeled in the figures) are movably mounted at the bottoms of the support 120 and the cylinder 130, specifically, the bottom plate 110 has a limiting effect on the support 120 and the cylinder 130, the cylinder 130 has an effect of conveniently lifting the left end of the feed screen assembly 200, so that the feed at the tops of the first screen mesh 250 and the second screen mesh 260 can be conveniently poured, and the driving wheels have an effect of conveniently driving equipment to move;
further, the movable blocks 140 are movably mounted at the tops of the support 120 and the air cylinder 130, the bottoms of the movable blocks 140 are connected with the support plate 210, and specifically, the movable blocks 140 have the function of conveniently and movably connecting the support 120 and the support plate 210, so that the feed containing box 300 is conveniently lifted;
further, the top of the bottom plate 110 is provided with an arc-shaped groove 150, the arc-shaped groove 150 is located at the bottom of the feed containing box 300, and specifically, the arc-shaped groove 150 has the function of conveniently installing the hydraulic rod 350;
further, the feed containing box 300 comprises a small particle box 310, a middle particle box 320 is arranged at the top of the small particle box 310, a large particle box 330 is arranged at the top of the middle particle box 320, a central rod 340 is fixedly connected among the small particle box 310, the middle particle box 320 and the large particle box 330, the bottom of the right end of the small particle box 310 is movably connected with the bottom plate 110 through a hinge, discharge holes 360 are formed in the bottoms of the right ends of the small particle box 310, the middle particle box 320 and the large particle box 330, and valves 370 are mounted on the outer walls of the discharge holes 360;
further, swing joint hydraulic stem 350 between pellet case 310 bottom and the arc wall 150, it is specific, hydraulic stem 350 has the left end that conveniently promotes fodder containing box 300 to the effect of conveniently bagging-off is carried out to the fodder in the fodder containing box 300.
The using process of the utility model is as follows: when the feed sorting device is used, a person skilled in the art introduces feed mixture to be sorted to the top of the second screen 260, then drives the first vibration motor 270 and the reduction motor 220 to synchronously operate, vibrates the feed screen assembly 200 in the vertical direction through the first vibration motor 270, drives the eccentric wheel 230 through the reduction motor 220, so that the material supporting plate 240 performs reciprocating motion in the horizontal direction, larger particles on the top of the second screen 260 are intercepted on the top of the second screen 260 under the vibration effect, small and medium-sized feed particles fall onto the top of the first screen 250, then small feed particles fall onto the top of the material supporting plate 240, lifts the feed screen assembly 200 through the driving cylinder 130 after the screening is finished, feeds are discharged into the feed containing box 300 through the discharge port 262, and then lifts the feed containing box 300 through the driving hydraulic rod 350, so that the feeds can be sorted and bagged conveniently.
Example 2:
referring to fig. 6, the screening apparatus specially used for processing feed provided by the utility model comprises a second vibration motor 280;
further, the fodder screen assembly 200 further comprises a second vibration motor 280, the second vibration motor 280 is fixedly installed on the outer walls of the first screen 250 and the second screen 260, the second vibration motor 280 is located above the vibration damper 290, specifically, the second vibration motor 280 is set to be YZS-30-6, the second vibration motor 280 can conveniently swing through a deflection wheel to generate vibration, and therefore the vibration is transmitted to the first screen 250 and the second screen 260, and the fodder on the surfaces of the first screen 250 and the second screen 260 can be screened out under the vibration effect.
The using process of the utility model is as follows: when the feed sorting device is used, a person skilled in the art introduces a feed mixture to be sorted to the top of the second screen 260, drives the second vibrating motor 280 and the reducing motor 220 to synchronously operate, vibrates the feed screen assembly 200 in the vertical direction through the second vibrating motor 280, drives the eccentric wheel 230 through the reducing motor 220, so that the retainer plate 240 performs reciprocating motion in the horizontal direction, larger particles on the top of the second screen 260 are intercepted on the top of the second screen 260 under the vibration effect, small and medium-sized granulated feeds fall on the top of the first screen 250, then small granulated feeds fall on the top of the retainer plate 240, lifts the feed screen assembly 200 through the driving cylinder 130 after the screening is finished, discharges the feeds into the feed containing box 300 through the discharge port 262, and lifts the feed containing box 300 through the driving hydraulic rod 350, so that the feeds can be sorted and bagged conveniently.
The above description is only a preferred embodiment of the present invention, and any person skilled in the art may modify the present invention or modify it into an equivalent technical solution by using the technical solution described above. Therefore, any simple modifications or equivalent substitutions made in accordance with the technical solution of the present invention are within the scope of the claims of the present invention.
Claims (9)
1. The utility model provides a special sieving mechanism of feed processing, includes supporting component (100), fodder sieve subassembly (200) and fodder containing box (300), supporting component (100) top installation fodder sieve subassembly (200), fodder sieve subassembly (200) right side is equipped with fodder containing box (300), its characterized in that: feed screen subassembly (200) is including backup pad (210), backup pad (210) are equipped with four groups, left front end backup pad (210) bottom fixed mounting gear motor (220), gear motor (220) output installation eccentric wheel (230), right side backup pad (210) top movable mounting eccentric wheel (230), four groups eccentric wheel (230) top erection bracing pole (231), bracing piece (231) top fixed connection holds in the palm flitch (240), hold in the palm flitch (240) top four corners fixed mounting bumper ware (290), bumper ware (290) top fixed mounting screen cloth one (250), bumper ware (290) fixed mounting screen cloth two (260) are passed through at screen cloth one (250) top, screen cloth one (250) left and right sides central point puts fixed mounting vibrating motor one (270).
2. The special screening device for feed processing according to claim 1, wherein: the aperture of the first screen (250) is smaller than that of the second screen (260), the outer walls of the first screen (250) and the second screen (260) are provided with a fence (261), the depth of the fence (261) is set to be 5-8 cm, and the right side of the fence (261) is provided with a discharge hole (262).
3. The special screening device for feed processing according to claim 1, wherein: the vibration damper (290) comprises an I-shaped seat (291), the I-shaped seat (291) is provided with two groups up and down, a positioning rod (293) is connected between the two groups of I-shaped seats (291), the outer wall of the positioning rod (293) is sleeved with a spring (292), and the spring (292) is located between the two groups of I-shaped seats (291).
4. The special screening device for feed processing according to claim 1, wherein: the supporting assembly (100) comprises a bottom plate (110), a cylinder (130) is fixedly installed on the inner wall of the left side of the bottom plate (110), a support (120) is fixedly installed on the inner wall of the right side of the bottom plate (110), and driving wheels are movably installed at the bottoms of the support (120) and the cylinder (130).
5. The special screening device of claim 4, which is characterized in that: the top of the support (120) and the top of the air cylinder (130) are both movably provided with movable blocks (140), and the bottoms of the movable blocks (140) are connected with the supporting plate (210).
6. The special screening device of claim 4, which is characterized in that: an arc-shaped groove (150) is formed in the top of the bottom plate (110), and the arc-shaped groove (150) is located at the bottom of the feed containing box (300).
7. The special screening device of claim 4, which is characterized in that: feed storage box (300) includes tiny particle case (310), tiny particle case (310) top is equipped with well particle case (320), well particle case (320) top is equipped with large granule case (330), well particle case (310), well particle case (320) and large granule case (330) between the well fixed connection well core rod (340), tiny particle case (310) right-hand member bottom passes through hinge swing joint with bottom plate (110), tiny particle case (310), well particle case (320) and large granule case (330) right-hand member bottom all is equipped with discharge opening (360), valve (370) are installed to discharge opening (360) outer wall.
8. The special screening device of claim 7, which is characterized in that: a hydraulic rod (350) is movably connected between the bottom of the small particle box (310) and the arc-shaped groove (150).
9. The special screening device for feed processing according to claim 1, wherein: the feed screen assembly (200) further comprises a second vibrating motor (280), the second vibrating motor (280) is fixedly installed on the outer walls of the first screen (250) and the second screen (260), and the second vibrating motor (280) is located above the vibration damper (290).
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CN202121486305.XU CN216064232U (en) | 2021-07-01 | 2021-07-01 | Special sieving mechanism of feed processing |
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CN202121486305.XU CN216064232U (en) | 2021-07-01 | 2021-07-01 | Special sieving mechanism of feed processing |
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