CN202754558U - Whole field transport system - Google Patents

Whole field transport system Download PDF

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Publication number
CN202754558U
CN202754558U CN 201220382782 CN201220382782U CN202754558U CN 202754558 U CN202754558 U CN 202754558U CN 201220382782 CN201220382782 CN 201220382782 CN 201220382782 U CN201220382782 U CN 201220382782U CN 202754558 U CN202754558 U CN 202754558U
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discharge valve
hopper
feed
discharging opening
weighing
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CN 201220382782
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Chinese (zh)
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黄晋
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Abstract

The utility model relates to a whole field transport system used in feed processing and breeding industries. The whole field transport system comprises a feed general warehouse device, a weighing device, a transporting device and a breeding shed workbin tower device, wherein a discharge end of the feed general warehouse device is connected with a feed end of the weighing device, a discharge end of the weighing device is connected with a feed end of the transporting device, a discharge end of the transporting device is connected with a feed end of the breeding shed workbin tower device. The whole field transport system has the advantages of being simple, compact and reasonable in structure and capable of avoiding the problem that pollution of air used in radiography and noise pollution can be caused by ordinary activities of a bulked feed tank car in the field and reducing energy consumption. Meanwhile, the transportation of feed is not affected no matter what the weather is. The whole field transport system has further advantages of being more safe and sanitary and capable of reducing the energy consumption and labor cost, achieving the automation of the whole field transportation and improving breeding efficiency.

Description

Whole delivery system
Technical field
The utility model relates to a kind of whole delivery system that is mainly used in feed processing industry and cultivation industry.
Background technology
At present, the feed conveying scheme that is used for plant also rests on Manual material feeding mostly, part adopts than pioneering technology, outfield isolation technology namely: with the bulk feed tank car feed is transported to total storehouse of cultivation place first, then the interior special-purpose bulk feed tank car of use divides feed and forwards each minute feed bin to from total storehouse.The method can reduce to a certain extent an interior livestock and poultry and aquatic biological infects the probability of the extraneous disease in cultivation place, reduces the rate of catching an illness.But special-purpose Feed pot in bulk must be cleared up vehicle body and each dead angle every day in, and the cleaning of tank interior is even more important, and cleaning work is not in place may give the threat that cultured product brings pathology in the field equally.In addition, the working process of all feed tanks is finished at carrier (truck), the special feed tank is no exception in, it is as far as possible pure and fresh that on-site has truck to shuttle back and forth not only to have run counter to cultivation on-site air throughout the year, the noise low principle of trying one's best, also increased to a certain extent the operation cost of whole plant, the power of motor 10 ~ 12KW of feed tank wherein, the about 28.7L/100KM of comprehensive oil consumption of bulk feed tank car.When running into plum rain season, the rainy weather of a couple of days or several weeks can bring serious inconvenience to dnockout continuously.
Summary of the invention
The purpose of this utility model is to overcome the deficiencies in the prior art, and a kind of whole delivery system that can reduce energy consumption and human cost, safety and sanitation is provided.
The technical scheme that provides according to the utility model, described whole delivery system, it comprises the total bin device of feed, weighting apparatus, feedway and breeding house hopper material tower apparatus, the discharge end of the total bin device of feed and the feed end of weighting apparatus join, the discharge end of weighting apparatus and the feed end of feedway join, and the feed end of the discharge end of feedway and breeding house hopper material tower apparatus joins.
The total bin device of described feed comprises total feed bin and discharge bin, hard-wired total feed bin on total bin bracket, be fixed with first pipe of sauntering in the top ends of total feed bin, be fixed with the first rotary distributor in the first top ends of sauntering pipe, the top ends of the first rotary distributor is fixed with the first cyclone, be connected with delivery duct at the first cyclone, the other end of delivery duct is connected with the first triple valve, be provided with the interface of weighing at the first triple valve, be connected with adapter bonnet at the first triple valve, discharging opening place at discharge bin is equipped with the first star-shaped discharge valve, be fixed with the first accelerating chamber at the first star-shaped discharge valve, the first accelerating chamber is fixed on the adapter bonnet, is provided with the first accelerator in the first accelerating chamber, at adapter bonnet roots blower is installed; Bottom discharging opening at total feed bin is connected with discharge valve.
The total bin device of described feed comprises total feed bin and discharge bin, hard-wired total feed bin on total bin bracket, be fixed with first pipe of sauntering in the top ends of total feed bin, be fixed with the first rotary distributor in the first top ends of sauntering pipe, the top ends of the first rotary distributor is fixed with the first cyclone, be connected with delivery duct at the first cyclone, the other end of delivery duct is connected with the first triple valve, be provided with the interface of weighing at the first triple valve, be connected with adapter bonnet at the first triple valve, the entrance of discharge bin is equipped with the first oblique auger that is tilted to setting, the discharging opening of the first oblique auger is positioned at the top of inlet point, inlet point place at the first oblique auger is fixed with the first buffering bucket, discharging opening place at discharge bin is equipped with the first star-shaped discharge valve, is fixed with the first accelerating chamber at the first star-shaped discharge valve, and the first accelerating chamber is fixed on the adapter bonnet, in the first accelerating chamber, be provided with the first accelerator, at adapter bonnet roots blower be installed; Bottom discharging opening at total feed bin is connected with discharge valve.
Described weighting apparatus is included in the hard-wired hopper of weighing on the weighing bracket, be equipped with in the top ends of the hopper of weighing and weigh, be connected with the first soft cloth bag weighing to deserve to be called, be connected with the second star-shaped discharge valve at the first soft cloth bag, be connected with the second buffering bucket at the second star-shaped discharge valve, be connected with the distortion mouth at the second buffering bucket; Exit, bottom at the hopper of weighing is equipped with discharge valve, be connected with the second soft cloth bag at discharge valve, be connected with the 3rd buffering bucket at the second soft cloth bag, be connected with the delta/Y shape discharge valve at the 3rd buffering bucket, be connected with the second accelerating chamber at the delta/Y shape discharge valve, in the second accelerating chamber, be provided with the second accelerator, be connected with the delivery duct interface at the second accelerating chamber.
Described weighting apparatus is included in the hard-wired hopper of weighing on the weighing bracket, be equipped with in the top ends of the hopper of weighing and weigh, be connected with the first soft cloth bag weighing to deserve to be called, side at weighing bracket is fixed with the auger support, at the auger support the second oblique auger is installed, the discharging opening of the second oblique auger is positioned at the top of inlet point, and the discharging opening of the second oblique auger and the first soft cloth bag join, and the inlet point of the second oblique auger joins with the distortion mouth; Exit, bottom at the hopper of weighing is equipped with discharge valve, be connected with the second soft cloth bag at discharge valve, be connected with the 3rd buffering bucket at the second soft cloth bag, be connected with the delta/Y shape discharge valve at the 3rd buffering bucket, be connected with the second accelerating chamber at the delta/Y shape discharge valve, in the second accelerating chamber, be provided with the second accelerator, be connected with the delivery duct interface at the second accelerating chamber.
Described weighting apparatus is included in the hard-wired hopper of weighing on the weighing bracket, be equipped with in the top ends of the hopper of weighing and weigh, be connected with the second spring auger weighing to deserve to be called, exit, bottom at the hopper of weighing is equipped with discharge valve, be connected with the second soft cloth bag at discharge valve, be connected with the 3rd buffering bucket at the second soft cloth bag, be connected with the delta/Y shape discharge valve at the 3rd buffering bucket, be connected with the second accelerating chamber at the delta/Y shape discharge valve, in the second accelerating chamber, be provided with the second accelerator, be connected with the delivery duct interface at the second accelerating chamber.
Described feedway comprises one-level pipeline, secondary pipeline and triode road, on the one-level pipeline, be connected with the secondary pipeline by the second triple valve, on the secondary pipeline, be connected with the triode road by the second triple valve, on the triode road, be connected with material house material tower access tube by the second triple valve.
Described breeding house hopper material tower apparatus is included in the second cyclone that connects on the inlet point of the second rotary distributor, be connected with second pipe of sauntering at the second rotary distributor, be connected with small bins at the second discharging opening of sauntering pipe, be connected with screen tray at the discharging opening of small bins.
Described breeding house hopper material tower apparatus is included in the pipe of always sauntering that connects on the second cyclone, is connected with second pipe of sauntering at the pipe of always sauntering, and is connected with small bins at the second discharging opening of sauntering pipe, is connected with screen tray at the discharging opening of small bins.
Described breeding house hopper material tower apparatus is included in the second cyclone that connects on the inlet point of large hopper, discharging opening at large hopper is connected with four stars type discharge valve, be connected with the second rotary distributor at four stars type discharge valve, be connected with second pipe of sauntering at the second rotary distributor, be connected with small bins at the second discharging opening of sauntering pipe, be connected with screen tray at the discharging opening of small bins.
Described breeding house hopper material tower apparatus is included in the pipe of always sauntering that connects on the second cyclone, is connected with the spring auger at the pipe of always sauntering, and is connected with small bins at the spring auger, is connected with screen tray at the discharging opening of small bins.
Described breeding house hopper material tower apparatus is included in the second cyclone of installing on the inlet point of large hopper, is connected with the spring auger at the discharging opening of large hopper.
The utility model is simple, compact and reasonable for structure; Avoided because energy consumption is lowered in radiography aerial contamination, the noise pollution that bulk feed tank car ordinary activity inside causes, whatsoever weather does not affect the conveying of feed simultaneously, more safety and sanitation, reduce energy consumption and human cost, realize whole automation of carrying, improve cultivation efficient.
Description of drawings
Fig. 1 is the front view of the utility model embodiment 1.
Fig. 2 is the birds-eye view of the utility model embodiment 1.
Fig. 3 is the right elevation of the utility model embodiment 1.
Fig. 4 is the front view of the utility model embodiment 2.
Fig. 5 is the birds-eye view of the utility model embodiment 2.
Fig. 6 is the right elevation of the utility model embodiment 2.
Fig. 7 is the structural representation of the total bin device of the first feed in the utility model.
Fig. 8 is the structural representation of the total bin device of the second feed in the utility model.
Fig. 9 is the structural representation of the first weighting apparatus in the utility model.
Figure 10 is the structural representation of the second weighting apparatus in the utility model.
Figure 11 is the structural representation of the third weighting apparatus in the utility model.
Figure 12 is the structural representation of feedway in the utility model.
Figure 13 is the first mounting structure scheme drawing of the first breeding house hopper material tower apparatus in the utility model.
Figure 14 is the second mounting structure scheme drawing of the first breeding house hopper material tower apparatus in the utility model.
Figure 15 is the structural representation of the second breeding house hopper material tower apparatus in the utility model.
Figure 16 is the structural representation of the third breeding house hopper material tower apparatus in the utility model.
Figure 17 is the structural representation of the 4th kind of breeding house hopper material tower apparatus in the utility model.
Figure 18 is the structural representation of the 5th kind of breeding house hopper material tower apparatus in the utility model.
The specific embodiment
The utility model is described in further detail below in conjunction with concrete drawings and Examples.
As shown in the figure, this whole delivery system, it comprises the total bin device 1 of feed, weighting apparatus 2, feedway 3 and breeding house hopper material tower apparatus 4, the discharge end of the total bin device 1 of feed and the feed end of weighting apparatus 2 join, the feed end of the discharge end of weighting apparatus 2 and feedway 3 joins, and the feed end of the discharge end of feedway 3 and breeding house hopper material tower apparatus 4 joins.
Embodiment 1: the discharge end of the total bin device 1 of feed and the feed end of weighting apparatus 2 join, the feed end of the discharge end of weighting apparatus 2 and feedway 3 joins, the feed end of the discharge end of feedway 3 and breeding house hopper material tower apparatus 4 joins, and weighting apparatus 2 be installed in the total bin device 1 of feed under.
Embodiment 2: the discharge end of the total bin device 1 of feed and the feed end of weighting apparatus 2 join, the feed end of the discharge end of weighting apparatus 2 and feedway 3 joins, the feed end of the discharge end of feedway 3 and breeding house hopper material tower apparatus 4 joins, and weighting apparatus 2 is installed in the forward position of the total bin device 1 of feed.
As shown in Figure 7, the total bin device 1 of the first feed comprises total feed bin 1-13 and discharge bin 1-6, hard-wired total feed bin 1-13 on total bin bracket 1-14, be fixed with the first pipe 1-12 that saunters in the top ends of total feed bin 1-13, be fixed with the first rotary distributor 1-11 in the first top ends of sauntering pipe 1-12, the top ends of the first rotary distributor 1-11 is fixed with the first cyclone 1-10, be connected with delivery duct 1-9 at the first cyclone 1-10, the other end of delivery duct 1-9 is connected with the first triple valve 1-8, be provided with the interface 1-16 that weighs at the first triple valve 1-8, be connected with adapter bonnet 1-2 at the first triple valve 1-8, at the discharging opening place of discharge bin 1-6 the first star-shaped discharge valve 1-5 is installed, be fixed with the first accelerating chamber 1-3 at the first star-shaped discharge valve 1-5, the first accelerating chamber 1-3 is fixed on the adapter bonnet 1-2, in the first accelerating chamber 1-3, be provided with the first accelerator 1-4, at adapter bonnet 1-2 roots blower 1-1 be installed; Bottom discharging opening at total feed bin 1-13 is connected with discharge valve 1-15.
As shown in Figure 8, the total bin device 1 of the second feed comprises total feed bin 1-13 and discharge bin 1-6, hard-wired total feed bin 1-13 on total bin bracket 1-14, be fixed with the first pipe 1-12 that saunters in the top ends of total feed bin 1-13, be fixed with the first rotary distributor 1-11 in the first top ends of sauntering pipe 1-12, the top ends of the first rotary distributor 1-11 is fixed with the first cyclone 1-10, be connected with delivery duct 1-9 at the first cyclone 1-10, the other end of delivery duct 1-9 is connected with the first triple valve 1-8, be provided with the interface 1-16 that weighs at the first triple valve 1-8, be connected with adapter bonnet 1-2 at the first triple valve 1-8, the entrance of discharge bin 1-6 is equipped with the first oblique auger 1-18 that is tilted to setting, the discharging opening of the first oblique auger 1-18 is positioned at the top of inlet point, be fixed with the first buffering bucket 1-17 at the inlet point place of the first oblique auger 1-18, at the discharging opening place of discharge bin 1-6 the first star-shaped discharge valve 1-5 is installed, be fixed with the first accelerating chamber 1-3 at the first star-shaped discharge valve 1-5, the first accelerating chamber 1-3 is fixed on the adapter bonnet 1-2, in the first accelerating chamber 1-3, be provided with the first accelerator 1-4, at adapter bonnet 1-2 roots blower 1-1 be installed; Bottom discharging opening at total feed bin 1-13 is connected with discharge valve 1-15.
The first weighting apparatus 2 as shown in Figure 9, it is included in the upper hard-wired hopper 2-5 that weighs of weighing bracket 2-7, top ends at the hopper 2-5 that weighs is equipped with the 2-6 that weighs, be connected with the first soft cloth bag 2-2 at the 2-6 that weighs, be connected with the second star-shaped discharge valve 2-4 at the first soft cloth bag 2-2, be connected with the second buffering bucket 2-3 at the second star-shaped discharge valve 2-4, be connected with distortion mouthful 2-1 at the second buffering bucket 2-3; Exit, bottom at the hopper 2-5 that weighs is equipped with discharge valve 2-8, be connected with the second soft cloth bag 2-9 at discharge valve 2-8, be connected with the 3rd buffering bucket 2-10 at the second soft cloth bag 2-9, be connected with delta/Y shape discharge valve 2-11 at the 3rd buffering bucket 2-10, be connected with the second accelerating chamber 2-13 at delta/Y shape discharge valve 2-11, in the second accelerating chamber 2-13, be provided with the second accelerator 2-12, be connected with delivery duct interface 2-14 at the second accelerating chamber 2-13.
The second weighting apparatus 2 as shown in figure 10, it is included in the upper hard-wired hopper 2-5 that weighs of weighing bracket 2-7, top ends at the hopper 2-5 that weighs is equipped with the 2-6 that weighs, be connected with the first soft cloth bag 2-2 at the 2-6 that weighs, side at weighing bracket 2-7 is fixed with auger support 2-16, at auger support 2-16 the second oblique auger 2-15 is installed, the discharging opening of the second oblique auger 2-15 is positioned at the top of inlet point, the discharging opening of the second oblique auger 2-15 and the first soft cloth bag 2-2 join, and the inlet point of the second oblique auger 2-15 joins with a distortion mouthful 2-1; Exit, bottom at the hopper 2-5 that weighs is equipped with discharge valve 2-8, be connected with the second soft cloth bag 2-9 at discharge valve 2-8, be connected with the 3rd buffering bucket 2-10 at the second soft cloth bag 2-9, be connected with delta/Y shape discharge valve 2-11 at the 3rd buffering bucket 2-10, be connected with the second accelerating chamber 2-13 at delta/Y shape discharge valve 2-11, in the second accelerating chamber 2-13, be provided with the second accelerator 2-12, be connected with delivery duct interface 2-14 at the second accelerating chamber 2-13.
The third weighting apparatus 2 as shown in figure 11, it is included in the upper hard-wired hopper 2-5 that weighs of weighing bracket 2-7, top ends at the hopper 2-5 that weighs is equipped with the 2-6 that weighs, be connected with the second spring auger 2-17 at the 2-6 that weighs, exit, bottom at the hopper 2-5 that weighs is equipped with discharge valve 2-8, be connected with the second soft cloth bag 2-9 at discharge valve 2-8, be connected with the 3rd buffering bucket 2-10 at the second soft cloth bag 2-9, be connected with delta/Y shape discharge valve 2-11 at the 3rd buffering bucket 2-10, be connected with the second accelerating chamber 2-13 at delta/Y shape discharge valve 2-11, in the second accelerating chamber 2-13, be provided with the second accelerator 2-12, be connected with delivery duct interface 2-14 at the second accelerating chamber 2-13.
Described feedway 3 comprises one-level pipeline 3-4, secondary pipeline 3-5 and triode road 3-6, on one-level pipeline 3-4, be connected with secondary pipeline 3-5 by the second triple valve 3-1, on secondary pipeline 3-5, be connected with triode road 3-6 by the second triple valve 3-1, on the 3-6 of triode road, be connected with material house material tower access tube 3-3 by the second triple valve 3-1.
Described breeding house hopper material tower apparatus 4 is included in the second cyclone 4-1 that connects on the inlet point of the second rotary distributor 4-2, the second rotary distributor 4-2 be connected with second saunter the pipe 4-3, be connected with small bins 4-4 at the second discharging opening of sauntering pipe 4-3, be connected with screen tray 4-5 at the discharging opening of small bins 4-4.
Described breeding house hopper material tower apparatus 4 is included in the upper pipe 4-6 that always saunters that connects of the second cyclone 4-1, be connected with the second pipe 4-3 that saunters at the pipe 4-6 that always saunters, be connected with small bins 4-4 at the second discharging opening of sauntering pipe 4-3, be connected with screen tray 4-5 at the discharging opening of small bins 4-4.
Described breeding house hopper material tower apparatus 4 is included in the second cyclone 4-1 that connects on the inlet point of large hopper 4-7, discharging opening at large hopper 4-7 is connected with four stars type discharge valve 4-8,4-8 is connected with the second rotary distributor 4-2 at four stars type discharge valve, the second rotary distributor 4-2 be connected with second saunter the pipe 4-3, be connected with small bins 4-4 at the second discharging opening of sauntering pipe 4-3, be connected with screen tray 4-5 at the discharging opening of small bins 4-4.
Described breeding house hopper material tower apparatus 4 is included in the upper pipe 4-6 that always saunters that connects of the second cyclone 4-1, is connected with spring auger 4-9 at the pipe 4-6 that always saunters, and 4-9 is connected with small bins 4-4 at the spring auger, is connected with screen tray 4-5 at the discharging opening of small bins 4-4.
Described breeding house hopper material tower apparatus 4 is included in the second cyclone 4-1 that installs on the inlet point of large hopper 4-7, is connected with spring auger 4-9 at the discharging opening of large hopper 4-7.
At discharge bin 1-6 of the peripheral placement of plant, discharge bin 1-6 below is connected to the first star-shaped discharge valve 1-5, meet the first accelerating chamber 1-3 below the first star-shaped discharge valve 1-5, be provided with the first accelerator 1-4 in the first accelerating chamber 1-3, wherein, the minimum volume V of the first star-shaped discharge valve 1-5 determines according to the per hour operational throughput of required material, and the size of discharge hopper is according to car load maximum loading: G, unit: ton; Vehicle-mounted auger is operational throughput per hour: M, and unit: ton/hour; Material density: ρ, unit: ton/cubic meter; Star-shaped discharge valve blanking velocity: P, unit: cube m/h come to determine.Their pass is
Figure BDA00001971865200071
(formula 1).When can dig pit in the scene, discharge bin 1-6 major part is embedded in underground, and 300-500mm bassets above the discharge bin 1-6; When site environment is not enough to dig the hole of satisfying the degree of depth, can dig the degree of depth that can bear at below ground, the above holds up the high platform 1-19 of certain altitude, the height of high platform 1-19 and the lower degree of depth of digging and add 500mm for the height of discharge bin 1-6.When not allowing to dig pit below the ground, all devices can not moved on to more than the ground, simple lay dragon bulk feed vehicle 1-7 meets the first buffering bucket 1-17, connect one first oblique auger 1-18 below the first buffering bucket 1-17, the first oblique auger 1-18 is transported to the feed among the first buffering bucket 1-17 among the discharge bin 1-6.When the car that uses is not simple lay dragon canning cart, can not save the first buffering bucket 1-17 and the first oblique auger 1-18, directly with the oblique auger that carries on the canning cart feed is transported in the discharge hopper.Discharge bin 1-6 below link the first star-shaped discharge valve 1-5, the rotation by the first star-shaped discharge valve 1-5 is discharged to quota of feed among the first accelerator 1-4, and feed is because action of gravitation falls into the first accelerating chamber 1-3 from the first accelerator 1-4.Feed meets with high velocity air that front end roots blower 1-1 blows in the first accelerating chamber 1-3, obtains higher speed, and triple valve 1-8 is logical with roots blower 1-1 and cyclone 1-10 termination.Feed is transported among the first cyclone 1-10 through the first triple valve 1-8 and delivery duct 1-9, feed finally enters among the first rotary distributor 1-11 in the rotation of the first cyclone 1-10 high speed and decline, gas then flows out from the air outlet of the first cyclone 1-10 upper end, realizes that gas separates with solid.Feed link is crossed rotary distributor 1-11 and is realized choosing feed bin number, enters this storehouse through the first pipe 1-12 that saunters.
Below each storehouse of total feed bin 1-13, discharge valve 1-15 is installed.Meet the many mouthfuls of distortion mouth 2-1 that become single port below discharge valve 1-15, the number suitable for reading of distortion mouthful 2-1 is identical with the number in total storehouse and corresponding one by one.When construction unit be subjected to that restriction such as height subgrade etc. cannot do support too high the time, artillery) or scrapper conveyor meeting the second oblique auger 2-15(below the distortion mouthful 2-1 calls:, the top discharge mouth of the second oblique auger 2-15 or scrapper conveyor meets the first soft cloth bag 2-2, and the first soft cloth bag 2-2 below meets the hopper 2-5 that weighs; When construction unit is not limited by height, subgrade etc., the end opening of distortion mouth meets the second buffering bucket 2-3, meet the second star-shaped discharge valve 2-4 below the second buffering bucket 2-3, meet the first soft cloth bag 2-2 below the second star-shaped discharge valve 2-4, meet the hopper 2-5 that weighs below the first soft cloth bag 2-2; Or meeting spring auger 2-17 below total feed bin 1-13, spring auger 2-17 is delivered directly to the hopper 2-5 that weighs with material.The weigh side of hopper 2-5 is equipped with 4 pressure or pulling force inductor, and inductor is fixed on the 2-6 that weighs.Weigh hopper 2-5 below meet lower discharge valve 2-8, discharge valve 2-8 below meets the second soft cloth bag 2-9.When needing whole feed the first triple valve 1-8 being adjusted to accelerating chamber 1-3 communicates with weighing system interface 1-16, the amount X that will weigh in control panel input, such as Fig. 9, specify the discharge valve 1-15 of feed bin to open, the second star-shaped discharge valve 2-4 begins to rotate, feed arrives the second star-shaped discharge valve 2-4 top through a distortion mouthful 2-1, evenly is discharged into the hopper 2-5 that weighs by the second star-shaped discharge valve 2-4.Discharge valve 1-15 closes when the weight that enters the hopper 2-5 feed of weighing reaches certain numerical value M from setting value, and upper the second star-shaped discharge valve 2-4 closes when reaching setting value X.Wherein
Figure BDA00001971865200081
(formula 2), a, b are respectively the distortion mouthful 2-1 length of pipe cross-sectional plane and wide of sauntering in the formula; L is that this discharge valve 1-15 is to the distance of distortion mouthful 2-1 end opening; ρ is the density of feed.Perhaps, such as Figure 10, specify the discharge valve 1-15 of feed bin to open, the second oblique auger 2-15 begins to rotate, and feed arrives the second oblique auger 2-15 top through distortion mouthful 2-1, evenly is discharged into the hopper 2-5 that weighs by the second oblique auger 2-15.Discharge valve 1-15 closes when the weight that enters the hopper 2-5 feed of weighing reaches certain numerical value M from setting value, and upper the second star-shaped discharge valve 2-4 closes when reaching setting value X.Wherein the method for calculating of M is with formula 2.As shown in figure 11, specify the auger 2-17 under the storehouse to begin action, directly feed is transported to weight box 2-5 from this storehouse, spring auger 2-17 quits work when the feed that enters the hopper 2-5 that weighs equals setting value X.Weigh finish after lower discharge valve 2-8 open, star-shaped discharge valve 2-11 begins to rotate discharging, feed link is crossed the second soft cloth bag 2-9 and is fallen among the 3rd buffering bucket 2-10, and by delta/Y shape discharge valve 2-11 feed being discharged into the second accelerator 2-12, feed is because action of gravitation falls into the second accelerating chamber 2-13 from the second accelerator 2-12.Feed meets with high velocity air behind the second accelerating chamber 2-13, obtains higher speed.Feed enters among the second cyclone 4-1 that specifies breeding house along the delivery system pipeline with high velocity air, because the separation principle of the second cyclone 4-1 is so that feed falls from the lower discharge port of the second cyclone 4-1, air-flow flows out from upper air outlet.
The first breeding house hopper material tower apparatus 4 as shown in figure 13, the the second cyclone 4-1 that connects at the inlet point of the second rotary distributor 4-2, the second rotary distributor 4-2 be connected with second saunter the pipe 4-3, be connected with small bins 4-4 at the second discharging opening of sauntering pipe 4-3, be connected with screen tray 4-5 at the discharging opening of small bins 4-4.
Such as Figure 14, when the breeding house insufficient height but when can the part increasing, the middle part that the second cyclone 4-1 and the second rotary distributor 4-2 are arranged on the house adds the high position, the the second cyclone 4-1 that connects at the inlet point of the second rotary distributor 4-2, the second rotary distributor 4-2 be connected with second saunter the pipe 4-3, be connected with small bins 4-4 at the second discharging opening of sauntering pipe 4-3, be connected with screen tray 4-5 at the discharging opening of small bins 4-4.
The second breeding house hopper material tower apparatus 4 as shown in figure 15, the second cyclone 4-1 connect always saunter the pipe 4-6, be connected with the second pipe 4-3 that saunters at the pipe 4-6 that always saunters, be connected with small bins 4-4 at the second discharging opening of sauntering pipe 4-3, be connected with screen tray 4-5 at the discharging opening of small bins 4-4.
The third breeding house hopper material tower apparatus 4 as shown in figure 16, when the building height of breeding house is enough, the second cyclone 4-1 is installed in the top of the centre of breeding house, the second cyclone 4-1 below is connected to the large hopper 4-7 of certain storage capacity, large hopper 4-7 below is equipped with four stars type discharge valve 4-8, and four stars type discharge valve 4-8 below connects the second rotary distributor 4-2 or the 3rd triple valve.Feed falls into large hopper 4-7 from the second cyclone 4-1 feed opening, and assign to the small bins 4-4 of appointment by four stars type discharge valve 4-8 by the second rotary distributor 4-2 or the 3rd triple valve, when a small bins (4-4 completely after automatically to next small bins 4-4 conveying.The hopper volume
Figure BDA00001971865200091
(formula 3) is when V is 0 or not charging box and discharge valve during negative value.M is feeding capacity of a breeding house in the formula; ρ is feed density; N is the number of distribution box in the breeding house; ν is the volume of distribution box.Breeding house height deficiency or horizontal span are not enough to too greatly use distributing box and elephant trunk, when the roof does not possess the local flow improvement condition again, the cyclone 4-1 of breeding house is installed in the top at middle part, and the below is connected to the large hopper 4-7 of certain storage capacity, and large hopper 4-7 volume V method of calculating is with formula 3.
The 4th kind of breeding house hopper material tower apparatus 4 connects the 3rd triple valve below the second cyclone 4-1 as shown in figure 17, and two outlets of the 3rd triple valve meet respectively two spring auger 4-9, by spring auger 4-9 feed are transported among each small bins 4-4.
The 5th kind of breeding house hopper material tower apparatus 4 as shown in figure 18, when not allowing in the breeding house to place too much equipment such as grade, the second cyclone 4-1 is installed in outdoor, the second cyclone 4-1 below meets large hopper 4-7, and the spring auger 4-9 by large hopper 4-7 below is transported to each minute feed bin.
Whole delivery system of the present invention is simple, compact and reasonable for structure; Avoided because energy consumption is lowered in radiography aerial contamination, the noise pollution that bulk feed tank car ordinary activity inside causes, whatsoever weather does not affect the conveying of feed, more safety and sanitation simultaneously.Reduce energy consumption and human cost, realize whole automation of carrying, improve cultivation efficient.

Claims (12)

1. whole delivery system, it is characterized in that: it comprises the total bin device of feed (1), weighting apparatus (2), feedway (3) and breeding house hopper material tower apparatus (4), the feed end of the discharge end of the total bin device of feed (1) and weighting apparatus (2) joins, the feed end of the discharge end of weighting apparatus (2) and feedway (3) joins, and the feed end of the discharge end of feedway (3) and breeding house hopper material tower apparatus (4) joins.
2. whole delivery system as claimed in claim 1, it is characterized in that: the total bin device of described feed (1) comprises total feed bin (1-13) and discharge bin (1-6), at the upper hard-wired total feed bin (1-13) of total bin bracket (1-14), be fixed with first pipe (1-12) of sauntering in the top ends of total feed bin (1-13), be fixed with the first rotary distributor (1-11) in the first top ends of sauntering pipe (1-12), the top ends of the first rotary distributor (1-11) is fixed with the first cyclone (1-10), be connected with delivery duct (1-9) at the first cyclone (1-10), the other end of delivery duct (1-9) is connected with the first triple valve (1-8), be provided with the interface of weighing (1-16) at the first triple valve (1-8), be connected with adapter bonnet (1-2) at the first triple valve (1-8), at the discharging opening place of discharge bin (1-6) the first star-shaped discharge valve (1-5) is installed, be fixed with the first accelerating chamber (1-3) at the first star-shaped discharge valve (1-5), the first accelerating chamber (1-3) is fixed on the adapter bonnet (1-2), in the first accelerating chamber (1-3), be provided with the first accelerator (1-4), at adapter bonnet (1-2) roots blower (1-1) be installed; Bottom discharging opening at total feed bin (1-13) is connected with discharge valve (1-15).
3. whole delivery system as claimed in claim 1, it is characterized in that: the total bin device of described feed (1) comprises total feed bin (1-13) and discharge bin (1-6), at the upper hard-wired total feed bin (1-13) of total bin bracket (1-14), be fixed with first pipe (1-12) of sauntering in the top ends of total feed bin (1-13), be fixed with the first rotary distributor (1-11) in the first top ends of sauntering pipe (1-12), the top ends of the first rotary distributor (1-11) is fixed with the first cyclone (1-10), be connected with delivery duct (1-9) at the first cyclone (1-10), the other end of delivery duct (1-9) is connected with the first triple valve (1-8), be provided with the interface of weighing (1-16) at the first triple valve (1-8), be connected with adapter bonnet (1-2) at the first triple valve (1-8), the entrance of discharge bin (1-6) is equipped with the first oblique auger (1-18) that is tilted to setting, the discharging opening of the first oblique auger (1-18) is positioned at the top of inlet point, be fixed with the first buffering bucket (1-17) at the inlet point place of the first oblique auger (1-18), at the discharging opening place of discharge bin (1-6) the first star-shaped discharge valve (1-5) is installed, be fixed with the first accelerating chamber (1-3) at the first star-shaped discharge valve (1-5), the first accelerating chamber (1-3) is fixed on the adapter bonnet (1-2), in the first accelerating chamber (1-3), be provided with the first accelerator (1-4), at adapter bonnet (1-2) roots blower (1-1) be installed; Bottom discharging opening at total feed bin (1-13) is connected with discharge valve (1-15).
4. whole delivery system as claimed in claim 1, it is characterized in that: described weighting apparatus (2) is included in the upper hard-wired hopper of weighing (2-5) of weighing bracket (2-7), top ends at the hopper of weighing (2-5) is equipped with weigh (2-6), be connected with the first soft cloth bag (2-2) at weigh (2-6), be connected with the second star-shaped discharge valve (2-4) at the first soft cloth bag (2-2), be connected with the second buffering bucket (2-3) at the second star-shaped discharge valve (2-4), be connected with distortion mouthful (2-1) at the second buffering bucket (2-3); In the exit, bottom of the hopper of weighing (2-5) discharge valve (2-8) is installed, be connected with the second soft cloth bag (2-9) at discharge valve (2-8), be connected with the 3rd buffering bucket (2-10) at the second soft cloth bag (2-9), (2-10) is connected with delta/Y shape discharge valve (2-11) at the 3rd buffering bucket, be connected with the second accelerating chamber (2-13) at delta/Y shape discharge valve (2-11), in the second accelerating chamber (2-13), be provided with the second accelerator (2-12), be connected with delivery duct interface (2-14) at the second accelerating chamber (2-13).
5. whole delivery system as claimed in claim 1, it is characterized in that: described weighting apparatus (2) is included in the upper hard-wired hopper of weighing (2-5) of weighing bracket (2-7), top ends at the hopper of weighing (2-5) is equipped with weigh (2-6), be connected with the first soft cloth bag (2-2) at weigh (2-6), side at weighing bracket (2-7) is fixed with auger support (2-16), at auger support (2-16) the second oblique auger (2-15) is installed, the discharging opening of the second oblique auger (2-15) is positioned at the top of inlet point, the discharging opening of the second oblique auger (2-15) and the first soft cloth bag (2-2) join, and the inlet point of the second oblique auger (2-15) joins with distortion mouthful (2-1); In the exit, bottom of the hopper of weighing (2-5) discharge valve (2-8) is installed, be connected with the second soft cloth bag (2-9) at discharge valve (2-8), be connected with the 3rd buffering bucket (2-10) at the second soft cloth bag (2-9), (2-10) is connected with delta/Y shape discharge valve (2-11) at the 3rd buffering bucket, be connected with the second accelerating chamber (2-13) at delta/Y shape discharge valve (2-11), in the second accelerating chamber (2-13), be provided with the second accelerator (2-12), be connected with delivery duct interface (2-14) at the second accelerating chamber (2-13).
6. whole delivery system as claimed in claim 1, it is characterized in that: described weighting apparatus (2) is included in the upper hard-wired hopper of weighing (2-5) of weighing bracket (2-7), top ends at the hopper of weighing (2-5) is equipped with weigh (2-6), be connected with the second spring auger (2-17) at weigh (2-6), in the exit, bottom of the hopper of weighing (2-5) discharge valve (2-8) is installed, be connected with the second soft cloth bag (2-9) at discharge valve (2-8), be connected with the 3rd buffering bucket (2-10) at the second soft cloth bag (2-9), (2-10) is connected with delta/Y shape discharge valve (2-11) at the 3rd buffering bucket, be connected with the second accelerating chamber (2-13) at delta/Y shape discharge valve (2-11), in the second accelerating chamber (2-13), be provided with the second accelerator (2-12), be connected with delivery duct interface (2-14) at the second accelerating chamber (2-13).
7. whole delivery system as claimed in claim 1, it is characterized in that: described feedway (3) comprises one-level pipeline (3-4), secondary pipeline (3-5) and triode road (3-6), be connected with secondary pipeline (3-5) at one-level pipeline (3-4) by the second triple valve (3-1), be connected with triode road (3-6) at secondary pipeline (3-5) by the second triple valve (3-1), be connected with material house material tower access tube (3-3) at triode road (3-6) by the second triple valve (3-1).
8. whole delivery system as claimed in claim 1, it is characterized in that: described breeding house hopper material tower apparatus (4) is included in the second cyclone (4-1) that connects on the inlet point of the second rotary distributor (4-2), be connected with second pipe (4-3) of sauntering at the second rotary distributor (4-2), be connected with small bins (4-4) at the second discharging opening of sauntering pipe (4-3), be connected with screen tray (4-5) at the discharging opening of small bins (4-4).
9. whole delivery system as claimed in claim 1, it is characterized in that: described breeding house hopper material tower apparatus (4) is included in the upper pipe (4-6) of always sauntering that connects of the second cyclone (4-1), be connected with second pipe (4-3) of sauntering at the pipe (4-6) of always sauntering, be connected with small bins (4-4) at the second discharging opening of sauntering pipe (4-3), be connected with screen tray (4-5) at the discharging opening of small bins (4-4).
10. whole delivery system as claimed in claim 1, it is characterized in that: described breeding house hopper material tower apparatus (4) is included in the second cyclone (4-1) that connects on the inlet point of large hopper (4-7), discharging opening at large hopper (4-7) is connected with four stars type discharge valve (4-8), be connected with the second rotary distributor (4-2) at four stars type discharge valve (4-8), be connected with second pipe (4-3) of sauntering at the second rotary distributor (4-2), be connected with small bins (4-4) at the second discharging opening of sauntering pipe (4-3), be connected with screen tray (4-5) at the discharging opening of small bins (4-4).
11. whole delivery system as claimed in claim 1, it is characterized in that: described breeding house hopper material tower apparatus (4) is included in the upper pipe (4-6) of always sauntering that connects of the second cyclone (4-1), pipe (4-6) is connected with spring auger (4-9) always sauntering, be connected with small bins (4-4) at spring auger (4-9), be connected with screen tray (4-5) at the discharging opening of small bins (4-4).
12. whole delivery system as claimed in claim 1, it is characterized in that: described breeding house hopper material tower apparatus (4) is included in the second cyclone (4-1) of installing on the inlet point of large hopper (4-7), is connected with spring auger (4-9) at the discharging opening of large hopper (4-7).
CN 201220382782 2012-08-03 2012-08-03 Whole field transport system Expired - Fee Related CN202754558U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220382782 CN202754558U (en) 2012-08-03 2012-08-03 Whole field transport system

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Application Number Priority Date Filing Date Title
CN 201220382782 CN202754558U (en) 2012-08-03 2012-08-03 Whole field transport system

Publications (1)

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CN202754558U true CN202754558U (en) 2013-02-27

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Family Applications (1)

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CN 201220382782 Expired - Fee Related CN202754558U (en) 2012-08-03 2012-08-03 Whole field transport system

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102774662A (en) * 2012-08-03 2012-11-14 黄晋 Whole-farm conveying system
CN111296308A (en) * 2020-02-11 2020-06-19 杭州法牧智能科技有限公司 Feed supply system for pig farm
CN111328730A (en) * 2020-03-09 2020-06-26 杭州法牧智能科技有限公司 Primary feed supply device for pig farm

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102774662A (en) * 2012-08-03 2012-11-14 黄晋 Whole-farm conveying system
CN102774662B (en) * 2012-08-03 2014-11-05 黄晋 Whole-farm conveying system
CN111296308A (en) * 2020-02-11 2020-06-19 杭州法牧智能科技有限公司 Feed supply system for pig farm
CN111328730A (en) * 2020-03-09 2020-06-26 杭州法牧智能科技有限公司 Primary feed supply device for pig farm

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