Be applied to degassing unit of livestock-raising
Technical Field
The utility model relates to the technical field of disinfection of livestock breeding, in particular to a disinfection device applied to the livestock breeding.
Background
The farm is to concentrate a certain amount of beasts and birds to the place of unified raising, breeding in the specific area, at present, to the farm of raising the cattle, the place skeleton is built to the steel construction most, then lay plastic cloth at the steel construction surface, thereby form the farm, the plant can all remain the pathogen after breeding a batch of cattle in the farm, if thoroughly eliminate these pathogens, very easily lead to next batch of cattle to infect, and then cause the loss to the raiser, therefore need disinfect the plant inside, present disinfection mode is usually workman's back of body knapsack agricultural electric sprayer, hold the handle and wave the guide arm and drive the shower nozzle and remove, the shower nozzle then can spray the antiseptic solution in the farm to the farm, and then disinfect to the farm, however, present farm for raising the cattle is high and area is big, and adopt the mode of body knapsack agricultural electric sprayer disinfection, intensity of labour is big, and disinfect still need carry out the disinfection to its ground after the excrement and urine clearance.
Disclosure of utility model
The utility model aims to provide a sterilizing device applied to livestock breeding, which solves the problem of high labor intensity of a sterilizing mode conventionally applied to the livestock breeding.
In order to solve the technical problems, the utility model adopts the following technical scheme:
The utility model provides a disinfection device applied to livestock breeding, which comprises a guide rail arranged on a breeding shed, a driving trolley sliding on the guide rail, a spraying frame connected with the bottom of the driving trolley, and a disinfectant supply tank arranged on the driving trolley and used for providing disinfectant for the spraying frame;
Wherein a cleaning mechanism for feces is arranged on a bottom plate of a farm of the cultivation shed;
The spraying frame is provided with a spraying main pipe, the spraying main pipe is provided with a plurality of atomizing spray heads spraying to the bottom plate of the farm, and the spraying main pipe is communicated with the disinfectant liquid supply tank through a liquid supply pipe and is provided with a conveying pump.
The cleaning mechanism comprises a sludge scraping plate clung to the bottom plate of the farm, at least two traction steel wires for adjusting the horizontal movement of the sludge scraping plate, and a traction mechanism connected with the traction steel wires;
Or/and, the traction mechanism comprises a winch and a driving motor, wherein the winch is used for winding the traction steel wire.
Still further, the guide rail includes two horizontal I-steel that set up on the culture shed, the guide rail is located directly over the plant bottom plate.
Still further, wherein the driving trolley is provided with a driving wheel sliding on the guide rail, and the driving trolley is also provided with a motor driving the driving wheel to roll and slide on the guide rail.
Still further, the both ends of spray frame are installed through two spliced poles the bottom of driving dolly.
Still further, the both ends of spray frame are installed through two telescopic cylinders the bottom of driving dolly.
Compared with the prior art, the utility model has the beneficial technical effects that the driving trolley is driven to slide on the guide rail, and the spraying frame is carried to spray disinfectant to the bottom plate of the farm, wherein the disinfectant can be a benzalkonium bromide or potassium permanganate solution, so that the labor intensity of manual spraying and disinfection is reduced, and the disinfection operation efficiency is high.
Drawings
The utility model is further described with reference to the following description of the drawings.
FIG. 1 is a schematic view of the mounting structure of the disinfection apparatus of the present utility model applied to livestock breeding;
fig. 2 is a schematic structural view of the sterilizing apparatus for livestock cultivation according to the present utility model;
FIG. 3 is a schematic diagram of the present utility model for fecal cleaning in conjunction with a disinfection apparatus for livestock breeding;
Fig. 4 is a schematic diagram of another embodiment of fig. 2.
The reference numerals indicate that 1, a bottom plate of a farm, 2, a fecal sewage collecting pool, 3, a traction steel wire, 31, a sewage scraping mud plate, 4, a traction mechanism, 41, a winch, 42, a motor, 5, a cultivation shed, 6, a guide rail, 7, a driving trolley, 8, a connecting column, 9, a spray frame, 91, an atomization spray head, 92, a liquid supply pipe, 93, a disinfectant liquid supply tank and 10, a telescopic cylinder.
Detailed Description
The embodiment discloses a disinfection device applied to livestock breeding, which comprises a guide rail 6 fixedly arranged on a breeding shed 5, a driving trolley 7 sliding on the guide rail 6, a spray frame 9 connected with the bottom of the driving trolley 7, and a disinfectant liquid supply tank 93 arranged on the driving trolley 7 and used for providing disinfectant liquid for the spray frame 9, wherein a cleaning mechanism for excrement is arranged on a bottom plate 1 of the breeding shed 5;
the working principle of the embodiment is as follows:
When the cultivation shed 5 is disinfected, firstly, the cleaning mechanism is utilized to clean the excrement on the cultivation farm base plate 1 so as to be convenient for spraying disinfectant, then the driving trolley 7 is driven to slide on the guide rail 6 and spray the disinfectant to the cultivation farm base plate 1 with the spraying frame 9, wherein the disinfectant can be a benzalkonium chloride or potassium permanganate solution, so that the labor intensity of manual spraying and disinfection is reduced, and the disinfection operation efficiency is high.
As shown in fig. 2, in this embodiment, a spraying main pipe is installed on the spraying frame 9, a plurality of atomizing nozzles 91 spraying toward the bottom plate 1 of the farm are installed on the spraying main pipe, the spraying main pipe is communicated with the disinfectant tank 93 through a liquid supply pipe 92, and a delivery pump is installed on the liquid supply pipe 92, so as to provide disinfectant for the atomizing nozzles 91.
As shown in fig. 1, a fecal sewage collecting tank 2 is respectively arranged at two ends of the bottom plate 1 of the farm, wherein the fecal sewage collecting tank 2 is used for collecting the fecal sewage of the farmed animals;
As shown in fig. 3, the cleaning mechanism comprises a sludge scraping plate 31 closely attached to the bottom plate 1 of the farm, at least two traction steel wires 3 for adjusting the horizontal movement of the sludge scraping plate 31, and a traction mechanism 4 connected with the traction steel wires 3, wherein the traction mechanism 4 comprises a winch 41 for winding the traction steel wires 3 and a driving motor 42;
When the device is used, windlass 41 for winding the traction steel wire 3 is respectively arranged at two ends of the traction steel wire 3, so that the sludge scraping plate 31 is driven to push excrement on the bottom plate 1 of the farm into the excrement collecting tank 2, so that the excrement can be effectively treated, and the ground of the bottom plate 1 of the farm can be conveniently disinfected.
In this embodiment, the guide rail 6 includes two i-beams horizontally mounted on the cultivation shed 5, and the guide rail 6 is located right above the bottom plate 1 of the cultivation farm. Specifically, the driving trolley 7 is provided with a driving wheel sliding on the guide rail 6, the driving trolley 7 is also provided with a motor driving the driving wheel to roll and slide on the guide rail 6, so as to drive the driving trolley 7 to slide on the guide rail 6, and the disinfection is effectively carried out.
As shown in fig. 2, two ends of the spray rack 9 are mounted at the bottom of the driving trolley 7 through two connecting posts 8, wherein the spray rack 9 is close to the bottom plate 1 of the farm.
As shown in fig. 3, two ends of the spray frame 9 are mounted at the bottom of the driving trolley 7 through two telescopic cylinders 10, wherein the telescopic cylinders 10 are electric telescopic cylinders, so that the position height of the spray frame 9 can be conveniently adjusted by using the telescopic cylinders 10.
The foregoing embodiments are merely illustrative of the preferred embodiments of the present utility model, and are not intended to limit the scope of the present utility model, and various modifications and improvements made by those skilled in the art to which the present utility model pertains should fall within the scope of the utility model as defined in the appended claims without departing from the spirit of the utility model.