Abstract:
본 발명은 트랙터의 유압 제어에 따라 차륜으로부터 메쉬체인 컨베이어로 전달되는 회전력을 단속함과 함께 다양한 기능을 부가하여 퇴비 등의 비료를 보다 용이하고 편리하게 살포할 수 있도록 한 차륜 구동식 비료살포기에 관한 것이다. 이를 위해, 본 발명은 차륜 및 연결장치를 구비하여 트랙터로부터 견인력을 전달받아 주행 가능한 본체 프레임과; 상기 본체 프레임의 상부에 설치되어 비료를 적재 가능하며, 저부 일측에 배출구 및 셔터가 설치되고, 적재된 비료를 배출구로 이송시키는 메쉬체인 컨베이어를 바닥면에 구비한 호퍼와; 상기 본체 프레임에 회동 가능하게 지지된 전동휘일을 구비하여, 상기 차륜에 선택적으로 접촉하는 전동휘일로부터 입력 받은 회전력을 상기 메쉬체인 컨베이어에 전달하여 구동시키는 동력전달장치와; 상기 본체 프레임과 동력전달장치 사이에 탄성체 및 유압실린더가 설치되어 상기 트랙터로부터 공급되는 유압의 제어에 따라 차륜으로부터 전동휘일로의 회전력 전달을 단속하는 단속제어장치와; 상기 호퍼의 배출구 하측에 위치하여 회전에 따라 비료를 살포하는 살포판;으로 구성되어 트랙터의 유압 제어에 따라 살포기의 메쉬제친 컨베이어와 셔터 및 살포판을 단속적으로 작동시킬수 있는 차륜 구동식 비료살포기를 제공한다.
Abstract:
A conditioner (16) for a fertilizer box (14) configured to convey compacted particles (22) away from a conveyor (36) path of fertilizer particles (22). The conditioner (16) may include a plurality of wings (50) for deflecting a portion of a flow of fertilizer particles (22) from a conveyor (36) path. A method includes determining a constant effective dispense opening (34) for a fertilizer box (14) having the conditioner (16) and using the constant effective dispense opening (34) to determine a fertilizer dispense rate.
Abstract:
A trailed hopper (2) for spreadable materials having a bottom (5); first and second sidewalls (6, 7) upstanding from the bottom; a front wall (8) upstanding from the bottom; a mounting (18) for receiving a mounted spreader (50); and conveying means (13) for feeding material from the trailed hopper (2) to a mounted spreader (50).
Abstract:
Wheat or other granular, flowable material is supplied from a metering hopper at a controlled rate through a limiting aperture at a base of a hopper side wall. A moving surface which has served as a floor of the hopper emerges through the aperture, carrying a covering of material out and toward a material disposal area and is then recirculated into the hopper. The moving surface is a repeatedly used upper surface of a disc or cone that is rotated by a motor. Supply of material is immediately varied by varying the speed of the moving surface.
Abstract:
A spreader carried or connected to a vehicle for spreading particles (2), such as sand or salt, comprising a container (1) for the particles (2) and dispensing device comprising a bottom plate (3) and an outlet slit (4). The bottom plate (3) is vibratable by means of a vibration motor (5) when dispensing particles (2) and when using the spreader, the bottom plate (3) is inclined upwards towards the outlet slit (4) in relation to the horizontal plane.
Abstract:
A sectional control belt assembly (20) includes a plurality of belt subsections (34, 36) that are configured to be individually displaced. A sectional control module (32) selectively provides motive power to individual ones of the plurality of belt subsections such that each belt subsection is movable relative to the other belt subsections.
Abstract:
Systems and methods for injecting materials into soil within a predetermined geographical area are described. One or more tanks store chemicals and a mixing chamber in an injector mixes measured quantities of the chemicals. The mixture is introduced to a stream of water and thence to the soil. A controller monitors the flow of chemicals and the stream of water and causes the injector to release discrete predetermined amounts of the chemical mixture into the soil at a sequence of injection points. The controller can provide a pulsed signal to control the volume and rate of delivery of water. The controller may operate according to a treatment plan.
Abstract:
The applicator system is designed to distribute agriculturally beneficial matter across a field. The system includes a supply reservoir and an agitator assembly that grates and abrades matter in the supply reservoir until the abraded matter precipitates out of the supply reservoir and onto a supply conveyor. The supply conveyor conveys the matter to a distribution device. The distribution device meters the matter onto at least two lateral distribution conveyors. At the end of each of the distribution conveyors the matter is funneled downwardly into an open trench created by a trenching device associated with each distribution conveyor. After the matter is deposited into the trench, a trench closing assembly directs soil back into the trench and compresses the soil surface.
Abstract:
The applicator system is designed to distribute agriculturally beneficial matter across a field. The system includes a supply reservoir and an agitator assembly that grates and abrades matter in the supply reservoir until the abraded matter precipitates out of the supply reservoir and onto a supply conveyor. The supply conveyor conveys the matter to a distribution device. The distribution device meters the matter onto at least two lateral distribution conveyors. At the end of each of the distribution conveyors the matter is funneled downwardly into an open trench created by a trenching device associated with each distribution conveyor. After the matter is deposited into the trench, a trench closing assembly directs soil back into the trench and compresses the soil surface.