Abstract:
A combine harvester includes a header unit (4) to cut and convey the crop, towards feeder, feeder unit (23) to convey crop to axial flow thresher to separate (25) grain from straw, a cleaning unit (25a) to clean grain and a straw‐discharge unit (26) to discharge the straw perpendicular to the direction of travel and between the tracks, a conveyor to convey the clean grain to the storage unit or grain tank. Said straw discharge unit (5) includes a curved shaped guid wall that guide the straw material to fall between the tracks (6). A storage box (22b) for day to day needs of operator is inbuilt with grain storage unit (22) with easy access to operator. Further, the track frame (7) is designed such that it provides required rigidity without causing accumulation of water or debris inside.
Abstract:
A mower (200) capable of driving on sloping areas is provided. The mower comprises at least two tracks (116, 117), cutting means (114) positioned in front of the tracks and where the width of the cutting means at least partly overlaps the tracks and wherein said mower is driven by at least one engine (112) being firmly mounted between said tracks and has an active lubrication system. This results in a narrow mower where the cutting means can get closer to edges of e.g. a lawn. Further, since the mower is narrow, the cutting means are also narrow, whereby the power requirements of the engine are reduced. Further, the length of the mower is larger than the width, whereby the risk of forward or backward tipping is reduced. Further, the mower is able to tilt e.g. when mowing on sloped surfaces, and the engine will not deliver a too low power output or risk being damaged due to an insufficient lubrication. The engine does not need to be specially suspended, whereby the width of the mower is reduced.
Abstract:
The invention relates to an implement carrier (1 ), which comprises fastening means (5) for mounting an implement at the front. At least one of the fastening means (5) comprises a sleeve part (11 , 15), which is attached at a first point of attachment on the implement carrier (1 ) and is pivotable about the same. The fastening means has an implement fastener (19), to which an implement can be fastened, the implement fastener being pivotally attached at a second point of attachment on the sleeve part. The sleeve part (11 , 15) can be operated by rotating using an actuator part (27) so that the implement fastener is moved backwards, and a driving belt between the implement carrier and the implement is slackened, whereby the driving belt can easily be removed.
Abstract:
Apparatus is disclosed for establishing proper clearance between adjacent parts of a combine harvesting machine. Additionally, means are provided for control of airflow through the machine after proper clearances are established.
Abstract:
The invention relates to an agricultural machine, such as a mowing implement, provided with one or more mowing members (1) for mowing a crop, which agricultural machine comprises means for determining the soil conditions and/or determining and/or forecasting the behaviour of at least part of the agricultural machine caused by the soil conditions and/or the crop present on the ground. The invention also relates to a method of using an agricultural machine, such as a mowing implement.
Abstract:
The invention relates to a height and suspension adjustment device (14) intended for use in a pull-type at least one-axled harvest-baling machine (1), which receives the harvest (4) laid flatwise or in windrow and feeds its baling device (2) which, according to its principle of operation, forms bales (5) of various geometrical shapes, including rectangular parallelepipeds of different sizes. Harvest (4) mammermilling and precompacting are possible during the feeding process, and the baling members exert forces resulting from the mass in or under a specific angle relative to the supporting frame and the chassis, in the longitudinal direction of the vehicle. The height and suspension adjustment device (17) is designed so as to absorb, due to its oblique position, all or any forces from the mass of the baling members (2).