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    • 1. 发明申请
    • SYSTEM FOR OPTIMIZING BALE DROP LOCATIONS WITHIN A FIELD
    • 优化BALL DROP位置的系统
    • WO2014031355A1
    • 2014-02-27
    • PCT/US2013/054118
    • 2013-08-08
    • AGCO CORPORATIONOLANDER, BrianBLOUGH, Cedric
    • OLANDER, BrianBLOUGH, Cedric
    • A01F15/08
    • A01F15/0875A01F15/07A01F15/0883
    • A baler (10) for forming crop bales (24) and releasing or dropping the bales (24) at targeted drop locations (34, 36) in a field (32) includes a bale-forming chamber (12), a bale carrier (14) rearward of the bale forming chamber (12), a geographic location sensor (18), and a control system (16). The bale-forming chamber(12) forms the bales (24) and the bale carrier (14) supports at least one crop bale (24) thereon and releases the bale (24) therefrom when actuated. The geographic location sensor (18) outputs signals corresponding with a geographic location of the baler (10). The control system (16) has a plurality of targeted bale drop locations (34, 36) stored therein, and is configured to calculate a distance from the current baler (10) position to a first targeted drop position (34) and calculate a distance from the current baler (10) position to a second targeted drop position (36) and compare the distances to determine a desired drop location to generate a signal to command the bale carrier (14) to release the crop bale (24) therefrom.
    • 一种用于在农田(32)中的目标放置位置(34,36)上形成作物捆(24)并释放或掉落捆包(24)的打包机(10)包括捆捆形成室(12),捆包架 14)在捆包形成室(12)的后方,地理位置传感器(18)和控制系统(16)。 捆包形成室(12)形成捆(24),并且捆包载体(14)在其上支撑至少一个作物捆(24),并在致动时从其释放捆(24)。 地理位置传感器(18)输出与打包机(10)的地理位置对应的信号。 控制系统(16)具有存储在其中的多个目标捆包放置位置(34,36),并且被配置为计算从当前打捆机(10)位置到第一目标落下位置(34)的距离,并计算距离 从当前的打包机(10)位置到第二目标下降位置(36),并比较距离以确定期望的下降位置,以产生一个信号,以命令捆包载体(14)从其中释放作物捆(24)。
    • 2. 发明申请
    • CHOPPER ATTACHMENT TO IMPROVE CONDITIONING OF BIO-MASS TYPE CROPS
    • CHOPPER附件改善生物质量类型作物的调节
    • WO2013067119A1
    • 2013-05-10
    • PCT/US2012/062966
    • 2012-11-01
    • PRUITT, MartinOLANDER, BrianAGCO CORPORATION
    • PRUITT, MartinOLANDER, Brian
    • A01D43/10
    • A01D43/107A01D34/015A01D43/08A01D43/10
    • A harvesting header includes a cutter bed having a plurality of cutting elements arranged transverse to the header and a crop chopping and conditioning region having a crop chopping device and a crop conditioning device. The crop chopping device is configured to chop crop cut by the cutter bed into smaller lengths and the crop conditioning device is configured to crimp the crop to aid in drying. The first chopping roller has a tubular, cylindrically-shaped body and a plurality of parallel knife-mounting lugs extending radially outward along substantially the full length of the body. A plurality of chopping knives are attached to the knife-mounting lugs and arranged around the body, each chopping knife having a length that is shorter than the length of the knife-mounting lug to which it is attached such that each chopping knife covers only a portion of the lateral length of the first chopping roller.
    • 收割头包括切割床,该切割床具有横向于集管的多个切割元件和具有作物切碎装置和作物调节装置的作物切碎和调节区域。 作物切碎装置被配置为将由切割床切割的作物切割成更短的长度,并且作物调节装置构造成卷曲作物以帮助干燥。 第一切割辊具有管状的圆柱形主体和沿着主体的大致整个长度径向向外延伸的多个平行的刀安装凸耳。 多个切割刀被连接到刀具安装凸耳并且围绕主体布置,每个切刀具有比其附接的刀安装凸耳的长度短的长度,使得每个切刀仅覆盖一个 第一切割辊的横向长度的一部分。
    • 4. 发明申请
    • VARIABLE SPEED LEAN BAR
    • 可变速度精准棒
    • WO2012012419A1
    • 2012-01-26
    • PCT/US2011/044526
    • 2011-07-19
    • AGCO CORPORATIONOLANDER, BrianPRUITT, Martin
    • OLANDER, BrianPRUITT, Martin
    • A01D57/00
    • A01D57/00
    • In an example embodiment a header (32) includes a rotatable lean bar (34). A controller (154) may be provided to manipulate the rotation of the lean bar. In an example embodiment, rotation of the lean bar (34) may be manipulated in response to a characteristic of a vehicle (2), such as vehicle speed. In one example embodiment a control panel (156) is provided in a cab (14) of a vehicle to allow an operator to manipulate rotation of the lean bar. A sensor may be provided to detect characteristics of the rotation and a display provided to indicate rotational characteristics of the lean bar (34).
    • 在示例性实施例中,头部(32)包括可旋转的薄棒(34)。 可以提供控制器(154)来操纵瘦棒的旋转。 在示例性实施例中,可以响应于车辆(2)的特性(例如车辆速度)来操纵瘦杆(34)的旋转。 在一个示例性实施例中,控制面板(156)设置在车辆的驾驶室(14)中,以允许操作者操纵瘦杆的旋转。 可以设置传感器以检测旋转的特性,以及提供用于指示瘦杆(34)的旋转特性的显示器。
    • 8. 发明申请
    • CROP CONTACTING ROLLER DRIVEN BY BALE FORMING BELTS
    • 通过BALE形成的皮带驱动的作业联系滚子
    • WO2013090719A1
    • 2013-06-20
    • PCT/US2012/069747
    • 2012-12-14
    • AGCO CORPORATIONRATZLAFF, HowardOLANDER, Brian
    • RATZLAFF, HowardOLANDER, Brian
    • A01F15/08A01F15/10
    • A01F15/106A01F15/07A01F15/085
    • A crop contacting roller (6) is provided that is driven indirectly by bale forming belts (56) of a baler (10). A first roller (46, 50) is driven by contact with a bale forming belt (56) and a crop contacting roller (6) is rotatably coupled to the first roller (46, 50) so that rotation of the first roller (46, 50) causes rotation of the crop contacting roller (6). The crop contacting roller (6) may be positioned in various positions such as to contact a bale (20) in a baling chamber (12) of the baler (10) or to contact incoming crop material (16) at a throat (42) of the baler (10). In one example, the crop contacting roller (6) is rotatably coupled to a tailgate idler roll (46). In another example, the crop con¬ tacting roller (6) is rotatably coupled to a bale density roll (50).
    • 提供由打包机(10)的捆包成形带(56)间接驱动的作物接触辊(6)。 第一辊(46,50)通过与捆包形成带(56)接触而驱动,并且作物接触辊(6)可旋转地联接到第一辊(46,50),使得第一辊(46, 50)导致作物接触辊(6)的旋转。 作物接触辊(6)可以定位在各种位置,例如接触打捆机(10)的打包室(12)中的捆(20)或接触喉部(42)处的进料作物材料(16) 的打包机(10)。 在一个示例中,作物接触辊(6)可旋转地联接到后挡板惰辊(46)。 在另一个示例中,裁剪结合辊(6)可旋转地联接到捆包密度卷(50)。