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    • 1. 发明申请
    • WINDROWER WITH DUAL BELT CONVEYOR
    • 带双皮带输送机的WINDROWER
    • WO2016094270A1
    • 2016-06-16
    • PCT/US2015/064193
    • 2015-12-07
    • AGCO CORPORATION
    • FIGGER, Robert L.MATOUSEK, Robert A.BOLLINGER, Shane
    • A01D57/20
    • A01D61/006A01D34/64A01D43/07A01D57/20A01D61/02
    • A dual conveyor assembly (20) for a windrower includes upper and lower conveyors (32,36). Each conveyor (32,36) includes an endless conveyor element and rotatable supports spaced along a longitudinal conveyor path and entrained by the endless conveyor element. The endless conveyor elements define vertically spaced opposed runs that define the longitudinal conveyor path therebetween. The opposed runs (68,114) are operable to be driven together to move a flow of severed plant material along the path. At least one of the opposed runs (68,114) is shiftable relative to the other opposed run in an upright direction, while the runs (68,114) are driven together, such that the opposed runs remain in moving engagement with the flow of severed plant material as the amount of severed plant material passing between the opposed runs (68,114) varies.
    • 用于成卷机的双输送机组件(20)包括上输送机(32,36)。 每个输送机(32,36)包括环形输送机元件和沿着纵向输送机路径间隔开并被环形输送机元件夹带的可旋转支撑件。 环形输送机元件限定垂直间隔开的相对的行程,其限定其间的纵向输送路径。 相对的行程(68,114)可操作以一起驱动以沿着路径移动切断的植物材料流。 相对的行程(68,114)中的至少一个可相对于在竖直方向上的另一个相对的行程相对移动,而行程(68,114)被驱动在一起,使得相对的行程保持与切断的植物材料的流动接合作为 在相对的行程(68,114)之间通过的切断的植物材料的量变化。
    • 4. 发明申请
    • AUTOMATIC LOAD CONTROL FOR SELF-PROPELLED WINDROWER
    • 自动风机自动负载控制
    • WO2015116892A1
    • 2015-08-06
    • PCT/US2015/013671
    • 2015-01-30
    • AGCO CORPORATION
    • SOLDAN, DanielNAFZIGER, BrendonBOLLINGER, Shane
    • A01D41/127A01D41/14
    • A01D69/03A01D41/127A01D41/1274A01D41/142A01D57/12F02D41/0097F02D41/0215F02D41/10F02D41/26F02D2200/10F02D2200/501
    • A windrower (10) has a hydrostatic header drive system (26) with a header drive pump (36) and one or more header drive motors (32, 34). The windrower also has a chassis (12) with wheels (14) coupled thereto, an engine (40), and a ground drive system (28) coupled to the wheels and the engine. A control system (24) has plural sensors having first, second, and third sensors, wherein the first sensor (60) monitors engine load, the second sensor (56) monitors hydrostatic header drive pressure, and the third sensor (58) monitors ground speed. The control system has one or more controllers (30) configured to receive input from the plural sensors, compare the input with respective target values for engine load, header drive pressure, and ground speed throughout a range of ground speeds defined based on an operator configured maximum ground speed, and automatically adjust the ground speed based on the comparison.
    • 货轮(10)具有带头部驱动泵(36)和一个或多个头部驱动马达(32,34)的静液压头驱动系统(26)。 起重机还具有带有与其联接的轮(14)的底盘(12),发动机(40)和联接到车轮和发动机的地面驱动系统(28)。 控制系统(24)具有多个具有第一传感器,第二传感器和第三传感器的传感器,其中第一传感器(60)监测发动机负载,第二传感器(56)监测静液压头驱动压力,第三传感器(58)监测地面 速度。 控制系统具有一个或多个控制器(30),其被配置为从多个传感器接收输入,将输入与基于操作者配置的整个地面速度范围内的发动机负载,起头驱动压力和地面速度的相应目标值进行比较 最大地面速度,并根据比较自动调整地面速度。
    • 6. 发明申请
    • BALER WITH AUTOMATED MOISTURE MEASUREMENT AND PRESERVATIVE APPLICATION
    • 具有自动水分测量和保存应用的BALER
    • WO2016036749A1
    • 2016-03-10
    • PCT/US2015/047961
    • 2015-09-01
    • AGCO CORPORATION
    • MACNEILL, Lawrence GrantKENDRICK, PatrickHERRON, Maynard M.BOLLINGER, ShaneRETZLAFF, Lawrence
    • A01F15/08
    • G01N27/048A01F15/0715A01F15/0816A01F15/0825A01F2015/076G01N27/605
    • A system for determining an amount of and applying a preservative to an individual charge (50f) of crop material, wherein the charge is combined with other charges (50a-e) to form a bale (14). Loose crop material (12) is collected and packed into a feeder chute (58) in such a manner as to pre-compress the material to form the charge (50f). A moisture content of the charge is measured by a sensor (36) while the charge is still in the feeder chute. The charge is moved into a forming chamber (32), and a control unit (40) determines a correct amount of a preservative to apply to the charge based on the moisture content. The correct amount of the preservative is applied to the charge either before or after the charge (50f) is incorporated into the bale (14). Thus, the system measures the moisture content of each charge, and measures the moisture content of the same charge to which the preservative is applied.
    • 一种用于确定作物材料的单独电荷(50f)的量和施用防腐剂的系统,其中所述电荷与其它电荷(50a-e)组合以形成捆包(14)。 收集松散的作物材料(12)并以预先压缩材料形成电荷(50f)的方式装入给料槽(58)。 电荷的含水量通过传感器(36)测量,同时电荷仍然在馈送槽中。 电荷移动到成形室(32)中,并且控制单元(40)基于含水量确定适用于电荷的正确量的防腐剂。 在充电(50f)被包含在捆包(14)中之前或之后,将正确量的防腐剂应用于充电。 因此,该系统测量每种电荷的含水量,并测量与防腐剂相同的电荷的水分含量。