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    • 2. 发明授权
    • Rotary brush for cleaning round module builder belts
    • 旋转刷,用于清洁圆形模块生成带
    • US09510511B2
    • 2016-12-06
    • US14688100
    • 2015-04-16
    • Deere & Company
    • Kevin J. GoeringJohn O. RumohrRakesh Madurwar
    • A01F15/18A01F15/07A01D75/18
    • A01D75/187A01D46/084A01F15/07A01F15/18A01F2015/183A01F2015/186
    • A round module builder for forming a round module. The round module comprises a feeder and a module-forming portion. The module-forming portion comprises at least one baler belt configured to receive a crop from the feeder, at least one baler roller sheave configured to drive the baler belt, and a module-forming chamber. The module-forming portion is configured to receive the crop and rotate the crop in the module-forming chamber into the round module. A powered brush is coupleable to the module-forming portion above the feeder and at least one of positioned in contact with the baler belt and positioned adjacent the baler belt. The powered brush is configured to remove the crop from the baler belt outside the module-forming chamber and return the crop to the feeder which returns the crop to the module-forming chamber where the crop is formed into the round module.
    • 用于形成圆形模块的圆形模块构建器。 圆形模块包括进料器和模块形成部分。 模块形成部分包括至少一个捆扎带,其被配置为从进料器接收作物,构造成驱动捆扎带的至少一个打捆机辊轮和模块形成室。 模块形成部分被配置为接收裁剪并将模块形成室中的作物旋转到圆形模块中。 电动刷可耦合到馈送器上方的模块形成部分,并且至少一个定位成与打包机皮带接触并且定位成邻近打捆机皮带。 动力刷被配置成从模块形成室外部的打捆机皮带上移除裁纸,并将作物返回给送料器,将送料器返回到模块形成室,在该模块形成室中作物形成圆形模块。
    • 6. 发明申请
    • ROTARY BRUSH FOR CLEANING ROUND MODULE BUILDER BELTS
    • 用于清洁圆形模块建筑物皮带的旋转刷
    • US20160302359A1
    • 2016-10-20
    • US14688100
    • 2015-04-16
    • Deere & Company
    • Kevin J. GoeringJohn O. RumohrRakesh Madurwar
    • A01D75/18A01F15/18
    • A01D75/187A01D46/084A01F15/07A01F15/18A01F2015/183A01F2015/186
    • A round module builder for forming a round module. The round module comprises a feeder and a module-forming portion. The module-forming portion comprises at least one baler belt configured to receive a crop from the feeder, at least one baler roller sheave configured to drive the baler belt, and a module-forming chamber. The module-forming portion is configured to receive the crop and rotate the crop in the module-forming chamber into the round module. A powered brush is coupleable to the module-forming portion above the feeder and at least one of positioned in contact with the baler belt and positioned adjacent the baler belt. The powered brush is configured to remove the crop from the baler belt outside the module-forming chamber and return the crop to the feeder which returns the crop to the module-forming chamber where the crop is formed into the round module.
    • 用于形成圆形模块的圆形模块构建器。 圆形模块包括进料器和模块形成部分。 模块形成部分包括至少一个捆扎带,其被配置为从进料器接收作物,构造成驱动捆扎带的至少一个打捆机辊轮和模块形成室。 模块形成部分被配置为接收裁剪并将模块形成室中的作物旋转到圆形模块中。 电动刷可耦合到馈送器上方的模块形成部分,并且至少一个定位成与打包机皮带接触并且定位成邻近打捆机皮带。 动力刷被配置成从模块形成室外部的打捆机皮带上移除裁纸,并将作物返回给送料器,将送料器返回到模块形成室,在该模块形成室中作物形成圆形模块。
    • 7. 发明授权
    • Material-conveying duct with adjustable geometry
    • 材料输送管道,几何可调
    • US09228589B2
    • 2016-01-05
    • US14149641
    • 2014-01-07
    • Deere & Company
    • Justin E. HummelTom R. WalmsleyJohn O. RumohrScott D. Weber
    • B65G53/04F04D17/12
    • F04D17/12A01D46/12
    • An adjustable material-conveying duct and a flow area adjustment device are described. The duct may include two wall sections, the second wall section having two mounting connections, oriented at an angle with respect to one another. When the second wall section is mounted to the first wall section via a first mounting connection, the wall sections form a first angle in a flow channel of the duct. When the second wall section is mounted to the first wall section via a second mounting connection, the wall sections form a second, different angle in the flow channel. A flow sensor, controller and automatic adjustment device may also be utilized to control the orientation of the wall sections.
    • 描述了可调材料输送管道和流动区域调节装置。 管道可以包括两个壁部分,第二壁部分具有相对于彼此成一定角度的两个安装连接。 当第二壁部分经由第一安装连接件安装到第一壁部分时,壁部分在管道的流动通道中形成第一角度。 当第二壁部分经由第二安装连接件安装到第一壁部分时,壁部分在流动通道中形成第二不同的角度。 还可以使用流量传感器,控制器和自动调节装置来控制壁部分的取向。