会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Harrow tine angle adjustment
    • 耙角调整
    • US08267187B2
    • 2012-09-18
    • US11365194
    • 2006-03-01
    • David Alan PayneRichard Joseph ConnellShawn BeckerGarrett Lee Goins
    • David Alan PayneRichard Joseph ConnellShawn BeckerGarrett Lee Goins
    • A01B19/00
    • A01B71/02A01B23/043
    • A simplified spike tooth harrow includes an apertured bracket pivotally connected to the fore-and-aft connecting strap extending between the tine bars. The bracket adjustably supports a tine bar from the strap. A pin selectively secured in one of the apertures contacts the strap to set the working angle of the tines on the bar when the harrow is operated in the field. A chain or link connected to the bracket at a location offset from the bracket pivot suspends the harrow from an upper drawbar assembly which is movable vertically between field-working and transport positions. When the drawbar assembly is raised to the transport position so the harrow is out of ground contact, the bracket pivots so the pin is offset from the strap and can be easily and quickly removed from the aperture and reinserted in a different aperture to change the tine angle.
    • 简化的穗齿耙包括一个可枢转地连接到在杆之间延伸的前后连接带的有孔托架。 支架可调节地支撑带子上的齿条。 选择性地固定在其中一个孔中的销钉接触带子,以在耙子在现场操作时将叉子的工作角度设置在杆上。 在与支架枢轴偏置的位置处连接到支架的链条或链节将耙从上部牵引杆组件悬挂,该上牵引杆组件可在现场作业和运输位置之间垂直移动。 当牵引杆组件升高到运输位置时,耙子脱离地面接触,支架枢转,使销钉从带子上偏移,并可以方便快速地从孔中移出并重新插入不同的孔径以改变齿 角度。
    • 5. 发明授权
    • Wheel control structure for a folding implement
    • 折叠工具的车轮控制结构
    • US06220366B1
    • 2001-04-24
    • US09634396
    • 2000-08-09
    • James Thomas NoonanPaul David ParkerDavid Alan PayneBrian Thomas Mosdal
    • James Thomas NoonanPaul David ParkerDavid Alan PayneBrian Thomas Mosdal
    • H01B7302
    • A01B73/046
    • A multi-section implement frame includes outer wing sections which fold relative to inner wing sections and then over a main center frame to a transport position. The wing sections include selectively extendable and retractable structure such as lift wheel assemblies which, if extended in the transport position, can interfere with each other. Transducers detect the position of the inner wing sections during folding and unfolding and provide signals to an implement control unit (ICU) to automatically operate the lift wheel assemblies to prevent interference during folding and unfolding and to assure the lift wheels are extended before the implement frame reaches the fully unfolded position. Proximity switches supported above the center frame or other transducer devices such as mercury switches on the wing sections responsive to section angle provide the signals to the ICU. During folding, the ICU causes the lift structure to retract after both switches are activated. During unfolding, the lift structure is extended only after there is no longer potential interference between components. Extension of the lift assemblies during unfolding is controlled by the ICU so that the frame is generally level in the fully unfolded position. The outer wing sections can be folded to narrow the machine when the ground is difficult to penetrate or when a narrow working width is required while still retaining implement operation under the control of the ICU.
    • 多段实施框架包括外翼部分,其相对于内翼部分折叠,然后在主中心框架上折叠到运输位置。 机翼部分包括选择性地可伸展和可缩回的结构,例如提升轮组件,如果在运输位置延伸可能会相互干扰。 传感器在折叠和展开期间检测内翼部分的位置,并向工具控制单元(ICU)提供信号,以自动操作提升轮组件,以防止折叠和展开期间的干扰,并确保提升轮在实施框架之前延伸 达到完全展开的位置。 支撑在中心框架或其他换能器装置上方的接近开关响应于截面角度在翼部上的汞开关提供信号到ICU。 在折叠期间,两个开关被激活后,ICU使电梯结构缩回。 在展开期间,只有在组件之间不再有潜在干扰的情况下,电梯结构才会延伸。 展开期间电梯组件的延伸由ICU控制,使得框架通常处于完全展开的位置。 当地面难以穿透时或者当需要狭窄的工作宽度时,外翼部分可以折叠以使机器变窄,同时在ICU的控制下保持机具操作。
    • 6. 发明授权
    • Electrohydraulic control of implement lift cylinders
    • 电动液压缸液压控制
    • US5957218A
    • 1999-09-28
    • US972925
    • 1997-11-18
    • James Thomas NoonanDavid Alan PaynePaul David Parker
    • James Thomas NoonanDavid Alan PaynePaul David Parker
    • A01B63/10A01B63/22A01B63/32F15B11/16F15B11/18F15B21/02A01B63/114
    • A01B63/32A01B63/10A01B63/22
    • An implement lift system including a plurality of individual electrohydraulically controlled cylinders spaced on a tool frame and connected to lift wheel. An implement control unit (ICU) in the towing vehicle cab is connected to feedback potentiometers or similar transducers which provide signals corresponding to cylinder stroke length or suspension position. The feedback signals are compared at the ICU to a control signal obtained by rotation of a lever or knob on an operator control unit in the cab. Depending on the cylinder position relative to the operator selected position, the ICU provides an output signal to the electrohydraulic valve to achieve a proportional amount of flow for the desired cylinder position. The ICU also compares feedback signals from the transducers and adjusts the output voltage to each of the valves so that the frame can be raised and lowered evenly. In conditions where independent adjustment of different frame portions is desired, the operator control unit can be adjusted to provide the necessary offset signal for each section. The lift system provides uniform depth control and level lift for different frame configurations including frames with wings. Systems with dissimilar cylinders having different capacities or stroke lengths are easily accommodated.
    • 一种工具提升系统,包括在工具架上间隔开并连接到提升轮的多个单独的电液控制缸。 牵引车厢中的车辆控制单元(ICU)连接到反馈电位器或类似的换能器,其提供对应于气缸冲程长度或悬架位置的信号。 将反馈信号在ICU处与通过驾驶室中的操作者控制单元上的杠杆或旋钮旋转获得的控制信号进行比较。 根据相对于操作者选择位置的气缸位置,ICU向电动液压阀提供输出信号,以实现所需气缸位置的成比例的流量。 ICU还对来自传感器的反馈信号进行比较,并调节每个阀的输出电压,使框架均匀地升高和降低。 在需要对不同框架部分进行独立调整的条件下,可以调整操作者控制单元以为每个部分提供必要的偏移信号。 电梯系统为不同的框架配置提供均匀的深度控制和水平升降,包括带翼的框架。 具有不同容量或行程长度的不同气缸的系统很容易适应。
    • 10. 发明授权
    • Implement frame construction including tube within a tube
    • 实施框架结构,包括管内管
    • US6016877A
    • 2000-01-25
    • US97291
    • 1998-06-12
    • James Thomas NoonanDavid Alan PayneBrian Thomas MosdalPaul David Parker
    • James Thomas NoonanDavid Alan PayneBrian Thomas MosdalPaul David Parker
    • B23K33/00A01B15/14
    • B23K33/00Y10T403/7003
    • An implement frame construction includes a fore-and-aft extending apertured tube with transversely extending tool mounting tubes with cross section matching the shape of the apertures. The tubes are inserted through the apertures to provide a mechanical connection not solely reliant on joint weld strength. The resulting joints are fillet welded on both sides of the fore-and-aft tube and provide more bending and torsional resistance than a butt-welded joint without need for gussets. The smaller tube runs continuously through the joint to reduce the number of components and welds necessary for a given frame configuration. The components themselves position the frame tubes relative to each other to simplify weld fixturing and increase resistance to parallelograming. Hinge areas are provided with welded tube-within-tube construction to prevent wall collapse and retain mounting bolt torque. A main frame section is constructed with continuous fore-and-aft extending hitch tubes which transfer loading directly from the transverse tubes to the towing vehicle and include aft ends for supporting trailing hitch structure. Wing frame sections are built with a similar tube construction, and one frame configuration may be used for right or left wings.
    • 工具框架结构包括具有横向延伸的工具安装管的前后延伸的有孔管,其横截面与孔的形状相匹配。 管被插入孔中以提供不仅仅依赖于接合焊接强度的机械连接。 所产生的接头在前后管的两侧角焊,提供比对接焊接接头更多的弯曲和抗扭性,而不需要角撑板。 较小的管子通过接头连续运行,以减少给定框架配置所需的部件数量和焊缝数量。 组件自身将框架管相对于彼此定位,以简化焊接夹具并增加对平行四边形的抵抗力。 铰链区域设有焊管管内结构,以防止壁塌陷并保持安装螺栓扭矩。 主框架部分构造有连续的前后延伸的牵引管,其将负载直接从横向管转移到牵引车,并且包括用于支撑后牵引结构的后端。 翼框架部分采用类似的管道结构,一个框架配置可用于右翼或左翼。