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    • 1. 发明授权
    • Knock-on sweep structure and tools therefor
    • 敲击式清扫结构及其工具
    • US06585058B2
    • 2003-07-01
    • US09982901
    • 2001-10-19
    • Richard David ZaunBenoit PoutréDonald Ray PeckMark BeeckRichard Wayne HookJames Michael VanAuwelaerJarrod Ray Ruckle
    • Richard David ZaunBenoit PoutréDonald Ray PeckMark BeeckRichard Wayne HookJames Michael VanAuwelaerJarrod Ray Ruckle
    • A01B1500
    • A01B35/225
    • Sweep retaining structure includes a spring wire retainer with a base supported in a groove on the underside of the wedge support which mates with a stem portion of the sweep. The wedge support is apertured, and a central curved portion of the retainer passes through the aperture and supports a sweep-contacting end above the surface of the wedge support. The end is biased toward a contact area on the sweep to engage the area and eliminate sweep loss problems by preventing the sweep from slipping downwardly from the mounted position. To remove the sweep, a tool is inserted through the slot to depress the retainer end, and the sweep is forced off the wedge support. A raised area on the sweep directs soil away from the retainer and contact area to reduce wear and eliminate depression of the end during operation. The underside of the raised area positions the wire end and provides bend-resisting support for the wire.
    • 扫掠保持结构包括弹簧丝保持器,其具有支撑在楔形支撑件的下侧上的槽中的基部,其与扫掠的杆部分配合。 楔形支撑件是有孔的,并且保持器的中心弯曲部分穿过孔并且在楔形支撑件的表面上方支撑与扫掠接触的端部。 该端部被偏置在扫掠上的接触区域以接合该区域并且通过防止扫掠从安装位置向下滑动来消除扫掠损失问题。 为了消除扫描,工具插入槽中以压住保持器端,并且扫掠被迫离开楔形支撑。 扫掠时的凸起部分将土壤从保持器和接触区域引导,以减少磨损,并在操作过程中消除端部的压下。 凸起的下侧定位线端,并为线提供抗弯支撑。
    • 5. 发明申请
    • Low disturbance deep tillage point
    • 低扰动深耕点
    • US20050072345A1
    • 2005-04-07
    • US10666474
    • 2003-09-19
    • David SteinlageAron FleichmannMark BeeckBrian Myers
    • David SteinlageAron FleichmannMark BeeckBrian Myers
    • A01B15/02A01C5/00
    • A01B15/025
    • Ripper point structure includes a nose with a tapered top that initiates lift and fracture of compacted soil layers. The tapered top with an included angle of about 100 degrees just forward of the parting wear shin creates a parting stress which increases until the center portion of the soil profile is cut by a sharp leading edge of the shin. In a winged embodiment, gently sloping ripper point wings gradually enter the fracture plane left below the lifted compaction layer and initiate a second fracture of the soil profile. The wings are spaced rearwardly from the point so that the point and wear shin have enough time to lift, fracture, and part the soil profile in contact with the shank prior to any wing action.
    • 开裂点结构包括具有锥形顶部的鼻子,其启动压实土层的提升和断裂。 在分离磨损胫前方具有大约100度的夹角的锥形顶部产生分离应力,直到土壤剖面的中心部分被胫骨的尖锐前缘切割为止。 在有翼的实施例中,轻轻倾斜的裂土器翼逐渐进入离开提升的压实层下方的断裂平面,并开始土壤剖面的第二次断裂。 翼从该点向后间隔开,使得点和磨损胫骨在任何机翼动作之前具有足够的时间来提升,断裂和部分与柄接触的土壤轮廓。