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    • 5. 发明公开
    • Combine varying dimensional vane threshing system
    • Dreschsystem einesMähdreschersmitgrößenveränderbarerSchaufel
    • EP2674024A1
    • 2013-12-18
    • EP13171136.8
    • 2013-06-07
    • CNH Belgium N.V.
    • Flickinger, Wayne T.Farley, Herb M.Nolt, Luke
    • A01F7/06
    • A01F7/067
    • A cage vane (300) for use with a combine threshing system that includes (i) a mounting leg (308) extending a mounting leg length (ML) from a cage vane inner edge (302) to a mounting leg outer surface (310) and a mounting leg thickness (Mt) from a mounting leg bottom surface (312) to a mounting leg top surface (314) and (ii) a protruding leg (316) extending a protruding leg length (PL) from the cage vane inner edge (302) to a protruding leg top surface (318) and a protruding leg thickness (Pt) from a protruding leg inner surface (320) to a protruding leg outer surface (322). At least one of the mounting leg length (ML) changes as the mounting leg (308) extends the cage vane length (VL), the mounting leg thickness (Mt) changes as the mounting leg (308) extends the cage vane length (VL), the protruding leg length (PL) changes as the protruding leg (316) extends the cage vane length (VL), and the protruding leg thickness (Pt) changes as the protruding leg (316) extends the cage vane length (VL).
    • 一种用于组合脱粒系统的笼式叶片(300),其包括(i)将安装腿长度(ML)从笼式叶片内缘(302)延伸到安装腿外表面(310)的安装腿(308) 以及从安装腿底表面(312)到安装腿顶表面(314)的安装腿部厚度(Mt)和(ii)从保持架叶片内边缘延伸突出腿部长度(PL)的突出腿部(316) (302)延伸到突出的腿顶表面(318)和从突出的腿内表面(320)到突出的腿外表面(322)的突出的腿部厚度(Pt)。 当安装腿(308)延伸保持架叶片长度(VL)时,安装腿长度(ML)中的至少一个改变,安装腿部厚度(Mt)随着安装腿(308)延伸保持架叶片长度(VL ),当突出腿(316)延伸保持架叶片长度(VL)时,突出腿部长度(PL)变化,并且突出腿部厚度(Pt)随着突出腿部(316)延伸保持架叶片长度(VL)而改变, 。
    • 7. 发明公开
    • Concave adjust assembly including a torsion axle for damping crop threshing impulse loads
    • Konkave Einstellungsanordnung mit einer Torsionsachse zumDämpfender Getreidedreschimpulsbelastung
    • EP2377387A2
    • 2011-10-19
    • EP10160384.3
    • 2010-04-19
    • CNH Belgium N.V.
    • Flickinger, Wayne T.Isaac, Nathan E.Matousek, Robert A.Claerhout, Bryan S.
    • A01F12/18A01F12/28
    • A01F12/28A01F12/181
    • The concave (32) adjust assembly (64) uses a torsion axle (66) connecting a drive (42) to a concave (32). The torsion axle (66) includes an inner element (68) having an angular sectional shape, a tubular outer element (74) disposed about the inner element (68) and having a larger angular sectional shape oriented such that corners (76) of the tubular element (74) are disposed opposite flats (80) of the inner element (68), the elements being laterally relatively rotatable, and damping elements (88) disposed between the inner and outer elements (68, 74) such that the rotation will compressively load the damping elements (88). The drive (42) includes a motor (50), such that operation of the motor (50) will adjustably move the concave (32), and the damping elements (88) will damp impulse loads (LI) generated from threshing, to reduce transmission of the loads to the drive (42).
    • 凹(32)调节组件(64)使用将驱动器(42)连接到凹(32)的扭转轴(66)。 扭转轴(66)包括具有角度截面形状的内部元件(68),围绕内部元件(68)设置的管状外部元件(74),并且具有更大的角度截面形状,使得角度(76) 管状元件(74)设置在内部元件(68)的相对的平面(80)上,元件横向相对旋转,以及设置在内部和外部元件(68,74)之间的阻尼元件(88),使得旋转将 压缩地加载阻尼元件(88)。 驱动器(42)包括电动机(50),使得电动机(50)的操作可调整地移动凹部(32),并且阻尼元件(88)将减轻从脱粒产生的冲击载荷(LI),以减少 将负载传递到驱动器(42)。
    • 8. 发明公开
    • Helical bar concave and method of manufacturing.
    • 螺旋杆凹和制造方法。
    • EP2332402A2
    • 2011-06-15
    • EP10193222.6
    • 2010-11-30
    • CNH Belgium N.V.
    • Flickinger, Wayne T.Farley, Herbert M.Ricketts, Jonathan E.Werning, Joshua D.
    • A01F12/24
    • A01F12/24Y10T29/49826
    • A helical bar concave (20) comprises a grate (24) having helical mounting framework (42) and helical cutouts (34) to form a percent open area having a helical geometry. Configurable and segmented rub bars (36) are mounted in a helical fashion to a cylindrical helical surface (38/40) of the grate. There is provided a method of manufacturing a helical bar concave (20) from a flat, rolled laser cut arrangement that provides a net helical concave functionality. Laser cutting a flat metal sheet to form helical cutouts (34) defining a percent open area having a helical geometry in combination with configurable rub bars (36) mounted in a helical fashion results in a configurable helical bar concave (20) in which the number or aggressiveness of the threshing surface (38) on the inside radius of the grate may be changed and/or the rub bars (36) may be moved to the outside of the grate to change the percent open area and hence the separation characteristics of the concave.
    • 螺旋杆凹部(20)包括具有螺旋形安装框架(42)和螺旋形切口(34)的格栅(24),以形成具有螺旋几何形状的百分比开放区域。 可配置和分段的摩擦杆(36)以螺旋方式安装到格栅的圆柱形螺旋表面(38/40)。 提供了一种由平坦的卷绕激光切割装置制造螺旋棒凹部(20)的方法,所述激光切割装置提供净螺旋凹入功能。 激光切割平坦金属片以形成限定具有螺旋几何形状的百分比开放区域的螺旋切口(34)与以螺旋方式安装的可配置的摩擦杆(36)相结合产生可配置的螺旋杆凹部(20),其中数目 或脱粒表面(38)在格栅内径上的攻击性可以改变和/或擦杆(36)可以移动到格栅的外部以改变百分比开放面积并因此改变 凹。
    • 9. 发明公开
    • Threshing system.
    • Dreschsystem
    • EP2298063A2
    • 2011-03-23
    • EP10176983.4
    • 2010-09-16
    • CNH Belgium N.V.
    • Imbert, JeanBaltz, Clinton T.Flickinger, Wayne T.Farley, Herbert M.
    • A01F12/20A01F12/44
    • A01F12/20A01F7/06A01F12/442
    • A threshing system (22) for an agricultural harvester including a plurality of threshing elements (36) supported on a rotor (24) at spaced intervals in a generally helical pattern about an outer surface of the rotor (24), each threshing element including a set of discrete threshing bars (38) including a leading threshing bar (44) proximate the outer surface (30) of the rotor (24) and a succession of threshing bars (38) located progressively farther from the outer surface (30) forming a ramp and defining a wedge shaped opening (42) between the threshing bars (38) and the outer surface (30), each set of threshing bars (38) extending generally axially along the rotor (24) defining axially extending spaces (40) therebetween sufficiently large for passage of grain therethrough to the wedge shaped opening (42).
    • 一种用于农业收割机的脱粒系统(22),包括围绕转子(24)的外表面以大致螺旋状的间隔间隔地支撑在转子(24)上的多个脱粒元件(36),每个脱粒元件包括 一组独立的脱粒棒(38),包括靠近转子(24)的外表面(30)的引导脱粒棒(44),以及一系列逐渐离开外表面(30)的脱粒棒(38) 并且在脱粒杆(38)和外表面(30)之间限定楔形开口(42),每组脱粒杆(38)大致沿着转子(24)轴向地延伸,从而在其间形成轴向延伸的空间(40) 足以使颗粒通过其进入楔形开口(42)。