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    • 3. 发明授权
    • Method of honing bores
    • 镗孔方法
    • US06960121B2
    • 2005-11-01
    • US10708231
    • 2004-02-18
    • Ulrich KlinkJoachim WiederholdJürgen Wolf
    • Ulrich KlinkJoachim WiederholdJürgen Wolf
    • B24B33/02B24B33/08B24B1/00
    • B24B33/02B24B33/083
    • In a method for honing a bore having first and second sections sequentially arranged in an axial direction of the bore, wherein the first section is hardened so that the first and second sections have different hardness, a honing tool is radially supported by positioning guides of the honing tool on the second bore section. first section is machined with honing stones arranged on the honing tool to remove material from the first section. During machining of the first section, the honing tool is expanded by feeding the honing stones according to a defined feeding mode against a surface of the first section by a force-guided electro-mechanical advancement. During machining of the first section, the working stroke of the honing tool is adjusted continuously at least toward the end of the honing process. Feeding of the guides is realized independently of feeding of the honing stones.
    • 在一种用于珩磨钻孔的方法中,所述钻孔具有顺序地沿所述孔的轴向布置的第一和第二部分,其中所述第一部分被硬化以使得所述第一和第二部分具有不同的硬度,珩磨工具由所述钻孔的定位引导件 珩磨工具在第二个孔部分。 第一部分用珩磨工具上的珩磨石加工,以从第一部分去除材料。 在第一部分的加工期间,通过用力引导的机电前进将珩磨工具按照限定的进给模式输送到第一部分的表面上来进行珩磨工具的扩展。 在第一部分的加工期间,珩磨工具的工作行程至少在珩磨过程结束时连续调节。 引导件的进给是独立于珩磨石的喂入而实现的。
    • 4. 发明申请
    • Method of Honing Bores
    • 珩磨方法
    • US20050130560A1
    • 2005-06-16
    • US10708231
    • 2004-02-18
    • Ulrich KlinkJoachim WiederholdJurgen Wolf
    • Ulrich KlinkJoachim WiederholdJurgen Wolf
    • B24B33/02B24B33/08B24B49/00
    • B24B33/02B24B33/083
    • In a method for honing a bore having first and second sections sequentially arranged in an axial direction of the bore, wherein the first section is hardened so that the first and second sections have different hardness, a honing tool is radially supported by positioning guides of the honing tool on the second bore section first section is machined with honing stones arranged on the honing tool to remove material from the first section. During machining of the first section, the honing tool is expanded by feeding the honing stones according to a defined feeding mode against a surface of the first section by a force-guided electro-mechanical advancement. During machining of the first section, the working stroke of the honing tool is adjusted continuously at least toward the end of the honing process. Feeding of the guides is realized independently of feeding of the honing stones.
    • 在一种用于珩磨钻孔的方法中,所述钻孔具有顺序地沿所述孔的轴向布置的第一和第二部分,其中所述第一部分被硬化以使得所述第一和第二部分具有不同的硬度,珩磨工具由所述钻孔的定位引导件 在第二孔部分第一部分上的珩磨工具用珩磨工具上的珩磨石加工,以从第一部分去除材料。 在第一部分的加工期间,通过用力引导的机电前进将珩磨工具按照限定的进给模式输送到第一部分的表面上来进行珩磨工具的扩展。 在第一部分的加工期间,珩磨工具的工作行程至少在珩磨过程结束时连续调节。 引导件的进给是独立于珩磨石的喂入而实现的。
    • 6. 发明申请
    • Connecting rod and method for manufacturing the same
    • 连杆及其制造方法
    • US20050155451A1
    • 2005-07-21
    • US10846583
    • 2004-05-17
    • Tobias AbelnUlrich Klink
    • Tobias AbelnUlrich Klink
    • F16C9/04F16C33/08F16C35/02F01B31/10
    • F16C33/08F16C9/04F16C33/103F16C33/1065F16C35/02F16C2226/10F16C2226/50F16C2360/22Y10T74/2142
    • A connecting rod (1) has a small connecting rod eye (2) and a large connecting rod eye (3). A bearing shell (4, 5) is disposed in at least one connecting rod eye (2, 3), wherein the bearing shell (4, 5) is held in the connecting rod eye (2, 3) for secure mutual rotation therewith. To obtain good adhesion of the bearing shell (4, 5) in the connecting rod eye (2, 3), the bore surface (12, 13) in one connecting rod eye (2, 3) and/or the outer surface of a bearing shell (4, 5) has/have a structure (6, 7, 24, 26, 28, 30, 32, 34, 37, 38), wherein the structure (6, 7, 24, 26, 28, 30, 32, 34, 37, 38) is formed by elevations (9), the elevations (9) delimiting the outer periphery of depressions (8). In a method for producing a connecting rod (1) comprising at least one connecting rod eye (2, 3) with a structured surface (12, 13), wherein a bearing shell (4, 5) is disposed in the connecting rod eye (2, 3) after structuring of the surface, the surface (12, 13) is structured with a laser.
    • 连杆(1)具有小连杆眼(2)和大连杆眼(3)。 轴承壳体(4,5)设置在至少一个连杆眼(2,3)中,其中所述轴承壳体(4,5)保持在所述连杆眼(2,3)中,以与所述连接杆眼(2,3)保持相互旋转。 为了在连杆眼(2,3)中获得轴承壳(4,5)的良好的粘附力,一个连杆眼(2,3)中的孔表面(12,13)和/或一个连杆眼 轴承壳体(4,5)具有/具有结构(6,7,24,26,28,30,32,34,37,38),其中所述结构(6,7,24,26,28,30,38,38,38) 32,34,37,38)由凸起(9),限定凹部(8)的外周的高度(9)形成。 一种用于生产连杆(1)的方法,连杆包括至少一个具有结构化表面(12,13)的连杆眼(2,3),其中轴承壳(4,5)设置在连杆眼( 2,3),在构造表面之后,表面(12,13)由激光器构成。
    • 9. 发明授权
    • Method for producing a bore
    • 孔的制造方法
    • US06973367B2
    • 2005-12-06
    • US10711138
    • 2004-08-27
    • Ulrich KlinkGerhard Flores
    • Ulrich KlinkGerhard Flores
    • B24B33/02B24B33/08B24B33/00G06F19/00
    • B24B33/02B24B33/088Y10T29/4927
    • In a method for machining bores of workpieces with a desired nominal shape of the bores in operative condition, a bore with a desired nominal shape in inoperative condition is produced in a workpiece and the workpiece is then put in operative condition. A deviation of the desired nominal shape of the bore resulting from the operative conditions is determined. Based on the deviation, an initial shape which shape the bore must have in inoperative condition in order for the bore to assume the desired nominal shape in operative condition is the determined. Bores are then produced by employing the determined initial shape as a template.
    • 在用于在工作状态下加工具有期望的孔的标称形状的工件的孔的方法中,在工件中产生具有期望的标称形状的在不工作状态下的孔,然后将工件置于操作状态。 确定由操作条件导致的孔的期望标称形状的偏差。 基于偏差,形成孔的初始形状必须具有不工作状态,以便在确定操作状态下使孔呈现所需的标称形状。 然后通过采用确定的初始形状作为模板来生产孔。