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    • 3. 发明授权
    • Lapping system having a polymeric lapping tool
    • 具有聚合研磨工具的研磨系统
    • US07578728B2
    • 2009-08-25
    • US11538443
    • 2006-10-04
    • Boris ShamishidovAlexander Ignatovsky
    • Boris ShamishidovAlexander Ignatovsky
    • B24B7/00
    • B24B19/028B24B33/02B24B37/02B24B37/04B24B53/017F16C33/103Y10T428/24975Y10T428/265Y10T428/30Y10T428/31678
    • A lapping system including: (a) a workpiece having a metal working surface; (b) a lapping tool having a contact surface for disposing generally opposite the working surface, the contact surface including an organic, polymeric material; (c) a plurality of abrasive particles for disposing between the contact surface and the working surface, and (d) a mechanism, associated with the working and contact surfaces, for applying a relative motion between the surfaces, and for exerting a load on the contact surface and the working surface, the contact surface for providing an at least partially elastic interaction with the plurality of abrasive particles, and wherein the contact surface and the mechanism are designed and configured, and the plurality of particles is selected, such that upon activation of the mechanism, the relative motion under the load effects lapping of the metal working surface to produce a tribological surface.
    • 一种研磨系统,包括:(a)具有金属加工表面的工件; (b)研磨工具,其具有用于大致相对于所述工作表面设置的接触表面,所述接触表面包括有机聚合材料; (c)用于设置在接触表面和工作表面之间的多个磨料颗粒,和(d)与工作和接触表面相关联的用于在表面之间施加相对运动的机构,并且用于在 所述接触表面和所述工作表面,所述接触表面用于提供与所述多个研磨颗粒的至少部分弹性相互作用,并且其中所述接触表面和所述机构被设计和构造,并且所述多个颗粒被选择,使得在激活时 的机构,负载下的相对运动影响研磨金属工作表面产生摩擦面。
    • 4. 发明申请
    • Tribological surface and lapping method and system therefor
    • 摩擦学表面和研磨方法及其系统
    • US20080166950A1
    • 2008-07-10
    • US11651481
    • 2007-01-10
    • Kostia MandelBoris ShamshidovBela ShteinvasSemyon Melamed
    • Kostia MandelBoris ShamshidovBela ShteinvasSemyon Melamed
    • B24B1/00
    • B24B37/00
    • A method of operating a tribological system including the steps of: (a) providing a workpiece having a tribological working surface, the working surface including: (i) a metal surface layer; (ii) a plurality of organic particles intimately incorporated in the metal surface layer, and (iii) a plurality of inorganic particles incorporated in the working surface, the inorganic particles having a Mohs hardness of at least 8; (b) providing a counter-surface disposed opposite the working surface; (c) disposing a lubricant between the working surface and the counter-surface; (d) providing at least one mechanism, associated with at least one of the working surface and the second surface, for applying a relative motion between the surfaces, and for exerting a load on the surfaces; (e) exerting the load between the working surface and the counter-surface, and (f) applying the relative motion between the working surface and the counter-surface.
    • 一种操作摩擦学系统的方法,包括以下步骤:(a)提供具有摩擦学工作表面的工件,所述工作表面包括:(i)金属表面层; (ii)与金属表面层紧密结合的多个有机颗粒,(iii)在工作表面中引入的多个无机颗粒,莫氏硬度至少为8的无机颗粒; (b)提供与工作表面相对设置的对置面; (c)在工作表面和对置表面之间设置润滑剂; (d)提供与所述工作表面和所述第二表面中的至少一个相关联的至少一个机构,用于在所述表面之间施加相对运动,并且在所述表面上施加载荷; (e)在工作表面和对置表面之间施加载荷,以及(f)在工作表面和对面之间施加相对运动。
    • 5. 发明授权
    • Centerless feed-through super-finishing device having a lapping system containing a freely-disposed abrasive
    • 无心穿过超精加工装置具有包含自由布置的磨料的研磨系统
    • US07744444B2
    • 2010-06-29
    • US12045035
    • 2008-03-10
    • Kostia MandelLimor ZuriBoris Shamshidov
    • Kostia MandelLimor ZuriBoris Shamshidov
    • B24B1/00B24B49/00
    • B24B37/02B24B5/18
    • A centerless feed-through super-finishing device including: first and second feed-through rollers having first and second longitudinal outer surfaces; a metallic part having a generally cylindrical section, disposed between the outer surfaces, wherein a longitudinal axis of the cylindrical section is generally aligned with the outer surfaces, the cylindrical section having a metal working surface, the outer surfaces disposed in a near-parallel fashion; a rotating mechanism for rotation of the rollers along respective longitudinal axes thereof, and for effecting thereby a rotation of the cylindrical section, wherein an angle between the rollers is selected such that rotation of the rollers propels the cylindrical section between the rollers; and a lapping system including: a lapping tool having a polymeric contact surface disposed to contact the working surface, and a lapping mechanism, associated with the lapping tool, adapted to exert a load on the contact and working surfaces; and abrasive particles, freely disposed between the contact and working surfaces, wherein the contact surface and the lapping mechanism are adapted, and the abrasive particles are selected, such that the relative motion under the load effects lapping of the working surface, and wherein the surfaces of the rollers are covered with a polymeric material.
    • 一种无心穿过超精加工装置,包括:具有第一和第二纵向外表面的第一和第二穿通辊; 具有大致圆柱形部分的金属部分,设置在外表面之间,其中圆柱形部分的纵向轴线大致与外表面对准,圆柱形部分具有金属加工表面,外表面以近似平行的方式设置 ; 一个旋转机构,用于沿着其各自的纵向轴线旋转辊子,并且由此使圆柱形部分转动,其中辊子之间的角度被选择成使得辊子的旋转推动圆柱形部分在辊之间; 以及研磨系统,包括:研磨工具,其具有设置成接触所述工作表面的聚合物接触表面,以及与所述研磨工具相关联的研磨机构,其适于在所述接触和工作表面上施加负载; 以及磨料颗粒,其自由地设置在所述接触表面和所述工作表面之间,其中所述接触表面和所述研磨机构被适配,并且选择所述磨料颗粒,使得所述负载下的相对运动影响所述工作表面的研磨,并且其中所述表面 辊子被聚合材料覆盖。
    • 6. 发明授权
    • Incorporation of particulate additives into metal working surfaces
    • 将颗粒添加剂掺入金属加工表面
    • US07578724B2
    • 2009-08-25
    • US11287306
    • 2005-11-28
    • Bela ShteinvasSemyon MelamedKostia Mandel
    • Bela ShteinvasSemyon MelamedKostia Mandel
    • B24B1/00B24B7/00B21D53/00
    • B24B37/00Y10T29/49702Y10T29/49707
    • A mechanical device for lapping, and a method therefore, the device including: (a) a metal workpiece having a metal working surface; (b) a contact surface, disposed generally opposite the working surface, for moving in a relative motion to the working surface; (c) abrasive particles disposed between the contact surface and the working surface, and (d) a mechanism, associated with the working surface and/or the contact surface, for applying the relative motion, and for exerting a load in a substantially normal direction to the contact surface and the working surface, the contact surface for providing an at least partially elastic interaction with the plurality of abrasive particles, wherein, associated with the contact surface is a particulate additive, and wherein, upon activation of the mechanism, the relative motion under the load causes a portion of the abrasive particles to penetrate the working surface, and wherein the relative motion under the load effects incorporation of a portion of the particulate additive into the metal working surface.
    • 一种用于研磨的机械装置及其方法,该装置包括:(a)具有金属加工表面的金属工件; (b)大致与工作表面相对设置的用于相对于工作表面移动的接触表面; (c)设置在所述接触表面和所述工作表面之间的磨料颗粒,和(d)与所述工作表面和/或所述接触表面相关的机构,用于施加所述相对运动,以及施加大体正常方向的载荷 所述接触表面用于与所述多个磨料颗粒提供至少部分弹性的相互作用,其中与所述接触表面相关联的是微粒添加剂,并且其中,在所述机构启动时,所述相对 负载下的运动导致磨损颗粒的一部分穿透工作表面,并且其中负载下的相对运动将使一部分颗粒状添加剂并入金属加工表面。
    • 7. 发明申请
    • Tribological surface and lapping method and system therefor
    • 摩擦学表面和研磨方法及其系统
    • US20080166955A1
    • 2008-07-10
    • US11651480
    • 2007-01-10
    • Kostia MandelBoris ShamshidovBela ShteinvasSemyon Melamed
    • Kostia MandelBoris ShamshidovBela ShteinvasSemyon Melamed
    • B24B7/00
    • B24B37/042B24B37/04
    • A mechanical system for lapping a metal working surface, including: (a) a workpiece having the metal working surface; (b) a lapping tool having a contact surface, the contact surface for disposing generally opposite the working surface, the contact surface including an organic, polymeric material; (c) a plurality of particles, including abrasive particles, the abrasive particles for disposing between the contact surface and the working surface, and (d) a mechanism, associated with at least one of the working and contact surfaces, for applying a relative motion between the contact surface and the metal working surface, and for exerting a load on the contact surface and the working surface, the contact surface for providing an at least partially elastic interaction with the plurality of abrasive particles, and wherein the contact surface and the mechanism are designed and configured, and the plurality of particles is selected, such that upon activation of the mechanism, the relative motion under the load effects: (i) lapping of the metal working surface, and (ii) incorporation of particles into the metal working surface.
    • 一种用于研磨金属加工面的机械系统,包括:(a)具有金属加工面的工件; (b)具有接触表面的研磨工具,所述接触表面用于大致相对于所述工作表面设置,所述接触表面包括有机聚合材料; (c)包括研磨颗粒的多个颗粒,用于设置在接触表面和工作表面之间的磨料颗粒,和(d)与工作和接触表面中的至少一个相关联的用于施加相对运动的机构 在所述接触表面和所述金属加工表面之间,并且用于在所述接触表面和所述工作表面上施加负载,所述接触表面用于与所述多个磨料颗粒提供至少部分弹性的相互作用,并且其中所述接触表面和所述机构 被设计和配置,并且选择多个颗粒,使得在启动机构时,负载下的相对运动影响:(i)研磨金属加工表面,和(ii)将颗粒结合到金属加工中 表面。
    • 9. 发明申请
    • Tribological surface and lapping method and system therefor
    • 摩擦学表面和研磨方法及其系统
    • US20100255762A1
    • 2010-10-07
    • US11651479
    • 2007-01-10
    • Kostia MandelBoris ShamshidovBela ShteinvasSemyon Melamed
    • Kostia MandelBoris ShamshidovBela ShteinvasSemyon Melamed
    • B24B1/00
    • B24B1/00B24B37/00
    • A conditioning process including the steps of: (a) providing a system including: (i) a workpiece having a metal working surface; (ii) a contact surface, disposed generally opposite the working surface, the contact surface including an organic, polymeric material and (iii) a plurality of particles, including abrasive particles, the plurality of particles disposed between the contact surface and the working surface, and (b) treating the workpiece so as to: (i) effect an at least partially elastic interaction between the contact surface and the abrasive particles such that at least a portion of the abrasive particles penetrate the working surface, and (ii) incorporate organic particles into the metal working surface, thereby producing a modified working surface, wherein the treating of the workpiece includes a lapping process including: (i) exerting a load on the contact surface and the metal working surface, and (ii) applying a relative motion between the metal working surface and the contact surface.
    • 一种调理过程,包括以下步骤:(a)提供一种系统,包括:(i)具有金属加工表面的工件; (ii)大致与工作表面相对设置的接触表面,所述接触表面包括有机聚合材料,和(iii)多个颗粒,包括磨粒,所述多个颗粒设置在所述接触表面和所述工作表面之间, 和(b)处理所述工件以便:(i)在所述接触表面和所述磨料颗粒之间产生至少部分弹性的相互作用,使得至少一部分所述磨料颗粒穿透所述工作表面,和(ii)将有机物 颗粒进入金属加工表面,从而产生改进的工作表面,其中对工件的处理包括研磨工艺,其包括:(i)在接触表面和金属加工表面上施加载荷,和(ii)施加相对运动 在金属加工面与接触面之间。
    • 10. 发明申请
    • Incorporation of Particulate Additives Into Metal Working Surfaces
    • 颗粒添加剂加入金属加工面
    • US20080311825A1
    • 2008-12-18
    • US12095122
    • 2006-11-28
    • Bella ShteinvasSemyon MelamedKostia Mandel
    • Bella ShteinvasSemyon MelamedKostia Mandel
    • B24B5/01B24B1/00
    • B24B37/00Y10T29/49702Y10T29/49707
    • A mechanical device and method for lapping a metal working surface, the device including: (a) a workpiece having the metal working surface; (b) a contact surface, disposed generally opposite the working surface, for moving in a relative motion to the working surface; (c) a plurality of abrasive particles, disposed between the contact surface and the working surface, and (d) a mechanism, associated with at least one of the surfaces, for applying the relative motion, and for exerting a load on the contact surface and the working surface, the contact surface for providing an at least partially elastic interaction with the abrasive particles, wherein, associated with the contact surface is a particulate additive material, and wherein, upon activation of the mechanism, the relative motion under the load causes a portion of the abrasive particles to lap the working surface, and wherein the relative motion under the load effects incorporation of a portion of the particulate additive material into the working surface.
    • 一种用于研磨金属工作表面的机械装置和方法,所述装置包括:(a)具有金属加工表面的工件; (b)大致与工作表面相对设置的用于相对于工作表面移动的接触表面; (c)设置在所述接触表面和所述工作表面之间的多个磨料颗粒,和(d)与至少一个所述表面相关联的用于施加所述相对运动并且用于在所述接触表面上施加负载的机构 并且所述工作表面用于与磨料颗粒提供至少部分弹性的相互作用的接触表面,其中与所述接触表面相关联的是颗粒状添加剂材​​料,并且其中在所述机构启动时,所述负载下的相对运动导致 磨料颗粒的一部分以覆盖工作表面,并且其中负载下的相对运动将使一部分颗粒状添加剂材​​料结合到工作表面中。