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    • 1. 发明授权
    • Surface-modifying tools
    • 表面修饰工具
    • US5902360A
    • 1999-05-11
    • US765559
    • 1997-01-09
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • B24D3/20B24B31/116B24D3/34B24D11/00
    • B24B31/116B24D3/34Y10T428/31663
    • In a method for removing metal from the surface of a workpiece by continuously rubbing the surface with a tool in a friction-inducing manner and in the presence of a friction-enhancing agent (an anti-lubricant) and in which a thin layer of the friction-enhancer must be available at the tool surface, there is provided a tool which carries the friction-enhancing agent in the form of a composition of an abrasive and a rubbery solid siloxane reaction product admixed with a liquid, mobile, anti-lubricant siloxane stably dispersed therewithin, and the use of the tool to excoriate and condition the surface by removing therefrom the oxide film thereon and leaving its place a siloxane film, and a conditioned metal surface having siloxane molecules each individually bonded directly to the metal over a relatively large area of the surface to provide a relatively uniform siloxane layer.
    • PCT No.PCT / GB95 / 01614 Sec。 371日期1997年1月9日 102(e)日期1997年1月9日PCT提交1995年7月10日PCT公布。 第WO96 / 01721号公报 日本1996年1月25日在通过用摩擦诱导方式的工具连续摩擦表面和在摩擦增强剂(防润滑剂)的存在下从工件表面除去金属的方法中, 摩擦增强剂的薄层必须在工具表面可用,提供了一种工具,该工具将摩擦增强剂以磨料和橡胶状固体硅氧烷反应产物的组合物的形式携带,液体与流体 ,其中稳定分散的抗 - 润滑剂硅氧烷,以及使用该工具通过从其上除去氧化膜并除去其上的硅氧烷膜来除去和调理表面,并且将具有硅氧烷分子的经调节的金属表面各自独立地直接连接到 金属在表面的相对大的面积上提供相对均匀的硅氧烷层。
    • 2. 发明授权
    • Composition for making galled joint, process of making and process of
using composition
    • 用于制造磨损接头的组合物,制备方法和使用组合物的加工
    • US5837066A
    • 1998-11-17
    • US535260
    • 1995-10-30
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • B23K20/12B23K20/16B23K35/02B23K35/22B23K35/36
    • B23K20/16B23K35/02B23K35/3613B23K35/0244B23K35/22Y10T29/49945
    • A composition which is effective in the making of a galled joint between two metal members in which there are gaps in the joint prior to and during its formation and which comprises a multiplicity of small metal particles and a gall-enhancing material, for example, a polydimethylsiloxane, and the use of the composition in a method of securing against lateral motion two bodies held in face to face asperity contact, thereby to make a joint between the two bodies, in which method there is inserted into the gap or interface between the two bodies said composition, which on minimal initial lateral relative motion of the two surfaces promotes rapid but controllable "galling" between the two surfaces, this galling binding the surfaces against further such motion.
    • PCT No.PCT / GB94 / 00869 Sec。 371 1995年10月30日第 102(e)1995年10月30日PCT PCT 1994年4月25日PCT公布。 公开号WO94 / 25216 PCT 日期1994年11月10日一种组合物,其有效地在两个金属构件之间的焊接接头的制造中,其中在其形成之前和期间在接合中存在间隙,并且其包括多个小金属颗粒和胆汁增强材料 ,例如聚二甲基硅氧烷,以及组合物的使用方法,以确保两侧保持面对凹凸接触的横向运动的方法,从而形成两个体之间的接合部,该方法中插入间隙 或两个物体之间的界面,所述组合物,其在两个表面的最小初始侧向相对运动上促进两个表面之间快速但可控制的“磨损”,这种磨损使表面抵抗进一步的这种运动。
    • 3. 发明申请
    • Method of Forming A High Friction Joint
    • 形成高摩擦接头的方法
    • US20100139077A1
    • 2010-06-10
    • US12442892
    • 2007-09-26
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • F16L37/02
    • F16L37/02B23K20/12B23K20/16B23K2101/10Y10T29/49945
    • There is provided a method of forming a high friction joint between a first tubular metal body and a second tubular metal body, the method comprising: selecting a first tubular metal body having a first outer face at a first end portion thereof and selecting a second tubular body having a second inner face at a second end portion thereof, the first and second faces being capable of overlap to enable the first and second tmbs to fit together; treating the first outer face of the first tubular metal body and/or the second inner face of the second tubular metal body by introducing a friction enhancing agent to at least part of one or both thereof; inserting the first end portion of the first tubular metal body inside the second end portion of the second tubular metal body such as to form a low friction joint therebetween; and moving the first end portion of the first tubular body relative to the second end portion of the second tubular body to create rubbing at the first and second faces to activate the friction enhancing agent and to thereby form said high friction joint.
    • 提供了一种在第一管状金属体和第二管状金属体之间形成高摩擦接头的方法,所述方法包括:选择第一管状金属体,其第一端部具有第一外表面,并且选择第二管状 本体在其第二端部处具有第二内表面,所述第一和第二面能够重叠,以使第一和第二人体组合在一起; 通过向其中的一个或两个的至少一部分引入摩擦增强剂来处理第一管状金属体的第一外表面和/或第二管状金属体的第二内表面; 将第一管状金属体的第一端部插入第二管状金属体的第二端部内,以在其间形成低摩擦接合部; 并且相对于第二管状体的第二端部移动第一管状体的第一端部,以在第一和第二面处产生摩擦,以激活摩擦增强剂,从而形成所述高摩擦接头。
    • 4. 发明授权
    • Shaping metals
    • 塑造金属
    • US5643055A
    • 1997-07-01
    • US347320
    • 1995-02-24
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • B24B1/00B24B31/116B24D3/34
    • B24B31/116B24B1/00B24D3/346
    • A common way of shaping a metal workpiece by the removal of material therefrom involves rubbing contact, as experienced in a conventional wedge-shaped metal or ceramic cutting tool or in abrasive rubbing using grinding wheels. In conventional cutting and abrading it is commonplace to introduce at the cutter/workpiece interface a material that principally acts as a coolant and as a chip remover but which normally has lubricating properties to minimized rubbing friction. The method of the present invention, in contrast, depends for its function on deliberately causing very high levels of friction between the tool and workpiece; it proposes a method of shaping metal in which the surface of the work piece is "rubbed" by a tool in a friction-inducing manner and in the presence of an anti-lubrication (friction enhancing) agent in a quantity and in a form such that actual friction enhancement occurs. Such an anti-lubricant allows, under some conditions, any part of the tool in rubbing contact with the workpiece surface momentarily to heat and soften the surface, whereupon, due to the system's momentum (as the rubbing action continues), the further friction caused by the tool shears off the softened surface material under and forward of the contact with the tool.
    • PCT No.PCT / GB93 / 01096 Sec。 371日期:1995年2月24日 102(e)1995年2月24日PCT PCT 1993年5月27日PCT公布。 公开号WO93 / 24272 日期1993年12月9日通过从其中除去材料来形成金属工件的常见方法包括摩擦接触,如常规楔形金属或陶瓷切削工具中所经历的那样,或者使用研磨轮进行研磨摩擦。 在传统的切割和研磨中,通常在切割器/工件界面处引入主要作为冷却剂和作为切屑去除剂但通常具有润滑性能以最小化摩擦摩擦的材料。 相比之下,本发明的方法取决于其功能故意在工具和工件之间引起非常高水平的摩擦; 它提出了一种成形金属的方法,其中工件的表面以摩擦诱导的方式被工具“摩擦”,并且在抗磨损(摩擦增强)剂的存在下,数量和形式如下 发生实际的摩擦增强。 这种防润滑剂在某些条件下允许工具的任何部分瞬间与工件表面摩擦接触以加热和软化表面,于是,由于系统的动量(随着摩擦作用的继续),进一步的摩擦引起 通过该工具在与工具接触的下方和前方剪切软化的表面材料。
    • 5. 发明授权
    • Multi-function surface treatment tool
    • 多功能表面处理工具
    • US08272801B2
    • 2012-09-25
    • US11569482
    • 2005-05-20
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • B43K5/00B05C11/00
    • A45D34/04A45D2200/1018A45D2200/1054A45D2200/1063A45D2200/207A47L13/26
    • A tool for treating a surface by rubbing and including means to dispense onto the surface stuff, for example, a lotion for skin treatment, and including also a pair of opposed fins which are supported by a stiff, tapered, upstanding spine portion that traverses the tool and has an upper radial face for wiping and scrapping stuff, the fins extending laterally of and along the lower length of the spine portion and having an under face for rubbing contact with the surface, and each fin having optionally an upper absorbent face on each side of the spine portion to provide a swabbing capability, and the tool having a distal end and a proximal end, with the upstanding spine portion narrowing toward the distal end of the tool and the spine portion being hollow and shaped towards the proximal end for holding of the tool directly or coupled to a holdable object and also a method for making the tool.
    • 用于通过摩擦处理表面的工具,并且包括分配到表面材料上的装置,例如用于皮肤处理的洗剂,并且还包括一对相对的翅片,其由刚性,锥形的直立的脊部分支撑, 工具,并且具有用于擦拭和刮除材料的上部径向面,翅片横向延伸并沿着脊部的下部长度延伸并且具有用于与表面摩擦接触的底面,并且每个翅片在每个翼片上任选地具有上吸收面 脊柱部分的侧面以提供擦拭能力,并且该工具具有远端和近端,其中直立的脊部分朝向工具的远端变窄,并且脊部分是中空的并且朝向近端成形以保持 直接或联接到可保持物体上的工具,以及制造该工具的方法。
    • 8. 发明授权
    • Anti-lubricant compositions
    • 防润滑剂组合物
    • US06784244B1
    • 2004-08-31
    • US09444970
    • 1999-11-22
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • C08K55419
    • C08L83/06C08L83/08Y10T29/49945Y10T403/16Y10T403/1683Y10T403/7054C08L83/00
    • The present invention is drawn to an anti-lubricant in the form of a composition that is a viscous fluid, a paste, a gel or even a semi-solid rubber-like material. More specifically, the invention suggests the use as the anti-lubricant of a composition of two or more siloxanes chemically reacted together to form a desirably thick viscous fluid, paste, gel or rubbery solid reaction product, the resultant reaction product being admixed with a more liquid, mobile siloxane that itself has anti-lubricant properties, this more mobile siloxane, which may be either one of the two reacted together or a completely different one, is immobilized—stably dispersed—within the reaction product (and not only provides the required anti-lubricant property but may also be used to modify the final “viscosity” of the composition).
    • 本发明涉及以粘性流体,糊剂,凝胶或半固体橡胶状材料为基础的组合物形式的抗滑剂。 更具体地,本发明提出用作两种或更多种硅氧烷的组合物的抗润滑剂,其化学反应一起形成理想的稠粘稠流体,糊状物,凝胶或橡胶状固体反应产物,所得反应产物与更多的 本身具有抗润滑剂性质的液体,可移动的硅氧烷,这种更可移动的硅氧烷,其可以是一起反应的一种或完全不同的硅氧烷,被固定化稳定地分散在反应产物内(并且不仅提供所需的 抗润滑性,但也可用于改变组合物的最终“粘度”)。
    • 9. 发明申请
    • Method of Forming A Coupling
    • 形成耦合的方法
    • US20120315082A1
    • 2012-12-13
    • US13579476
    • 2011-02-14
    • Geoffrey Robert Linzell
    • Geoffrey Robert Linzell
    • B32B37/10B32B9/00
    • B23K20/021B23K20/16F16L13/0281F16L13/147Y10T403/477
    • There is provided a method of forming a coupling between a first body (71, 72) and a third body (76), which comprises selecting a first body having a first body layer and a third body having a third body layer; sandwiching a second body layer of a deformable body (74) between said first body layer and said third body layer; forming a first coupling between the third body layer and the second body layer; and forming a second coupling between the first body layer and the second body layer by providing a friction-enhancing fluid medium between the first body layer and the second body layer and without introducing relative sliding there-between pressing the second body layer against the first body layer such as to deform the second body layer into cold pressure welding contact with the first body layer.
    • 提供一种在第一主体(71,72)和第三主体(76)之间形成联接的方法,其包括选择具有第一主体层的第一主体和具有第三主体层的第三主体; 将可变形体(74)的第二体层夹在所述第一体层和所述第三体层之间; 在所述第三体层和所述第二体层之间形成第一结合体; 以及通过在所述第一体层和所述第二体层之间提供摩擦增强液体介质并且在不引入相对滑动的同时在所述第一体层和所述第二体层之间形成第二结合体, 使得第二体层变形成与第一体层的冷压焊接接触。