Method for using a super-slippery thin layer characterized by the method for making same
    62.
    发明授权
    Method for using a super-slippery thin layer characterized by the method for making same 失效
    使用其制造方法为特征的超光滑薄层的方法

    公开(公告)号:US08709547B2

    公开(公告)日:2014-04-29

    申请号:US13057039

    申请日:2009-07-09

    Abstract: The invention relates to the use of a super-slippery thin-layer film or coating for enhancing the lubrication capacity of a part to be subjected to great friction and wear. The film of the invention for improving the lubrication capacity of parts to be subjected to important friction and wear includes at least: a layer (3) of a hard material selected from titanium nitride (TiN), chromium nitride (CrN), titanium carbide (TiC), chromium carbide (CrC), tungsten carbide (W2C) and tungsten carbide-carbon composites (WC/C), alumina (AI2O3), molybdenum sulphide (MoS2), and materials of the hydrogenated amorphous carbon type (a: CH), the layer including on one surface thereof a series of dips and protrusions; and a layer (4) of an oleophilic material. The invention can particularly be used in the field of mechanics.

    Abstract translation: 本发明涉及使用超光滑薄膜或涂层来提高要承受较大摩擦和磨损的部件的润滑能力。 本发明的用于改善受到重要摩擦和磨损的部件的润滑能力的本发明的薄膜至少包括:选自氮化钛(TiN),氮化铬(CrN),碳化钛( TiC),碳化铬(CrC),碳化钨(W2C)和碳化钨 - 碳复合材料(WC / C),氧化铝(Al2O3),硫化钼(MoS2)和氢化非晶碳型(a:CH) ,所述层在其一个表面上包括一系列凹陷和突起; 和亲油材料层(4)。 本发明可以特别用于力学领域。

    METHOD FOR USING A SUPER-SLIPPERY THIN LAYER CHARACTERISED BY THE METHOD FOR MAKING SAME
    64.
    发明申请
    METHOD FOR USING A SUPER-SLIPPERY THIN LAYER CHARACTERISED BY THE METHOD FOR MAKING SAME 失效
    使用由其制造的方法表征的超级滑动薄层的方法

    公开(公告)号:US20110192521A1

    公开(公告)日:2011-08-11

    申请号:US13057039

    申请日:2009-07-09

    Abstract: The invention relates to the use of a super-slippery thin-layer film or coating for enhancing the lubrication capacity of a part to be subjected to great friction and wear. The film of the invention for improving the lubrication capacity of parts to be subjected to important friction and wear includes at least: a layer (3) of a hard material selected from titanium nitride (TiN), chromium nitride (CrN), titanium carbide (TiC), chromium carbide (CrC), tungsten carbide (W2C) and tungsten carbide-carbon composites (WC/C), alumina (AI2O3), molybdenum sulphide (MoS2), and materials of the hydrogenated amorphous carbon type (a:CH), the layer including on one surface thereof a series of dips and protrusions; and a layer (4) of an oleophilic material. The invention can particularly be used in the field of mechanics.

    Abstract translation: 本发明涉及使用超光滑薄膜或涂层来提高要承受较大摩擦和磨损的部件的润滑能力。 本发明的用于改善受到重要摩擦和磨损的部件的润滑能力的本发明的薄膜至少包括:选自氮化钛(TiN),氮化铬(CrN),碳化钛( TiC),碳化铬(CrC),碳化钨(W2C)和碳化钨 - 碳复合材料(WC / C),氧化铝(Al2O3),硫化钼(MoS2)和氢化非晶碳型(a:CH) ,所述层在其一个表面上包括一系列凹陷和突起; 和亲油材料层(4)。 本发明可以特别用于力学领域。

    Slurry composition containing non-ionic polymer and method for use
    67.
    发明申请
    Slurry composition containing non-ionic polymer and method for use 有权
    含非离子聚合物的浆料组合物及其使用方法

    公开(公告)号:US20090126713A1

    公开(公告)日:2009-05-21

    申请号:US12317254

    申请日:2008-12-19

    Abstract: A wiresaw cutting fluid composition of the present invention comprises about 25 to about 75% by weight of a particulate abrasive suspended in an aqueous carrier containing a polymeric viscosity modifier that comprises a polymer including a majority of non-ionic monomer units (preferably 100 mol % non-ionic monomer units), has a number average molecular weight (Mn) of at least about 5 kDa, and is present in the composition at a concentration sufficient to provide a Brookfield viscosity for the composition in the range of about 50 to about 1000 cP, e.g., 50 to about 700 cP, at about 25° C. at a spindle rotation rate of about 60 rpm. In one embodiment, the viscosity modifier comprises a polymer having a weight average molecular weight (Mw) of at least about 200 kDa. When a viscosity modifier of 200 kDa or greater Mw is utilized, a preferred wiresaw cutting method the cutting fluid is circulated and applied by pumps and nozzles operating at a relatively low shear rate of not more than about 104 s−1.

    Abstract translation: 本发明的线切割液组合物包含约25至约75重量%的悬浮在含有载体的水性载体中的颗粒磨料,所述颗粒磨料包含聚合物粘度调节剂,其包含大部分非离子单体单元的聚合物(优选为100摩尔% 非离子单体单元)具有至少约5kDa的数均分子量(Mn),并且以足以提供组合物的Brookfield粘度在约50至约1000范围内的浓度存在于组合物中 cP,例如50至约700cP,在约25℃下以约60rpm的主轴转速进行。 在一个实施方案中,粘度调节剂包含重均分子量(Mw)为至少约200kDa的聚合物。 当使用200kDa或更大的Mw的粘度调节剂时,优选的切线切割方法是通过以不大于约104s -1的较低剪切速率操作的泵和喷嘴循环施加切削液。

    EQUIPMENT LUBRICATING MICROBIAL COMPOSITIONS
    68.
    发明申请
    EQUIPMENT LUBRICATING MICROBIAL COMPOSITIONS 有权
    设备润滑微生物组合物

    公开(公告)号:US20090048128A1

    公开(公告)日:2009-02-19

    申请号:US12119178

    申请日:2008-05-12

    Abstract: An exemplary embodiment is directed to an equipment lubricating composition comprising useful microorganisms. An exemplary embodiment comprises a water insoluble, water-absorbent substance and an encapsulated microorganism component including viable microorganisms. This encapsulating material may encapsulate and protect the microorganisms by essentially preventing the microorganisms from contacting the external environment. Based on the protection afforded by the encapsulation, exemplary embodiments may include previously inhospitable carrier compounds such as particulate machine lubricants.

    Abstract translation: 示例性实施方案涉及包含有用微生物的设备润滑组合物。 示例性实施方案包括水不溶性吸水物质和包含活微生物的包封的微生物组分。 该封装材料可通过基本上防止微生物接触外部环境来包封和保护微生物。 基于由封装提供的保护,示例性实施方案可以包括先前不适用的载体化合物,例如颗粒机润滑剂。

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