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    • 2. 发明申请
    • ELECTRICALLY INSULATING NANOCOMPOSITE HAVING SEMICONDUCTING OR NONCONDUCTIVE NANOPARTICLES, USE OF THIS NANOCOMPOSITE AND PROCESS FOR PRODUCING IT
    • 具有半导体或非金属纳米材料的电绝缘纳米复合材料,该纳米复合材料的使用和生产工艺
    • US20130187099A1
    • 2013-07-25
    • US13876903
    • 2011-09-15
    • Volkmar LuethenGabriele Winkler
    • Volkmar LuethenGabriele Winkler
    • H01B1/12C08L1/00
    • H01B1/124C08K3/04C08L1/00H01B3/004H01B3/48Y10T156/10
    • A cellulose material contains cellulose fibers having an impregnation. Accordingly, the impregnation is made of nanoparticles, in particular BNNT, containing a shell of polymers, in particular PEDOT:PSS. The impregnation forms a type of network that can reduce the specific resistance of the cellulose material due to the electrical conductivity of the network. The cellulose material can thereby be advantageously adapted to corresponding applications with respect to the electrical properties thereof. The cellulose material can thus also be used to electrically insulate transformers, wherein the cellulose material is thereby saturated with transformer oil and an adaptation of the specific resistance of the cellulose material to the specific resistance of the oil leads to improved dielectric strength of the transformer insulation. A method for producing the cellulose material described above contains a suitable impregnation step for the cellulose material.
    • 纤维素材料含有具有浸渍的纤维素纤维。 因此,浸渍由纳米颗粒,特别是BNNT制成,其包含聚合物壳,特别是PEDOT:PSS。 浸渍形成一种网络,其可以由于网络的导电性而降低纤维素材料的电阻率。 因此,纤维素材料可以有利地适用于相对于其电性能的相应应用。 因此,纤维素材料也可用于电绝缘变压器,其中纤维素材料因此被变压器油饱和,并且纤维素材料的电阻率适应于油的电阻率导致变压器绝缘体的改善的介电强度 。 上述纤维素材料的制造方法包含纤维素材料的合适的浸渍工序。
    • 3. 发明授权
    • Component for the sliding support of another component, and process for producing it
    • 用于另一部件的滑动支撑的部件,以及用于制造它的过程
    • US08314053B2
    • 2012-11-20
    • US12676500
    • 2008-09-04
    • Jens Dahl JensenUrsus KrügerHeike SchieweManuela SchneiderGabriele WinklerHartmut Walter
    • Jens Dahl JensenUrsus KrügerHeike SchieweManuela SchneiderGabriele WinklerHartmut Walter
    • F16C33/06C10M103/06
    • F16C33/14F16C33/043F16C2220/20F16C2223/70Y10T29/49647
    • The invention relates to a component that is suitable for use as a sliding bearing. The invention further relates to a method for the production of said component. The design of the component according to the invention provides a layer of a light metal material (13), which is provided with an oxide layer (15) containing pores (16) in the direction of the sliding surface (23) of the component. A hard material (18) is placed in the pores, which greatly increases the firmness of said layer region, thus creating the mechanical firmness for use as a sliding bearing. In order to counteract the tendency of said firm layer region to experience brittle failure, the oxide layer (15) is coated with a solid lubricant layer (20). Said solid lubricant layer comprises a metallic, ductile matrix (21), which distributes a force (F) acting at certain points over a larger surface region (b). In order to improve the sliding characteristics, particles of a solid lubricant (22) are simultaneously embedded in the solid lubricant layer (20).
    • 本发明涉及适用于滑动轴承的部件。 本发明还涉及生产所述组分的方法。 根据本发明的部件的设计提供了一种轻金属材料层(13),其在该部件的滑动表面(23)的方向上设置有包含孔(16)的氧化物层(15)。 一个硬质材料(18)被放置在孔中,这大大增加了所述层区域的硬度,从而产生用作滑动轴承的机械硬度。 为了抵消所述牢固层区域经历脆性破坏的倾向,氧化物层(15)涂覆有固体润滑剂层(20)。 所述固体润滑剂层包括金属的延性基体(21),其分配在较大表面区域(b)上的某些点处作用的力(F)。 为了提高滑动特性,固体润滑剂(22)的颗粒同时嵌入固体润滑剂层(20)中。