Abstract:
나노입자 코팅 구조 및 구조의 제조방법은 본 명세서에 제공된다. 상기 구조는 지지 부재, 나노미립자층, 및 상기 지지 부재에 배치된 바인더를 포함하며; 여기서, 상기 바인더는 알칼리 실리케이트 또는 보레이트를 포함한다. 부가적으로, 상기 구조의 제조 방법 및 상기 기재된 구조의 용도는 본 명세서에 기재된다.
Abstract:
PURPOSE: A non-sticking fluorine resin coating method applied on an outdoor metal structure is provided to fundamentally prevent the metal structure from contamination such as corrosion and discoloration etc due to environmental factors by forming a spray layer. CONSTITUTION: A non-sticking fluorine resin coating method applied on an outdoor metal structure comprises a step for coating the surface of the outdoor metal structure with non-sticking fluorine resin. A sprayed layer is formed by spraying nickel, zinc, aluminum, ceramic etc according to purposes before the performing a coating process.
Abstract:
Coating compositions for coating an oilfield operational component, and related methods, may include in some aspects a coating composition having a trifunctional silane, a silanol, and a filler. The coating composition may be applied to a surface of the oilfield operational component that is configured to be exposed to a fluid. The coating composition may be applied to at least partially cover or coat the surface. The coating composition may be configured to chemically bond with a cured primer composition that includes an epoxy.
Abstract:
A method for manufacturing a solid state ionic conductive membrane includes forming a solid state ionic conductive membrane on a support scaffold and treating the support scaffold to be macro porous.
Abstract:
A thermal spray system may include a thermal spray torch configured to produce an emission of material, at least one camera configured to capture an image of the emission of material emitted by the thermal spray torch, a diagnostic device communicatively coupled to the at least one camera, and a controller communicatively coupled to the diagnostic device. The camera may be configured to transmit an image of the emission of material to a diagnostic device that may be configured to determine a characteristic of the emission of material based on the image. The diagnostic device may transmit the characteristic to a controller that may control a position of the thermal spray torch based on the characteristic.
Abstract:
A process for applying an insulative coating to a mandrel can be used in an electromagnetic telemetry antenna assembly. One process includes applying a bond coat to at least a portion of an outer radial surface of a mandrel; applying an electrical isolation layer to the bond coat; applying a first sealant layer to the electrical isolation layer; and heat treating the mandrel in an oven.
Abstract:
A method of forming a film layer and a substrate comprising the film layer to reduce occurrence of defects and improve the quality of the film layer are described. The method of forming a film layer comprises forming a plurality of sub-film layers of a same material overlapped with each other on a substrate by multiple steps to constitute the film layer, wherein each time a sub-film layer is formed, the newly-formed sub-film layer is cleaned immediately. The substrate comprises a film layer formed by the above method.
Abstract:
A method includes the following steps: providing a grafting device (20) including a torch (26) that produces a flame (28) in a volume of ambient air and a cooling substrate (33) positioned facing the flame (28); moving the elongate material (14) continuously through the flame (28) between the torch (26) and the cooling substrate (33); and grafting carbon nanostructures (16) continuously onto the elongate material (14) during its passage through the flame (28).
Abstract:
The invention provides a method of forming a film layer and a substrate comprising the film layer, and belongs to the field of film fabricating technology. The invention can solve the problem that, by using the method of forming a film layer in the prior art, defective film layers is apt to occur. The inventive method of forming a film layer comprises forming a plurality of sub-film layers of a same material overlapped with each other on a substrate by multiple steps to constitute the film layer, wherein each time a sub-film layer is formed, the newly-formed sub-film layer is cleaned immediately. The inventive substrate comprises a film layer formed by the above method. The invention may be used for improving the quality of the film layer.
Abstract:
Method for performing a thermal spray process. Method includes heating and/or accelerating a gas to form an effluent gas stream, feeding a particulate-bearing carrier stream through an axial injection port into the effluent gas stream to form a mixed stream, in which the axial injection port includes a plurality of chevrons located at a distal end of said axial injection port, and impacting the mixed stream on a substrate to form a coating.