THERMALLY ADAPTIVE SURFACES FOR RECEIVING THERMAL SPRAYS
    61.
    发明申请
    THERMALLY ADAPTIVE SURFACES FOR RECEIVING THERMAL SPRAYS 审中-公开
    用于接收热喷涂的热自适应表面

    公开(公告)号:US20090202846A1

    公开(公告)日:2009-08-13

    申请号:US12367173

    申请日:2009-02-06

    Abstract: A method is disclosed for applying thermal spray particles to a composite, wherein the method includes the steps of providing a composite that includes a thermally sensitive surface, and applying the thermal spray particles at a temperature that is high enough to cause a temperature-dependent change in the thermally sensitive surface of the composite. The temperature-dependent change improves adhesion between the thermal spay particles and the composite.

    Abstract translation: 公开了一种将热喷雾颗粒施加到复合材料的方法,其中该方法包括以下步骤:提供包括热敏表面的复合材料,以及将热喷涂颗粒施加到足以引起温度依赖性变化的温度 在复合材料的热敏表面。 温度依赖性变化提高了热喷涂颗粒和复合材料之间的粘附力。

    Method for fabricating a medical component from a material having a high carbide phase
    62.
    发明申请
    Method for fabricating a medical component from a material having a high carbide phase 有权
    从具有高碳化物相的材料制造医疗部件的方法

    公开(公告)号:US20080241350A1

    公开(公告)日:2008-10-02

    申请号:US11728677

    申请日:2007-03-26

    CPC classification number: B05D1/08 C23C4/06

    Abstract: A method of fabricating a medical implant component. The method may comprise producing a substrate from a first material in which the substrate has a bearing portion, and spraying particles of a second material by use of a thermal type spraying process onto at least the bearing portion of the substrate. The second material may be formed from a biocompatible material and a carbide source, in which the carbide source is 6.17% or more of the second material by weight. The biocompatible material may be cobalt chrome and the carbide source may be graphite. The thermal type spraying process may be a plasma spraying process or a high velocity oxygen fuel spraying process.

    Abstract translation: 一种制造医疗植入部件的方法。 该方法可以包括从其中衬底具有轴承部分的第一材料制造衬底,并且通过使用热式喷涂工艺将第二材料的颗粒喷射到至少衬底的承载部分上。 第二材料可以由生物相容性材料和碳化物源形成,其中碳化物源为第二种材料的6.17%或更多。 生物相容性材料可以是钴铬,碳化物源可以是石墨。 热喷涂方法可以是等离子喷涂法或高速氧燃料喷涂法。

    Method of coating a substrate
    63.
    发明申请
    Method of coating a substrate 有权
    涂布基材的方法

    公开(公告)号:US20080145555A1

    公开(公告)日:2008-06-19

    申请号:US11906278

    申请日:2007-10-01

    CPC classification number: B05D1/08 B05D7/02 B05D7/52

    Abstract: The present invention provides a method for coating a substrate, in particular a fiber reinforced plastic component, a protective layer being applied, with preference by means of thermal spraying, to a non-cured resin film applied to a release film, and subsequently, after removal of the release film, the resin film being applied to the substrate and cured.

    Abstract translation: 本发明提供了一种通过热喷涂优选地将基材,特别是纤维增强塑料组分,保护层涂覆到施加到脱模膜的未固化树脂膜上,随后在 去除脱模膜,将树脂膜施加到基材上并固化。

    Chemical vapor deposition and powder formation using thermal spray
    65.
    发明申请
    Chemical vapor deposition and powder formation using thermal spray 审中-公开
    化学气相沉积和粉末形成使用热喷涂

    公开(公告)号:US20010039919A1

    公开(公告)日:2001-11-15

    申请号:US09897157

    申请日:2001-07-03

    Abstract: A method for chemical vapor deposition using a very fine atomization or vaporization of a reagent containing liquid or liquid-like fluid near its supercritical temperature, where the resulting atomized or vaporized solution is entered into a flame or a plasma torch, and a powder is formed or a coating is deposited onto a substrate. The combustion flame can be stable from 10 torr to multiple atmospheres, and provides the energetic environment in which the reagent contained within the fluid can be reacted to form the desired powder or coating material on a substrate. The plasma torch likewise produces the required energy environment, but, unlike the flame, no oxidizer is needed so materials stable in only very low oxygen partial pressures can be formed. Using either the plasma torch or the combustion plasma, coatings can be deposited and powders formed in the open atmosphere without the necessity of a reaction chamber, but a chamber may be used for various reasons including process separation from the environment and pressure regulation.

    Abstract translation: 使用在其超临界温度附近含有液体或液体状流体的试剂非常精细的雾化或蒸发的化学气相沉积方法,其中所得雾化或蒸发的溶液进入火焰或等离子体焰炬,并形成粉末 或涂层沉积在基底上。 燃烧火焰可以从10托稳定到多个大气压,并且提供能够使流体中包含的试剂反应以在基底上形成所需粉末或涂层材料的能量环境。 等离子体焰炬同样产生所需的能量环境,但是与火焰不同,不需要氧化剂,因此可以形成仅在非常低的氧分压下稳定的材料。 使用等离子体焰炬或燃烧等离子体,可以沉积涂层并且在开放气氛中形成粉末,而不需要反应室,但是可以由于各种原因使用室,包括与环境的分离和压力调节。

    Apparatus and method for coating fluorescent powder on a flat panel
    66.
    发明授权
    Apparatus and method for coating fluorescent powder on a flat panel 有权
    在平板上涂布荧光粉的装置和方法

    公开(公告)号:US06280524B1

    公开(公告)日:2001-08-28

    申请号:US09366910

    申请日:1999-08-04

    CPC classification number: B05B5/087 B05B14/10 B05D1/045 B05D1/08 Y02P70/36

    Abstract: An apparatus for electrostatically coating powder on a flat panel and a method for using such apparatus are provided. In the apparatus, a heating device is used to heat a panel to be coated and positioned on a powder spray chamber to a temperature of at least 100° C. and simultaneously charging the panel with a negative voltage of at least 20,000 volts. The high temperature and the high voltage of the otherwise non-conductive panel result in a panel that is electrostatically conductive. Powder particles that are charged with a high positive voltage are then injected toward the panel surface by an air pressure of at least 0.8 kg/cm2 until particles are adhered to the panel surface. The present invention novel method can be used advantageously at low costs due to its simple processing steps and as an environmentally friendly process since no solvent needs to be evaporated and released into the atmosphere. The present invention novel method further provides a low cost method for fabricating flat panel display devices due to its simplified processing steps.

    Abstract translation: 提供了一种用于在平板上静电涂覆粉末的设备以及使用这种设备的方法。 在该装置中,加热装置用于将待涂覆的面板加热至粉末喷雾室至100℃的温度,同时以至少20,000伏的负电压对面板充电。 否则非导电面板的高温和高电压导致静电导电的面板。 然后,通过至少0.8kg / cm 2的空气压力将充满高正电压的粉末颗粒注入面板表面,直到颗粒粘附到面板表面。 本发明的新方法由于其简单的加工步骤和作为环境友好的方法可以以低成本有利地使用,因为不需要将溶剂蒸发并释放到大气中。 本发明的新方法由于其简化的处理步骤而进一步提供了一种用于制造平板显示装置的低成本方法。

    Liquid crystal polymer coating process
    67.
    发明授权
    Liquid crystal polymer coating process 失效
    液晶聚合物涂层工艺

    公开(公告)号:US06120854A

    公开(公告)日:2000-09-19

    申请号:US253451

    申请日:1999-02-19

    CPC classification number: B05D1/08 C09K19/38

    Abstract: Plasma spraying of particulate thermotropic liquid crystalline polymers onto the surfaces of composite and metallic structures. The present plasma spray process employs a conventional direct current electric arc plasma spray gun in which an inert plasma gas is introduced, caused to swirl, and discharges as a rotating plasma flame having an exceptionally high temperature, above about 14000.degree. K, into which the particulate liquid crystal polymer is discharged for melting and propulsion onto the target surface. The target surface preferably is preheated, and the molten particles deposit and cool to form a build up of the desired thickness. Cooling is regulated by post-heating the deposit to a temperature between about 200.degree. F. and 500.degree. F.

    Abstract translation: 颗粒状热致液晶聚合物等离子喷涂在复合材料和金属结构的表面上。 本等离子体喷涂方法采用常规的直流电弧等离子体喷枪,其中引入惰性等离子体气体,引起旋转,并作为具有超过约14000K的异常高温的旋转等离子体火焰放电,其中 颗粒状液晶聚合物被排出以熔化和推进到目标表面上。 目标表面优选被预热,并且熔融颗粒沉积和冷却以形成所需厚度的积聚。 通过将沉积物后加热至约200°F至500°F的温度来调节冷却。

Patent Agency Ranking