ELECTRONICALLY CONTROLLED FUEL INJECTION VALVE
    11.
    发明申请
    ELECTRONICALLY CONTROLLED FUEL INJECTION VALVE 有权
    电子控制燃油喷射阀

    公开(公告)号:US20130298877A1

    公开(公告)日:2013-11-14

    申请号:US13997754

    申请日:2011-12-26

    Abstract: An electronically controlled fuel injection valve can independently control the time to inject fuel and the amount of fuel to be injected in response to a control signal sent from the operating condition of an engine unlike a traditional mechanical fuel injection valve, and employs a control method for fuel injection that increases the force of lifting up a cutoff needle of an injection controller by delivering high-pressure fuel to a lower pressure chamber via a control needle, thereby rapidly controlling fuel injection. The electronically controlled fuel injection valve prevents a nozzle part from being constantly subjected to high pressure due to the nozzle part being not supplied with fuel when fuel is not injected, prevents a large amount of fuel from leaking into a combustion chamber when a part such as a needle is damaged, and simplifies the structure of a second flow path, thereby facilitating fabrication.

    Abstract translation: 电子控制的燃料喷射阀可以独立地控制喷射燃料的时间和喷射量,以响应于从传统的机械燃料喷射阀的发动机的运行状态发送的控制信号,并且采用一种控制方法 燃料喷射通过经由控制针将高压燃料输送到较低压力室来增加提升注射控制器的截止针的力,由此快速控制燃料喷射。 电子控制的燃料喷射阀防止喷嘴部分由于在不喷射燃料时喷嘴部分没有燃料而不断地受到高压,防止了大量的燃料泄漏到燃烧室中, 针损坏,并且简化了第二流路的结构,从而有利于制造。

    Organic light emitting device
    14.
    发明授权
    Organic light emitting device 有权
    有机发光装置

    公开(公告)号:US08053975B2

    公开(公告)日:2011-11-08

    申请号:US12120815

    申请日:2008-05-15

    Abstract: Organic light emitting devices (OLEDs) are provided. An exemplary OLED includes a substrate, a first electrode, a second electrode, and an organic layer between the first and second electrodes having a hole injection layer and an emissive layer. The emissive layer includes red, green and blue emissive layers. The organic layer further includes an auxiliary layer selected from a first auxiliary layer between the hole injection layer and the red emissive layer for adjusting the resonance cycle of red light, a second auxiliary layer between the hole injection layer and the green emissive layer for adjusting the resonance cycle of green light, and combinations thereof. The material of the auxiliary layer is different from the material of the hole injection layer. The organic light emitting device has low turn-on voltage, high current density, high luminance, high current efficiency, high power, long life-time, and excellent color purity.

    Abstract translation: 提供有机发光器件(OLED)。 示例性OLED包括基板,第一电极,第二电极和位于具有空穴注入层和发射层的第一和第二电极之间的有机层。 发射层包括红色,绿色和蓝色发射层。 有机层还包括辅助层,其选自空穴注入层和红色发射层之间的第一辅助层,用于调节红光的共振周期;空穴注入层和绿色发光层之间的第二辅助层, 绿光的共振循环及其组合。 辅助层的材料与空穴注入层的材料不同。 有机发光器件具有低导通电压,高电流密度,高亮度,高电流效率,高功率,长寿命和优异的色纯度。

    FUEL-INJECTION VALVE FOR AN INTERNAL COMBUSTION ENGINE
    16.
    发明申请
    FUEL-INJECTION VALVE FOR AN INTERNAL COMBUSTION ENGINE 有权
    用于内燃机的燃油喷射阀

    公开(公告)号:US20130214065A1

    公开(公告)日:2013-08-22

    申请号:US13881914

    申请日:2011-10-27

    Abstract: Disclosed herein is a fuel injection valve for an internal combustion engine. The fuel injection valve includes a valve body (10), a nozzle (20), a valve plate (30), a main needle spindle (40), a main needle (50), a main needle spring (60), a spring plate (70), a pilot needle spring (80), a pilot needle spindle (90) and a pilot needle (100). In the present invention, both the main needle and the pilot needle are opened or only the pilot needle is opened by compressed high-pressure fuel oil or compressed air, thereby enabling main injection and pilot injection to be separately performed by the single fuel-injection valve. Furthermore, because opening of the main needle valve can be controlled by compressed air for ignition or control of an engine, only the pilot injection may be conducted even without using a separate compression apparatus or the like.

    Abstract translation: 这里公开了一种用于内燃机的燃料喷射阀。 燃料喷射阀包括阀体(10),喷嘴(20),阀板(30),主针轴(40),主针(50),主针弹簧(60),弹簧 导向针(70),先导针弹簧(80),先导针轴(90)和先导针(100)。 在本发明中,主针和先导针都被打开,或者只有先导针通过压缩的高压燃料油或压缩空气打开,从而能够通过单次燃料喷射单独执行主喷射和先导喷射 阀。 此外,由于可以通过用于点火或控制发动机的压缩空气来控制主针阀的打开,所以即使不使用单独的压缩装置等也可以仅进行引燃喷射。

    Evaporating method for forming thin film
    17.
    发明授权
    Evaporating method for forming thin film 有权
    用于形成薄膜的蒸发方法

    公开(公告)号:US08211233B2

    公开(公告)日:2012-07-03

    申请号:US12206785

    申请日:2008-09-09

    Abstract: A method of forming a plurality of multi-layer organic films in a single process includes preparing a first evaporating source that evaporates a first evaporating source material onto a first deposition region and a second evaporating source that evaporates a second evaporating source material onto a second deposition region, wherein the first evaporating source material and the second evaporating source material are different from each other, adjusting the first evaporating source and the second evaporating source in order to obtain a first overlapping region in which the first deposition region and the second deposition region overlap each other, driving the first evaporating source and the second evaporating source to deposit the first evaporating source material and the second evaporating source material onto a portion of an object to be processed, and moving the first evaporating source and the second evaporating source from a first end of the object to a second end of the object to form a multilayer film comprising a first layer that is a deposition of only the first evaporating source material, a second layer that is a deposition of a mixture of the first evaporating source material and the second evaporating source material and a third layer that is a deposition of only the second source material.

    Abstract translation: 在单一工艺中形成多层有机膜的方法包括制备将第一蒸发源材料蒸发到第一沉积区域上的第一蒸发源和将第二蒸发源材料蒸发到第二沉积物上的第二蒸发源 区域,其中第一蒸发源材料和第二蒸发源材料彼此不同,调节第一蒸发源和第二蒸发源,以获得其中第一沉积区域和第二沉积区域重叠的第一重叠区域 彼此驱动第一蒸发源和第二蒸发源,以将第一蒸发源材料和第二蒸发源材料沉积到待处理物体的一部分上,并且将第一蒸发源和第二蒸发源从第一蒸发源和第二蒸发源 对象的结束到对象的第二端 以形成多层膜,其包括仅第一蒸发源材料的沉积的第一层,作为第一蒸发源材料和第二蒸发源材料的混合物的沉积的第二层和作为第一蒸发源材料的第三层的第三层 仅沉积第二源材料。

    EVAPORATING METHOD FOR FORMING THIN FILM
    18.
    发明申请
    EVAPORATING METHOD FOR FORMING THIN FILM 审中-公开
    用于形成薄膜的蒸发方法

    公开(公告)号:US20120121796A1

    公开(公告)日:2012-05-17

    申请号:US13327714

    申请日:2011-12-15

    Abstract: A method of forming a film on a substrate includes depositing first and second evaporating source materials respective from first and second evaporating sources onto the substrate while moving the evaporating sources together with respect to the substrate, the first and second evaporating source materials being different from each other and positioned to provide a non-overlapping deposition region of the first evaporating source material, an overlapping deposition region of the first and second evaporating source materials and a non-overlapping deposition region of the second source material such that when the evaporating sources are moved, a film is formed to include a first layer that is a deposition of only the first evaporating source material, a second layer that is a deposition of a mixture of the first evaporating source material and the second evaporating source material and a third layer that is a deposition of only the second source material.

    Abstract translation: 一种在衬底上形成膜的方法包括将第一和第二蒸发源相应于第一和第二蒸发源的第一和第二蒸发源材料沉积到衬底上,同时相对于衬底移动蒸发源,第一和第二蒸发源材料与每个 并且定位成提供第一蒸发源材料的不重叠的沉积区域,第一和第二蒸发源材料的重叠沉积区域和第二源材料的非重叠沉积区域,使得当蒸发源移动时 形成膜,以包括仅第一蒸发源材料的沉积的第一层,作为第一蒸发源材料和第二蒸发源材料的混合物沉积的第二层,以及第三层 仅沉积第二源材料。

    EVAPORATING METHOD FOR FORMING THIN FILM
    20.
    发明申请
    EVAPORATING METHOD FOR FORMING THIN FILM 有权
    用于形成薄膜的蒸发方法

    公开(公告)号:US20090232976A1

    公开(公告)日:2009-09-17

    申请号:US12206785

    申请日:2008-09-09

    Abstract: A method of forming a plurality of multi-layer organic films in a single process includes preparing a first evaporating source that evaporates a first evaporating source material onto a first deposition region and a second evaporating source that evaporates a second evaporating source material onto a second deposition region, wherein the first evaporating source material and the second evaporating source material are different from each other, adjusting the first evaporating source and the second evaporating source in order to obtain a first overlapping region in which the first deposition region and the second deposition region overlap each other, driving the first evaporating source and the second evaporating source to deposit the first evaporating source material and the second evaporating source material onto a portion of an object to be processed, and moving the first evaporating source and the second evaporating source from a first end of the object to a second end of the object to form a multilayer film comprising a first layer that is a deposition of only the first evaporating source material, a second layer that is a deposition of a mixture of the first evaporating source material and the second evaporating source material and a third layer that is a deposition of only the second source material.

    Abstract translation: 在单一工艺中形成多层有机膜的方法包括制备将第一蒸发源材料蒸发到第一沉积区域上的第一蒸发源和将第二蒸发源材料蒸发到第二沉积物上的第二蒸发源 区域,其中第一蒸发源材料和第二蒸发源材料彼此不同,调节第一蒸发源和第二蒸发源,以获得其中第一沉积区域和第二沉积区域重叠的第一重叠区域 彼此驱动第一蒸发源和第二蒸发源,以将第一蒸发源材料和第二蒸发源材料沉积到待处理物体的一部分上,并且将第一蒸发源和第二蒸发源从第一蒸发源和第二蒸发源 对象的结束到对象的第二端 以形成多层膜,其包括仅第一蒸发源材料的沉积的第一层,作为第一蒸发源材料和第二蒸发源材料的混合物的沉积的第二层和作为第一蒸发源材料的第三层的第三层 仅沉积第二源材料。

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