Process for dyeing a textile web
    2.
    发明授权
    Process for dyeing a textile web 有权
    染色纺织网的方法

    公开(公告)号:US07740666B2

    公开(公告)日:2010-06-22

    申请号:US11646816

    申请日:2006-12-28

    CPC classification number: D06P5/2011 D06B13/00 D06P1/673

    Abstract: In a process for dyeing a textile web having a first face and a second face opposite the first face, a solvent-based dye having at least one component that has a thermal conductivity substantially greater than that of the solvent is applied to the textile web. The web is then moved, in an open configuration thereof, over a contact surface of an ultrasonic vibration system with the textile web in direct contact with the contact surface of the ultrasonic vibration system. The ultrasonic vibration system is operated to impart ultrasonic energy to the textile web at the contact surface of the ultrasonic vibration system. In one embodiment, the dye is applied to the first face of the web and the web is then moved over the contact surface of the ultrasonic vibration system with the second face of the web in direct contact with the contact surface.

    Abstract translation: 在用于染色具有第一面和与第一面相对的第二面的织物网的方法中,将具有至少一种成分的溶剂基染料施加到纺织织物上,所述组分具有比溶剂的导热性更高的热导率。 然后将幅材以其开放构型移动到超声波振动系统的接触表面上,其中织物幅材与超声波振动系统的接触表面直接接触。 操作超声波振动系统以在超声波振动系统的接触表面处向纺织纤维网提供超声波能量。 在一个实施方案中,将染料施加到幅材的第一面上,然后使幅材在超声波振动系统的接触表面上移动,而幅材的第二面与接触表面直接接触。

    GAS TREATMENT SYSTEM
    3.
    发明申请
    GAS TREATMENT SYSTEM 有权
    气体处理系统

    公开(公告)号:US20090158936A1

    公开(公告)日:2009-06-25

    申请号:US11963237

    申请日:2007-12-21

    Abstract: A gas treatment system has a housing defining an interior space adapted for holding liquid therein. The housing has an inlet port and an outlet port spaced from the inlet port so that gas passing through the interior space flows through the liquid therein. A gas delivery system directs gas to be treated into the interior space of the housing at the inlet port. An ultrasonic waveguide assembly is disposed within the interior space of the housing and includes an ultrasonic horn disposed at least in part intermediate the inlet port and the outlet port of the housing. The ultrasonic horn is operable at an ultrasonic frequency to ultrasonically energize liquid within the housing. An ultraviolet light source is for emitting ultraviolet light into the interior space of the housing to treat liquid flowing from the inlet port to the outlet port.

    Abstract translation: 气体处理系统具有限定用于将液体保持在其中的内部空间的壳体。 壳体具有与入口间隔开的入口和出口,使得通过内部空间的气体流过其中的液体。 气体输送系统将待处理的气体引导到入口处的壳体的内部空间。 超声波波导组件设置在壳体的内部空间内,并且包括至少部分地设置在壳体的入口和出口的中间的超声波喇叭。 超声波喇叭可以超声波频率操作,以超声波地激励壳体内的液体。 紫外光源用于将紫外光发射到壳体的内部空间中以处理从入口到出口流动的液体。

    METHODS OF PREPARING METAL-MODIFIED SILICA NANOPARTICLES
    6.
    发明申请
    METHODS OF PREPARING METAL-MODIFIED SILICA NANOPARTICLES 失效
    制备金属改性二氧化硅纳米粒子的方法

    公开(公告)号:US20100150859A1

    公开(公告)日:2010-06-17

    申请号:US12335176

    申请日:2008-12-15

    CPC classification number: B01F11/0258 A61L9/014

    Abstract: A method of preparing metal-modified silica particles is disclosed. Specifically, a treatment chamber is provided in which a first and a second formulation are ultrasonically mixed to prepare metal-modified silica particles. The treatment chamber has an elongate housing through which the first and second formulations flow longitudinally from a first inlet port and a second inlet port, respectively, to an outlet port thereof. An elongate ultrasonic waveguide assembly extends within the housing and is operable at a predetermined ultrasonic frequency to ultrasonically energize the formulations within the housing. An elongate ultrasonic horn of the waveguide assembly is disposed at least in part intermediate the inlet and outlet ports, and has a plurality of discrete agitating members in contact with and extending transversely outward from the horn intermediate the inlet and outlet ports in longitudinally spaced relationship with each other. The horn and agitating members are constructed and arranged for dynamic motion of the agitating members relative to the horn at the predetermined frequency and to operate in an ultrasonic cavitation mode of the agitating members corresponding to the predetermined frequency and the formulations being mixed in the chamber.

    Abstract translation: 公开了一种制备金属改性二氧化硅颗粒的方法。 具体地说,提供一种处理室,其中第一和第二制剂被超声波混合以制备金属改性的二氧化硅颗粒。 处理室具有细长的外壳,第一和第二配方通过该外壳从第一入口端口和第二入口端口分别纵向流到其出口。 细长的超声波波导组件在壳体内延伸并且可以预定的超声频率操作以超声波地激励壳体内的配方。 波导组件的细长的超声波喇叭至少部分地设置在入口和出口的中间,并且具有多个离散的搅拌构件,其与入口和出口端口处的喇叭的横向外部接触并向外延伸,与纵向间隔开的关系 彼此。 喇叭和搅拌构件被构造和布置成用于搅动构件相对于喇叭以预定频率的动态运动,并且在对应于预定频率的搅拌构件的超声空化模式下操作,并且配方在腔室中混合。

    ULTRASONIC TREATMENT CHAMBER FOR INITIATING THERMONUCLEAR FUSION
    7.
    发明申请
    ULTRASONIC TREATMENT CHAMBER FOR INITIATING THERMONUCLEAR FUSION 审中-公开
    用于启动热熔融的超声波处理室

    公开(公告)号:US20090147905A1

    公开(公告)日:2009-06-11

    申请号:US11950943

    申请日:2007-12-05

    CPC classification number: G21B3/00 Y02E30/18

    Abstract: A thermonuclear fusion system having a treatment chamber in which gas isotopes are fused to initiate a thermonuclear fusion reaction is disclosed. Specifically, the treatment chamber has an elongate housing through which liquid and gas isotopes flow longitudinally from an inlet port to an outlet port thereof. An elongate ultrasonic waveguide assembly extends within the housing and is operable at a predetermined ultrasonic frequency and a predetermined electrode potential to ultrasonically enhance the concentration of dissolved hydrogen gas isotopes within the housing or energize and electrolyze the liquid and gas isotopes within the housing. An elongate ultrasonic horn of the waveguide assembly is disposed at least in part intermediate the inlet and outlet ports, and has a plurality of discrete agitating members in contact with and extending transversely outward from the horn intermediate the inlet and outlet ports in longitudinally spaced relationship with each other. The horn and agitating members are constructed and arranged for dynamic motion of the agitating members relative to the horn at the predetermined frequency and to operate in an ultrasonic cavitation mode of the agitating members corresponding to the predetermined frequency and the liquid and gas isotopes being treated in the chamber.

    Abstract translation: 公开了一种具有处理室的热核聚变系统,其中气体同位素被熔合以引发热核聚变反应。 具体地说,处理室具有细长的壳体,液体和气体同位素通过该壳体从入口端口到其出口纵向流动。 细长的超声波波导组件在壳体内延伸并且可以预定的超声波频率和预定的电极电位工作,以超声波地增强壳体内溶解的氢气同位素的浓度,或激励和电解壳体内的液体和气体同位素。 波导组件的细长超声波喇叭至少部分地设置在入口和出口的中间,并且具有多个离散的搅拌构件,其与入口和出口端口处的喇叭中的接触并横向向外延伸,与纵向间隔开的关系 彼此。 喇叭和搅拌构件被构造和布置成用于以预定频率相对于喇叭的搅动构件的动态运动,并且在对应于预定频率的搅拌构件的超声空化模式和被处理的液体和气体同位素 房间。

    Process for dyeing a textile web
    8.
    发明申请
    Process for dyeing a textile web 有权
    染色纺织网的方法

    公开(公告)号:US20080155765A1

    公开(公告)日:2008-07-03

    申请号:US11647534

    申请日:2006-12-28

    CPC classification number: D06P5/2011 D06B13/00

    Abstract: In a process for dyeing a textile web, dye is applied directly to a first face of the textile web other than by saturating the web. The web is moved in an open configuration thereof over a contact surface of an ultrasonic vibration system with a second (opposite) face of the textile web in direct contact with the contact surface of the ultrasonic vibration system and the first face free from contact with the contact surface of the ultrasonic vibration system. The ultrasonic vibration system is operated to impart ultrasonic energy to the second face of the textile web to facilitate movement of the dye from the first face of the web into and through the web to the second face thereof. In another embodiment, dye is applied to the first face of the textile web without applying the dye to the second face of the web.

    Abstract translation: 在纺织织物染色的过程中,将染料直接施加到织物网的第一面,而不是通过使网幅饱和。 幅材在超声波振动系统的接触表面上以打开的形式移动,其中纺织织物的第二(相对)面与超声波振动系统的接触表面直接接触,并且第一表面与第二面 超声波振动系统的接触面。 操作超声波振动系统以向织物网的第二面施加超声波能量,以促进染料从幅材的第一面移动并穿过幅材到其第二面。 在另一个实施方案中,将染料施加到织物网的第一面上,而不将染料施加到幅材的第二面。

    Gas treatment system
    9.
    发明授权
    Gas treatment system 有权
    气体处理系统

    公开(公告)号:US08454889B2

    公开(公告)日:2013-06-04

    申请号:US11963237

    申请日:2007-12-21

    Abstract: A gas treatment system has a housing defining an interior space adapted for holding liquid therein. The housing has an inlet port and an outlet port spaced from the inlet port so that gas passing through the interior space flows through the liquid therein. A gas delivery system directs gas to be treated into the interior space of the housing at the inlet port. An ultrasonic waveguide assembly is disposed within the interior space of the housing and includes an ultrasonic horn disposed at least in part intermediate the inlet port and the outlet port of the housing. The ultrasonic horn is operable at an ultrasonic frequency to ultrasonically energize liquid within the housing. An ultraviolet light source is for emitting ultraviolet light into the interior space of the housing to treat liquid flowing from the inlet port to the outlet port.

    Abstract translation: 气体处理系统具有限定用于将液体保持在其中的内部空间的壳体。 壳体具有与入口间隔开的入口和出口,使得通过内部空间的气体流过其中的液体。 气体输送系统将待处理的气体引导到入口处的壳体的内部空间。 超声波波导组件设置在壳体的内部空间内,并且包括至少部分地设置在壳体的入口和出口的中间的超声波喇叭。 超声波喇叭可以超声波频率操作,以超声波地激励壳体内的液体。 紫外光源用于将紫外光发射到壳体的内部空间中以处理从入口到出口流动的液体。

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