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    • 4. 发明授权
    • Multi component particle generating system
    • 多组分颗粒发生系统
    • US08528496B2
    • 2013-09-10
    • US13002646
    • 2009-07-07
    • Rene Jos HoubenAndries RijfersLeonardus Antonius Maria Brouwers
    • Rene Jos HoubenAndries RijfersLeonardus Antonius Maria Brouwers
    • B05C5/00B05C5/02B05C15/00
    • B01J2/006B01J2/02
    • The invention relates to a method of generating a multicomponent particle comprising: and a multicomponent particle generating system comprising a movable support constructed to accelerate particles supplied on the movable support; a particle supply system for supplying the particles to the movable support; at least one nozzle arranged to generate a generally uninterrupted fluid jet along at least part of a circumference of the movable support without breaking up; to have said accelerated particles collide with the fluid jet so as to combine said particles with fluid of the fluid jet, for providing a multicomponent particle; and a collector arranged in the trajectory of said particles, by which said particles can be captured after collision with the fluid jet.
    • 本发明涉及一种生成多组分颗粒的方法,包括:和多组分颗粒发生系统,其包括可移动支撑件,其构造成加速供应在可移动支撑件上的颗粒; 用于将颗粒供应到可移动支撑件的颗粒供应系统; 至少一个喷嘴,布置成沿着可移动支撑件的圆周的至少一部分产生大致不间断的流体射流,而不会分裂; 使所述加速的颗粒与流体射流碰撞,以将所述颗粒与流体射流的流体结合,以提供多组分颗粒; 以及布置在所述颗粒的轨迹中的收集器,通过该收集器可以在与流体射流碰撞之后捕获所述颗粒。
    • 6. 发明申请
    • Multi component particle generating system
    • 多组分颗粒发生系统
    • US20110177243A1
    • 2011-07-21
    • US13002646
    • 2009-07-07
    • Rene Jos HoubenAndries RijfersLeonardus Antonius Maria Brouwers
    • Rene Jos HoubenAndries RijfersLeonardus Antonius Maria Brouwers
    • B05C5/00B05D7/00
    • B01J2/006B01J2/02
    • The invention relates to a method of generating a multicomponent particle comprising: and a multicomponent particle generating system comprising a movable support constructed to accelerate particles supplied on the movable support; a particle supply system for supplying the particles to the movable support; at least one nozzle arranged to generate a generally uninterrupted fluid jet along at least part of a circumference of the movable support without breaking up; to have said accelerated particles collide with the fluid jet so as to combine said particles with fluid of the fluid jet, for providing a multicomponent particle; and a collector arranged in the trajectory of said particles, by which said particles can be captured after collision with the fluid jet.
    • 本发明涉及一种生成多组分颗粒的方法,包括:和多组分颗粒发生系统,其包括可移动支撑件,其构造成加速供应在可移动支撑件上的颗粒; 用于将颗粒供应到可移动支撑件的颗粒供应系统; 至少一个喷嘴,布置成沿着可移动支撑件的圆周的至少一部分产生大致不间断的流体射流,而不会分裂; 使所述加速的颗粒与流体射流碰撞,以将所述颗粒与流体射流的流体结合,以提供多组分颗粒; 以及布置在所述颗粒的轨迹中的收集器,通过该收集器可以在与流体射流碰撞之后捕获所述颗粒。
    • 7. 发明授权
    • Pressure independent droplet generation
    • 压力独立液滴产生
    • US08511801B2
    • 2013-08-20
    • US12997772
    • 2009-06-12
    • Frederikus Johannes Maria de VreedeAntonius Paulus AulbersRene Jos Houben
    • Frederikus Johannes Maria de VreedeAntonius Paulus AulbersRene Jos Houben
    • B41J2/02B41J2/04B41J2/07
    • B41J2/03
    • The invention relates to an apparatus for ejecting droplets of a fluid material, comprising: a reservoir for storing the material, a channel connected with the reservoir, which is provided with at least one outflow opening from which, in use, flows a jet of the material breaking up into droplets, a pump for pressurizing the fluid material in the reservoir, so as to pass the material under pressure through the channel in the direction of the outflow opening, and a movable member provided in the reservoir, the member formed by a plurality of surfaces shaped to induce a pressure variation in the fluid material upstream of the outflow opening, for the purpose of obtaining the jet breaking up into droplets; the movable member mounted to have each opposed surface receiving identical hydrostatic pressure, to generate a net resulting zero force exerted on the movable member by the hydrostatic pressure. Accordingly, a simple mechanism is provided for providing multiple printing nozzles.
    • 本发明涉及一种用于喷射液体材料的液滴的装置,包括:用于储存材料的储存器,与储存器连接的通道,该通道设置有至少一个流出开口,在使用中流过该流体的流 分解成液滴的材料,用于对储存器中的流体材料加压的泵,以使压力下的材料沿着流出开口的方向通过通道;以及可移动构件,其设置在储存器中,该构件由 多个表面成形为在流出开口上游引起流体材料中的压力变化,以获得喷射分解成液滴的目的; 安装成使每个相对的表面具有相同的流体静压力的可动件,以产生由流体静压力施加在可移动件上的零力。 因此,提供了一种用于提供多个印刷喷嘴的简单机构。
    • 8. 发明授权
    • Constant flow high pressure printing system
    • 恒流高压打印系统
    • US09138986B2
    • 2015-09-22
    • US12514759
    • 2007-11-14
    • Rene Jos Houben
    • Rene Jos Houben
    • B41J2/015B41J2/02
    • B41J2/02
    • A high pressure printing system comprising: a high pressure printing head, constructed and arranged for printing a printing fluid with a printing pressure in at least a part of a channel upstream of the printing head in an interval of 15-3000 bars; a pressure system comprising a printing fluid inlet and a plurality of pressure cylinders constructed and arranged for providing a constant flow of said printing fluid, the pressure cylinders being interconnected by at least a pressure valve; and a damper, connected between an outlet of the pressure system and said high pressure printing head, provided for damping the valve action of the pressure valve.
    • 一种高压打印系统,包括:高压打印头,其被构造和布置成以15-3000巴的间隔在打印头的上游的至少一部分通道中以印刷压力打印打印流体; 压力系统包括印刷流体入口和多个压力缸,所述压力缸被构造和布置成用于提供所述印刷流体的恒定流量,所述压力缸通过至少一个压力阀相互连接; 以及连接在压力系统的出口和所述高压打印头之间的阻尼器,用于阻尼压力阀的阀动作。
    • 9. 发明申请
    • Method of Printing a Fluid Material Using a Continuous Jet Printing Technique and Curable Compositions for Use in Said Method
    • 使用连续喷墨印刷技术印刷流体材料的方法和用于所述方法的可固化组合物
    • US20080160194A1
    • 2008-07-03
    • US11884867
    • 2006-03-21
    • Jasper Joost MichelsRene Jos Houben
    • Jasper Joost MichelsRene Jos Houben
    • B05D5/06C09D11/02
    • C09D11/101
    • The invention relates to a method for printing a fluid material using a continuous jet printing technique, wherein the material is passed under pressure from a reservoir through a channel to at least one outflow opening of the channel, after which the material is passed through the outflow opening, whereby the pressure in at least a part of the channel upstream of the outflow opening is in the interval of 15-600 bars [≡15·105 to 600·105 Pa], and whereby the fluid material comprises a curable composition which comprises: a) a component A in an amount in the range of from 1-15 wt % which component A has a dielectric constant larger than 15 (at 0° C.); b) an ionically dissolved lipophilic salt in an amount in the range of from 1-15 wt %, c) optionally (a) coating additive(s) in an amount of at most 10 wt %, and d) for the remaining part a liquid component B which comprises a curable monomer and/or a curable oligomer, which liquid component B has a low shear viscosity (at 22° C.) in the range of from 50-1500 mPas, whereby liquid components A and B are compatible with each other, and all amounts are based upon total composition. The invention further relates to said curable composition and articles comprising said composition.
    • 本发明涉及一种使用连续喷射印刷技术印刷流体材料的方法,其中材料在压力下通过通道从储存器传送到通道的至少一个流出开口,之后材料通过流出 由此在流出口上游的至少一部分通道内的压力为15-600巴[≡15.10±5至600.105Pa]的间隔, 并且由此流体材料包括可固化组合物,其包含:a)组分A的量为1-15重量%,组分A的介电常数大于15(在0℃); b)离子溶解的亲油盐,其量为1-15重量%,c)任选地(a)至多10重量%的涂料添加剂,以及d)对于剩余部分a 液体组分B,其包含可固化单体和/或可固化低聚物,该液体组分B具有在50-1500mPas范围内的低剪切粘度(22℃),由此液体组分A和B与 彼此之间,所有的数额都是基于总体组成。 本发明还涉及包含所述组合物的所述可固化组合物和制品。
    • 10. 发明申请
    • Pressure independent droplet generation
    • 压力独立液滴产生
    • US20110211019A1
    • 2011-09-01
    • US12997772
    • 2009-06-12
    • Frederikus Johannes Maria de VreedeAntonius Paulus AulbersRene Jos Houben
    • Frederikus Johannes Maria de VreedeAntonius Paulus AulbersRene Jos Houben
    • B41J2/04
    • B41J2/03
    • The invention relates to an apparatus for ejecting droplets of a fluid material, comprising: a reservoir for storing the material, a channel connected with the reservoir, which is provided with at least one outflow opening from which, in use, flows a jet of the material breaking up into droplets, a pump for pressurizing the fluid material in the reservoir, so as to pass the material under pressure through the channel in the direction of the outflow opening, and a movable member provided in the reservoir, the member formed by a plurality of surfaces shaped to induce a pressure variation in the fluid material upstream of the outflow opening, for the purpose of obtaining the jet breaking up into droplets; the movable member mounted to have each opposed surface receiving identical hydrostatic pressure, to generate a net resulting zero force exerted on the movable member by the hydrostatic pressure. Accordingly, a simple mechanism is provided for providing multiple printing nozzles.
    • 本发明涉及一种用于喷射液体材料的液滴的装置,包括:用于储存材料的储存器,与储存器连接的通道,该通道设置有至少一个流出开口,在使用中流过该流体的流 分解成液滴的材料,用于对储存器中的流体材料加压的泵,以使压力下的材料沿着流出开口的方向通过通道;以及可移动构件,其设置在储存器中,该构件由 多个表面成形为在流出开口上游引起流体材料中的压力变化,以获得喷射分解成液滴的目的; 安装成使每个相对的表面具有相同的流体静压力的可动件,以产生由流体静压力施加在可移动件上的零力。 因此,提供了一种用于提供多个印刷喷嘴的简单机构。