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    • 3. 发明公开
    • 기재의 선택된 구역들에 막을 코팅하기 위한 인쇄 방법 및 장치
    • 印刷方法和设备,用于在基材的选定区域上涂布薄膜
    • KR20180017021A
    • 2018-02-20
    • KR20177035278
    • 2016-05-27
    • LANDA LABS 2012 LTD
    • ADLER ARIEL
    • B41F23/00B41J2/455C23C16/02G03G15/04G03G15/34
    • B41F23/00B41J2/447B41J2/45B41J2/455C23C16/0209G03G15/043G03G15/342
    • 기재의표면의선택된구역들을막으로코팅하는방법및 장치가개시된다. 본방법은, a) 이미징표면을갖는연속적으로이동하는전사부재를제공하는단계; b) 열가소성중합체로형성되거나코팅된개별입자들로상기전사부재의상기이미징표면을코팅하는단계; c) 상기이미징표면과직접접촉하지않는실질적으로모든입자를제거하여상기이미징표면상에균일한단일층 입자코팅이남게하는단계; d) 상기선택된구역들내 상기입자들을점착성으로되게하는데 충분한파워의복사선에상기코팅된이미징표면의선택된구역들을노출시키는단계; e) 복사선조사동안또는복사선조사후에상기코팅된이미징표면및 상기기재표면을서로가압하여, 점착성으로된 상기입자코팅의구역들만을상기기재의표면으로전사시켜, 상기점착성구역이막을형성하게하는단계; 및 f) 단계 b) 및 c)를반복하여상기이전에도포된단일층코팅이단계 e)에서상기기재표면으로전사된상기선택된구역들에입자들의새로운단일층코팅을도포하여, 입자들의단일층으로다시균일하게코팅된상기이미징표면이남게하는단계를포함한다.
    • 公开了一种用膜涂覆衬底表面的选定区域的方法和装置。 该方法包括以下步骤:a)提供具有成像表面的连续移动的转印构件; b)用形成或涂覆有热塑性聚合物的单个颗粒涂覆所述转移元件的所述成像表面; c)基本上除去所有不与成像表面直接接触的颗粒,以在成像表面上留下均匀的单层颗粒涂层; d)将经涂覆的成像表面的选定区域暴露于足够能量的辐射以使颗粒在选定区域发粘; e)在辐射照射期间或辐射照射后,将涂覆的成像表面和基底表面相互压在一起,以仅将粘附颗粒涂层的区域转移到基底表面上,以使粘合区形成膜 。 并且f)重复步骤b)和c)以在先前施加的单层涂层的步骤e)中将新的单层涂层的颗粒施加到转移至基材表面的选定区域, 使成像表面再次与基材均匀涂布。
    • 4. 发明公开
    • 코팅 장치
    • 涂层设备
    • KR20180017022A
    • 2018-02-20
    • KR20177035279
    • 2016-05-27
    • LANDA LABS 2012 LTD
    • FAHIMA MOSHE
    • B41J2/005B05C1/08B05C11/02B41C1/18B41F19/00B41F31/18B41M1/00B41M3/00
    • B05C19/06B05B7/1481B05B9/00B05C1/00B05C1/0808B05C1/0817B05C11/023B05D1/00B05D1/12B05D1/28B05D3/007B05D3/12B41C1/184B41F19/00B41F19/001B41F31/18B41J2/0057B41M1/00B41M3/00B41M5/00B44C1/00B44F9/10C09D1/00C09D5/38C23C24/04
    • 장치에대해이동가능한표면을열가소성입자층으로코팅하기위한장치가개시되며, 상기입자들은서로보다상기표면에더 강하게부착된다. 상기장치는상기입자들이현탁된유체스트림을상기표면(12)에직접또는간접적으로도포하기위한적어도하나의스프레이헤드(1401); 상기스프레이헤드(들)(1401)를둘러싸고상기유체스트림을구속하기위한내부플레넘(1406)을한정하는하우징(403)으로서, 상기하우징은상기표면에인접하여림(1404)을갖고, 상기림은상기하우징의림과코팅될표면사이에형성된밀봉갭으로부터상기입자들이유출되는것을방지하도록구성된, 상기하우징; 및스프레이된유체및 스프레이된유체내에현탁된입자들을상기플레넘(10)으로부터추출하기위해상기하우징에연결된흡입소스를포함한다. 동작시, 상기흡입소스는상기표면과직접접촉하지않는실질적으로모든입자를추출하여, 상기표면이상기장치를빠져나올때 상기표면에실질적으로단일입자층만이부착되어남아있도록한다.
    • 公开了一种用热塑性颗粒层相对于装置涂覆活动表面的装置,其中颗粒与表面的粘附力比彼此强。 该设备包括至少一个喷射头(1401),用于将具有颗粒的流体流直接或间接施加到表面(12); 围绕所述喷雾头(一个或多个)1401,限定了内部压力通风系统1406用于约束所述流体流中的壳体403,所述壳体具有一个边缘(1404)的表面相邻,所述边缘 壳体构造成防止颗粒从形成在壳体的表面和待涂覆的表面之间的密封间隙泄漏出来; 并且连接到壳体的抽吸源用于抽吸悬浮在从增压室10喷射的流体中的喷射流体和颗粒。 在操作中,抽吸源是提取所有的颗粒基本上不直接与该表面接触,保持基本上manyi DANIL颗粒层粘附到所述表面上来出移相器装置的表面上。
    • 8. 发明申请
    • APPLICATION OF ELECTRICAL CONDUCTORS TO AN ELECTRICALLY INSULATING SUBSTRATE
    • 导电体在电绝缘基板中的应用
    • WO2018020481A1
    • 2018-02-01
    • PCT/IB2017/054629
    • 2017-07-28
    • LANDA LABS (2012) LTD
    • LANDA, BenzionELFASSY, NaomiTHYGELBAUM, Stanislav
    • H05K3/20
    • A method is disclosed for applying an electrical conductor to an electrically insulating substrate, which comprises providing a flexible membrane with a pattern of groove formed on a first surface thereof, loading the grooves with a composition comprising conductive particles. The composition is, or may be made, electrically conductive. Once the membrane is loaded, the grooved first surface of the membrane is brought into contact with a front or/and back of the substrate. A pressure is then applied between the substrate and the membrane so that the composition loaded to the grooves adheres to the substrate. The membrane and the substrate are separated and the composition in the groove is left on the surface of the electrically insulating substrate. The electrically conductive particles in the composition are then sintered to form a pattern of electrical conductors on the substrate, the pattern corresponding to the pattern formed in the membrane.
    • 公开了一种用于将电导体施加到电绝缘基底的方法,其包括提供具有在其第一表面上形成的凹槽图案的柔性膜,用包含导电颗粒 。 该组合物是或可以被制成导电的。 一旦膜被加载,膜的开槽的第一表面与基板的前部或/和后部接触。 然后在基底和膜之间施加压力,使得加载到凹槽中的组合物粘附到基底上。 隔膜和基底分开,槽中的组合物留在电绝缘基底的表面上。 然后将组合物中的导电颗粒烧结以在基底上形成电导体图案,该图案对应于在膜中形成的图案。
    • 9. 发明申请
    • APPLICATION OF ELECTRICAL CONDUCTORS OF A SOLAR CELL
    • 太阳能电池导电体的应用
    • WO2018020479A1
    • 2018-02-01
    • PCT/IB2017/054626
    • 2017-07-28
    • LANDA LABS (2012) LTD
    • LANDA, BenzionELFASSY, NaomiTHYGELBAUM, Stanislav
    • H05K3/20H01L31/0224
    • A method is disclosed for applying an electrical conductor to a solar cell, which comprises providing a flexible membrane with a pattern of groove formed on a first surface thereof, loading the grooves with a composition comprising conductive particles. The composition is, or may be made, electrically conductive. Once the membrane is loaded, the grooved first surface of the membrane is brought into contact with a front or/and back of solar cell. A pressure is then applied between the solar cell and the membrane so that the composition loaded to the grooves adheres to the solar cell. The membrane and the solar cell are separated and the composition in the groove is left on the solar cell surface. The electrically conductive particles in the composition are then sintered or otherwise fused to form a pattern of electrical conductor on the solar cell, the pattern corresponding to the pattern formed in the membrane.
    • 公开了一种将电导体施加到太阳能电池的方法,其包括提供具有形成在其第一表面上的凹槽图案的柔性膜,用包含导电颗粒的组合物填充凹槽。 该组合物是或可以被制成导电的。 一旦膜被装载,膜的开槽的第一表面与太阳能电池的前面或/和背面接触。 然后在太阳能电池和膜之间施加压力,使得加载到凹槽中的组合物粘附到太阳能电池。 将隔膜和太阳能电池分开,并将凹槽中的组合物留在太阳能电池表面上。 然后将组合物中的导电颗粒烧结或以其他方式熔合以在太阳能电池上形成电导体图案,该图案对应于在膜中形成的图案。
    • 10. 发明申请
    • APPARATUS FOR PRINTING ON THREE-DIMENSIONAL OBJECTS
    • 用于印刷三维物体的设备
    • WO2017208145A1
    • 2017-12-07
    • PCT/IB2017/053168
    • 2017-05-30
    • LANDA LABS (2012) LTD.
    • LANDA, Benzion
    • B41J2/005B41J3/407B41J2/01
    • A printing apparatus is disclosed for printing on an outer surface of three-dimensional objects. The apparatus employs an offset printing process in which an ink image is deposited onto the outer release surface of an intermediate transfer member (ITM) (30) having the form of a flexible endless belt. After drying of the ink image on the ITM (30), the ITM (30) transports the dried ink image to an impression station having a nip at which the ink image is transferred onto the surface of the objects. An object transport system (14) transports the 3D object to the impression station and rotates each object about its own longitudinal axis during passage through the impression station. To optimize throughput, the velocity of the ITM (30) relative to the surface of the object at the impression station is greater than the velocity of the ITM (30) relative to the imaging station (32).
    • 公开了一种用于在三维物体的外表面上进行打印的打印设备。 该设备采用胶版印刷工艺,其中墨图像被沉积到具有柔性环形带形式的中间转印构件(ITM)(30)的外释放表面上。 在ITM(30)上的油墨图像干燥之后,ITM(30)将干燥的油墨图像输送到具有油墨图像转印到物体表面上的辊隙的印刷台。 物体传送系统(14)将3D物体传送到印模台并且在穿过印模台期间围绕其自身的纵轴旋转每个物体。 为了优化吞吐量,ITM(30)相对于印模站处物体表面的速度大于ITM(30)相对于成像台(32)的速度。