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    • 3. 发明申请
    • DEVICE AND A PROCESS FOR DEPOSITING A METAL LAYER ON A PLASTIC SUBSTRATE
    • 装置和用于在塑料基板上沉积金属层的工艺
    • US20080248215A1
    • 2008-10-09
    • US12027370
    • 2008-02-07
    • Peter SauerHans-Georg Lotz
    • Peter SauerHans-Georg Lotz
    • B08B6/00H05H1/00B05C9/08C23C14/34
    • C23C14/022C23C14/562H05K1/0393H05K3/381H05K3/388H05K2203/092H05K2203/095
    • The invention relates to a process and to a web deposition machine for coating a plastic substrate with at least one metal layer, in particular plastic foil for flexible, printed circuit boards, wherein before depositing a first layer onto a surface of the plastic substrate to be deposited, a non depositing pretreatment of this surface is performed. It is the object of the invention to provide a process as described above through which the adhesion of metal layers on a plastic substrate is improved. Furthermore, a web deposition machine shall be provided through which such process can be performed. The object is accomplished through a process so that the non depositing pretreatment is performed in two steps, thus in a first step in which the surface of the plastic substrate (2) is cleaned with a non reactive low energy plasma (14), and in a second step in which the surface of the plastic substrate (2) is activated through reactive high energy ion radiation (17).
    • 本发明涉及一种用至少一个金属层,特别是用于柔性印刷电路板的塑料箔涂覆塑料基板的方法和网状沉积机,其中在将第一层沉积到塑料基板的表面上之前为 进行该表面的非沉积预处理。 本发明的目的是提供如上所述的方法,其中金属层在塑料基材上的粘附性得到改善。 此外,应提供可以进行这种处理的卷材沉积机。 该目的通过一种方法实现,使得非沉积预处理在两个步骤中进行,因此在第一步骤中,塑料基板(2)的表面用非反应性低能量等离子体(14)清洁,并且在 第二步,其中塑料基板(2)的表面通过反应性高能离子辐射(17)激活。
    • 4. 发明申请
    • VACUUM COATING INSTALLATION AND METHOD OF PRODUCING A COATING LAYER ON A SUBSTRATE
    • 真空涂料安装和在基材上生产涂层的方法
    • US20090191327A1
    • 2009-07-30
    • US12276533
    • 2008-11-24
    • Hans-Georg LotzPeter Sauer
    • Hans-Georg LotzPeter Sauer
    • C23C14/54
    • C23C14/547C23C14/562C23C16/52C23C16/545
    • A strip coating system includes a first pulley carrying a flexible metal or Al substrate wound up on the first pulley. A second, take-up, pulley is provided for taking up the coated substrate. The coating process is a continuous coating process, during which the first pulley and the second pulley are rotated to move the substrate continuously past a coating tool for depositing coating particles on a surface of the substrate. After having passed the coating section with a speed v, the substrate carrying a coating layer on the surface thereof passes an infrared spectroscopic measurement device for measuring the layer thickness of the coating layer. Feedback controls are provided to control one or more process parameters of the coating tool responsive to the measurement of the thickness of the coating layer detected by the measurement tool. Thus, an in situ online measurement of the thickness of the coating layer may be implemented.
    • 条带涂覆系统包括承载卷绕在第一滑轮上的柔性金属或Al基底的第一带轮。 提供第二个卷取轮,用于卷绕涂覆的基材。 涂覆过程是连续的涂覆过程,在该过程中,第一滑轮和第二滑轮被旋转以使基板连续地移动通过涂覆工具,以将涂层颗粒沉积在基板的表面上。 以速度v通过涂布部后,在其表面上带有涂层的基板通过用于测量涂层的层厚度的红外光谱测量装置。 响应于由测量工具检测到的涂层厚度的测量,提供反馈控制以控制涂层工具的一个或多个工艺参数。 因此,可以实现涂层厚度的在线在线测量。
    • 5. 发明授权
    • Material with spectrally selective reflection
    • 材料具有光谱选择性反射
    • US07106516B2
    • 2006-09-12
    • US10353802
    • 2003-01-29
    • Hans-Georg LotzPeter Sauer
    • Hans-Georg LotzPeter Sauer
    • G02B1/10
    • G02B5/0858G02B5/286G02B27/142
    • A material with spectrally selective reflection in the primary valences of red, green and blue is applied preferably onto laser projection screens in order to make possible the projection even in daylight. In a first embodiment, a first layer of a material that is highly reflective over the entire range of visible light, e.g., aluminum is applied onto a substrate, e.g., glass or a synthetic material, followed by a second layer of a material that is essentially non-absorbing over the entire range of visible light, e.g., SiO2. A third layer in contact with air is applied to the second layer and is made of a material that is partially transmissive over the entire range of visible light, e.g., of NiCr An alternative embodiment comprise five layers, The first layer is made a material with a high index of refraction, e.g.; TiO2, a second of a material with a low index of refraction, e.g., SiO2, the third of a material with a high index of refraction, e.g., TiO2: a fourth of a material with a low index of refraction. e.g., SiO2, and a fifth layer of a material with a high index of refraction, e.g., TiO2.
    • 在红色,绿色和蓝色的初级价中具有光谱选择性反射的材料优选地施加到激光投影屏幕上,以便即使在日光下也可能投影。 在第一实施例中,在可见光的整个范围(例如铝)上具有高反射性的材料的第一层被施加到诸如玻璃或合成材料的基底上,随后是第二层材料, 在整个可见光范围内基本上不吸收,例如SiO 2。 与空气接触的第三层被施加到第二层,并且由在可见光的整个范围内是部分透射的材料制成,例如NiCr。替代实施例包括五层。第一层被制成具有 高折射率,例如; TiO 2,具有低折射率的材料(例如SiO 2)的第二种,具有高折射率的材料的第三种,例如TiO 2, SUB> 2 :具有低折射率的材料的第四个。 例如SiO 2,以及第五层具有高折射率的材料,例如TiO 2。
    • 8. 发明申请
    • Sputtering cathode for coating processes
    • 用于涂层工艺的溅射阴极
    • US20050279629A1
    • 2005-12-22
    • US10889996
    • 2004-07-13
    • Jurgen UlrichPeter Sauer
    • Jurgen UlrichPeter Sauer
    • C23C14/34C23C14/35H01J37/34
    • C23C14/3407C23C14/35H01J37/3435H01J37/3497
    • A sputtering cathode (1) for coating processes in a vacuum chamber (18) comprises one at least single-piece target plate (2) mounted on a metallic diaphragm (3). On the side of the diaphragm (3) facing away from the target plate (2) is disposed a cooling agent channel with an inflow line (9) and an outflow line (10) for a cooling agent and a hollow space (7) for at least one magnet system (5). The magnet system (5) is disposed in a supporting tub (6) sealed against the diaphragm (3) and not exposed to the cooling agent. The entire configuration is disposed on a supporting structure (12). In order to improve the heat transfer from the target plate (2) to the cooling agent in simple, efficient and cost-effective manner and to avoid the hazard of the cooling agent penetrating into the vacuum chamber, the invention provides that a) the supporting structure (12) for the sputtering cathode (1) comprises a hollow body (13), which is closed gas-tight against the interior space of the vacuum chamber (18) and which connects the hollow space (7) encompassing the magnet system (5) with the atmosphere outside of the vacuum chamber (18), b) the cooling agent channel is implemented as a conduit (4) closed on its cross sectional periphery with at least one flat side (4a) in thermally conducting connection with the diaphragm (3), and that c) the diaphragm (3) and the surfaces of the conduit (4) facing away from the diaphragm (3) are exposed via said supporting structure (12) to the atmospheric pressure outside of the vacuum chamber (18).
    • 用于在真空室(18)中涂覆工艺的溅射阴极(1)包括安装在金属隔膜(3)上的至少一个单件靶板(2)。 在离开目标板(2)的隔膜(3)的一侧设置有具有用于冷却剂的流入管线(9)和流出管线(10)的冷却剂通道和用于 至少一个磁体系统(5)。 磁体系统(5)设置在与隔膜(3)密封并且不暴露于冷却剂的支撑桶(6)中。 整个配置设置在支撑结构(12)上。 为了以简单,高效和成本有效的方式改善从目标板(2)到冷却剂的热传递,并且避免冷却剂渗透到真空室中的危险,本发明提供:a)支撑 用于溅射阴极(1)的结构(12)包括中空体(13),该中空体(13)被气密地封闭在真空室(18)的内部空间上,并连接包围磁体系统的中空空间(7) 5),真空室(18)外部具有气氛,b)冷却剂通道被实施为在其横截面周边上封闭的导管(4),其中至少一个平坦侧面(4a)与 隔膜(3),并且c)隔膜(3)和导管(4)的远离隔膜(3)的表面经由所述支撑结构(12)暴露于真空室外部的大气压 18)。
    • 9. 发明申请
    • Disposable Tap for a Pressurized Liquid Container
    • 用于加压液体容器的一次性水龙头
    • US20080041892A1
    • 2008-02-21
    • US11571157
    • 2005-06-24
    • Werner NeukirchPeter Sauer
    • Werner NeukirchPeter Sauer
    • B67D1/14B67D3/00
    • B67D1/1466B67D1/0462B67D1/0801B67D1/0802B67D3/045B67D2001/0824
    • The invention relates to a disposable tap (1) for tapping liquid from a pressurized liquid container. Compared to prior art taps, the inventive disposable tap is modified so that it can be preferably placed in the upper area of the lateral wall of the liquid container. To this end, the tap comprises a lateral inlet opening (21) which is oriented downward when the tap is mounted and which is provided for coupling, in a sealing manner, to an ascending tube (34), and comprises means (6, 7, 8), which control the entrance of liquid into the tap and to the outlet (of the tap hole) in an appropriate manner. The invention also relates to a liquid container with a corresponding opening (36) for and with this tap.
    • 本发明涉及一种用于从加压液体容器中分流液体的一次性水龙头(1)。 与现有技术的水龙头相比,本发明的一次性水龙头被改进,使得其可以优选地放置在液体容器的侧壁的上部区域中。 为此,龙头包括一个横向入口开口(21),当入口被安装时它被向下定向并且被设置成以密封方式联接到上升管(34),并且包括装置(6,7) ,8),其以适当的方式控制液体进入龙头和出口(出气口)的入口。 本发明还涉及一种液体容器,其具有用于和与该水龙头相对应的开口(36)。