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    • 3. 发明申请
    • DURABLE HYROPHOBIC STRUCTURED SURFACE
    • 可耐用的HYROPHOBIC结构表面
    • US20130101791A1
    • 2013-04-25
    • US13704043
    • 2011-06-30
    • Guido HitschmannBernd Kuehneweg
    • Guido HitschmannBernd Kuehneweg
    • B32B33/00B29C59/16
    • B32B33/00B29C43/021B29C43/222B29C59/022B29C59/16B29C2035/0827B29C2059/023B29K2105/0002B29K2995/0093B82Y30/00Y10T428/24355
    • The present invention relates to a scratch-resistant micro- and/or nanostructured surface comprising a plurality of micro-scale and/or nano-scale surface elements, said surface being essentially unchanged when being subjected to 10 rubbing cycles according to A.A.T.C.C. test method 8-1972 using a cotton cloth and a total stamp weight of 300 g, and comprising a polymeric material having 1) an elongation at break of at least 10%, 2) an irreversible relative plastic deformation (permanent set) of less than 2% and a 3) a tensile strength of at least 5 MPa. The present invention furthermore relates to a hydrophobic micro- and/or nanostructured surface comprising a plurality of micro-scale and/or nano-scale surface elements and having a static contact angle against water of at least 90, said surface comprising a polymeric material having 1) an elongation at break of at least 10%, 2) an irreversible relative plastic deformation (permanent set) of less than 2% and a 3) a tensile strength of at least 5 MPa.
    • 本发明涉及包含多个微尺度和/或纳米级表面元件的耐划伤微观和/或纳米结构化表面,当根据A.A.C.C.C.进行10次摩擦循环时,所述表面基本上不变。 测试方法8-1972使用棉布,总邮票重量为300g,并且包括具有1)断裂伸长率至少为10%的聚合材料,2)不可逆的相对塑性变形(永久变形)小于 2%和3)抗拉强度至少为5MPa。 本发明还涉及包含多个微尺度和/或纳米级表面元件并具有至少90°的水的静态接触角的疏水性微米和/或纳米结构化表面,所述表面包含具有 1)断裂伸长率至少为10%,2)不可逆相对塑性变形(永久变形)小于2%,3)拉伸强度至少为5MPa。
    • 4. 发明授权
    • Durable hydrophobic structured surface
    • 耐用的疏水结构表面
    • US09339996B2
    • 2016-05-17
    • US13704043
    • 2011-06-30
    • Guido HitschmannBernd Kuehneweg
    • Guido HitschmannBernd Kuehneweg
    • D06N7/04B29C59/16B32B33/00B29C43/02B29C59/02B82Y30/00B29C43/22B29C35/08B29K105/00
    • B32B33/00B29C43/021B29C43/222B29C59/022B29C59/16B29C2035/0827B29C2059/023B29K2105/0002B29K2995/0093B82Y30/00Y10T428/24355
    • The present invention relates to a scratch-resistant micro- and/or nanostructured surface comprising a plurality of micro-scale and/or nano-scale surface elements, said surface being essentially unchanged when being subjected to 10 rubbing cycles according to A.A.T.C.C. test method 8-1972 using a cotton cloth and a total stamp weight of 300 g, and comprising a polymeric material having 1) an elongation at break of at least 10%, 2) an irreversible relative plastic deformation (permanent set) of less than 2% and a 3) a tensile strength of at least 5 MPa. The present invention furthermore relates to a hydrophobic micro- and/or nanostructured surface comprising a plurality of micro-scale and/or nano-scale surface elements and having a static contact angle against water of at least 90, said surface comprising a polymeric material having 1) an elongation at break of at least 10%, 2) an irreversible relative plastic deformation (permanent set) of less than 2% and a 3) a tensile strength of at least 5 MPa.
    • 本发明涉及包含多个微尺度和/或纳米级表面元件的耐划伤微观和/或纳米结构化表面,当根据A.A.C.C.C.进行10次摩擦循环时,所述表面基本上不变。 测试方法8-1972使用棉布,总邮票重量为300g,并且包括具有1)断裂伸长率至少为10%的聚合材料,2)不可逆的相对塑性变形(永久变形)小于 2%和3)抗拉强度至少为5MPa。 本发明还涉及包含多个微尺度和/或纳米级表面元件并具有至少90°的水的静态接触角的疏水性微米和/或纳米结构化表面,所述表面包含具有 1)断裂伸长率至少为10%,2)不可逆相对塑性变形(永久变形)小于2%,3)拉伸强度至少为5MPa。
    • 7. 发明授权
    • Method of manufacturing an optical recording medium
    • 光记录介质的制造方法
    • US06168682A
    • 2001-01-02
    • US09021255
    • 1998-02-10
    • Greggory S. BennettYolanda GriebenowGuido HitschmannKurt C. MelanconWolfgang G. Schoeppel
    • Greggory S. BennettYolanda GriebenowGuido HitschmannKurt C. MelanconWolfgang G. Schoeppel
    • B32B3100
    • G11B7/26
    • The invention refers to a method of manufacturing an optical recording medium comprising a first member having a first substrate, a first information storing layer, a first exposed surface and a first inner surface, a second member having a second substrate, a second exposed surface, a second inner surface and optionally a second information storing layer, and an optionally transparent pressure-sensitive adhesive layer interposed between the first inner surface and the second inner surface, said method comprising 1. attaching the pressure-sensitive adhesive layer to the inner surface of one of the members and 2. adhering the inner surface of the other member to the exposed surface of the adhesive layer, wherein the size of any bubbles formed during above steps 1. and/or 2. at the interface between the first and/or second inner surface, respectively, and the pressure-sensitive adhesive layer and/or the disappearance rate of the bubbles are controlled so that the bubbles are removed in less than 30 minutes.
    • 本发明涉及一种制造光记录介质的方法,该光记录介质包括具有第一基底,第一信息存储层,第一暴露表面和第一内表面的第一构件,具有第二基底的第二构件,第二暴露表面, 第二内表面和任选的第二信息存储层,以及插入在第一内表面和第二内表面之间的任选透明的压敏粘合剂层,所述方法包括1。 将压敏粘合剂层附着到其中一个构件的内表面上,2。 将另一个构件的内表面粘附到粘合剂层的暴露表面,其中分别在第一和/或第二内表面之间的界面处分别在上述步骤1和/或2期间形成的任何气泡的尺寸和 控制压敏粘合剂层和/或气泡的消失速率,使得在少于30分钟内除去气泡。
    • 8. 发明授权
    • Optical system with high contrast
    • 光学系统具有高对比度
    • US08405895B2
    • 2013-03-26
    • US12744457
    • 2008-11-10
    • Guido HitschmannKay-Uwe Schenke
    • Guido HitschmannKay-Uwe Schenke
    • G02B26/00
    • B60K35/00G02B5/02G02B5/045G02F2201/38
    • An optical system is disclosed that includes a housing that has an interior, a reflective interior surface, and a first opening. The optical system further includes a spatial light modulator that is disposed proximate the first opening and a light source that is disposed within the interior of the housing. The spatial light modulator modulates the light that is emitted by the light source to form image rays. The optical system further includes a first light redirecting film that is disposed proximate the first opening between the spatial light modulator and the light source. The first light redirecting film recycles at least a portion of the light that is emitted by the light source. The optical system further includes an optically absorptive film that is disposed proximate the first opening between the spatial light modulator and the viewing position. The optically absorptive film receives the image rays from the spatial light modulator and displays the received image rays to the viewing position.
    • 公开了一种光学系统,其包括具有内部,反射内表面和第一开口的壳体。 光学系统还包括设置在第一开口附近的空间光调制器和设置在壳体内部的光源。 空间光调制器调制由光源发射的光以形成图像光线。 光学系统还包括靠近第一开口设置在空间光调制器和光源之间的第一光重定向膜。 第一光重定向膜再循环由光源发射的光的至少一部分。 光学系统还包括光学吸收膜,其设置在空间光调制器和观看位置之间的第一开口附近。 光吸收膜接收来自空间光调制器的图像光,并将接收到的图像光线显示到观察位置。
    • 9. 发明授权
    • Pressure-sensitive adhesive tape
    • 压敏胶带
    • US06254954B1
    • 2001-07-03
    • US09367958
    • 1999-08-26
    • Greggory S. BennettClayton A. GeorgeGuido HitschmannAlain H. Lamon
    • Greggory S. BennettClayton A. GeorgeGuido HitschmannAlain H. Lamon
    • B32B2704
    • C09J167/00C08L63/00C08L71/00C08L2666/22C09J7/10C09J7/38C09J2463/00C09J2467/00Y10T428/1476Y10T428/2809Y10T428/287
    • The invention relates to a pressure-sensitive adhesive tape with improved room temperature handleability comprising an adhesive layer with at least one exposed surface and optionally a backing, wherein the pressure-sensitive adhesive layer comprises an epoxy/polyester based pressure sensitive adhesive which is crosslinkable upon exposure to actinic or e-beam irradiation and optionally heat, and comprises (i) 30-80% by weight of a polyester component comprising one or more amorphous polyesters compounds, (ii) 20-70% by weight of an epoxy component comprising one or more epoxy resins and/or monomers, (iii) 0-50% by weight of a hydroxyl-functional component containing one or more hydroxyl-containing compounds having a hydroxyl functionality of at least 1, and (iv) an effective amount of a photoinitiator component for crosslinking the pressure-sensitive adhesive, whereby the weight percentages refer to the total mass of components (i)-(iv) and add up to 100 wt. %, and which exhibits a holding power of at least 5 min.
    • 本发明涉及具有改进的室温操作性的压敏粘合带,其包括具有至少一个暴露表面和任选的背衬的粘合剂层,其中该压敏粘合剂层包含可环氧树脂/聚酯基压敏粘合剂 暴露于光化或电子束照射和任选地加热,并且包含(i)30-80重量%的包含一种或多种无定形聚酯化合物的聚酯组分,(ii)20-70重量%的包含一个 或更多的环氧树脂和/或单体,(iii)0-50重量%的含有一个或多个羟基官能度至少为1的含羟基化合物的羟基官能组分,和(iv)有效量的 用于使压敏粘合剂交联的光引发剂组分,其中重量百分数是指组分(i) - (iv)的总质量,并加起来至100重量份。 %,表现出至少5分钟的保持力。
    • 10. 发明申请
    • OPTICAL SYSTEM WITH HIGH CONTRAST
    • 高对比度光学系统
    • US20100328749A1
    • 2010-12-30
    • US12744457
    • 2008-11-10
    • Guido HitschmannKay-Uwe Schenke
    • Guido HitschmannKay-Uwe Schenke
    • G02F1/01
    • B60K35/00G02B5/02G02B5/045G02F2201/38
    • An optical system is disclosed that includes a housing that has an interior, a reflective interior surface, and a first opening. The optical system further includes a spatial light modulator that is disposed proximate the first opening and a light source that is disposed within the interior of the housing. The spatial light modulator modulates the light that is emitted by the light source to form image rays. The optical system further includes a first light redirecting film that is disposed proximate the first opening between the spatial light modulator and the light source. The first light redirecting film recycles at least a portion of the light that is emitted by the light source. The optical system further includes an optically absorptive film that is disposed proximate the first opening between the spatial light modulator and the viewing position. The optically absorptive film receives the image rays from the spatial light modulator and displays the received image rays to the viewing position.
    • 公开了一种光学系统,其包括具有内部,反射内表面和第一开口的壳体。 光学系统还包括设置在第一开口附近的空间光调制器和设置在壳体内部的光源。 空间光调制器调制由光源发射的光以形成图像光线。 光学系统还包括靠近第一开口设置在空间光调制器和光源之间的第一光重定向膜。 第一光重定向膜再循环由光源发射的光的至少一部分。 光学系统还包括光学吸收膜,其设置在空间光调制器和观看位置之间的第一开口附近。 光吸收膜接收来自空间光调制器的图像光,并将接收到的图像光线显示到观察位置。