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    • 1. 发明授权
    • Mechanical structure including a layer of polymerised liquid crystal and method of manufacturing such
    • 包括聚合液晶层的机械结构及其制造方法
    • US07847885B2
    • 2010-12-07
    • US10597569
    • 2005-01-27
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje MolRoel Penterman
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje MolRoel Penterman
    • G02F1/1333
    • G02B26/02B81B3/0024B81B2201/032B81B2201/047Y10T156/11
    • A mechanical structure comprises an element which is moveable by nonmechanical means, such as heat or radiation, between a first state having a first shape and a second state having a second shape different. To this end, the element includes a layer of oriented polymerized liquid crystal which exhibits an anisotropic expansion when subjected to such means. In order to facilitate manufacture the element is positioned on a substrate which has a region of high adhesiveness and a region of low adhesiveness for polymerized liquid crystal. To manufacture such structures a layer of oriented polymerizable liquid crystal is formed on a substrate (201) which is provided with a patterned surface that provides adhesive regions (204) with high adhesiveness to polymerized liquid crystal and nonadhesive regions (203) with low adhesiveness to polymerized liquid crystal. After polymerization, for example a thermal shock is applied which causes the layer of polymerized liquid crystal to delaminate at the non-adhering region while remaining fixed to the adhesive regions. Thus, the method does not require time-consuming under-etching steps.
    • 机械结构包括可在诸如热或辐射之间的非机械装置在具有第一形状的第一状态和具有第二形状的第二状态之间移动的元件。 为此,元件包括定向聚合的液晶层,当经受这种方法时,其呈现各向异性膨胀。 为了便于制造,元件位于具有高粘合性区域的基底和聚合液晶的低粘合性区域。 为了制造这样的结构,在基板(201)上形成定向聚合性液晶层,该基板(201)设置有图案化表面,该图案表面向聚合液晶和非粘附区域(203)提供对粘合性高的粘合性区域(204),其粘合性低 聚合液晶。 聚合后,例如进行热冲击,使得聚合液晶层在非粘附区域分层,同时保持固定在粘合剂区域上。 因此,该方法不需要耗时的蚀刻下步骤。
    • 3. 发明申请
    • Flexible Foil Moveable by Non-Mechanical Means
    • 柔性箔可通过非机械方式移动
    • US20080264058A1
    • 2008-10-30
    • US10597580
    • 2005-01-26
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje Mol
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje Mol
    • C09K19/38C09K19/56B81B3/00F03G7/06
    • B81B3/0072C09K19/38C09K2219/03
    • A foil moveable by non-mechanical means, such as light or heat, comprises an alternating array of first and second foil sections each resiliently and non-mechanically moveable between a flattened state and a bent state. The direction in which the first foil sections bend, when moved from the flattened to the bent state, is opposite to the direction in which the second foil sections bend when moved from the flattened to the bent state. When, in the flattened state, non-mechanically stimulating the first and second foil sections in unison, the first and second foil sections bend in opposite directions causing the foil to wrinkle, which results in a movement which is substantially linear. Using a different or removing the non-mechanical stimulus, the foil sections can be made to unbend resulting in a flattening and expansion of the foil to its original shape.
    • 可通过诸如光或热的非机械装置移动的箔包括第一和第二箔片段的交替阵列,每个片状部分在扁平状态和弯曲状态之间弹性地且不可机械地移动。 当从扁平状态移动到弯曲状态时,第一箔片部分弯曲的方向与第二箔片部分从扁平状态移动到弯曲状态时弯曲的方向相反。 当处于扁平状态时,第一和第二箔部分一致地非机械地刺激第一和第二箔片部分,第一和第二箔片部分在相反方向上弯曲,导致箔片起皱纹,这导致基本上线性的运动。 使用不同的或去除非机械刺激,箔片部分可以制成不弯曲,导致箔的平坦化和膨胀到其原始形状。
    • 4. 发明授权
    • Flexible foil moveable by non-mechanical means
    • 柔性箔可通过非机械方式移动
    • US07578949B2
    • 2009-08-25
    • US10597580
    • 2005-01-26
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje Mol
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje Mol
    • C09K19/38C09K19/60B81B3/00F03G7/06
    • B81B3/0072C09K19/38C09K2219/03
    • A foil moveable by non-mechanical means, such as light or heat, comprises an alternating array of first and second foil sections each resiliently and non-mechanically moveable between a flattened state and a bent state. The direction in which the first foil sections bend, when moved from the flattened to the bent state, is opposite to the direction in which the second foil sections bend when moved from the flattened to the bent state. When, in the flattened state, non-mechanically stimulating the first and second foil sections in unison, the first and second foil sections bend in opposite directions causing the foil to wrinkle, which results in a movement which is substantially linear. Using a different or removing the non-mechanical stimulus, the foil sections can be made to unbend resulting in a flattening and expansion of the foil to its original shape.
    • 可通过诸如光或热的非机械装置移动的箔包括第一和第二箔片段的交替阵列,每个片状部分在扁平状态和弯曲状态之间弹性地且不可机械地移动。 当从扁平状态移动到弯曲状态时,第一箔片部分弯曲的方向与第二箔片部分从扁平状态移动到弯曲状态时弯曲的方向相反。 当处于扁平状态时,第一和第二箔部分一致地非机械地刺激第一和第二箔片部分,第一和第二箔片部分在相反方向上弯曲,导致箔片起皱纹,这导致基本上线性的运动。 使用不同的或去除非机械刺激,箔片部分可以制成不弯曲,导致箔的平坦化和膨胀到其原始形状。
    • 5. 发明申请
    • Mechanical Shutter with Polymerised Liquid Crystal Layer
    • 机械快门与聚合液晶层
    • US20080259226A1
    • 2008-10-23
    • US10597579
    • 2005-01-27
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje Mol
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje Mol
    • G02F1/133
    • G02B26/02
    • The present invention relates to a mechanical shutter (601) that comprises a shutter element having a layer of polymerized liquid crystal. The polymerized liquid crystal is anisotropically oriented. At one major surface the orientation is an isotropic. In moving towards the opposite major surface the orientation varies, the variation being such that the thermal expansion coefficient varies in moving from the major surface to the opposite surface. When exposed to non-mechanical means such as heat, the shutter element moves. When for example a splayed or a twisted nematic orientation is used, the element bends and straightens in response to the non-mechanical means. Electrodes (604, 605, 606) can optionally be formed on the element and on a supporting substrate, rendering the element controllable by an electric field applied between the electrodes due to resulting electrostatic forces. The invention furthermore provides a method of manufacturing such mechanical shutters using in-situ polymerization.
    • 本发明涉及一种包括具有聚合液晶层的快门元件的机械快门(601)。 聚合的液晶是各向异性取向的。 在一个主表面上,取向是各向同性的。 在向相反的主表面移动时,取向变化,变化使得热膨胀系数在从主表面移动到相对表面时变化。 当暴露于诸如热的非机械装置时,快门元件移动。 当例如使用显示或扭转向列取向时,元件响应于非机械装置弯曲和拉直。 电极(604,605,606)可任选地形成在元件上和支撑衬底上,由于所产生的静电力,元件可以通过施加在电极之间的电场来控制。 本发明还提供了使用原位聚合制造这种机械快门的方法。
    • 6. 发明申请
    • Mechanical Structure Including a Layer of Polymerised Liquid Crystal and Method of Manufacturing Such
    • 包含聚合液晶层的机械结构及其制造方法
    • US20080259253A1
    • 2008-10-23
    • US10597569
    • 2005-01-27
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje MolRoel Penterman
    • Dirk Jan BroerChristiane Maria Rosette De WitzGrietje Neeltje MolRoel Penterman
    • G02F1/1334B29C65/48
    • G02B26/02B81B3/0024B81B2201/032B81B2201/047Y10T156/11
    • A mechanical structure comprises an element which is moveable by nonmechanical means, such as heat or radiation, between a first state having a first shape and a second state having a second shape different. To this end, the element includes a layer of oriented polymerized liquid crystal which exhibits an anisotropic expansion when subjected to such means. In order to facilitate manufacture the element is positioned on a substrate which has a region of high adhesiveness and a region of low adhesiveness for polymerized liquid crystal. To manufacture such structures a layer of oriented polymerizable liquid crystal is formed on a substrate (201) which is provided with a patterned surface that provides adhesive regions (204) with high adhesiveness to polymerized liquid crystal and nonadhesive regions (203) with low adhesiveness to polymerized liquid crystal. After polymerization, for example a thermal shock is applied which causes the layer of polymerized liquid crystal to delaminate at the non-adhering region while remaining fixed to the adhesive regions. Thus, the method does not require time-consuming under-etching steps.
    • 机械结构包括可在诸如热或辐射之间的非机械装置在具有第一形状的第一状态和具有第二形状的第二状态之间移动的元件。 为此,元件包括定向聚合的液晶层,当经受这种方法时,其呈现各向异性膨胀。 为了便于制造,元件位于具有高粘合性区域的基底和聚合液晶的低粘合性区域。 为了制造这样的结构,在基板(201)上形成定向聚合性液晶层,该基板(201)设置有图案化表面,该图案表面向聚合液晶和非粘合区域(203)提供对粘合性高的粘合性区域(204) 聚合液晶。 聚合后,例如进行热冲击,使得聚合液晶层在非粘附区域分层,同时保持固定在粘合剂区域上。 因此,该方法不需要耗时的蚀刻下步骤。