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    • 3. 发明申请
    • MONOCRYSTALLINE EPITAXIALLY ALIGNED NANOSTRUCTURES AND RELATED METHODS
    • 单结构外延对齐的纳米结构和相关方法
    • WO2011109702A2
    • 2011-09-09
    • PCT/US2011027172
    • 2011-03-04
    • UNIV CORNELLWIESNER ULRICHTHOMPSON MICHAELARORA HITESH
    • WIESNER ULRICHTHOMPSON MICHAELARORA HITESH
    • B81C1/00031B81C2201/0149B81C2201/0169C30B1/023C30B29/08C30B29/605H01L21/02381H01L21/02532H01L21/02603H01L21/02642H01L21/28518Y10T428/24372Y10T428/24413
    • A method for fabricating a nanostructure utilizes a templated monocrystalline substrate. The templated monocrystalline substrate is energetically (i.e., preferably thermally) treated, with an optional precleaning and an optional amorphous material layer located thereupon, to form a template structured monocrystalline substrate that includes the monocrystalline substrate with a plurality of epitaxially aligned contiguous monocrystalline pillars extending therefrom. The monocrystalline substrate and the plurality of epitaxially aligned contiguous monocrystalline pillars may comprise the same or different monocrystalline materials. The method provides the nanostructure where when the monocrystalline substrate and the plurality of epitaxial aligned contiguous monocrystalline pillars comprise different monocrystalline materials having a bulk crystal structure mismatch of up to about 10 percent, lattice mismatch induced crystal structure defects may be avoided interposed between the monocrystalline substrate and the plurality of epitaxially aligned contiguous monocrystalline pillars, which may have an irregular sidewall shape.
    • 制造纳米结构的方法使用模板化单晶衬底。 模板化的单晶衬底在能量上(即,优选热处理),具有可选的预清洗和位于其上的任选的非晶材料层,以形成模板结构的单晶衬底,其包括具有从其延伸的多个外延比对的邻接单晶柱的单晶衬底 。 单晶衬底和多个外延排列的邻接单晶柱可以包括相同或不同的单晶材料。 该方法提供纳米结构,其中当单晶衬底和多个外延对准的邻接单晶柱包含具有高达约10%的体晶结构失配的不同单晶材料时,晶格失配诱发的晶体结构缺陷可以避免插入在单晶衬底 以及可能具有不规则侧壁形状的多个外延排列的邻接单晶柱。
    • 7. 发明申请
    • METHOD AND SYSTEM FOR ACCESSIBLE CONTACT INFORMATION ON A LOCKED ELECTRONIC DEVICE
    • 锁定电子设备上可访问的联系人信息的方法和系统
    • WO2007070749A3
    • 2008-01-24
    • PCT/US2006061585
    • 2006-12-05
    • MOTOROLA INCHAYES DAVID JFERNANDEZ JUAN CTHOMPSON MICHAEL JSTONE NATHAN A
    • HAYES DAVID JFERNANDEZ JUAN CTHOMPSON MICHAEL JSTONE NATHAN A
    • H04B1/06
    • H04M1/67H04M1/2745H04M1/677H04M1/72536
    • An electronic device (10 or 300) and method (400) can include a storage medium (14, 304, or 306) having at least a predetermined contact number (15) designated as an emergency contact number and a processor (302). The processor can be programmed to place the electronic device or a portion (14 or 18) of the electronic device in a locked mode and enable (408) electronic access to any predetermined contact number designated as an emergency contact number notwithstanding the locked mode. The electronic device can be for example a cellular phone, a smart phone, a cordless home phone, a personal digital assistant, a wireless messaging device, an MP3 player, a laptop computer, or a lockable solid state memory device. The electronic device can be a wireless communication device and the emergency contact number can be contained in an electronic phonebook (19) within the storage medium.
    • 电子设备(10或300)和方法(400)可以包括具有至少指定为紧急联系号码的预定联系电话号码(15)的存储介质(14,304或306)和处理器(302)。 处理器可以被编程为将电子设备或电子设备的一部分(14或18)放置在锁定模式中,并且使得(408)电子访问指定为紧急联系号码的任何预定联系人号码,尽管有锁定模式。 电子设备可以是例如蜂窝电话,智能电话,无绳家庭电话,个人数字助理,无线消息收发设备,MP3播放器,膝上型计算机或可锁定固态存储设备。 电子设备可以是无线通信设备,并且紧急联系号码可以包含在存储介质内的电子电话簿(19)中。
    • 9. 发明申请
    • APPARATUS AND METHODS FOR PROCESSING COMPOSITE COMPONENTS USING AN ELASTOMERIC CAUL
    • 使用弹性体加工复合组分的装置和方法
    • WO2005082606A1
    • 2005-09-09
    • PCT/US2005/005229
    • 2005-02-22
    • THE BOEING COMPANYZENKNER, Grant, C.THOMPSON, Michael, P.POLK, Stanley, F.
    • ZENKNER, Grant, C.THOMPSON, Michael, P.POLK, Stanley, F.
    • B29C70/44
    • B29C70/342B29C70/44
    • Apparatus and methods for processing composite components using an elastomeric caul (110) are disclosed. In one embodiment, a method includes forming a prepreg material (102) on a non-planar portion of a lay-up mandrel (104), and providing an elastomeric caul (110) over the prepreg material in an initial position such that a first portion of the elastomeric caul (110) is proximate the prepreg material (102) on the lay-up mandrel (104), and a second portion of the elastomeric caul adjacent the first portion is spaced apart from the prepreg material. Next, a pressure is reduced within a space disposed between the elastomeric caul (110) and the lay-up mandrel (104) proximate the non-planar portion. Simultaneously with the reducing of the pressure with the space, the elastomeric caul (110) is stretched into a second position such that the second portion of the elastomeric caul is drawn proximate to at least one of the prepreg material and the lay-up mandrel.
    • 公开了使用弹性卡尔(110)处理复合部件的装置和方法。 在一个实施例中,一种方法包括在叠层心轴(104)的非平面部分上形成预浸料材料(102),并且在初始位置上在预浸料坯料上方提供弹性卡尔(110),使得第一 弹性卡尔(110)的一部分靠近层叠心轴(104)上的预浸料材料(102),并且邻近第一部分的弹性塞子的第二部分与预浸料坯材料间隔开。 接下来,在靠近非平面部分的弹性卡尔(110)和叠层心轴(104)之间的空间内减小压力。 在与空间减小压力的同时,弹性卡尔(110)被拉伸到第二位置,使得弹性塞子的第二部分被拉近​​到预浸料坯材料和叠层心轴中的至少一个。