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    • 5. 发明授权
    • Vacuum glass sealing method and device
    • 真空玻璃密封方法及装置
    • US09266766B2
    • 2016-02-23
    • US14124885
    • 2011-08-09
    • Yan ZhaoYanbing LiZhangsheng WangJianbo ShiShitao Pang
    • Yan ZhaoYanbing LiZhangsheng WangJianbo ShiShitao Pang
    • C03B23/24C03C27/08E06B3/66E06B3/677
    • C03B23/245C03C27/08E06B3/6612E06B3/6775Y02A30/25Y02B80/24
    • The present invention discloses a vacuum glass sealing method and a sealing device using the method. The sealing device comprises a bottom plate, an annular side wall, a cover plate, a partition plate and a heating device, wherein the lower end of the annular side wall is situated on the bottom plate and air-tightly connected with the bottom plate; the cover plate is air-tightly covered at the upper end of the annular side wall; the partition plate is arranged on the middle part of the height direction of the annular side wall; after the periphery of the partition plate is air-tightly connected with the inner surface of the annular side wall, the partition plate divides the space encircled by the bottom plate, the annular side wall and the cover plate into a first closed space and a second closed space; and the two closed spaces are provided with an air extraction port for vacuumizing respectively.
    • 本发明公开了一种使用该方法的真空玻璃密封方法和密封装置。 密封装置包括底板,环形侧壁,盖板,分隔板和加热装置,其中环形侧壁的下端位于底板上并与底板气密连接; 盖板在环形侧壁的上端气密地覆盖; 分隔板布置在环形侧壁的高度方向的中间部分上; 在分隔板的周边与环形侧壁的内表面气密连接之后,隔板将由底板,环形侧壁和盖板包围的空间分隔成第一封闭空间和第二封闭空间 封闭空间; 并且两个封闭空间分别设有用于抽真空的抽气口。
    • 7. 发明申请
    • METHOD FOR MANUFACTURING COLUMNAR CURVED TEMPERED GLASS
    • 制造圆柱弯曲温度玻璃的方法
    • US20150121964A1
    • 2015-05-07
    • US14386636
    • 2012-07-12
    • Yan ZhaoKezhi Zhang
    • Yan ZhaoKezhi Zhang
    • C03B23/033C03B35/18C03B27/044
    • C03B23/033C03B27/0442C03B27/0447C03B35/166C03B35/187C03B35/189C03B2225/02
    • The present invention discloses a device for processing columnar curved tempered glass. The device mainly comprises a glass heating furnace, a glass bending mechanism and a glass tempering mechanism connected sequentially, wherein the arrangement of each supporting roller in the rollers supporting the high temperature flat glass is changed from planar arrangement in space into curved arrangement corresponding to the shape of the glass to be formed, so that the glass bending mechanism enables the glass to suffer bending deformation. Transferring rollers for outputting the formed curved glass in the axial direction of the supporting roller are arranged at the clearance of the rollers of the bending mechanism. In the present invention, bending shaping and tempering of the high temperature flat glass are completed by two stations to break the normal procedure that bending shaping tempering are carried out by one bending appliance intensively, thereby providing a novel technological approach for processing columnar curved tempered glass.
    • 本发明公开了一种用于加工柱状弯曲钢化玻璃的装置。 该装置主要包括依次连接的玻璃加热炉,玻璃弯曲机构和玻璃回火机构,其中支撑高温平板玻璃的辊中的每个支撑辊的布置从空间中的平面布置改变成对应于 要形成的玻璃的形状,使得玻璃弯曲机构能够使玻璃遭受弯曲变形。 用于在支撑辊的轴向方向上输出形成的弯曲玻璃的转移辊布置在弯曲机构的辊的间隙处。 在本发明中,高温平板玻璃的弯曲成型和回火由两个台站完成,以破坏由一个弯曲装置进行弯曲成型回火的正常程序,从而提供了一种用于加工柱状弯曲钢化玻璃的新技术方法 。
    • 8. 发明授权
    • Method, system and server for managing data transmission
    • 用于管理数据传输的方法,系统和服务器
    • US09002743B2
    • 2015-04-07
    • US11792614
    • 2005-12-09
    • Mu TangYan ChenYan ZhaoSongtao Lin
    • Mu TangYan ChenYan ZhaoSongtao Lin
    • G06F21/10H04L29/08
    • G06F21/10H04L67/02
    • Method, system and server for managing data transmission. The method comprises the following steps: the first client requests the server for data update; the server analyzes the request of the first client and takes the control measurement to the data that the client requests to update according to the predetermined control policy, and performs the subsequent process after the data requested by the client meet the control policy; the server informs the first client to update the data; the first client updates the data; the server informs the second client that the data of the first client has been updated; the second client acquires the updated data. The present invention discloses also a control system and a control equipment achieving the above method. The server takes the unified central control notification mode according to the present invention to effectively control the propagation approach of the personalized data.
    • 用于管理数据传输的方法,系统和服务器。 该方法包括以下步骤:第一客户端请求服务器进行数据更新; 服务器分析第一客户端的请求,并根据预定的控制策略对客户端请求更新的数据进行控制测量,并在客户端请求的数据满足控制策略后执行后续处理; 服务器通知第一客户端更新数据; 第一个客户端更新数据; 服务器通知第二客户端已经更新了第一客户端的数据; 第二客户端获取更新的数据。 本发明还公开了一种实现上述方法的控制系统和控制装置。 根据本发明,服务器采用统一的中央控制通知模式,以有效地控制个性化数据的传播方式。
    • 9. 发明授权
    • Method for characterizing identified defects during charged particle beam inspection and application thereof
    • 用于表征带电粒子束检查期间发现的缺陷的方法及其应用
    • US08664596B2
    • 2014-03-04
    • US12489804
    • 2009-06-23
    • Yan Zhao
    • Yan Zhao
    • H01J37/26
    • G01N23/225G01N2223/6116
    • A method for characterizing identified defects during charged particle beam inspection of a sample is disclosed. The method comprises obtaining a voltage contrast image of the sample by using a charged particle beam imaging apparatus at an inspection temperature; identifying, from the voltage contrast image, the presence of at least one defect on the sample; providing reference data of the sample, wherein the reference data represents at least one reference defect on the sample; comparing the location or geographical distribution of the identified defects and the reference defects on the sample to correlate the identified defects with the inspection temperature thereby characterizing the identified defects.
    • 公开了一种用于表征样品的带电粒子束检查期间发现的缺陷的方法。 该方法包括通过在检查温度下使用带电粒子束成像装置来获得样品的电压对比度图像; 从所述电压对比图像识别所述样品上存在至少一个缺陷; 提供样本的参考数据,其中所述参考数据表示所述样本上的至少一个参考缺陷; 比较所识别的缺陷的位置或地理分布以及样本上的参考缺陷,以将识别的缺陷与检查温度相关联,从而表征所识别的缺陷。