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    • 4. 发明授权
    • Non-volatile memory devices including low-K dielectric gaps in substrates
    • 非易失性存储器件,包括衬底中的低K电介质间隙
    • US08536652B2
    • 2013-09-17
    • US13224427
    • 2011-09-02
    • Bo-young LeeJong-wan ChoiJin-gi HongMyoung-bum Lee
    • Bo-young LeeJong-wan ChoiJin-gi HongMyoung-bum Lee
    • H01L29/78
    • H01L21/764H01L27/11521H01L27/11568
    • A method of manufacturing a non-volatile memory device, can be provided by forming a gate insulating layer and a gate conductive layer on a substrate that includes active regions that are defined by device isolation regions that include a carbon-containing silicon oxide layer. The gate conductive layer and the gate insulating layer can be sequentially etched to expose the carbon-containing silicon oxide layer. The carbon-containing silicon oxide layer can be wet-etched to recess a surface of the carbon-containing silicon oxide layer to below a surface of the substrate. Then, an interlayer insulating layer can be formed between the gate insulating layer and the gate conductive layer on the carbon-containing silicon oxide layer, where an air gap can be formed between the carbon-containing silicon oxide layer and the gate insulating layer.
    • 可以通过在包括由包含含碳氧化硅层的器件隔离区限定的有源区的衬底上形成栅极绝缘层和栅极导电层来提供制造非易失性存储器件的方法。 可以依次蚀刻栅极导电层和栅极绝缘层,以露出含碳氧化硅层。 可以对含碳氧化硅层进行湿蚀刻,以将含碳氧化硅层的表面凹入到衬底的表面下方。 然后,可以在含碳氧化硅层上的栅极绝缘层和栅极导电层之间形成层间绝缘层,其中可以在含碳氧化硅层和栅极绝缘层之间形成气隙。
    • 5. 发明授权
    • Apparatus for forming stress corrosion cracks
    • 用于形成应力腐蚀裂纹的装置
    • US08270556B2
    • 2012-09-18
    • US12325877
    • 2008-12-01
    • Bo Young LeeJae Seong KimWoong Ki Hwang
    • Bo Young LeeJae Seong KimWoong Ki Hwang
    • G21C9/00
    • G01N17/00G21C17/00
    • An apparatus for forming stress corrosion cracks comprises a heating unit which includes a conductive member and a heating coil disposed adjacent to the conductive member to generate steam pressure in the tube specimen, an end holding unit, and a control unit for controlling the heating unit and the end holding unit. The stress corrosion cracks occurring in the equipment of nuclear power plants or apparatus industries during operation can be directly formed in a tube specimen using steam pressure under conditions similar to those of the actual environment of nuclear power plants, thus increasing accuracy for analysis of properties of stress corrosion cracks which are in actuality generated, thereby improving reliability of nuclear power plants or apparatus industries and effectively assuring nondestructive testing capability, resulting in very useful industrial applicability.
    • 用于形成应力腐蚀裂纹的装置包括加热单元,其包括导电构件和邻近导电构件设置的加热线圈,以在管样本中产生蒸汽压力,端部保持单元和用于控制加热单元的控制单元, 末端保持单元。 核电站或设备工业设备在运行过程中产生的应力腐蚀裂纹,可以直接在管状试样上形成,在与核电厂实际环境条件相似的条件下,采用蒸汽压力,从而提高分析性能的准确性 实际产生的应力腐蚀裂纹,从而提高核电厂或设备行业的可靠性,有效保证无损检测能力,从而产生非常有用的工业应用。
    • 6. 发明授权
    • Oil recovery system
    • 油回收系统
    • US06592753B2
    • 2003-07-15
    • US10117646
    • 2002-04-05
    • Bo-Young Lee
    • Bo-Young Lee
    • C02F140
    • B01D17/0208B01D17/0211B01D17/0214Y10S210/923
    • An oil recovery system, designed to recover oil from oil-contaminated water of a river, lake or sea due to a difference in specific gravity of the liquids. The system includes a 4-stage separation tank 15 having four chambers 51-54. The first chamber 51 includes a hopper-shaped oil floating unit 59 in communication with a piston pump 68 (FIG. 5) and having porous filters 61, 62 therein. The second and third chambers 52, 53 include a plurality of horizontal diaphragms 63 for reducing the processing time for separating oil from water. The system can be continuously operated without being stopped during an oil recovering operation. The oil recovered from discharged pipe 67 is usable so that the system preferably conserves natural resources.
    • 一种采油系统,用于由于液体比重差异,从河流,湖泊或海洋的油污水中回收油。 该系统包括具有四个室51-54的四级分离槽15。 第一室51包括与活塞泵68(图5)连通并且其中具有多孔过滤器61,62的料斗形状的油浮动单元59。 第二和第三室52,53包括多个水平隔膜63,用于减少从水中分离油的处理时间。 在油回收操作期间,系统可以连续运行而不停止。 从排出管67回收的油可以使用,使得该系统优选地保存自然资源。