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    • 11. 发明申请
    • Microwave Plasma Nozzle With Enhanced Plume Stability And Heating Efficiency
    • 微波等离子喷嘴具有增强的羽流稳定性和加热效率
    • US20080017616A1
    • 2008-01-24
    • US11631723
    • 2005-07-07
    • Sang LeeJay Kim
    • Sang LeeJay Kim
    • B23K10/00
    • H05H1/46H05H2001/4622H05H2001/463
    • Systems and methods for generating relatively cool microwave plasma are disclosed. The present invention provides a microwave plasma nozzle that includes a gas flow tube through which a gas flows, and a rod-shaped conductor that is disposed in the gas flow tube and has a tapered tip near the outlet of the gas flow tube. A portion of the rod-shaped conductor extends into a microwave cavity to receive microwaves passing in the cavity. These received microwaves are focused at the tapered tip to heat the gas into plasma. The microwave plasma nozzle also includes a vortex guide between the rod-shaped conductor and the gas flow tube imparting a helical shaped flow direction around the rod-shaped conductor to the gas flowing through the tube. The microwave plasma nozzle further includes a mechanism for electronically exciting the gas and a shielding mechanism for reducing a microwave power loss through the gas flow tube.
    • 公开了用于产生相对较冷的微波等离子体的系统和方法。 本发明提供了一种微波等离子体喷嘴,其包括气体流过的气体流管和设置在气体流管中并且在气体流管的出口附近具有锥形尖端的棒状导体。 棒状导体的一部分延伸到微波腔中以接收通过空腔的微波。 这些接收到的微波聚焦在锥形尖端以将气体加热成等离子体。 微波等离子体喷嘴还包括在棒状导体和气体流动管之间的涡流引导件,其使得围绕棒状导体的螺旋形流动方向对流过管的气体。 微波等离子体喷嘴还包括用于电子激发气体的机构和用于减少通过气体流动管的微波功率损耗的屏蔽机构。
    • 12. 发明申请
    • System and Method for Optimizing Data Acquisition of Plasma Using a Feedback Control Module
    • 使用反馈控制模块优化等离子体数据采集的系统和方法
    • US20070294037A1
    • 2007-12-20
    • US11661067
    • 2005-08-02
    • Sang LeeJay Kim
    • Sang LeeJay Kim
    • G01N33/48
    • H01J37/3299H01J37/32935
    • Method, systems and computer readable media for optimizing data acquisition of microwave plasma are disclosed. The present invention provides a method that includes the steps of selecting an operational condition for a plasma generation system, operating the plasma generation system under the selected operational condition, determining whether a stable plasma is established using a sensing device and acquiring/storing plasma data if the stable plasma is established. The method further includes a step of repeating data acquisition under various operational conditions to establish a database for plasma characterization. The present invention further provides a feedback control module that operates in conjunction with a plasma generating system to automate and optimize the process of data acquisition.
    • 公开了用于优化微波等离子体的数据采集的方法,系统和计算机可读介质。 本发明提供了一种方法,其包括以下步骤:选择等离子体产生系统的操作条件,在所选择的操作条件下操作等离子体生成系统,使用感测装置确定是否建立稳定的等离子体,以及如果 建立稳定的等离子体。 该方法还包括在各种操作条件下重复数据采集以建立用于等离子体表征的数据库的步骤。 本发明还提供了一种反馈控制模块,其与等离子体发生系统一起工作,以自动化和优化数据采集过程。
    • 13. 发明申请
    • Portable Microwave Plasma Systems Including A Supply Line For Gas And Microwave
    • 便携式微波等离子体系统,包括气体和微波供应线
    • US20070290620A1
    • 2007-12-20
    • US11661048
    • 2005-08-11
    • Sang LeeJay KimTogo Kinoshita
    • Sang LeeJay KimTogo Kinoshita
    • H05H1/24
    • H05H1/46H05H2001/4622H05H2245/1225
    • A portable microwave plasma system (10) includes a microwave supply unit (22), a waveguide-to-coax adapter (18) and a waveguide (20) that interconnects the microwave supply unit (22) with the waveguide-to-coax adapter (18), a portable discharge unit (12) and a supply line (16). The supply line (16) includes at least one gas line (62) and a microwave coaxial cable (64). The portable discharge unit (12) includes: a gas flow tube (42) coupled to the supply line (16) to receive gas flow; and a rod-shaped conductor (44) that is axially disposed in the gas flow tube (42) and has an end configured to receive microwaves from the microwave coaxial cable (64) and a tip (46) positioned adjacent the outlet portion of the gas flow tube (42). The tip (46) is configured to focus microwave traveling through the rod-shaped conductor (44) and generate plasma from the gas flow.
    • 便携式微波等离子体系统(10)包括微波提供单元(22),波导到同轴适配器(18)和波导(20),其将微波供应单元(22)与波导到同轴电缆适配器 (18),便携式放电单元(12)和供给管线(16)。 供应管线(16)包括至少一条气体管线(62)和微波同轴电缆(64)。 便携式排放单元(12)包括:气体流管(42),其耦合到供应管线(16)以接收气流; 以及杆状导体(44),其轴向地设置在所述气体流管(42)中并且具有被配置为从所述微波同轴电缆(64)接收微波的端部和邻近所述微波同轴电缆的出口部分定位的尖端(46) 气流管(42)。 尖端(46)被配置为聚焦通过杆状导体(44)行进的微波并且从气流产生等离子体。
    • 14. 发明授权
    • Method and apparatus for treating waste materials
    • 处理废料的方法和设备
    • US09579837B2
    • 2017-02-28
    • US14004250
    • 2012-02-17
    • Jay KimWesley Tse
    • Jay KimWesley Tse
    • B29C47/00C02F11/14C02F11/18B09B3/00C04B35/56C04B35/622C02F101/20B09B5/00
    • B29C47/0066B09B3/0083B09B5/00C02F11/14C02F11/18C02F2101/20C04B35/56C04B35/62204C04B2235/3208C04B2235/3418C04B2235/3463C04B2235/3472C04B2235/3481Y02W30/20
    • A method and apparatus for treating waste materials comprising, particulating the waste materials into discrete particles, heating and drying the particles in a non-oxidizing atmosphere in a drier at a temperature in the range of 800° to 860° C. for carbonizing the particles, crushing the carbonized particles and leaching the crushed carbonized particles in an acid solution for dissolution of heavy metals into the solution, separating the leach solution containing heavy metal from the carbonized particles, adding to the carbonized particles particulate sodium hydroxide, silica, feldspar and limestone in a ratio of 100:0.3-0.5:8-12:2-4, mixing said particles with 15 to 18% by weight water to form a wet mixture and continuously extruding the wet mixture to form an elongated continuous extrusion, severing the elongated extrusion into blocks or planks of predetermined length, drying the blocks or planks and heating the dried blocks or planks in a kiln at a temperature in the range of 1200° to 1300° C. for a time sufficient in an oxygen deficient atmosphere to sinter the blocks or planks and to form carbides, and separating and recovering CO2 gas from combustion gases in the kiln.
    • 一种用于处理废料的方法和装置,包括将废料颗粒化成离散的颗粒,在800至860℃范围内的温度下在干燥器中的非氧化性气氛中加热和干燥颗粒,以使颗粒碳化 将碳化颗粒粉碎并将粉碎的碳化颗粒浸入酸溶液中,将重金属溶解于溶液中,将含有重金属的浸出溶液与碳化颗粒分离,向碳化颗粒加入颗粒状氢氧化钠,二氧化硅,长石和石灰石 以100:0.3-0.5:8-12:2-4的比例混合,将所述颗粒与15至18重量%的水混合以形成湿混合物,并连续挤出湿混合物以形成细长的连续挤出,切断细长 挤压成预定长度的块或板,干燥块或木板,并将干燥的块或木板加热到窑炉中的温度范围为120℃ 0至1300℃,持续足够的氧气气氛烧结块体或板块并形成碳化物,并从窑炉中的燃烧气体中分离和回收CO 2气体。
    • 15. 发明申请
    • Plasma Nozzle Array for Providing Uniform Scalable Microwave Plasma Generation
    • 用于提供均匀可扩展微波等离子体发生的等离子喷嘴阵列
    • US20080073202A1
    • 2008-03-27
    • US11658356
    • 2005-07-21
    • Sang LeeJay Kim
    • Sang LeeJay Kim
    • H05H1/46H01J37/32
    • H01J37/32192A61L2/14H05H1/46H05H2001/4622
    • The present invention provides microwave plasma nozzle array systems (10, 70, 230, and 310) and methods for configuring microwave plasma nozzle arrays (37, 99, and 337). The microwaves are transmitted to a microwave cavity (323) in a specific manner and form an interference pattern (66) that includes high-energy regions (69) within the microwave cavity (32). The high-energy regions (69) are controlled by the phases and the wavelengths of the microwaves. A plurality of nozzle elements (36) is provided in the array (37). Each of the nozzle elements (36) has a portion (116) partially disposed in the microwave cavity (32) and receives a gas for passing therethrough. The nozzle elements (36) receive microwave energy from one of the high-energy regions (69). Each of the nozzle elements (36) includes a rod-shaped conductor (114) having a tip (117) that focuses on the microwaves and a plasma (38) is then generated using the received gas.
    • 本发明提供微波等离子体喷嘴阵列系统(10,70,230和310)以及用于配置微波等离子体喷嘴阵列(37,99和337)的方法。 微波以特定的方式传送到微波腔(323)并形成包括微​​波腔(32)内的高能区域(69)的干涉图案(66)。 高能区(69)由微波的相位和波长控制。 在阵列(37)中设置有多个喷嘴元件(36)。 每个喷嘴元件(36)具有部分地布置在微波腔(32)中的部分(116)并且接收用于通过的气体。 喷嘴元件(36)从高能区域(69)之一接收微波能量。 每个喷嘴元件(36)包括具有聚焦在微波上的尖端(117)的棒状导体(114),然后使用所接收的气体产生等离子体(38)。
    • 16. 发明申请
    • Display device
    • 显示设备
    • US20060168857A1
    • 2006-08-03
    • US11028697
    • 2005-01-05
    • Jay Kim
    • Jay Kim
    • G09F15/00
    • G09F17/00G09F15/0025G09F2017/0041
    • An advertising and promotional display device has a display sheet formed into a closed loop which is wound around a pair of rollers. A motor is connected to an upper one of said pair of rollers to rotate the roller and revolve the sheet around the pair of rollers in order to show a continuously moving set of images imprinted on the sheet. A pair of stands supports the motor as well as the upper roller so that the pair of rollers and the sheet are essentially suspended from the top ends of the stands. The rollers are composed of detachably interconnected roller members and the stands are also composed of detachably interconnected stand members enabling the device to be collapsed down into component parts for portability. A shroud covers the upper roller, the top ends of the stands and part-of the sheet. The shroud is composed of detachably interconnected segments enabling it to be collapsed into component parts for portability.
    • 广告促销显示装置具有形成为围绕一对辊的闭环的显示片。 电动机连接到所述一对辊的上部辊子上以旋转辊子并使纸张围绕该对辊子旋转,以便显示压印在纸张上的连续移动的图像。 一对支架支撑电动机和上辊,使得一对辊和片基本上从支架的顶端悬挂。 辊由可拆卸地连接的辊构件组成,并且支架也由可拆卸地互连的支架构件组成,使得装置能够折叠成组件以便移植。 护罩覆盖上辊,支架的顶端和片的一部分。 护罩由可拆卸地互连的部件组成,使得其能够折叠成组件以便于携带。
    • 17. 发明申请
    • Flexible mirror device for a vehicle
    • 用于车辆的柔性镜装置
    • US20050286148A1
    • 2005-12-29
    • US10876347
    • 2004-06-25
    • Yun LeeJay KimYong KimYoung Kim
    • Yun LeeJay KimYong KimYoung Kim
    • B60R1/04B60R1/08G02B7/182G02B17/00
    • G02B7/1824B60R1/04B60R1/08
    • A mirror device for a vehicle comprising a base detachably attached to an internal portion of the vehicle, within a viewable range from a driver sitting behind a steering wheel of the vehicle, a mirror attached to a mirror pad, and a substantially elongate member connecting the mirror pad to the base. The elongate member is formed of belt rings and miniature dumbbells alternately interlinked with the belt rings such that each ball of the dumbbells is rotatably caught in a corresponding one of the belt rings, whereby the elongate member is controllably adjustable to one of an infinite number of aerial settings thereof so that the mirror is subsequently displaced to an aerial position desired by the driver.
    • 一种用于车辆的镜子装置,包括可拆卸地附接到车辆内部的基座,该座椅可以从坐在车辆方向盘后面的驾驶员的可视范围内,附接到镜垫的反射镜以及连接到车身的大致细长的构件 镜垫到底座。 细长构件由带环和微型哑铃形成,其与带环交替地相互连接,使得哑铃的每个球可旋转地卡在相应的一个带环中,由此细长构件可控地调节为无限数量的 其天线设置使得反射镜随后被移动到驾驶员期望的空中位置。
    • 18. 发明申请
    • Portable Microwave Plasma Discharge Unit
    • 便携式微波等离子体放电单元
    • US20080093358A1
    • 2008-04-24
    • US11661063
    • 2005-08-11
    • Sang LeeJay Kim
    • Sang LeeJay Kim
    • H05B6/64
    • H05B6/802H05B2206/045H05H1/46H05H2001/463
    • A portable microwave plasma discharge unit receives microwaves and a gas flow via a supply line. The portable microwave plasma discharge unit generates plasma from the gas flow and the received microwaves. The portable microwave plasma discharge unit includes a gas flow tube made of a conducting and/or dielectric material and a rod-shaped conductor that is axially disposed in the gas flow tube. The rod-shaped conductor has an end configured to contact a microwave supply conductor of the supply line to receive microwaves and a tapered tip positioned adjacent the outlet portion of the gas flow tube. The tapered tip is configured to focus the microwaves received from the microwave supply conductor to generate plasma from the gas flow.
    • 便携式微波等离子体放电单元经由供电线接收微波和气流。 便携式微波等离子体放电单元从气流和接收的微波产生等离子体。 便携式微波等离子体放电单元包括由导电和/或电介质材料制成的气体流管和轴向设置在气体流管中的棒状导体。 棒状导体具有构造成接触供应线的微波供应导体以接收微波的端部和邻近气体流管出口部分定位的锥形尖端。 锥形尖端被配置为聚焦从微波供应导体接收的微波,以从气流产生等离子体。
    • 19. 发明申请
    • Muffler having fluid swirling vanes
    • 消声器具有流体旋转叶片
    • US20060260869A1
    • 2006-11-23
    • US11130610
    • 2005-05-18
    • Jay KimEdward Hanson
    • Jay KimEdward Hanson
    • F01N1/12
    • F01N1/12
    • A muffler for an internal combustion engine has a casing forming an expansion chamber therein. An inlet duct is connected to the casing and projects into the expansion chamber and discharges exhaust fluid into the expansion chamber. The casing tapers in an upstream direction to form a pocket for receiving reverse flow of the exhaust gases and to minimize reverse flow from flowing back into the inlet duct in an upstream direction. In the discharge end of the inlet duct are a set of primary vanes and a set of secondary vanes. The vanes are secured to the walls of the duct and extend radially toward the central area of the duct. The vanes are angled in order to deflect the exhaust fluid flow into a swirling movement as it is discharged into the expansion chamber and maintains that swirling movement while passing out of the casing through the outlet duct.
    • 用于内燃机的消声器具有在其中形成膨胀室的壳体。 入口管连接到壳体并突出到膨胀室中,并将排出流体排放到膨胀室中。 壳体沿上游方向逐渐变细,以形成用于接收废气逆流的袋,并使反向流动最小化,使其在上游方向上流回入口导管。 在入口管道的排放端是一组主叶片和一组次级叶片。 叶片被固定到管道的壁上并径向延伸到管道的中心区域。 叶片是成角度的,以便当排出流体流出到膨胀室中时将排出流体流转动到旋转运动中,并且在通过出口导管通过套管时保持该旋转运动。