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    • 52. 发明申请
    • ANALYZER AND ANALYSIS METHOD
    • 分析和分析方法
    • US20150085281A1
    • 2015-03-26
    • US14206289
    • 2012-09-10
    • Yuji IkedaRyoji Tsuruoka
    • Yuji IkedaRyoji Tsuruoka
    • G01N21/71
    • G01N21/718G01J3/443G01N2201/06113G01N2201/08G01N2201/125
    • The objective of the present invention is to reduce the dispersion of a powdered substance, which is the target substance, during the analysis period in an analyzing device that analyzes the target substance by analyzing the light originated from the substance which is in the plasma state. The present invention relates to an analyzing device including a plasma generation means which generates plasma in the space and maintains plasma using the energy of EM radiation emitted from a radiation antenna; and an optical analysis means which analyzes a target substance by analyzing the plasma light generated from target substance of plasma state in the plasma area during the plasma maintenance period where the plasma is maintained by the plasma generation means using the energy of EM radiation. The plasma generation means emits the EM radiation from the radiation antenna in continuous waves during the plasma maintenance period.
    • 本发明的目的是通过分析来自等离子体状态的物质的光来分析目标物质的分析装置,在分析期间减少作为目标物质的粉末物质的分散。 本发明涉及一种分析装置,其包括:等离子体产生装置,其利用从辐射天线发射的EM辐射的能量在该空间中产生等离子体并维持等离子体; 以及光分析装置,其通过分析等离子体维持期间等离子体状态的等离子体状态产生的等离子体光,其中等离子体维持期间由等离子体产生装置使用EM辐射的能量维持。 等离子体产生装置在等离子体维持期间以连续波发射来自辐射天线的EM辐射。
    • 53. 发明申请
    • PLASMA GENERATING DEVICE, AND INTERNAL COMBUSTION ENGINE
    • 等离子体发生装置和内燃机
    • US20150068479A1
    • 2015-03-12
    • US14345580
    • 2012-09-12
    • Yuji Ikeda
    • Yuji Ikeda
    • H05H1/46F02P23/04
    • H05H1/46F02P3/01F02P15/02F02P23/045H05H2001/463
    • To simplify a configuration of a plasma generation device that generates plasma by means of an electromagnetic wave using thermal electrons as a trigger. The plasma generation device 30 includes: a thermal electron emission member 14 that emits thermal electrons when heated; a heating device 13 that heats the thermal electron emission member 14 by means of an electromagnetic wave; and an electric field concentration member 61 that concentrates in the vicinity of the thermal electron emission member 14 an electric field of the electromagnetic wave generated by the heating device 13. The plasma generation device 30, while causing the heating device 13 to heat the thermal electron emission member 14, causes the electric field concentration member 61 to concentrate the electric field of the electromagnetic wave in the vicinity of the thermal electron emission member 14, thereby generating plasma in the vicinity of the thermal electron emission member 14.
    • 为了简化通过使用热电子作为触发器的电磁波产生等离子体的等离子体产生装置的构造。 等离子体产生装置30包括:加热时发射热电子的热电子发射部件14; 通过电磁波加热热电子发射部件14的加热装置13; 以及集中在热电子发射部件14附近的由加热装置13产生的电磁波的电场的电场集中部件61.等离子体产生装置30在使加热装置13加热热电子 发射构件14使电场浓度构件61将电磁波的电场集中在热电子发射构件14附近,从而在热电子发射构件14附近产生等离子体。
    • 54. 发明授权
    • After-treatment apparatus for exhaust gas right after a combustion chamber
    • 燃烧室后的排气后处理装置
    • US08850795B2
    • 2014-10-07
    • US12881897
    • 2010-09-14
    • Yuji Ikeda
    • Yuji Ikeda
    • F01N3/08F02B77/08F01L3/24F01L3/02F01L3/06F01L3/08F02P13/00F02P23/04
    • F01L3/02F01L3/06F01L3/08F01L3/24F01N3/0293F01N3/0892F01N2240/28F01N2610/06F01N2610/1453F02B77/087F02P13/00F02P23/045
    • Provided is an after-treatment apparatus for exhaust gas right after a combustion chamber, which apparatus comprises a discharge device with an electrode exposed to an exhaust port installed in a cylinder head, an antenna installed on the back face of a valve head, an electromagnetic wave transmission line installed in a valve stem with one end connected to the antenna and the other end, covered with an insulator or dielectric and extending to and connected to a power-receiving portion, which is positioned at a location fitting into the guide hole or at a location farther from the valve head in the valve stem, and an electromagnetic wave generator for feeding electromagnetic waves to the power-receiving portion. The after-treatment apparatus is configured such that discharge is generated with the electrode of the discharge device and electromagnetic waves fed from the electromagnetic wave generator through the electromagnetic wave transmission line are radiated from the antenna.
    • 本发明提供一种在燃烧室之后的排气后处理装置,该装置包括:排出装置,其具有暴露于安装在气缸盖中的排气口的电极;安装在阀头背面的天线;电磁 波导传输线安装在阀杆中,其一端连接到天线,另一端覆盖有绝缘体或电介质并且延伸到并连接到受电部分,受电部分位于配合到引导孔中的位置, 在距离阀杆中的阀头更远的位置处,以及用于向电力接收部分馈送电磁波的电磁波发生器。 后处理装置被配置成使得放电装置的电极产生放电,并且通过电磁波传输线从电磁波发生器馈送的电磁波从天线辐射。
    • 55. 发明申请
    • INTERNAL COMBUSTION ENGINE
    • 内燃机
    • US20140283779A1
    • 2014-09-25
    • US14238079
    • 2012-08-07
    • Yuji Ikeda
    • Yuji Ikeda
    • F02P23/04
    • F02P23/045F02P3/02F02P9/007
    • The present invention aims at effectively emitting an electromagnetic wave to a combustion chamber from an emission antenna in an internal combustion engine that promotes combustion of an air fuel mixture utilizing the electromagnetic wave. The present invention is directed to an internal combustion engine including: an internal combustion engine main body formed with a combustion chamber; and an electromagnetic wave emission device that emits an electromagnetic wave to the combustion chamber from an emission antenna. The internal combustion engine promotes combustion of the air fuel mixture by way of the electromagnetic wave emitted to the combustion chamber. The emission antenna is provided in an insulating member and extends along the partitioning surface. The insulating member is provided on a partitioning surface that partitions the combustion chamber. A ground conductor is provided in the insulating member on a side opposite to the combustion chamber in relation to the emission antenna and is electrically grounded.
    • 本发明的目的是有效地从内燃机中的发射天线向燃烧室发射电磁波,该内燃机利用电磁波促进空气燃料混合物的燃烧。 本发明涉及一种内燃机,其包括:形成有燃烧室的内燃机主体; 以及从发射天线向燃烧室发射电磁波的电磁波发射装置。 内燃机通过发射到燃烧室的电磁波来促进空气燃料混合物的燃烧。 发射天线设置在绝缘构件中并且沿着分隔表面延伸。 绝缘构件设置在分隔燃烧室的分隔面上。 接地导体相对于发射天线设置在与燃烧室相对的一侧的绝缘构件中,并且电接地。
    • 56. 发明申请
    • PLASMA GENERATION PROVISION, INTERNAL COMBUSTION ENGINE AND ANALYSIS PROVISION
    • 等离子体生成规定,内燃机和分析规定
    • US20140261271A1
    • 2014-09-18
    • US14233103
    • 2012-06-27
    • Yuji Ikeda
    • Yuji Ikeda
    • H05H1/46G01N21/68
    • H05H1/46F02P3/02F02P3/04F02P9/007F02P23/045G01N21/67G01N21/68H01T13/50H05H2001/463
    • To make it easy to adjust a location of an emission antenna in a plasma generation device that generates plasma by a discharge and enlarges the plasma by an electromagnetic wave. A plasma generation device 30 includes an electromagnetic wave generation device 31, an emission antenna 16, a high voltage generation device 14, and a discharge electrode 15. The emission antenna 16 forms a discharge gap together with the discharge electrode 15 which a high voltage outputted from the high voltage generation device 14 is applied to. The plasma generation device 30 enlarges discharge plasma using the electromagnetic wave emitted from the emission antenna 16 caused by the electromagnetic wave outputted from the electromagnetic wave generation device 31, where the discharge plasma is generated at the discharge gap by an output of a high voltage from the high voltage generation device 14.
    • 为了容易地调整通过放电产生等离子体的等离子体发生装置中的发射天线的位置,并且通过电磁波放大等离子体。 等离子体产生装置30包括电磁波产生装置31,发射天线16,高电压产生装置14和放电电极15.发射天线16与放电电极15一起形成放电间隙,高电压输出 从高电压产生装置14施加。 等离子体产生装置30使用从由电磁波发生装置31输出的电磁波引起的从发射天线16发射的电磁波放大放电等离子体,其中在放电间隙产生放电等离子体,通过高电压的输出 高压发生装置14。
    • 57. 发明申请
    • HIGH-FREQUENCY RADIATION PLUG
    • 高频辐射插头
    • US20140232264A1
    • 2014-08-21
    • US14343471
    • 2012-09-10
    • Yuji Ikeda
    • Yuji Ikeda
    • H01T13/20
    • H01T13/20F02P3/02F02P9/007F02P15/04F02P23/04F02P23/045H01T13/44H01T13/50H05H1/46H05H2001/463
    • An aim of the present invention is, in a plug for high frequency emission disposed at an end of a casing having an emission antenna, to suppress a high frequency noise emitted from the emission antenna. The present invention is directed to a plug for high frequency emission including a transmission line for transmitting an electromagnetic wave, an emission antenna for emitting the electromagnetic wave supplied via the transmission line, and a casing constituted by a cylindrical shaped conductor, provided with the emission antenna at one end of the casing, and accommodating therein the transmission line extending from the emission antenna toward the other end of the casing. Inside of the casing, a central conductor electrically connected to the emission antenna and an outer conductor spaced apart from and surrounding the central conductor are embedded in an insulator so as to collectively constitute the transmission line, and the outer conductor is disposed in and held in non-contact with the casing.
    • 本发明的目的是在设置在具有发射天线的壳体的端部处的用于高频发射的插头中,抑制从发射天线发射的高频噪声。 本发明涉及一种用于高频发射的插头,包括用于发射电磁波的传输线,用于发射通过传输线提供的电磁波的发射天线,以及由圆柱形导体构成的壳体,其设置有发射 天线,并且在其中容纳从发射天线延伸到壳体的另一端的传输线。 在壳体的内部,电连接到发射天线的中心导体和与中心导体间隔开并围绕中心导体的外导体嵌入绝缘体中,以便共同构成传输线,并且将外导体设置在并保持在 不与外壳接触。
    • 59. 发明授权
    • Reaction analysis apparatus, recording medium, measurement system and control system
    • 反应分析仪,记录介质,测量系统及控制系统
    • US08758689B2
    • 2014-06-24
    • US12514533
    • 2007-11-17
    • Yuji IkedaAtsushi Nishiyama
    • Yuji IkedaAtsushi Nishiyama
    • G01N21/00
    • G01N21/71
    • The present invention is capable of determining that a reaction region is in an abnormal reaction state precisely with high reproducibility, executing proper analysis processing in accordance with the determined a state of the reaction region, and efficiently analyzing a characteristic of the reaction region. The present invention obtains intensity values of first and second wavelength components by measurement of light emitted from the reaction region with a spectrometer. A relative intensity calculator calculates relative intensity of the first wavelength component relative to the second wavelength component from the intensity values of the first and second wavelength components. The apparatus determines whether or not the calculated relative intensity is a value within a predetermined range. An output portion provides notification that the state of the reaction region is a predetermined state when it is determined that the relative intensity is within the predetermined range.
    • 本发明能够以高再现性确定反应区域处于异常反应状态,根据确定的反应区域的状态进行适当的分析处理,有效地分析反应区域的特性。 本发明通过用光谱仪测量从反应区域发出的光来获得第一和第二波长分量的强度值。 相对强度计算器从第一和第二波长分量的强度值计算相对于第二波长分量的第一波长分量的相对强度。 该装置确定所计算的相对强度是否在预定范围内的值。 当确定相对强度在预定范围内时,输出部分提供反应区域的状态为预定状态的通知。