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    • 1. 发明申请
    • VALVE CONTROL DEVICE AND VALVE CONTROL METHOD FOR INTERNAL COMBUSTION ENGINE
    • 用于内燃机的阀控制装置和阀控制方法
    • US20080098977A1
    • 2008-05-01
    • US11923370
    • 2007-10-24
    • Hiroshi YAMASHITAHideki Suzuki
    • Hiroshi YAMASHITAHideki Suzuki
    • F01L1/00
    • F02B31/02F01L1/34F01L2001/0537F02B31/06F02D41/3094Y02T10/146
    • An intake throttle valve is located in an intake passage upstream of first and second intake ports, such that intake air flows into mainly the first intake port to generate a swirl flow when an opening degree of the intake throttle valve is not larger than a predetermined value, and flows into both the first and second intake ports when the opening degree thereof is larger than the predetermined value. Furthermore, first and second fuel injection valves for respectively injecting fuel to the first and second intake ports are controlled to inject fuel from the first fuel injection valve when the opening degree of the intake throttle valve is not larger than about the predetermined value, and to inject fuel from both the first fuel injection valve and the second fuel injection valve when the opening degree of the intake throttle valve is larger than about the predetermined value.
    • 进气节气门位于第一和第二进气口上游的进气通道中,使得当进气节流阀的开度不大于预定值时,进气主要流入第一进气口以产生涡流 当其开度大于预定值时,流入第一和第二进气口。 此外,当进气节流阀的开度不大于预定值时,控制分别向第一和第二进气口喷射燃料的第一和第二燃料喷射阀,以从第一燃料喷射阀喷射燃料,并且 当进气节流阀的开度大于约预定值时,从第一燃料喷射阀和第二燃料喷射阀两者喷射燃料。
    • 2. 发明授权
    • Valve control device and valve control method for internal combustion engine
    • 内燃机阀门控制装置及阀门控制方法
    • US07472679B2
    • 2009-01-06
    • US11923370
    • 2007-10-24
    • Hiroshi YamashitaHideki Suzuki
    • Hiroshi YamashitaHideki Suzuki
    • F02B3/00F02B15/00
    • F02B31/02F01L1/34F01L2001/0537F02B31/06F02D41/3094Y02T10/146
    • An intake throttle valve is located in an intake passage upstream of first and second intake ports, such that intake air flows into mainly the first intake port to generate a swirl flow when an opening degree of the intake throttle valve is not larger than a predetermined value, and flows into both the first and second intake ports when the opening degree thereof is larger than the predetermined value. Furthermore, first and second fuel injection valves for respectively injecting fuel to the first and second intake ports are controlled to inject fuel from the first fuel injection valve when the opening degree of the intake throttle valve is not larger than about the predetermined value, and to inject fuel from both the first fuel injection valve and the second fuel injection valve when the opening degree of the intake throttle valve is larger than about the predetermined value.
    • 进气节气门位于第一和第二进气口上游的进气通道中,使得当进气节流阀的开度不大于预定值时,进气主要流入第一进气口以产生涡流 当其开度大于预定值时,流入第一和第二进气口。 此外,当进气节流阀的开度不大于预定值时,控制分别向第一和第二进气口喷射燃料的第一和第二燃料喷射阀,以从第一燃料喷射阀喷射燃料,并且 当进气节流阀的开度大于约预定值时,从第一燃料喷射阀和第二燃料喷射阀两者喷射燃料。
    • 3. 发明申请
    • Intake quantity sensing device of internal combustion engine
    • 内燃机进气量检测装置
    • US20080091333A1
    • 2008-04-17
    • US11907027
    • 2007-10-09
    • Hiroshi YamashitaHideki Suzuki
    • Hiroshi YamashitaHideki Suzuki
    • F02D41/00
    • F02D41/18F02D41/0002F02D41/008F02D2200/0402F02D2200/0406F02D2200/0408Y02T10/42
    • An intake pressure sensor is provided in an intake manifold of a first cylinder. During steady operation, intake quantities of respective cylinders are sensed with an airflow meter provided in an intake pipe of an engine, and the intake quantity of the first cylinder is compared with the intake quantities of the other cylinders to obtain intake pressure variation correction coefficients of the other cylinders. Also, average intake pressure of the first cylinder is corrected with the intake pressure variation correction coefficients to calculate average intake pressures of the other cylinders. During transient operation, estimation intake pressure is anticipated from a target opening degree of an intake throttle valve with the use of a physics model. Intake quantities of the respective cylinders are calculated with the use of the estimation intake pressure and the intake pressure variation correction coefficients.
    • 进气压力传感器设置在第一气缸的进气歧管中。 在稳定操作期间,用设在发动机的进气管中的气流计检测各气缸的进气量,并将第一气缸的进气量与其他气缸的进气量进行比较,以获得进气压力变化校正系数 其他气瓶。 此外,利用进气压力变化校正系数校正第一气缸的平均进气压力,以计算其他气缸的平均进气压力。 在瞬时动作中,使用物理模型,从进气节流阀的目标开度预测估计进气压。 使用估计进气压力和进气压力变化校正系数来计算各气缸的进气量。
    • 4. 发明授权
    • Intake quantity sensing device of internal combustion engine
    • 内燃机进气量检测装置
    • US07630821B2
    • 2009-12-08
    • US11907027
    • 2007-10-09
    • Hiroshi YamashitaHideki Suzuki
    • Hiroshi YamashitaHideki Suzuki
    • G06F19/00F02D11/10G01M19/00
    • F02D41/18F02D41/0002F02D41/008F02D2200/0402F02D2200/0406F02D2200/0408Y02T10/42
    • An intake pressure sensor is provided in an intake manifold of a first cylinder. During steady operation, intake quantities of respective cylinders are sensed with an airflow meter provided in an intake pipe of an engine, and the intake quantity of the first cylinder is compared with the intake quantities of the other cylinders to obtain intake pressure variation correction coefficients of the other cylinders. Also, average intake pressure of the first cylinder is corrected with the intake pressure variation correction coefficients to calculate average intake pressures of the other cylinders. During transient operation, estimation intake pressure is anticipated from a target opening degree of an intake throttle valve with the use of a physics model. Intake quantities of the respective cylinders are calculated with the use of the estimation intake pressure and the intake pressure variation correction coefficients.
    • 进气压力传感器设置在第一气缸的进气歧管中。 在稳定操作期间,用设在发动机的进气管中的气流计检测各气缸的进气量,并将第一气缸的进气量与其他气缸的进气量进行比较,以获得进气压力变化校正系数 其他气瓶。 此外,利用进气压力变化校正系数校正第一气缸的平均进气压力,以计算其他气缸的平均进气压力。 在瞬时动作中,使用物理模型,从进气节流阀的目标开度预测估计进气压。 使用估计进气压力和进气压力变化校正系数来计算各气缸的进气量。
    • 5. 发明申请
    • POLYMER-ACTIVE AGENT CONJUGATES
    • 聚合物活性剂共混物
    • US20130344023A1
    • 2013-12-26
    • US13981235
    • 2012-01-11
    • Michel WathierHideki Suzuki
    • Michel WathierHideki Suzuki
    • A61K47/48
    • A61K47/48176A61K47/58
    • A polymer includes at least one monomeric unit represented by Formula I, II, or III: where X is CH2 or O; R1 is H, COOR2, COCH3, CONHR2, OR2 or SR2; L is a bond or a linker group; AA is a group derived from an active agent; each R2 is independently H, a cation, an alkyl, an alkenyl, an alkynyl, COCH3, CH2CH2OH, CH2CH2OR3, an amino acid, a small peptide, a large peptide, enzyme, protein, growth factor, cytokine, antibody, single chain antibody, antibody fragment, COCCH3═CH2, COCH═CH2, CH2CO2H, CH2CH2CO2H, CH2CH2SH, CH2CH2SR3 or (CH2CH2O)n′R4; n′ is an integer from 1 to 2000; each R3 is independently trityl, 4-methyltrityl or 2 pyridyl; each R4 is independently H, an alkyl, an alkenyl, an alkynyl, COCCH3═CH2, COCH═CH2, CH2CHO, CH2CH2CHO, CO2H, CO2R5, CH2CO2H, CH2CH2CO2H, CH2NH2, CH2NHR5, CH2N(R5)2, CH2CH2NH2, CH2CH2NHR, CH2CH2N(R5)2, SH, CH2CO2R5, or CH2CH2CO2R5; and each R5 is independently maleimide, a cation, an amino acid, a small peptide, a large peptide, protein, enzyme, growth factor, cytokine, antibody, single chain antibody, phosphate, sulfate, choline, or an activated ester.
    • 聚合物包括由式I,II或III表示的至少一个单体单元:其中X是CH 2或O; R1是H,COOR2,COCH3,CONHR2,OR2或SR2; L是键或连接基; AA是一种衍生自活性剂的基团; 每个R 2独立地是H,阳离子,烷基,烯基,炔基,COCH 3,CH 2 CH 2 OH,CH 2 CH 2OR 3,氨基酸,小肽,大肽,酶,蛋白质,生长因子,细胞因子,抗体,单链抗体 ,抗体片段,COCCH3 = CH2,COCH = CH2,CH2CO2H,CH2CH2CO2H,CH2CH2SH,CH2CH2SR3或(CH2CH2O)n'R4; n'是从1到2000的整数; 每个R 3独立地是三苯甲基,4-甲基三苯甲基或2-吡啶基; 每个R 4独立地是H,烷基,烯基,炔基,COCCH 3 = CH 2,COCH = CH 2,CH 2 CHO,CH 2 CH 2 CHO,CO 2 H,CO 2 R 5,CH 2 CO 2 H,CH 2 CH 2 CO 2 H,CH 2 NH 2,CH 2 NHR 5,CH 2 N(R 5)2,CH 2 CH 2 NH 2,CH 2 CH 2 NHR,CH 2 CH 2 N (R5)2,SH,CH2CO2R5或CH2CH2CO2R5; 每个R 5独立地为马来酰亚胺,阳离子,氨基酸,小肽,大肽,蛋白质,酶,生长因子,细胞因子,抗体,单链抗体,磷酸盐,硫酸盐,胆碱或活化酯。
    • 10. 发明申请
    • Radiation image storage panel
    • 辐射图像存储面板
    • US20050199826A1
    • 2005-09-15
    • US11078387
    • 2005-03-14
    • Hiroki SaitoHideki Suzuki
    • Hiroki SaitoHideki Suzuki
    • G03B42/08
    • G01T1/2012
    • A radiation image storage panel has a phosphor layer composed of energy-storing phosphor particles and a polymer binder and satisfies the following conditions; T1×d≧660; T2×d≧660; D≧3.4 [T1 is a transmittance (%) of the phosphor layer at a peak wavelength of a stimulation spectrum of the phosphor particles; T2 is a transmittance (%) of the phosphor layer at a peak wavelength of a stimulated emission spectrum of the phosphor particles; d corresponds to a value of 10,000×W/p (W is a weight of the phosphor particles in a unit area of the phosphor layer expressed by mg/cm2 and ρ is a density of the energy-storing phosphor expressed by g/cm3]; and D is a density of the energy-storing phosphor particles contained in the phosphor layer expressed by g/cm3].
    • 放射线图像存储面板具有由储能荧光体粒子和聚合物粘合剂构成的荧光体层,满足以下条件: <?in-line-formula description =“In-line Formulas”end =“lead”?> T xd> = 660; <?in-line-formula description = “end =”tail“?> <?in-line-formula description =”In-line Formulas“end =”lead“?> T xd> = 660; <?in-line- 公式描述=“内联公式”end =“tail”?> <?in-line-formula description =“In-line formula”end =“lead”?> D> = 3.4 <?in-line-formula description =“在线公式”end =“tail”?> [T 1]是荧光体颗粒的刺激光谱的峰值波长处的荧光体层的透射率(%); T 2是在荧光体颗粒的受激发射光谱的峰值波长处的荧光体层的透射率(%); d对应于10000xW / p的值(W是以mg / cm 2表示的荧光体层的单位面积中的荧光体颗粒的重量,rho是能量存储的密度 磷光体,以g / cm 3表示; D是以g / cm 3表示的荧光体层中所含的储能荧光体颗粒的密度。