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    • 1. 发明授权
    • Magnetizing method for producing coupled body comprised of multi-pole bulk superconducting magnets with respective polarities varying
    • 用于制造具有各极性变化的多极体超导磁体的耦合体的磁化方法
    • US06313725B1
    • 2001-11-06
    • US09668617
    • 2000-09-22
    • Ken NagashimaMasato MurakamiTakeshi MiyamotoAtsuyuki KobayashiOsami Tsukamoto
    • Ken NagashimaMasato MurakamiTakeshi MiyamotoAtsuyuki KobayashiOsami Tsukamoto
    • H01F700
    • H01F6/006
    • The invention is to establish means of producing easily and at low cost “a coupled body of superconducting magnets”, comprised of multi-pole bulk superconducting magnets lined up such that the polarities thereof alternately vary so as to cause a magnetic field gradient to occur. The magnetizing method for producing a coupled body comprised of multi-pole bulk superconducting magnets with respective polarities varying comprises the steps of coupling adjacent members for bulk superconducting magnets of a plurality of members for bulk superconducting magnets with each other in such a way as to be freely superposable, foldable, and unfoldable, superposing all the members for the bulk superconducting magnets on top of one after another, and applying a magnetizing process thereto in as superposed state, and unfolding alternately and juxtaposing the respective bulk superconducting magnets as superposed after the magnetizing process as shown in FIG. 1(A) to FIG. 1(D).
    • 本发明是建立容易且低成本地制造“超导磁体的耦合体”的方法,其包括排列成多极本体超导磁体的极性,使得其极性交替变化,从而产生磁场梯度。 用于制造由具有各自极性变化的多极体超导磁体组成的耦合体的磁化方法包括以下步骤:将多个用于块状超导磁体的多个构件的体超导磁体的相邻构件彼此连接, 自由地叠置,可折叠和不可折叠的,将大体积超导磁体的所有构件重叠在一个接一个的顶部,并且作为叠加状态施加磁化处理,并且在磁化之后交替地并置叠置的大块超导磁体 过程如图1所示。 图1(A)〜 1(D)。
    • 3. 发明申请
    • EXHAUST PURIFICATION SYSTEM AND METHOD FOR CONTROLLING EXHAUST PURIFICATION SYSTEM
    • 排气净化系统及排气净化系统控制方法
    • US20130269321A1
    • 2013-10-17
    • US13997608
    • 2011-12-21
    • Masanori WatanabeTakeshi MiyamotoFumiyasu Kurogi
    • Masanori WatanabeTakeshi MiyamotoFumiyasu Kurogi
    • F01N3/20
    • F01N3/208B01D53/9495F01N3/023F01N2430/00F01N2610/105F01N2900/0402F01N2900/1811Y02T10/24
    • Provided is an exhaust purification system capable of clearing a blockage of a reducing agent injection valve caused by solidification of an aqueous urea solution soon after starting an engine and preventing degradation in exhaust purification efficiency when starting an internal combustion engine. An exhaust purification system with a DPF, a reducing agent injection valve, and an SCR catalyst in order from the exhaust upstream side includes: an operation state detecting unit capable of detecting starting and stopping of the internal combustion engine; a forced regeneration control unit which performs forced regeneration of the DPF; a condition establishment determining unit which determines whether there is a possibility of solidification of the aqueous urea solution when the operation state detecting unit detects that the internal combustion engine is stopped; a data storage unit which stores the determination result of the condition establishment determining unit as data; and a blockage-clearing control unit which controls a temperature raising unit for raising the temperature of the reducing agent injection valve so as to raise the temperature of the reducing agent injection valve based on the data when starting the internal combustion engine.
    • 提供一种排气净化系统,其能够在起动发动机后立即清除由于尿素水溶液的凝固而引起的还原剂注入阀的阻塞,并且防止在起动内燃机时排气净化效率的劣化。 从排气上游侧开始,具有DPF,还原剂喷射阀和SCR催化剂的排气净化系统包括:能够检测内燃机的起动和停止的运转状态检测单元; 执行DPF的强制再生的强制再生控制单元; 条件建立确定单元,当所述操作状态检测单元检测到所述内燃机停止时,确定是否存在所述尿素水溶液凝固的可能性; 数据存储单元,其将条件建立确定单元的确定结果存储为数据; 以及阻塞清除控制单元,其控制升温单元,用于提高所述还原剂喷射阀的温度,以便在启动所述内燃机时基于所述数据来提高所述还原剂喷射阀的温度。
    • 4. 发明申请
    • STORAGE MEDIUM HAVING GAME PROGRAM STORED THEREON AND GAME APPARATUS
    • 具有存储游戏程序的存储介质和游戏设备
    • US20120010733A1
    • 2012-01-12
    • US13237430
    • 2011-09-20
    • Takeshi Miyamoto
    • Takeshi Miyamoto
    • G06F19/00
    • A63F13/422A63F13/10A63F13/211A63F13/42A63F13/428A63F13/812A63F2300/1006A63F2300/105A63F2300/6045A63F2300/638A63F2300/8011
    • A moving start coordinate set associated with an object is calculated based on motion data output from a motion sensor for outputting the motion data in accordance with a motion of an input device, and a first difference coordinate set, as a difference between the moving start coordinate set and a reference trajectory, is calculated. A target coordinate set associated with the object is calculated, and a second difference coordinate set, as a difference between the target coordinate set and a reference trajectory, is calculated. A change difference coordinate set changing from the first difference coordinate set to the second difference coordinate set in accordance with time is calculated. The change difference coordinate set is added to the reference trajectory to calculate a correction coordinate set. The object is located at a position corresponding to the correction coordinate set in the virtual game space and displayed on the display device.
    • 基于从用于输出运动数据的运动传感器输出的运动数据,根据输入装置的运动和第一差分坐标集作为移动开始坐标系的运动数据,计算与对象关联的移动开始坐标集, 计算和参考轨迹。 计算与对象相关联的目标坐标集,并且计算作为目标坐标集和参考轨迹之间的差的第二差分坐标集。 计算从第一差分坐标系变化到根据时间设定的第二差分坐标系的变化差分坐标集。 将变化差坐标集添加到参考轨迹中,以计算校正坐标集。 对象位于与虚拟游戏空间中设置的校正坐标相对应的位置,并显示在显示装置上。
    • 7. 发明申请
    • Storage medium having game program stored thereon and game apparatus
    • 存储有游戏程序的存储介质和游戏装置
    • US20080076566A1
    • 2008-03-27
    • US11606114
    • 2006-11-30
    • Takeshi Miyamoto
    • Takeshi Miyamoto
    • A63F13/00
    • A63F13/422A63F13/10A63F13/211A63F13/42A63F13/428A63F13/812A63F2300/1006A63F2300/105A63F2300/6045A63F2300/638A63F2300/8011
    • A moving start coordinate set associated with an object is calculated based on motion data output from a motion sensor for outputting the motion data in accordance with a motion of an input device, and a first difference coordinate set, as a difference between the moving start coordinate set and a reference trajectory, is calculated. A target coordinate set associated with the object is calculated, and a second difference coordinate set, as a difference between the target coordinate set and a reference trajectory, is calculated. A change difference coordinate set changing from the first difference coordinate set to the second difference coordinate set in accordance with time is calculated. The change difference coordinate set is added to the reference trajectory to calculate a correction coordinate set. The object is located at a position corresponding to the correction coordinate set in the virtual game space and displayed on the display device.
    • 基于从用于输出运动数据的运动传感器输出的运动数据,根据输入装置的运动和第一差分坐标集作为移动开始坐标系的运动数据,计算与对象关联的移动开始坐标集, 计算和参考轨迹。 计算与对象相关联的目标坐标集,并且计算作为目标坐标集和参考轨迹之间的差的第二差分坐标集。 计算从第一差分坐标系变化到根据时间设定的第二差分坐标系的变化差分坐标集。 将变化差坐标集添加到参考轨迹中,以计算校正坐标集。 对象位于与虚拟游戏空间中设置的校正坐标相对应的位置,并显示在显示装置上。
    • 10. 发明授权
    • Variable injection hole type fuel injection nozzle
    • 可变注射孔型燃油喷嘴
    • US5645225A
    • 1997-07-08
    • US557572
    • 1995-11-14
    • Toshiyuki HasegawaShinya NozakiTakeshi Miyamoto
    • Toshiyuki HasegawaShinya NozakiTakeshi Miyamoto
    • F02M61/10F02M61/18
    • F02M61/182F02M61/18F02M61/1826F02M2200/29
    • A plurality of injection holes are circumferentially arranged in the peripheral wall of the hole at predetermined intervals and at axially different circumferential levels in the leading end portion of the nozzle body to introduce pressurized fuel, and the injection holes at each circumferential level are set different in diameter. On the other hand, a rotary valve has a plurality of fuel guide holes each corresponding to the injection holes at the respective circumferential levels. The fuel guide holes of the rotary valve and the injection holes of the nozzle body are arranged in such a relationship that while the fuel guide holes at one or more than one circumferential level are each made to communicate with the fuel guide holes at one or more than one corresponding circumferential level, the fuel guide holes at the other circumferential levels are not allowed to communicate with any injection holes.
    • 在喷嘴体的前端部以规定的间隔和轴向不同的圆周方向在孔的周壁周向配置有多个喷射孔,以引入加压燃料,并且将各圆周高度处的喷射孔设定为不同 直径。 另一方面,旋转阀具有多个燃料导向孔,每个燃料导向孔各自对应于各个圆周水平的喷射孔。 旋转阀的燃料导向孔和喷嘴体的喷射孔以这样的关系布置,即,在一个或多于一个圆周水平处的燃料导向孔各自与一个或多个燃料导向孔连通 不同于一个对应的圆周高度,不允许在其它圆周水平的燃料导向孔与任何喷射孔连通。