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    • 1. 发明专利
    • Steering machine for track-type vehicle and driving method thereof
    • 用于履带式车辆的转向机及其驱动方法
    • JP2014172473A
    • 2014-09-22
    • JP2013045495
    • 2013-03-07
    • Technical Research & Development Institute Ministry Of Defence防衛省技術研究本部長
    • SHIMURA AKIHIKO
    • B62D11/16B60K23/04B62D11/04
    • PROBLEM TO BE SOLVED: To provide a steering machine for a motor-driven track-type vehicle and a driving method thereof, for realizing common use of a using motor, the output distribution of the motor suitable for required power and functional maintenance in failure, in the steering machine for the track-type vehicle having a main driving shaft and a balance shaft, and capable of regenerating the power.SOLUTION: The steering machine comprises three or more of the same motors 6a, 6b and 6c, and the respective ones can selectively drive the main driving shaft 1 or the balance shaft 2, and thereby, can not only supply the power substantially suitable for the main driving shaft 1 and the balance shaft 2, but also secure and maintain the function of an advance-retreat and on-the-spot turning by selectively executing the connection by intermittent mechanisms 7a1,7b1 and 7c1 for traveling and intermittent mechanisms 7a2, 7b2 and 7c2 for turning, when at least one motor is sound, even when a plurality cause the failure among the motors 6a, 6b and 6c.
    • 要解决的问题:为了提供一种用于电动轨道车辆的转向机及其驱动方法,为了实现使用电动机的共同使用,适用于所需电力的电动机的输出分配和故障中的功能维护, 在具有主驱动轴和平衡轴的轨道式车辆的转向机中,能够再生动力。解决方案:转向机包括三个或更多个相同的电动机6a,6b和6c,以及相应的 可以选择性地驱动主驱动轴1或平衡轴2,从而不仅可以提供基本上适用于主驱动轴1和平衡轴2的动力,而且可以确保和保持前进后退的功能, 通过间歇机构7a1,7b1和7c1选择性地进行连接的现场转动,以及当至少一个电动机发出声音时,用于转动的间歇机构7a2,7b2和7c2,即使在P1 电动机6a,6b,6c的故障。
    • 3. 发明专利
    • Human body protective equipment
    • 人体保护装置
    • JP2014079440A
    • 2014-05-08
    • JP2012230052
    • 2012-10-17
    • Technical Research & Development Institute Ministry Of Defence防衛省技術研究本部長
    • YAMADA MASAYOSHI
    • A62B99/00
    • PROBLEM TO BE SOLVED: To provide a human body protection device which protects a specific site of a human body from a flame, shock wave or blast (and debris scattering with the blast) or the like which are generated in an explosion of gunpowder or the like in a powder house or a plant or the like.SOLUTION: The human body protection device includes: an air bag 3 which is worn on a human body and deployed so as to surround a specific site of the human body; deployment means 4 which causes the air bag 3 to expand and deploy in a moment; detection means 5 for detecting a flame which has occurred around the human body H and outputting a detection signal on the basis of the detection; and control means 7 for outputting a deployment direction signal to the deployment means 4 when the detection signal is input from the detection means 5. In another embodiment, the device further includes another detection means 6 for detecting a shockwave or blast which has occurred around the human body H and outputting a detection signal on the basis of the detection. In further another embodiment, reinforcing fibers such as carbon fiber are used as a material of the air bag 3. The air bag 3 is formed in such a way that its deployment shape is a substantially conical shape, and its side peripheral surface in its deployment shape has one piece form.
    • 要解决的问题:提供一种人体保护装置,其保护人体的特定部位免受在火药爆炸或火药爆炸中产生的火焰,冲击波或爆炸(和爆炸的碎片散射)等的影响。 如粉末房或植物等。解决方案:人体保护装置包括:佩戴在人体上并展开以包围人体特定部位的气囊3; 展开装置4,使空气袋3瞬间膨胀和展开; 用于检测在人体H周围发生的火焰并基于该检测输出检测信号的检测装置5; 以及控制装置7,用于当从检测装置5输入检测信号时向展开装置4输出展开方向信号。在另一实施例中,装置还包括用于检测周围发生的冲击波或爆炸的另一检测装置6 人体H并基于检测输出检测信号。 在另一个实施例中,使用诸如碳纤维的增强纤维作为气囊3的材料。气囊3以这样的方式形成,使得其展开形状基本上为圆锥形,并且其侧面在其展开 形状有一片形状。
    • 4. 发明专利
    • Thermoelectric conversion device
    • 热电转换装置
    • JP2013120899A
    • 2013-06-17
    • JP2011269186
    • 2011-12-08
    • Technical Research & Development Institute Ministry Of Defence防衛省技術研究本部長
    • WADA HIDEO
    • H01L23/38H01L23/34H01L23/473H01L35/30
    • H01L2924/0002H01L2924/00
    • PROBLEM TO BE SOLVED: To convert waste heat from a transmission/reception module in a phased array antenna or the like into electric power with a thermoelectric power generation module for effective use.SOLUTION: The thermoelectric conversion device includes: a transmission/reception module 3, a cooling panel 11 for cooling the module, and a thermoelectric power generation module 21 including a thermoelectric power generation element 22 for converting heat into electric power. The thermoelectric power generation module 21 is sandwiched between the transmission/reception module 3 and the cooling panel 11 so that the thermoelectric power generation module 21 has a temperature difference. The electric power generated by the thermoelectric power generation module 21 is supplied to the transmission/reception module 3, thereby to improve power efficiency.
    • 要解决的问题:为了将有用的热电发电模块将来自相控阵天线等的发送/接收模块的废热转换成电力。 解决方案:热电转换装置包括:发送/接收模块3,用于冷却模块的冷却板11和包括用于将热量转换成电力的热电发电元件22的热电发电模块21。 热电发电模块21夹在发送/接收模块3和冷却板11之间,使得热电发电模块21具有温差。 由热电发电模块21产生的电力被提供给发送/接收模块3,从而提高功率效率。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Radio wave absorber and design method therefor
    • 无线电波吸收器及其设计方法
    • JP2012124236A
    • 2012-06-28
    • JP2010272111
    • 2010-12-07
    • Technical Research & Development Institute Ministry Of Defence防衛省技術研究本部長
    • MURAZAKI TSUTOMU
    • H05K9/00H01Q17/00
    • PROBLEM TO BE SOLVED: To obtain a radio wave absorber in which radio wave absorption performance is enhanced by locally randomizing the input impedance on a plane, when a radio wave reflection layer is viewed from one or a plurality of interfaces.SOLUTION: In a radio wave absorber having a conventional layer structure, the radio wave absorber is obtained by employing only the uniform thickness and uniform electric constants as parameters for each layer. In the inventive radio wave absorber, electric constants and thickness of each layer configuring the radio wave absorber or inclination of the interface are changed locally according to a continuous or discrete probability distribution. The radio wave absorber having enhanced radio wave absorption characteristics can be obtained by randomizing the input impedance locally.
    • 解决的问题:为了获得当从一个或多个界面观看无线电波反射层时,通过在平面上局部随机化输入阻抗来提高电波吸收性能的电波吸收体。 解决方案:在具有传统层结构的无线电波吸收器中,通过仅使用均匀的厚度和均匀的电常数作为每层的参数来获得无线电波吸收体。 在本发明的无线电波吸收器中,根据连续或离散的概率分布局部地改变构成无线电波吸收体的各层的电常数和厚度或界面的倾斜度。 具有增强的无线电波吸收特性的无线电波吸收器可以通过局部随机化输入阻抗来获得。 版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Method for calculating hull periphery uep
    • 计算外科手术UEP的方法
    • JP2012040958A
    • 2012-03-01
    • JP2010184214
    • 2010-08-19
    • Technical Research & Development Institute Ministry Of Defence防衛省技術研究本部長
    • NAKAMURA TAKASHIKIMURA TOSHIJIAKAGI NAOFUMI
    • B63B59/04G01N27/06
    • PROBLEM TO BE SOLVED: To provide a method for calculating hull periphery UEP which can accurately estimate and calculate UEP at an optional position simply and in a short time regardless of skill or experience of an engineer.SOLUTION: This method includes: ST3 for setting positions of a plurality of electrodes in a hull; ST4 for setting electrode combination for selecting optional two out of a plurality of set electrodes by tt pieces alone; ST5 for setting a degree of order nn of a virtual electrode in an electric image method; ST6 for creating the virtual electrode for all the electrode combinations; ST8 for calculating a position function in an UEP calculation equation due to the electric image method; ST9 for creating a determinant of a least square method; ST10 for calculating a current value Ibetween the electrodes by solving it; ST11 for setting an estimation face or an estimation line; ST12 for calculating a position function in the UEP calculation equation of a set point j by the electric image method; and ST13 for calculating UEP at the set point j.
    • 要解决的问题:提供一种用于计算船体周边UEP的方法,其可以简单且在短时间内精确地估计和计算UEP,无论工程师的技能或经验如何。 解决方案:该方法包括:用于设置船体中多个电极的位置的ST3; ST4,用于设置电极组合,用于仅通过tt片选择多个设置电极中的可选的两个; ST5,用于在电图像方法中设置虚拟电极的阶数nn; ST6,用于创建所有电极组合的虚拟电极; ST8,用于通过电图像法计算UEP计算方程中的位置函数; ST9用于创建最小二乘法的行列式; ST10,用于计算电极之间的电流值I t ; ST11,用于设置估计面或估计线; ST12,用于通过电图像法计算设定点j的UEP计算方程中的位置函数; 和用于在设定点j计算UEP的ST13。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Method for deriving demagnetization coil combination of hull
    • 用于衍生螺旋线圈组合的方法
    • JP2011111085A
    • 2011-06-09
    • JP2009270874
    • 2009-11-28
    • Technical Research & Development Institute Ministry Of Defence防衛省技術研究本部長
    • NAKAMURA TAKASHIKIMURA TOSHIJIAKAGI NAOFUMI
    • B63G9/06
    • PROBLEM TO BE SOLVED: To provide a method for deriving the demagnetization coil combination of a hull simulating the demagnetized state at an arbitrary adjusting surface or line when conducting each demagnetization coil to be selected among the demagnetization coils as candidates provided in the hull from the ship design stage without manufacturing any hull magnetic model, and deriving the combination of the demagnetization coils in which the hull external magnetic field at the adjusting surface or line is minimized. SOLUTION: A numerical calculation model of a hull is prepared (ST1). A numerical calculation model of n-sets of candidate demagnetization coils C 1 -C n is prepared (ST2). An adjusting surface or line forming an object for demagnetization is set (ST3). The optimum demagnetization current in which the hull external magnetic field vector H F/D in a demagnetized state is minimized is identified by the optimum parameter search method for each of the combination (ST8) of m-sets of demagnetization coils among the n-sets of candidate demagnetization coils C 1 -C n (ST11). COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于当将在退磁线圈中选择的每个去磁线圈当作设置在船体中的候选物时,提供模拟在任意调节表面或线路处的退磁状态的船体的退磁线圈组合的方法 从船舶设计阶段,不制造任何船体磁性模型,并导出其中调整表面或线路上的船体外部磁场最小化的去磁线圈的组合。 解决方案:准备船体的数值计算模型(ST1)。 准备n组候选去磁线圈C -C n 的数值计算模型(ST2)。 设置形成去磁对象的调整面或线(ST3)。 在去磁状态下的船体外部磁场矢量H F / D 最小化的最佳消磁电流通过用于m组的组合(ST8)中的每一个的最佳参数搜索方法来识别 n组候选去磁线圈C -C n 中的去磁线圈(ST11)。 版权所有(C)2011,JPO&INPIT