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    • 1. 发明专利
    • Actuator using expansion mechanism
    • 执行机构使用扩展机制
    • JP2014180123A
    • 2014-09-25
    • JP2013052080
    • 2013-03-14
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • KUGO TOMOYUKI
    • H02N2/00
    • H02N2/105
    • PROBLEM TO BE SOLVED: To provide an actuator in which the space occupied by elements can be reduced for the rotation mechanism, without down-sizing a telescopic member serving as a drive source, and the diameter of the rotation mechanism can be increased easily when compared with a conventional piezoelectric motor of the same size.SOLUTION: Output torque of a rotation mechanism can be increased by using a structure for expanding the displacement of a telescopic member by means of a coupling lever type displacement expansion mechanism formed of an annular arrangement, and translating a frame member coupled with the end of the displacement expansion mechanism annularly.
    • 要解决的问题:提供一种致动器,其中可以减少用于旋转机构的元件所占据的空间,而不会缩小用作驱动源的伸缩构件,并且当比较时可以容易地增加旋转机构的直径 具有相同尺寸的常规压电马达。解决方案:通过使用用于通过由环形布置形成的联接杆式位移膨胀机构来扩展伸缩构件的位移的结构,可以增加旋转机构的输出扭矩,以及 平移与位移膨胀机构的端部结合的框架构件。
    • 2. 发明专利
    • Vibration actuator
    • 振动执行器
    • JP2014158372A
    • 2014-08-28
    • JP2013028297
    • 2013-02-15
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • SATO TOKUKAZUKUGO TOMOYUKIASADA TAKAFUMI
    • H02N2/00B06B1/06
    • PROBLEM TO BE SOLVED: To provide a vibration actuator capable of obtaining a sufficient driving force.SOLUTION: In a vibration actuator, a movable shaft is moved by vibrations. The vibration actuator includes: the movable shaft 10; multiple oscillatory members 20 which are disposed around the movable shaft 10 so as to be separated in a circumferential direction; piezoelectric elements 31 respectively fixed to outer surfaces of the oscillatory members 20; and biasing members 42 which bias the oscillatory members 20 in a radial inner direction and press the oscillatory members 20 against an outer peripheral surface of the movable shaft 10. The movable shaft 10 is moved by the vibrations of the oscillatory members 20 which are caused when the piezoelectric elements 31 are energized.
    • 要解决的问题:提供能够获得足够的驱动力的振动致动器。解决方案:在振动致动器中,可动轴由于振动而移动。 振动致动器包括:可动轴10; 多个振动构件20,其围绕可动轴10设置成在圆周方向上分离; 分别固定在振荡部件20的外表面上的压电元件31; 以及偏置构件42,偏置构件42在径向内部方向上偏置振动构件20,并将振荡构件20压靠在可动轴10的外周面上。可动轴10由振荡构件20的振动而移动, 压电元件31通电。
    • 3. 发明专利
    • Rare earth magnet magnetization method, and rare earth magnet
    • 稀土磁铁磁化方法和稀土磁铁
    • JP2014099600A
    • 2014-05-29
    • JP2013215325
    • 2013-10-16
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • SUZUKI SHINGONAKAMURA KAZUYASATO AKIRAIMAIZUMI NOBUOOKI KOJINAKAMURA GENICHI
    • H01F13/00H01F1/057H01F1/08H01F7/02H02K15/03
    • PROBLEM TO BE SOLVED: To provide a rare earth magnet magnetization method which is completed for a short time without deteriorating an anti-corrosion coating film, and to provide a rare earth magnet arranged to be higher in its usable upper limit temperature.SOLUTION: A rare earth magnet magnetization method comprises a process for performing a multipolar magnetization of p poles (p is an even number equal to or larger than 4) by: heating a rare earth magnet containing at least one light rare earth element RL to a magnetization temperature T°C derived from the formula below in a range of 80-200°C, thereby reducing a coercive force of the rare earth magnet according to a temperature coefficient β of the coercive force; applying, in a pulse form, a magnetization magnetic field Hhaving a magnetic field of at least double the coercive force Hat the temperature T°C to the rare earth magnet at least once; and then cooling the rare earth magnet from the temperature T°C to a room temperature.
    • 要解决的问题:提供在短时间内完成而不会使防腐蚀涂膜变坏的稀土磁体磁化方法,并且提供一种布置成具有较高可用上限温度的稀土磁体。解决方案:A 稀土磁体磁化方法包括通过以下步骤:通过将含有至少一种轻稀土元素RL的稀土磁体加热至磁化温度T来进行p极的多极化磁化(p为偶数等于或大于4) ℃,在80-200℃的范围内由下式得出,从而根据温度系数& bgr降低稀土磁体的矫顽力; 的强制力量; 以脉冲形式施加磁化磁场至少将矫顽力H d的温度T°C的至少一倍的磁场施加至稀土磁体至少一次; 然后将稀土磁体从温度T℃冷却至室温。
    • 4. 发明专利
    • Rotational force transmission device
    • 旋转力传动装置
    • JP2014084959A
    • 2014-05-12
    • JP2012235022
    • 2012-10-24
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • KOBAYASHI YASUYUKIODAGIRI KINYA
    • F16H1/06F16D63/00
    • PROBLEM TO BE SOLVED: To provide a rotational force transmission device capable of preventing backlash in the circumferential direction, of an output shaft due to backlash in the circumferential direction, of an input-side mechanism, and downsizing a structure of the rotational force transmission device.SOLUTION: A clutch mechanism 1 and a gear mechanism 2 composed of several stages are axially connected in a holding unit 80, and rotational force input to a gear 71 of the first stage of the gear mechanism 2 is output from an output shaft 24 of the clutch mechanism 1. The clutch mechanism 1 includes an output rotor accommodated in an accommodation chamber, an input rotor disposed coaxially with the output rotor, an engagement element disposed between an inner peripheral face of the accommodation chamber and an outer peripheral face of the output rotor, and a biasing member for biasing the engagement element to one side in the circumferential direction.
    • 要解决的问题:提供一种旋转力传递装置,其能够防止由于输入侧机构的周向上的间隙而导致的输出轴的周向上的间隙,并且减小了旋转力传递装置的结构 。解决方案:离合器机构1和由几级构成的齿轮机构2在保持单元80中轴向连接,并且输入到齿轮机构2的第一级的齿轮71的旋转力从输出轴24输出 离合器机构1.离合器机构1包括容纳在容纳室中的输出转子,与输出转子同轴设置的输入转子,设置在容纳室的内周面和输出端的外周面之间的接合元件 转子,以及用于将接合元件沿圆周方向偏压到一侧的偏置构件。
    • 6. 发明专利
    • Linear actuator
    • 线性执行器
    • JP2013192354A
    • 2013-09-26
    • JP2012056503
    • 2012-03-13
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • SATO TOKUKAZU
    • H02K41/03H02K33/16
    • PROBLEM TO BE SOLVED: To obtain a relatively great thrust in slender structure.SOLUTION: A linear actuator comprises a permanent magnet section 20 supported to linearly move by a predetermined amount, a guide tube part 40 comprised of a non-magnetic substance and covering the permanent magnet section 20 for a full length of a moving range in a tubular shape, a first electromagnet section 50 attracting and repulsing the permanent magnet section 20 from one end side in an axial direction, a second electromagnet section 60 attracting and repulsing the permanent magnet section 20 from another end side in the axial direction, and an output section 30 interlocked with the movement of the permanent magnet section 20.
    • 要解决的问题:在细长结构中获得相对较大的推力。解决方案:线性致动器包括被支撑以直线移动预定量的永磁体部分20,由非磁性物质构成的引导管部分40, 永久磁铁部分20,用于管状移动范围的整个长度;第一电磁体部分50,从轴向一端侧吸引并排斥永久磁铁部分20;第二电磁体部分60,吸附和排斥永磁体 从轴向另一端侧的部分20和与永磁体部分20的运动互锁的输出部分30。
    • 9. 发明专利
    • Inner roller type brushless motor, and manufacturing method of inner rotor type brushless motor
    • 内滚子式无刷电机及内转子式无刷电机的制造方法
    • JP2012065486A
    • 2012-03-29
    • JP2010208925
    • 2010-09-17
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • SUZUKI SHINGOSATO AKIRA
    • H02K1/16H02K1/18H02K21/16
    • PROBLEM TO BE SOLVED: To reduce a cogging torque with a simple operation for winding a coil, reduce a size and a weight of a motor, and also improve a motor efficiency.SOLUTION: An inner rotor type brushless motor comprises a rotor 10 having a permanent magnet 12, a stator core 21 having a plurality of tooth parts 21a around the rotor 10 at intervals in a peripheral direction, and a coil 22 wound around each of the tooth parts 21a. A connection part 21b connecting both of the tooth parts 21a, 21a is provided on a stator inner peripheral side between the adjacent tooth parts 21a, 21a, and a slot opening 20a communicating a slot space S between the both of the tooth parts 21a, 21a with a space on an outer periphery of the stator are provided on the stator outer peripheral side between both of the tooth parts 21a, 21a. A spacer 23, which is made of a magnetic substance and is an independent member for each of the slot opening 20a, is mounted in the slot opening 20a.
    • 要解决的问题:为了通过卷绕线圈的简单操作来减小齿槽转矩,减小电动机的尺寸和重量,并且还提高电动机效率。 解决方案:内转子型无刷电动机包括具有永磁体12的转子10,具有绕圆周方向间隔设置在转子10周围的多个齿部21a的定子铁芯21和围绕各自的线圈22 的齿部21a。 连接两个齿部21a,21a的连接部21b设置在相邻的齿部21a,21a之间的定子内周侧上,并且在两个齿部21a,21a之间连通有槽空间S的槽口20a 在两个齿部21a,21a之间的定子外周侧设置有定子外周的空间。 隔离件23由磁性物质制成并且是用于每个槽口20a的独立构件,安装在槽口20a中。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Brush for motor
    • 电动马达
    • JP2011041449A
    • 2011-02-24
    • JP2009292479
    • 2009-12-24
    • Namiki Precision Jewel Co Ltd並木精密宝石株式会社
    • KOMAI YUJIAOYANAGI TOMOHIDE
    • H02K13/00H01R39/22H01R39/39
    • PROBLEM TO BE SOLVED: To provide a contact structure which can be easily mounted on a small motor and can reduce wear powder, and to improve the service life of a contact of a brush motor in a wide range from high-speed operation to low-speed operation. SOLUTION: A structure for holding a lubricant is provided on the rear surface of a contact of a contact brush, so that the lubricant can be continuously supplied between a contact brush and an commutator to prevent the generation of wear powders. Accordingly, the driving service life of the small-diameter brush motor is improved, thereby achieving the eco-friendly structure. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供一种可以容易地安装在小型电动机上并且可以减少磨损粉末的接触结构,并且在高速操作的广泛范围内提高电刷电动机的接触的使用寿命 到低速运行。 解决方案:用于保持润滑剂的结构设置在接触刷的触点的后表面上,使得可以在接触刷和换向器之间连续地供应润滑剂,以防止产生磨损粉末。 因此,提高了小直径刷马达的驾驶使用寿命,从而实现了环保的结构。 版权所有(C)2011,JPO&INPIT