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    • 26. 发明授权
    • Rebound-effector
    • 回弹效应器
    • US09018864B2
    • 2015-04-28
    • US13130298
    • 2009-11-19
    • Hadar Magali
    • Hadar Magali
    • H02K41/02H02K33/16G01V1/155B06B1/12
    • G01V1/155B06B1/12
    • A Rebound-Effector is a mechanism which runs a weight forth and back, by high acceleration. As the weight accelerates, a rebound force is built up. This force is proportional to the product of the weight and the acceleration, and is in opposite direction to the acceleration vector. The Rebound-Effector has four operational phases. The energy inserts into the system, during the first phase, accelerates the weight to the same direction as the movement, being converted into kinetic energy. This kinetic energy is taken back during the second phase, while slowing down the weight, and stored. During the third phase, the stored energy accelerates the weight to the same moving direction, being converted into kinetic energy. This kinetic energy is taken back during the fourth phase, while slowing down the weight, and stored. Neglecting the friction and the non-ideal behavior of the energy conversion, the Rebound-Effector needs an external energy source just for compensating for the real, effective, physical work it performs.
    • 反弹效应器是一种通过高加速度运转重量的机构。 随着重量的加快,反弹力量也在增加。 该力与重量和加速度的乘积成比例,并且与加速度矢量相反。 反弹效应器有四个操作阶段。 在第一阶段期间,能量插入系统中,将重量加速到与运动相同的方向,转化为动能。 该动能在第二阶段被收回,同时减轻重量并储存。 在第三阶段,存储的能量将重量加速到相同的移动方向,转化成动能。 这个动能在第四阶段被收回,同时减轻了重量并储存起来。 忽略能量转换的摩擦和非理想行为,反弹效应器只需要一个外部能量来补偿实际的有效的物理作用。
    • 28. 发明申请
    • Rebound-Effector
    • 反弹效应器
    • US20110304284A1
    • 2011-12-15
    • US13130298
    • 2009-11-19
    • Hadar Magali
    • Hadar Magali
    • H02K33/00
    • G01V1/155B06B1/12
    • A Rebound-Effector is a mechanism which runs a weight forth and back, by high acceleration. As the weight accelerates a rebound force is built up. This force is proportional to the product of the weight and the acceleration, and is in opposite direction to the acceleration vector. The Rebound-Effector has four operational phases. The energy inserts into the system, during the first phase, accelerates the weight to the same direction as the movement, being converted into kinetic energy. This kinetic energy is taken back during the second phase, while slowing down the weight, and stored. During the third phase, the stored energy accelerates the weight to the same moving direction, being converted into kinetic energy. This kinetic energy is taken back during the fourth phase, while slowing down the weight, and stored. Neglecting the friction and the non-ideal behavior of the energy conversion, the Rebound-Effector needs an external energy source just for compensating for the real, effective, physical work it performs.
    • 反弹效应器是一种通过高加速度运转重量的机构。 随着重量的加快,反弹力量也在增加。 该力与重量和加速度的乘积成比例,并且与加速度矢量相反。 反弹效应器有四个操作阶段。 在第一阶段期间,能量插入系统中,将重量加速到与运动相同的方向,转化为动能。 该动能在第二阶段被收回,同时减轻重量并储存。 在第三阶段,存储的能量将重量加速到相同的移动方向,转化成动能。 这个动能在第四阶段被收回,同时减轻了重量并储存起来。 忽略能量转换的摩擦和非理想行为,反弹效应器只需要一个外部能量来补偿实际的有效的物理作用。
    • 29. 发明授权
    • Oscillation generator for seismic applications
    • 用于地震应用的振荡发生器
    • US07477573B2
    • 2009-01-13
    • US11894922
    • 2007-08-22
    • Walter RodeStefan Cramm
    • Walter RodeStefan Cramm
    • G01V1/155
    • G01V1/053G01V1/155
    • An oscillation generator for seismic applications includes a housing in which two coils are housed, both coils being acted upon with alternating current or electrical impulse and permanent magnets, and which is coupled via a coupling element to the object to be examined. The coils of the oscillation generator are each borne on a center leg of a packet of sheets cut in an E-shape, the free legs of the sheets associated with respective ones of the coils pointing away from one another. The coils are coupled to a block that can be linearly displaced in the housing. Securely attached to the side walls of the housing on a non-magnetic plate are permanent magnets that are disposed in the extension of the free end of the legs of the sheets, and the polarity of the exterior permanent magnets is reversed relative to the center permanent magnet.
    • 用于地震应用的振荡发生器包括容纳两个线圈的壳体,两个线圈用交流电脉冲或电脉冲和永磁体作用,并且经由耦合元件耦合到被检测物体。 振动发生器的线圈各自承载在E形切割的一组片材的中心腿上,片材的自由腿与相应的线圈相互指向远离彼此。 线圈耦合到可在壳体中线性移位的块。 安装在非磁性板上的壳体侧壁上的是永磁体,其设置在片的腿的自由端的延伸部分中,并且外部永磁体的极性相对于中心永久体反转 磁铁。