会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Seat structure
    • 座椅结构
    • JP2004329481A
    • 2004-11-25
    • JP2003128030
    • 2003-05-06
    • Delta Tooling Co Ltd株式会社デルタツーリング
    • FUJITA YOSHINORISAKAMOTO YUTAKACHIGARA KAZUYOSHIKAWASAKI SEIJITAKADA YASUHIDEOGURA YUMIKANEKO SHIGEHIKO
    • A47C7/40B60N2/427B60N2/90B61D33/00B60N2/44
    • B61D33/0014B60N2/42709B60N2/70B60N2/7011
    • PROBLEM TO BE SOLVED: To provide a seat structure capable of improving vibration absorption and shock absorption. SOLUTION: In the seat structure, a rear frame member 33 positioned near the rear part of a seat cushion 30 is provided with: a swinging member 40 provided in a manner of being swingable at least forward and backward; a pelvis supporting member 50 arranged behind the pelvis part of a person taking the seat; and coil springs 60 and 61 as elastic members for supporting the pelvis supporting member 50 by biasing it in a direction of pushing out forward in a normal state. Consequently, vibration which is inputted from the side of a seat back and which is like hitting the back of a human body is absorbed by the elastically supported pelvis supporting member 50. In addition, since the pelvis supporting member 50 is connected with the rear frame member 33 via the swinging member 40, forward and backward turning of the pelvis supporting member 50 is performed with the connecting part of the swinging member 40 and the rear frame member 33 as a center and a rotation radius is large. Thus, the vicinity of the lower part of the pelvis supporting member 50 never presses the pelvis. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供能够改善振动吸收和减震的座椅结构。 解决方案:在座椅结构中,位于座垫30的后部附近的后框架构件33设置有摆动构件40,摆动构件40以至少可向前和向后摆动的方式设置; 骨盆支撑构件50布置在坐在座位的人的骨盆部分的后面; 以及螺旋弹簧60,61,作为弹性部件,用于通过在正常状态下向前推动的方向使其支撑骨盆支撑部件50。 因此,从座椅靠背侧输入并像人体背部那样的振动被弹性支撑的骨盆支撑构件50吸收。此外,由于骨盆支撑构件50与后框架 通过摆动构件40的构件33,以摆动构件40和后框架构件33的连接部为中心,旋转半径大,进行骨盆支撑构件50的前后转动。 因此,骨盆支撑构件50的下部附近从不压迫骨盆。 版权所有(C)2005,JPO&NCIPI
    • 3. 发明专利
    • Magnetic damper device
    • 磁阻器装置
    • JP2005344810A
    • 2005-12-15
    • JP2004164482
    • 2004-06-02
    • Delta Tooling Co Ltd株式会社デルタツーリング
    • FUJITA YOSHINORIKANEKO SHIGEHIKO
    • F16F15/03
    • PROBLEM TO BE SOLVED: To provide a magnetic composite damper having a high degree of freedom of design, by realizing the function of generating spring force and damping force in a noncontact state.
      SOLUTION: The magnetic composite damper 10 generates magnetic attraction force corresponding to relative displacement and the damping force based on an eddy current loss corresponding to a relative speed in a noncontact state by relatively displacing a magnet 30 and an iron ring 26. That is, the magnet 30 and the iron ring 26 constitute both a magnetic spring and a magnetic damper. This magnetic spring is combined with a coil spring 22, to generate a dead zone for reducing a spring constant more than the other displacement area in a desired with in a desired position by the setting of a neutral position between the magnet 30 and the iron ring 26 and the length of the magnet 30 and the iron ring 26.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过实现在非接触状态下产生弹簧力和阻尼力的功能,提供具有高设计自由度的磁性复合阻尼器。 解决方案:磁性复合阻尼器10通过相对移动磁体30和铁环26,产生与非接触状态相对应的相对于相对速度的涡流损耗相对应的相对位移和阻尼力的磁吸引力。 磁铁30和铁环26构成磁弹簧和磁阻尼器。 该磁性弹簧与螺旋弹簧22组合,以产生一个死区,通过在磁铁30和铁环之间的中立位置的设定,在期望的位置中减少弹簧常数大于其它位移面积 26和磁铁30和铁环26的长度。版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Shock absorber
    • 减震器
    • JP2003314608A
    • 2003-11-06
    • JP2002113956
    • 2002-04-16
    • Delta Tooling Co Ltd株式会社デルタツーリング
    • FUJITA YOSHINORIYODA HIROKIKANEKO SHIGEHIKO
    • F16F9/46F16F9/53
    • F16F9/535
    • PROBLEM TO BE SOLVED: To provide a shock absorber using a magnetic fluid capable of changing its damping force.
      SOLUTION: The shock absorber using the magnetic fluid as a working oil is furnished with one or more grooves 34a in appropriate places on a pair of passage forming members to form a fluid passage 22b to serve as a leak magnetic field generation part to apply a strong leak magnetic field to the fluid passage 22b. Accordingly the behavior of magnetic particles in the magnetic fluid can be changed in accordance with the relative positioning of a casing 20 with a movable part 30 only by using a permanent magnet, with no electromagnet used, and the damping force can be made variable. If the magnetic fluid used has similar specific gravity in its base liquid and magnetic particles, the deposition of the particles is suppressed, and change of the behavior of the particles is conducted quickly, and an excellent responsiveness is assured when the damping force is varying.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种使用能够改变其阻尼力的磁性流体的减震器。 解决方案:使用磁性流体作为工作油的减震器在一对通道形成构件上的适当位置设置有一个或多个槽34a,以形成流体通道22b以用作泄漏磁场产生部分 对流体通道22b施加强的泄漏磁场。 因此,仅通过使用不使用电磁铁的永久磁铁,可以根据壳体20与可动部30的相对位置来改变磁性体的磁性粒子的行为,并且能够使阻尼力变化。 如果使用的磁性液体在其基础液体和磁性颗粒中具有相似的比重,则抑制颗粒的沉积,并且快速地进行颗粒的行为的改变,并且当阻尼力变化时,确保优异的响应性。 版权所有(C)2004,JPO
    • 6. 发明专利
    • DAMPER
    • JP2003106365A
    • 2003-04-09
    • JP2001304111
    • 2001-09-28
    • DELTA TOOLING CO LTD
    • KANEKO SHIGEHIKOFUJITA YOSHINORIYODA HIROKIENOKI YOSHIMI
    • D06F37/24F16F9/53
    • PROBLEM TO BE SOLVED: To provide a damper capable of improving a damping property. SOLUTION: The damper 10 comprises: viscous liquid 15 generating damping force caused by resistance occurred when the viscous liquid passes through an orifice formed on at least one of a piston 12 and casing 11 in proportion to relative motions between the piston 12 and casing 11, except a coil spring 13 arranged in a changeable shape in proportion to relative motions between the piston 12 and casing 11; and a magnetic circuit portion 16 generating an electromagnetic induction action or damping force caused by the electromagnetic induction action in proportion to relative motions between the piston 12 and casing 11. Thus, before viscous resistance of the viscous liquid 15 becomes a high frequency range in which the viscous resistance largely operates, a smooth damping property generating no stick slip or the like is obtained so that the damping force in the magnetic circuit portion 16 is largely contributed, and satisfactory damping property is obtained in a wide range of a vibration frequency from a low frequency range to a high frequency range.
    • 7. 发明专利
    • AT499878T
    • 2011-03-15
    • AT04793166
    • 2004-10-22
    • DELTA TOOLING CO LTD
    • FUJITA ETSUNORIKANEKO SHIGEHIKO
    • A61B5/16A61B5/18A63B71/06
    • The degree of fatigue is quantified to be able to display. A fatigue degree measurement device 1 includes: a living body signal peak value detecting means 23 to detect the peak values of respective cycles of the original waveform of the living body signal data; a power value calculating means 24 to calculate the difference between a peak value on the upper limit side and a peak value on the lower limit side for every prescribed time period from respective peak values obtained by the living body signal peak value detecting means 23 to set the difference as a power value; and a power value inclination calculating means 25 to determine the inclination of the power value, to calculate an integral value by absolute value treatment of the time series signals of the inclination of the power values to determine the integral value as the degree of fatigue. As a result, it becomes possible to realize quantification of a human fatigue degree.