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    • 52. 发明授权
    • Impact deflection absorber and stabilizer
    • 冲击偏转吸收器和稳定器
    • US4087085A
    • 1978-05-02
    • US716504
    • 1976-08-23
    • Henry K. Hauser
    • Henry K. Hauser
    • B63B3/70B63H21/30F16F7/08F16F13/00F16F1/00
    • F16F13/00B63B3/70B63H21/305F16F7/08
    • An impact deflection absorber and stabilizer for providing an interface between two items, surfaces, etc. permitting regulated and controlled travel (energy absorption) along its longitudinal axis and constraining motion in all other directions. An energy absorbing spring is positioned within a housing comprised of two cylindrical mating surfaces forming a friction surface therebetween. A collar clamp joins the two cylinders together and adjustably controls the amount of friction between the two surfaces thereby providing control of the energy absorbing capability of the device. The clamp also has the effect of strengthening the device along non-longitudinal axes, such that all axes have a resonant or fundamental frequency higher than that along the longitudinal or primary axis whereby the device will yield longitudinally regardless of what direction the forces are emanating from.
    • 一种用于在两个物品,表面等之间提供界面的冲击偏转吸收器和稳定器,其允许沿其纵向轴线进行调节和控制的行程(能量吸收)并且限制所有其他方向的运动。 能量吸收弹簧定位在由两个圆柱形配合表面组成的壳体中,在两个圆柱形配合表面之间形成摩擦表面。 套环夹将两个气缸连接在一起,并且可调节地控制两个表面之间的摩擦量,从而提供对该装置的能量吸收能力的控制。 夹具还具有沿着非纵向轴线强化装置的效果,使得所有轴线具有比沿着纵向或主轴线的谐振或基频更高的谐振或基频,由此该装置将纵向屈服,而不管力是从哪个方向发出的 。
    • 57. 发明授权
    • Energy absorbing isolation system
    • 能量吸收隔离系统
    • US3743266A
    • 1973-07-03
    • US3743266D
    • 1971-08-26
    • INCA MFG CORP
    • STURMAN OROBERTS G
    • B60R19/28F16F1/32F16F3/02F16F7/08B60G11/34
    • F16F3/02B60R19/28F16F1/32
    • This invention relates to a novel energy absorbing isolation device which will absorb and dissipate a major portion of the energy associated with vehicle collisions. The present invention comprises a cylindrical tube, housing a plurality of Belleville spring washers which are compressed on impact by the wide portion of a movable shaft having a relatively wide portion and a relatively narrow portion. The relatively narrow portion of the shaft advances axially into the cylindrical tube as the Belleville washers are compressed. The energy of impact is absorbed and dissipated by compression of the Belleville washers and by interactions between the washers, the inside surface of the cylindrical tube, and the narrow portion of the shaft.
    • 本发明涉及一种新颖的能量吸收隔离装置,其将吸收和消散与车辆碰撞相关的能量的主要部分。 本发明包括一个圆柱形管,其容纳多个贝氏弹簧垫圈,它们在具有相对宽的部分和较窄部分的可动轴的宽部分的冲击下被压缩。 当Belleville垫圈被压缩时,轴的相对较窄的部分轴向前进到圆柱形管中。 撞击的能量通过贝氏垫圈的压缩以及垫圈,圆柱形管的内表面和轴的窄部之间的相互作用而被吸收和消散。
    • 58. 发明授权
    • Energy absorbing device
    • 能量吸收装置
    • US3696891A
    • 1972-10-10
    • US3696891D
    • 1970-10-29
    • HARTWELL CORP THE
    • POE LLOYD RICHARD
    • F16F15/12F16F7/00F16F7/08F16F7/12F16F9/30
    • F16F7/00F16F7/082F16F7/126F16F9/303
    • An energy absorbing device which includes a deformable or elastomeric energy absorbing member, an indenting element, and means for effecting relative movement causing the indenting element to be pressed into the energy absorbing member; the energy absorbing member being restrained against translation movement but otherwise not bonded so that, on relative movement of the energy absorbing member indenting elements, the indenting element not only causes localized deformation of the energy absorbing member, but also subjecting the energy absorbing member to tension loads and compressing loads throughout substantial areas at opposite sides of the region of localized deformation so that energy absorbtion is distributed over a substantial region.
    • 一种能量吸收装置,其包括可变形或弹性能量吸收构件,压痕元件,以及用于实现相对运动的装置,使得压入元件被压入能量吸收构件; 能量吸收构件被限制在平移运动,而是不结合,使得在能量吸收构件凹陷元件的相对运动上,压痕元件不仅引起能量吸收构件的局部变形,而且使能量吸收构件受到张力 在局部变形区域的相对侧的实质区域中负载和压缩负载,使得能量吸收分布在实质区域上。
    • 59. 发明授权
    • Combination silastic and friction shock absorber
    • 组合硅橡胶和摩擦阻尼器
    • US3690423A
    • 1972-09-12
    • US3690423D
    • 1971-03-31
    • MINER ENTERPRISES
    • TRONGEAU WILLIAM J
    • F16F7/08F16F9/30F16F11/00
    • F16F7/08F16F9/303F16F2224/025
    • A friction shock absorber having a thin wall cylinder filled with compressible solid, an outer sleeve fitted over and slidably engaging the thin wall cylinder, with the wall thickness of the outer sleeve being approximately three times greater than the wall thickness of the thin wall cylinder, and a piston rod extending into the thin walled cylinder having a piston head in engagement with the inner surface of the cylinder, with the piston head being provided with a multiplicity of axially disposed orifices. When subject to relatively high impact forces, the wall of the cylinder expands radially into tighter frictional engagement with the wall of the outer sleeve and a peripheral orifice is thus obtained for additional throttling of the compressible solid, thereby increasing the shock dissipating capacity of the shock absorber.
    • 一种具有填充有可压缩固体的薄壁圆筒的摩擦减震器,安装在薄壁圆柱体上并可滑动地接合薄壁圆柱体的外套筒,外套筒的壁厚约为薄壁圆柱体壁厚的三倍, 以及延伸到薄壁圆柱体中的活塞杆,其具有与圆柱体的内表面接合的活塞头,活塞头具有多个轴向设置的孔。 当受到相对较高的冲击力时,气缸的壁径向膨胀成与外套筒的壁更紧密的摩擦接合,并且因此获得外围孔口用于可压缩固体的额外节流,从而增加冲击的冲击耗散能力 吸收器。