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    • 2. 发明申请
    • TENSION SPRING MOUNT WITH FRICTION-RESISTANT COATING
    • 张力弹簧安装耐摩擦涂层
    • WO2014164555A1
    • 2014-10-09
    • PCT/US2014/022792
    • 2014-03-10
    • RENTON COIL SPRING COMPANY
    • PEPKA, Charles, F.
    • F16F1/12
    • F16F1/125F16F2226/02
    • End mounts (14, 18) are used to secure a helical tension spring (12, 16) to end fixtures with various shapes and sizes. These end mounts (18) contain an inner hole to encase the inner spring end mount (14) and secure the end mount (18) making it like a cap. There is also a keyhole (24) created in the top surface that goes through the end mount (18) allowing it to fit over the fixtures but not over the inner end mount (14), holding it in place. Grooves (28) are machined in a helical pattern on the cylindrical side wall of the end mount. The spring (16) is wound onto the grooves of the end mount (18). A friction-resistant coating (40) is applied between components of the assembly to mitigate wear and to prevent bending and twisting.
    • 端部安装件(14,18)用于将螺旋拉伸弹簧(12,16)固定到具有各种形状和尺寸的端部固定装置。 这些端部安装件(18)包含内孔以包住内部弹簧端部安装件(14)并固定端部安装件(18),使其像帽子一样。 还有在上表面中形成的通孔(24),其通过端部支架(18),使其能够装配在固定装置上而不是在内端支架(14)上方,将其保持就位。 凹槽(28)以螺旋形图案加工在端部安装件的圆柱形侧壁上。 弹簧(16)被卷绕在端部支架(18)的槽上。 在组件的部件之间施加抗摩擦涂层(40)以减轻磨损并防止弯曲和扭曲。
    • 5. 发明申请
    • SPRING AND DAMPER SYSTEMS FOR ATTENUATING THE TRANSMISSION OF ENERGY
    • 用于抑制能量传递的弹簧和阻尼器系统
    • WO2016154351A1
    • 2016-09-29
    • PCT/US2016/023831
    • 2016-03-23
    • RENTON COIL SPRING COMPANY
    • PEPKA, Charles, F.
    • B60G11/54F16F1/12F16F3/04B60G15/04
    • B60G15/04B60G11/54B60G2202/312F16F1/125F16F3/04F16F2236/06
    • A vibration attenuation system (100) for attenuating a transmission of an input signal is disclosed. The system includes a helical spring (104), a first terminal (120), and a first damping element (150). The helical spring (104) includes a plurality of helical coils, a first end (102), and a second end (106). The plurality of helical coils define an inner volume of the helical spring (104) intermediate the first and second ends (102, 106). The first terminal (120) includes a first inner member (140). The first terminal (120) is coupled to the first end (102) of the helical spring (104). The first inner member (140) extends into the inner volume of the helical spring (104). The first damping element (150) is positioned on the first inner member (140). The first damping element (150) is within the inner volume of the helical spring (104). When the input signal is provided to the helical spring (104), the first damping element (150) engages the helical coils and attenuates the transmission the input signal.
    • 公开了一种用于衰减输入信号的传输的振动衰减系统(100)。 该系统包括螺旋弹簧(104),第一端子(120)和第一阻尼元件(150)。 螺旋弹簧(104)包括多个螺旋线圈,第一端(102)和第二端(106)。 多个螺旋线圈限定在第一和第二端(102,106)之间的螺旋弹簧(104)的内部容积。 第一端子(120)包括第一内部构件(140)。 第一端子(120)联接到螺旋弹簧(104)的第一端(102)。 第一内部构件(140)延伸到螺旋弹簧(104)的内部容积中。 第一阻尼元件(150)定位在第一内部构件(140)上。 第一阻尼元件(150)在螺旋弹簧(104)的内部容积内。 当输入信号被提供给螺旋弹簧(104)时,第一阻尼元件(150)接合螺旋线圈并使传输衰减输入信号。
    • 6. 发明申请
    • PRELOADED DUAL-SPRING ASSEMBLY
    • 推荐双弹簧总成
    • WO2011149579A1
    • 2011-12-01
    • PCT/US2011/027969
    • 2011-03-10
    • RENTON COIL SPRING COMPANYPEPKA, Charles, F.
    • PEPKA, Charles, F.
    • F16F3/04
    • F16F3/04B60G7/04B60G11/14B60G11/32B60G11/48F16F2228/08
    • The present invention relates to dual-spring assembly that may be employed in cooperation with a damper unit to form a shock absorber. The spring rate of at least one of the springs is adjustable with a preload mechanism, which in turn is movable relative to the damper unit. Further, the dual-spring assembly includes two compression springs arranged in series and each having selected, but different spring rates. The first spring primarily absorbs the energy of applied loads that are below a first amplitude or threshold of applied load. Once the applied loads exceed the first amplitude of applied load, the dual-spring assembly operates with an effective spring rate to absorb the energy of applied loads that exceed the first amplitude of applied load. After a second spring of the dual-spring assembly achieves a desired amount of deflection, the first spring continues to absorb energy from the applied loads.
    • 双弹簧组件技术领域本发明涉及双弹簧组件,其可与阻尼单元配合使用以形成减震器。 至少一个弹簧的弹簧刚度可以用预紧机构来调节,预紧机构又相对于阻尼器单元可移动。 此外,双弹簧组件包括串联布置的两个压缩弹簧,每个具有选择但不同的弹簧刚度。 第一弹簧主要吸收低于施加载荷的第一幅度或阈值的施加载荷的能量。 一旦施加的载荷超过施加的载荷的第一幅度,双弹簧组件以有效的弹簧速率运行,以吸收超过施加载荷的第一幅度的施加载荷的能量。 在双弹簧组件的第二弹簧实现期望的挠曲量之后,第一弹簧继续从施加的载荷吸收能量。