F16C1/262

Transmission cable locking device for vehicles

A transmission cable locking device for vehicles may include a plurality of opposing locking clips rotating with respect to each other wherein the rotation determines a grip or release state of a transmission cable; a locking band provided between the locking clips and providing interconnecting tension between the locking clips; and a housing accommodating the locking clips and the locking band, and in which a hinge shaft is formed wherein the locking clips are coupled to the internal surface to rotate.

FILTER CONNECTION TIP OF A SHEATH OR CABLE IN A HOLDER
20190101153 · 2019-04-04 ·

A tip has a first element made of a rigid material and attached to the end of the sheath or cable, and to a second element made of a flexible material and molded over the first element, each of said elements and defining a portion and intended to be inserted into an arrangement of the holder having limited coaxial movement capability corresponding, under an axial force exerted on the sheath or cable, to crushing said portion of the flexible element up to a symmetrical contact area abutment position on the surface of said portion, said contact areas abutting against a portion of the arrangement of the holder to limit the travel under the force of the crushing of the flexible material of the second element.

Control device and lever pad for the same
12037073 · 2024-07-16 · ·

A control device for an actuation cable on a bicycle is provided. The control device comprises: a frame for securing the control device to the bicycle; and a lever arm assembly rotatably coupled to the frame and moveable between a first position and a second position, the lever arm assembly comprising: a lever arm rotatable coupled to the frame at a pivot point; a cable lock for fixing the actuation cable to the lever arm, the cable lock demarcating a working segment of the actuation cable from a tail of the actuation cable when the actuation cable is fixed to the lever arm; and a cable catch configured to removably retain at least a portion of the tail of the actuation cable.

TELESCOPIC ADAPTER DEVICE FOR DREDGING MACHINE

A telescopic adapter device for a dredging machine includes a protective cover at an exit of a flexible shaft of a dredging machine, a connector detachably connected to the protective cover, a flexible shaft conduit with an inner end fixed in an inner hole of the connector, and a sliding conduit sleeved on an outer wall of the flexible shaft conduit, where the sliding conduit includes an inner end provided with a clamping joint for clamping the flexible shaft conduit, and an outer end provided with a bending portion; and a rubber jacket is sleeved on an outer wall of the bending portion. The telescopic adapter device for a dredging machine not only can prevent damage to a glazed surface at a corner of a toilet, but also improves a turning capacity of the flexible shaft.

Adjustable length cable

An adjustable length cable system that can be used in association with transmission of an axial pulling force. The cable system, which can be concealed within and/or behind a structure such as, for example, within an interior region of an entryway device, can accommodate adjustments in the axial lengths of a core wire and a conduit system of the cable system. The core wire can extend through, as well as beyond, the conduit system, and be connected to end fittings and/or connectors that can be used to transmit a pulling force to and/or from one or more components. In some embodiments, the conduit system can include an inner conduit telescopically coupled to an outer conduit such that the axial length of the conduit system is adjustable. Further, the relative axial positions of the inner and outer conduits may be retained by activation of a conduit locking device.

FIXING STRUCTURE
20180363693 · 2018-12-20 ·

A fixing structure is provided with an outer casing 2 in which at least an end part 2A is hollow, and an outer cap 3 attached to the end part 2A, this structure has a plurality of fixing portions 5 that extend from the outer side of the outer cap 3 to the outer casing 2, wherein the fixing portions 5, which extend in the direction intersecting the thickness direction of the outer casing 2, are provided to both one side and another side in the width direction of the outer casing 2, and it is therefore possible to easily manufacture a fixing structure for fixing a terminal member to an end part of a cylindrical member.

Cable length automatic adjustment device for vehicle window lifter

A cable length automatic adjustment device for a vehicle window lifter includes a housing (1) having a hollow internal, a cable axial shaft (2) arranged inside the housing (1) and an adjusting member (3). The cable axial shaft (2) includes an axle base (20), an axial shaft (21) extended from the axle base (20) and a first elastic member (22) abutted between the axle base (20) and an inner wall of the housing (1). The adjusting member (3) includes a slotted base (30), positioning pieces (32) moveably attached onto the slotted base (30) and a second elastic member (33) abutted between the axle base (20) and the positioning pieces (32). The axial shaft (21) includes indented positioning portions (210), and the positioning pieces (32) include corresponding engagement portions (320). The positioning pieces (32) are clamped onto the positioning portions (210) of the axial shaft (21) with the engagement portions (320).

CABLE LENGTH AUTOMATIC ADJUSTMENT DEVICE FOR VEHICLE WINDOW LIFTER
20180328400 · 2018-11-15 ·

A cable length automatic adjustment device for a vehicle window lifter includes a housing (1) having a hollow internal, a cable axial shaft (2) arranged inside the housing (1) and an adjusting member (3). The cable axial shaft (2) includes an axle base (20), an axial shaft (21) extended from the axle base (20) and a first elastic member (22) abutted between the axle base (20) and an inner wall of the housing (1). The adjusting member (3) includes a slotted base (30), positioning pieces (32) moveably attached onto the slotted base (30) and a second elastic member (33) abutted between the axle base (20) and the positioning pieces (32). The axial shaft (21) includes indented positioning portions (210), and the positioning pieces (32) include corresponding engagement portions (320). The positioning pieces (32) are clamped onto the positioning portions (210) of the axial shaft (21) with the engagement portions (320).

CONTROL CABLE
20180283440 · 2018-10-04 ·

A control cable is provided with a coil spring that has a diameter that allows a wire diameter to enter a gap existing in a radial direction between a hollow member and a rod member having a fixing portion and configured to move inside the hollow member. The coil spring includes a small-diameter portion slidable along an outer peripheral surface of an inner cable, and a large-diameter portion having an inner diameter larger than an inner diameter of the small-diameter portion. The small-diameter portion is provided in a position where movement of the small-diameter portion in the radial direction is suppressed by the inner cable when the one end of the coil spring is pressed by the fixing portion, and thus, the position which entry of the coil spring into the gap can be suppressed.

CONNECTING STRUCTURE OF END PIECE AND OUTER CABLE IN BOWDEN CABLE AND METHOD FOR CONNECTING THE SAME
20180274582 · 2018-09-27 ·

In a Bowden cable, a shield thereof is formed from a hollow strand that is formed by twisting a plurality of metal individual wires. An end part of this hollow strand is exposed by removing an outer skin and is increased in diameter, thereby forming a first flare part. An end part of a liner is also increased in diameter to form a second flare part. An end piece is injection molded so as to envelop these flare parts. A synthetic resin as a material of this end piece is made to enter between the metal individual wires. The end piece includes a mounting part and a bent pipe part for covering and surrounding an outer periphery of an outer cable in a state in which the outer cable is curved. The mounting part and the bent pipe part are formed as a unit by injection molding.