Cable-driving arrangement of a vehicle
10011945 ยท 2018-07-03
Inventors
Cpc classification
F16D2125/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
D07B9/00
TEXTILES; PAPER
B62M25/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
D07B9/00
TEXTILES; PAPER
B62M25/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cable-driving arrangement of a vehicle includes a cable main body. The cable main body is composed of a plurality of unit filaments, and distal ends of the unit filaments are melted to be integral to form a melted end. The cable main body is for being relatively positionably disposed on a vehicle with a portion near the melted end.
Claims
1. A cable-driving arrangement of a vehicle, including: a cable main body, composed of a plurality of unit filaments, the unit filaments being made of metal twisted together, distal ends of the unit filaments melted in one piece to form a melted end, the cable main body for being relatively positionably disposed on a vehicle with a portion near the melted end; wherein the melted end includes a distal end face which is a part of a ball surface and is the endmost surface of the cable main body; wherein the cable main body further includes a filament gather section, and the melted end is enlarged relative to the filament gather section and integrally connected with an end of the filament gather section; wherein a diameter of the melted end is smaller than 1.5 times a diameter of the filament gather section.
2. The cable-driving arrangement of claim 1, wherein an outer surface of the melted end is a continuously curved smooth face.
3. The cable-driving arrangement of claim 1, wherein a side of the melted end radially exceeds beyond the filament gather section in a predetermined distance, and the predetermined distance is between 0.3 to 1.5 times a diameter of the unit filament.
4. The cable-driving arrangement of claim 1, wherein in a lengthwise cross-sectional profile of the melted end, the filament gather section and the melted end adjoin each other to form an outer adjoining edge and an inner adjoining face.
5. The cable-driving arrangement of claim 4, wherein a dimension from the inner adjoining face to the distal end face is between 0.5 to 8 times a diameter of the unit filament.
6. The cable-driving arrangement of claim 1, wherein an extent of the melted end along a longitudinal direction of the cable main body is between 1 to 5 times a diameter of the unit filament.
7. The cable-driving arrangement of claim 1, wherein the cable main body is comovably fixedly connected with an actuated mechanism.
8. The cable-driving arrangement of claim 1, wherein the cable main body is comovably fixedly connected with an operating mechanism.
9. The cable-driving arrangement of claim 1, wherein the melted end is further sleeved with a sheath, and an inner wall of the sheath includes a restraining portion which is interferable with the melted end in a longitudinal direction of the cable main body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8) The present invention will be clearer from the following description when viewed together with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment in accordance with the present invention.
(9) Please refer to
(10) Specifically, the cable-driving arrangement may further include an actuated mechanism 20 and an operating mechanism 30. The cable main body 10 is comovably fixedly connected with between the actuated mechanism 20 and the operating mechanism 30. The operating mechanism 30 can be operated to drive the cable main body 10 to actuate the actuated mechanism 20. In this embodiment, the actuated mechanism 20 is a brake device assembled on a bicycle (as shown in
(11) The melted end 12 can prevent the unit filaments 11 from separating from bifurcating and inserting into an outer tube 40. An outer surface of the melted end 12 is a continuously curved smooth face 121 which allows the cable main body 10 to be disposed through the outer tube 40 smoothly. The cable main body 10 further includes a filament gather section 13, and the melted end 12 is enlarged relative to the filament gather section 13 and integrally connected with an end of the filament gather section 13. A side of the melted end 12 radially exceeds beyond the filament gather section 13 in a predetermined distance d (as shown in
(12) Preferably, an extent L of the melted end 12 along a longitudinal direction of the cable main body 10 is between 1 to 5 times the diameter of the unit filament 11. In a lengthwise cross-sectional profile of the melted end 12, the filament gather section 13 and the melted end 12 adjoin each other to form an outer adjoining edge 14 and an inner adjoining face 15 (as shown in
(13) In addition, please further refer to
(14) Given the above, a distal end of the cable-driving arrangement is a melted end which can be disposed through an outer tube smoothly to prevent from inserting into the outer tube. The distal end is melted integrally in one piece to enhance the connection of the unit filaments of the cable main body.
(15) In addition, the melted end can be further sleeved with a sheath which can restrain the melted end without damaging the cable main body.
(16) While we have shown and described various embodiments in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.