BICYCLE CABLE AND SYSTEM HAVING THE SAME
20190360519 ยท 2019-11-28
Inventors
Cpc classification
F16D2125/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C1/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B21F45/00
PERFORMING OPERATIONS; TRANSPORTING
B60T1/06
PERFORMING OPERATIONS; TRANSPORTING
F16C2240/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2240/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A bicycle cable includes an inner line and an outer sheath. The inner line connects a driving mechanism and a driven device of a vehicle therebetween. The driven device includes a brake device or a derailleur. The inner line is composed of a plurality of threads twining together. The inner line has a maximum outer diameter ranged of 1.2 mm, and a minimum outer diameter ranged between 0.90-1.0 mm. The outer sheath has an outer diameter ranged between 3.5-4.5 mm and an inner diameter ranged between 2.0-2.2 mm. The outer sheath is sleeved onto the inner line. A gap formed between an inner face of the outer sheath and the inner line has a maximum ranged between 0.8 mm to 1.3 mm.
Claims
1. A bicycle cable, including: an inner line, connecting a driving mechanism and a driven device of a vehicle therebetween, the driven device including a brake device or a derailleur, the inner line being composed of a plurality of threads twining together, the inner line having a maximum outer diameter of 1.2 mm, the inner line having a minimum outer diameter ranged between 0.90 mm to 1.0 mm; an outer sheath, having an outer diameter ranged between 3.5 mm to 4.5 mm and an inner diameter ranged between 2.0 mm to 2.2 mm, sleeved onto the inner line, a gap being formed between an inner face of the outer sheath and the inner line, the gap having a maximum ranged between 0.8 mm to 1.3 mm.
2. The bicycle cable of claim 1, wherein the outer sheath includes an inner layer and an outer layer sleeved onto the inner layer, the inner layer includes a plurality of threads extending along a longitudinal direction of the inner line and arranged around the inner line.
3. The bicycle cable of claim 2, wherein the threads twist around the inner line.
4. The bicycle cable of claim 1, wherein the threads are metal threads or reinforced fiber, the reinforced fiber is selected from a group composing of carbon fiber, graphite fiber, fiberglass, and Kevlar.
5. The bicycle cable of claim 1, wherein the outer sheath includes an inner layer and an outer layer sleeved onto the inner layer, the inner layer includes a continuous spiral sheath which is composed of a single thread twists around the inner line continuously.
6. A system of bicycle cable, including two bicycle cables of claim 1, wherein one of the inner lines connects a brake driving mechanism and a brake device therebetween, the other one of the inner lines connects a derailleur driving mechanism and a derailleur therebetween.
7. The system of bicycle cable of claim 6, wherein the inner lines have a same size, the outer sheaths have a same size.
8. The system of bicycle cable of claim 6, wherein the gaps of the two bicycle cables are equal.
9. The system of bicycle cable of claim 6, wherein the two inner lines have a same structure and are made of a same material, the two outer sheaths have a same structure and are made of a same material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0017] Please refer to
[0018] The inner line 10 connects a driving mechanism and a driven device of a vehicle therebetween. The driving mechanism includes brake driving mechanism 30 or derailleur driving mechanism 40. The driven device includes brake device 31 or derailleur 41. The inner line 10 is composed of a plurality of threads twining together. In the present embodiment, the inner line is composed of 19 threads arranged at 1, 6, and 12 threads per layer from the center outward. The inner line 10 has a maximum outer diameter D1 ranged of 1.2 mm. The inner line 10 has a minimum outer diameter D2 ranged between 0.90 mm to 1.0 mm. In the present embodiment, the inner line is composed of the 19 threads, so the contour of cross-section of the inner line is not a circle. The maximum outer diameter D1 is about the sum of five times the diameter of one thread, and the minimum outer diameter D2 is defined as the distance between recessed portions at two ends along the radial direction. The outer sheath 20 has an outer diameter ranged between 3.5 mm to 4.5 mm and an inner diameter ranged between 2.0 mm to 2.2 mm. The outer sheath 20 is sleeved onto the inner line 10. A gap 50 is formed between an inner surface of the outer sheath 20 and the inner line 10. The gap 50 has a maximum (when an opposite side of the inner line abuts against the inner surface of the outer sheath) ranged between 0.8 mm to 1.3 mm Thereby, the bicycle cable 1 can be used in brake system or derailleur system.
[0019] The outer sheath 20 includes an inner layer 22 and an outer layer 21 sleeved onto the inner layer 22.
[0020] Please refer to
[0021] The present invention also provides a bicycle cable system 100 includes two said bicycle cables 1. The inner line 10 of one of the bicycle cables 1 connects a brake driving mechanism 30 and a brake device 31 therebetween, and the inner line 10 of the other one of the bicycle cables 1 connects a derailleur driving mechanism 40 and a derailleur 41 therebetween. The gaps 50 of the two bicycle cable 1 are equal. The inner lines 10 of the two bicycle cables 1 have the same structure and are made of the same material. The outer sheaths 20 of the two bicycle cables 1 also have the same structure and are made of the same material.
[0022] In view of the practical data:
[0023] 1. As ruled in the CNS (Chinese National Standards), the tension of the bicycle cable must be equal to or larger than 240 kg. As shown in the following table and
TABLE-US-00001 Gap Gap Gap Gap Gap Gap Gap Tension 0.3 0.4 0.5 0.6 0.7 0.8 0.9 (kg) mm mm mm mm mm mm mm 1.0 mm 154.6 162.9 167.2 169.3 171.8 172.9 173.7 1.1 mm 190.7 198.1 202.4 204.8 206.6 207.7 208.4 1.2 mm 234.1 240.6 245.1 249.7 250.8 251.7 252.5 1.3 mm 275.7 281.1 284.3 286.0 287.2 288.1 289.0 1.4 mm 317.8 324.4 329.3 331.7 333.1 334.2 335.1 1.5 mm 364.7 371.6 377.5 380.8 381.9 382.8 383.6
[0024] 2. As ruled by CPSC (Consumer Product Safety Commission), the grip force must be equal to or smaller than 4.51b (2.045 kg). As shown in the following table and
TABLE-US-00002 Front brake Rear brake SHIMANO hydraulic disk 0.536 kg 0.468 kg brake BIANCHI road bike 1.700 kg 1.640 kg Infinity road bike 1.992 kg 1.941 kg Bicycle for kids 1.508 kg (New type) 3.912 kg (Old type)
TABLE-US-00003 Gap Gap Gap Gap Gap Gap Gap Grip force 0.3 0.4 0.5 0.6 0.7 0.8 0.9 (kg) mm mm mm mm mm mm mm 1.0 mm 0.774 0.765 0.743 0.732 0.721 0.712 0.707 1.1 mm 0.868 0.86 0.837 0.823 0.811 0.803 0.797 1.2 mm 0.963 0.955 0.929 0.916 0.904 0.885 0.878 1.3 mm 1.029 1.022 1.002 0.987 0.974 0.963 0.956 1.4 mm 1.141 1.137 1.12 1.106 1.092 1.081 1.073 1.5 mm 1.318 1.306 1.285 1.272 1.26 1.251 1.243
[0025] Therefore, when the outer diameter of the inner line is ranged between 1.2 mm to 1.4 mm and the maximum of the gap is 0.8 mm, the tension is larger than 240 kg to meet the standard of CNS, and the handle is similar to hydraulic brake (bolt-faced in the previous table). That is, the handle similar to hydraulic brake is provided by the appropriate combination of the outer diameter of the inner line and the gap in the present invention, and it's applicable for both brake cable and derailleur cable.
[0026] In conclusion, the bicycle cable and the system of the bicycle cable can be used in both brake system and derailleur system, so it's not necessary to have brake cable and derailleur cable which are different from each other. Thus, it's easy and quicker for installation. Besides, the size of the inner line can provide sufficient braking force. In addition, the appropriate gap makes installation easier and smoother, and the friction between the inner line and the outer sheath is reduced. Also, the transmission becomes direct and precise.