Title of Invention

A BICYCLE BRAKE APPARATUS WITH LINE ADJUSTED BRAKE SHOES

Abstract ABSTRACT 344/MAS/99 A Bicycle Brake Apparatus With Line-Adjusted Brake Shoes The present invention relates to a bicycle brake arm assembly which can be optimally used with bicycles having different configurations, especially those with varying rim widths. In one embodiment of the invention, a bicycle brake apparatus includes a brake arm having an upper portion and a lower portion and a link member having an upper portion and a lower portion. The lower portion of the brake arm and the lower portion of the link member pivot relative to each other around a common pivot axis. A shoe attachment member is disposed on the upper portion of the link member, and a link fixing mechanism is provided for fixing the link member relative to the brake arm. The link fixing mechanism includes a fixing shaft extending from the brake arm and the link member and shaft openings defmed in the brake arm and the link member so that the fixing shaft extends through the shaft opening. A diameter of the shaft opening is greater than a diameter of the fixing shaft, and an adjusting member is disposed in the shaft opening. The adjusting member defmes an adjusting opening for receiving the fixing shaft therethrough at a position offset from a center of the shaft opening. Rotation of the adjusting member therefore adjusts the angle and position of the brake shoe relative to the brake arm.
Full Text

The present invention is directed to bicycle braking devices and, more particularly, to a cantilever brake having brake shoes attached to adjustable links so that the lateral position of the brake shoes may be adjusted.
Cantilever style brakes are often used on mountain bikes and occasionally on road bikes to provide stronger braking force per unit of force applied to the brake lever than that provided by conventional caliper style brakes. A cantilever brake ordinarily comprises a pair of opposed brake arm assemblies, wherein each brake arm assembly includes a brake arm having an upper portion and a lower portion. A brake shoe is disposed on an intermediate portion of each brake arm such that the brake shoes face each other. The lower portion of each brake arm is pivotally attached to the bicycle frame, and a brake control cable coupling assembly is disposed on the upper portion of each brake arm. In one type of cantilever brake the upper portion of each brake ann is angled outwardly from the wheel rim and the brake is operated by pulling generally upwardly on a brake control cable wire attached to the cable coupling assembly of each brake arm. In another type of cantilever brake the brake arms are essentially straight. In this case an outer casing of the brake control cable is attached to the brake control cable coupling assembly of one brake arm and an inner wire of the brake control cable is attached to the brake control cable coupling assembly of the other brake arm. This type of brake is very efficient because the force of the brake control cable is applied substantially perpendicular to each brake arm.
With either type of cantilever brake, it is desirable to apply the force of the brake control cable as perpendicular to the brake arms as possible when the brake shoes are in the vicinity of the wheel rim to maximize the braking force per unit of force applied to the brake lever. Also, it is desirable to have the brake shoe oriented perpendicular to the rim sidewall when the brake shoe contacts the rim. Brake arm assemblies are designed with those goals in

mind. However, brake arm assemblies designed for mountain bikes, for example, often are not optimized for use on road bikes because mountain bikes have relatively wide wheel rims, whereas road bikes have relatively narrow wheel rims. As a result, brake arm assemblies designed for mountain bikes will angle too far inwardly before the brake shoe contacts the rim of a road bike. Conversely, a brake arm assembly designed for road bikes will be angled too far outwardly when the brake shoe contacts the rim of a mountain bike. As a result, different brake shoe assemblies must be designed for different bicycles if optimum performance is desired. This increases design, tooling and manufacturing costs for the manufacturer and inventory costs for the dealer, and it prevents the bicyclist from using one type of brake arm assembly with different style bicycles.
SUMMARY OF THE INVENTION
The present invention is directed to a bicycle brake arm assembly which can be optimally used with bicycles having different configurations, especially those with varying rim widths. Intone embodiment of the invention, a bicycle brake apparatus includes a brake arm having an upper portion and a lower portion and a link member having an upper portion and a lower portion. The lower portion of the brake arm and the lower portion of the link member pivot relative to each other around a common pivot axis. A shoe attachment member is disposed on the upper portion of the link member, and a link fixing mechanism is provided for fixing the link member relative to the brake arm. The link fixing mechanism includes a fixing shaft extending from one of the brake arm and the link member and a shaft opening defined by the other one of the brake arm and the link member so that the fixing shaft extends through the shaft opening. A diameter of the shaft opening is greater than a diameter of the fixing shaft, and an adjusting member is disposed in the shaft opening. The adjusting member defines an adjusting opening for receiving the fixing shaft therethrough at a position offset from a center of the shaft opening. Rotation of the adjusting member therefore adjusts the angle and position of the brake shoe relative to the brake arm.

Accordingly the present invention provides a bicycle brake apparatus with line-adjusted brake shoes, comprising: a brake arm having an upper portion and a lower portion; a link member having an upper portion and a lower portion;
wherein the lower portion of the brake arm and the lower portion of the link member pivot relative to each other around a common pivot axis; a shoe attachment member disposed on the upper portion of the link member ; a link fixing mechanism for fixing the link member relative to the brake arm,, wherein the link fixing mechanism comprises;
a fixing shaft extending from the brake arm and the link member, shaft openings defined in the brake arm and the link member so that the fixing shaft, extends through the shaft openings, wherein a diameter of the shaft openings are greater than a diameter of the fixing shaft; and
an adjusting member disposed in the shaft opening, wherein the adjusting member defines an adjusting opening for receiving the fixing shaft there through at a position offset from a center of the shaft opening.

BRIEF DESCRIPTION OF THE DRAWINGS
Figures lA and IB are rear views of a particular embodiment of a brake device according to the present invention;
Figure 2 is a partially exploded view of the brake device shown in Figures IA and 1B;
and
Figure 3 is a completely exploded view of the brake device shown in Figures lA and
IB.
DETAILED DESCRIPTION OF THE EMBODIMENTS.
Figures lA and IB are rear views of a particular embodiment of a brake apparatus 10 according to the present invention, and Figures 2 and 3 are partially and completely exploded views, respectively, of brake apparatus 10. Brake apparatus 10has a pair of brake arm assemblies 14A, 14B, wherein each brake arm assembly I4A,I4B includes a brake arm 18A, 18B having an upper portion 22A,22B and a lower portion 26A,26B and a link member assembly 30A,3OB. Each link member assembly 30A,30B comprises a link member 32A, 32B, each having an upper portion 34A,34B and a lower portion 38A,38B. A shoe attachment member in the form of a flange 42A,42B is disposed on the upper portion 34A,34B of each link member 32A,32B for supporting a corresponding brake shoe 44A,44B. The lower portion 26A,26B of each brake arm 18A,I8B and the lower portion 38A,38B of each link member assembly 30A,30B are pivotably supported on a pivot shaft 43A,43B so that each link member assembly 30A,30B can pivot relative to its corresponding brake arm 18A,18B around a common pivot axis X. More specifically, the lower portion 26A of brake arm I8A has an opening 88A that pivotably fits around pivot shaft 43A, and the lower portion 38A of link member 32A has an opening 90A that pivotably fits around pivot shaft 43A. The entire assembly is held in place by a bolt 96A and washer 98A, wherein boh 96A extends through an opening 88A in the lower portion 26A of brake arm I8A, through an opening 90A in the lower portion 38A of link member 32A, and into a threaded opening 92A in pivot shaft 43 A.
A brake control cable coupling assembly 40 comprising a screw 41 (Figure 3), a

washer 42 and a fixing plate 43 is disposed on the upper portion 22A of brake arm 18A for coupling brake arm assembly 14A to an inner wire 44 of a brake control cable 48, and a brake control cable coupling assembly 52 is disposed on the upper portion 22B of brake arm 18B for coupling brake arm assembly MB to an outer casing 56 of control cable 48. More specifically, brake control cable coupling assembly 52 comprises a connecting arm 60 having a first end 64 pivotably coupled to upper portion 228 of brake arm 18B through a pivot coupling 68 and a second end 72 attached to one end 76 of a guide tube 80. One end 82 of a bellows seal 84 is attached to end 76 of guide tube 80, and the other end 86 of bellows seal 84 sealingly engages inner wire 44 of brake control cable 48. A casing receptacle 90 is disposed on the other end 94 of guide tube 80 for receiving outer casing 56 therein. As a result of this structure, braking force applied to control cable 48 is applied to brake apparatus 10 substantially perpendicular to brake arms 18A and 18B, thus generating a strong braking force.
Because of the otherwise symmetrical nature of brake arm assemblies 14A and !4B, only the details of brake arm assembly 14A will now be described in detail.
As shown more specifically in Figure 3, a spring cover 1 OCA having an opening 102A that fits around pivot shaft 43A has an abutment 104A that abuts against an abutment 108A on link member 32A. A spring retainer 110A has an opening 112A that fits around pivot shaft 43A so that spring retainer 110A is disposed between link member 32A and spring cover 100A. Spring retainer 110A has a spring retaining opening 114A and an adjustment abutment 115A. Spring retaining opening 114A retains an end 1 ISA of a spring 120A, and adjustment abutment 115A abuts against an end of an adjusting screw 124 A that screws into a threaded opening 128A in spring cover 100A. The other end 130A of spring 120A is fixed to the bicycle frame (not shown). Thus, the biasing force of spring 120A may be adjusted by himing adjusting screw 124A which, in turn, rotates spring retainer UOA around pivot shaft 43A to move spring end 118A.
As noted above, a shoe attachment member in the form of a flange 42A,42B is disposed on the upper portion 34A,34B of each link member 32A,32B for supporting a

corresponding brake shoe 44A,44B. As shovm in Figure 3, brake shoe 44A has a threaded shaft MSA that extends through a vertically elongated slot 150A in flange 42A and is fixed to flange 42A through convex washers 15J A,152A, concave washers 154A, 156A, fastening washer 158A and fastening nut 160A in a known manner that allows the vertical position and mounting angle of brake shoe 44A to be varied.
A fixing shaft in the form of a screw 161A extends snugly through a shaft opening 162A in the upper portion 22A of brake arm 18A and through a shaft opening 164A in the upper portion 34A of link member 32A. A fixing nut 168A and a fixing washer 172A mates with fixing screw 16iA to fix the angle of link member 32A relative to brake arm ISA. In this embodiment, the inner diameter of shaft opening 164A is substantially greater than the outer diameter of screw 16 JA, and an adjusting member 180A having an adjusting opening or slot 182A is disposed in shaft opening I64A for snugly receiving screw 161A therethrough at a position offset from a center of shaft opening 164A.
To use the brake device 10 according to this embodiment, it is first determined whether brake.device 10 will be used with a wide rim or a narrow rim. If a narrow rim is used, then adjusting members 180A,180B are disposed in their respective shaft openings 164A,164B so that adjusting openings 182A,182B (only adjusting opening 182A is shown) open laterally outwardly to set the angular position of link member 32A relative to brake arm 18A as shown in Figure lA. On the other hand, if a wide rim is used, then adjusting members 180A,180B are disposed in their respective shaft openings 164A,164B so that adjusting openings 182A,182B open laterally inwardly to set the angular position of link members 32A,32B relative to brake arms 18A,18B as shown in Figure IB. Thus, the same brake device 10 may be used with rims having different widths.
While the above is a description of various embodiments of the present invention, further modifications may be employed without departing from the spirit and scope of the present invention. For example, the size, shape, location or orientation of the various components may be changed as desired. The functions of one element may be performed by two, and vice versa. Thus, the scope of the invention should not be limited by the specific

structures disclosed. Instead, the true scope of the invention should be determined by the following claims.


WE CLAIM:
1. A bicycle brake apparatus with line-adjusted brake shoes, comprising:
a brake arm (18A, 18B) having an upper portion (22A, 22B) and a lower portion
(26A, 26B);
a link member (32A, 32B) having an upper portion (34A, 34B) and a lower portion
(38A, 38B);
wherein the lower portion (26A, 26B) of the brake arm (18A, 18B) and the lower
portion (38A, 38B) of the link member (32A, 32B) pivot relative to each other around
a common pivot axis (x);
a shoe attachment member {42A, 42B) disposed on the upper portion (34A, 34B) of
the link member (32A, 32B);
a link fixing mechanism for fixing the link member (32A, 32B) relative to the brake
arm (18A, 18B), wherein the link fixing mechanism comprises;
a fixing shaft (161A, 1616) extending from the brake arm (ISA, 188) and the link member (32A, 32B), shaft openings (162A, 162B and 164A, 164B) defined in the brake arm (ISA, 18B) and the link member (32A, 32B) so that the fixing shaft (161A, 161B) extends through the shaft openings, wherein a diameter of the shaft openings are greater than a diameter of the fixing shaft (161 A, 161B); and an adjusting member (180A, 180B) disposed in the shaft opening (164A, 164B), wherein the adjusting member (180A, 180B) defines an adjusting opening (182A, 182B) for receiving the fixing shaft (161A, 161B) there through at a position offset from a center of the shaft opening (164A, 164B).
2. The apparatus according to claim 1 wherein a fastener (168A, 168B) is mounted to the fixing shaft (161A, 1613) for fixing the link member {32A, 32B) relative to the brake arm (18A, 18B).
3. The apparatus according to claim 2 wherein the fixing shaft (161A, 161B) has a threaded portion, and wherein the fastener comprises a threaded nut (168A, 168B) that screws onto the threaded portion of the fixing shaft (161A, 161B).

4. The apparatus according to claim 1 wherein the link fixing mechanism is
disposed above the shoe attachment member (42A, 42B).
5. The apparatus according to claim 1 comprising:
a spring (120A, 120B) having a first end (118A, 118B) and a second end (130A, 130B); and
a spring retainer (110A, HOB) for retaining the first end (118A, 118B)of the spring (120A, 120B), wherein the spring retainer {llOA, ilOB) is mounted in close proximity to the link member (32A, 32B) and rotates around the pivot axis (x).
6. The apparatus according to claim 5 comprising an adjusting screw (124A,
124B) for rotating the spring retainer (UOA, HOB) around the pivot axis (x).
7. The apparatus according to claim 6 comprising a spring cover (100A, 100B) retained to the link member {32A, 32B), wherein the spring (120A, 120B) is disposed within the spring cover (100A, 100B), and wherein the adjusting screw (124A, 124B) is disposed in the spring cover (100A, 100B).
8. The apparatus according to claim 7 wherein the spring retainer (110A, 110B) is disposed between the spring cover (100A, 100B) and the link member (32A, 32B).
9. A bicycle brake apparatus with line-adjusted brake shoes substantially as herein
before described with reference to the accompanying drawings.


Documents:

0344-mas-1999 abstract-duplicate.pdf

0344-mas-1999 abstract.pdf

0344-mas-1999 claims-duplicate.pdf

0344-mas-1999 claims.pdf

0344-mas-1999 correspondence-others.pdf

0344-mas-1999 correspondence-po.pdf

0344-mas-1999 description(complete)-duplciate.pdf

0344-mas-1999 descritpion(complete).pdf

0344-mas-1999 drawings-duplciate.pdf

0344-mas-1999 drawings.pdf

0344-mas-1999 form-19.pdf

0344-mas-1999 form-2.pdf

0344-mas-1999 form-26.pdf

0344-mas-1999 form-4.pdf

0344-mas-1999 form-6.pdf

0344-mas-1999 petition.pdf


Patent Number 200605
Indian Patent Application Number 344/MAS/1999
PG Journal Number 30/2009
Publication Date 24-Jul-2009
Grant Date
Date of Filing 25-Mar-1999
Name of Patentee SHIMANO INC.,
Applicant Address 77 OIMATSU 3-CHO, SAKAI-SHI, OSAKA
Inventors:
# Inventor's Name Inventor's Address
1 MASANORI SUGIMOTO 2-1256, HIGASHIIKEJIRI, OSAKASAYAMA-SHI, OSAKA
PCT International Classification Number B62L003/00
PCT International Application Number N/A
PCT International Filing date
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 09/103,980 1998-06-22 U.S.A.