This application claims priority from German Application No. 10 2007 011 743.6 filed Mar. 10, 2007, hereby incorporated by reference in its entirety.
The invention relates to spring elements for composite brake disks.
Conventionally, carbon-ceramic brake disks are made in two parts, with a ceramic cylindrical ring-shaped friction ring being attached to a metallic chamber. The metallic chamber is attached for its part to a hub on the wheel shaft (wheel hub) using screw fittings. Combinations of screws and nuts are conventionally used to attach the friction ring to the chamber, the pressure surface between the screw head or the nut and the ceramic friction ring being enlarged by shims. Pretensioned shims (lock washers, disk springs) are also advantageously used.
Brake disks with a brake ring of gray cast iron material are also made in two parts, according to Patent Specification EP 0 718 521 B1 preferably both the brake disk ring and also the brake disk chamber being made of gray cast iron material.
This type of attachment with screws and nuts as well as disk springs is known for example from Patent Specification EP 0 718 521 B1.
Due to the mechanical properties of ceramic materials, it is necessary to make the support surface of the elastic shims such that the pressures which form in the attachment of the brake disk and in operation of brakes, and which act on the ceramic material, are kept sufficiently low so that damage to the ceramic materials cannot occur.
The principal object of the present invention is achieved by providing an accurate spring band for the rotor of a brake disk assembly including an annular support member mountable on the hub of a vehicle axle and an annular friction member mounted on the support member, having at least one portion lying in a first plane mountable on said support member and at least one portion lying in a second plane spaced from such first plane engageable with the friction member.
The advantages achieved with this invention are ease of installation, in that fewer elastic parts, in one preferred embodiment only one elastic part per brake disk, need be used, effective axial damping of the composite brake disk, a reduction of the surface pressing in the support region, which is especially desirable in a brake disk chamber of aluminum or aluminum alloys, and radial play by elastic deformation of the lock washer in the radial direction. The amount of this allowable deformation can be easily set by suitable selection of spring properties and material thickness and the execution of steps of the spring elements.
A composite brake disk 5 preferably comprises a brake disk ring 2 and a brake disk chamber 3 as well as a lock washer 1 which can be arranged either according to
Another preferred embodiment is to provide spring elements, each of which is held by at least two of the screws 4 which are used as fasteners and thus are also twist-proof.
According to the invention, the spring element 1 in alternation and in succession has at least four steps 13 such that at least two sections 11, 11′ each in the peripheral direction conform to an upper plane which is not shown and the respective sections 12, 12′, 12″ which are adjacent in the peripheral direction conform to the lower plane which is likewise not shown, the upper plane and the lower plane being parallel and having a vertical distance of 1 mm to 10 mm, and the sections 11 which conform to the upper plane having holes 111 for mounting screws 4, and the ratio of the sum of the arc lengths of the sections 11 conforming to the upper plane to the sum of the arc lengths of the sections 12 conforming to the lower plane being from 1:1 to 1:5.
The step between the sections 11 and 12 can be made either without an offset, as shown in
One preferred embodiment is that the spring element 1 forms a closed ring.
The composite brake disks according to the invention offer overall improved ease of braking, and the spring force can be set individually to the application (the respective vehicle, the desired sporty or comfort aspect) by a suitable choice of the material thickness, the step height, the execution of the step and the type of spring steel used for the spring element.
Number | Date | Country | Kind |
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102007011743.6 | Mar 2007 | DE | national |