The present invention relates to the technical field of vehicles, and more particularly, to a vehicle-used brake disk composite structure.
To control the riding speed and braking of a bicycle, the braking device uses a rubber module to tightly press the bicycle rim to stop the bicycle. The traditional braking device has evolved into a disk brake device. In the prior art, the disk brake device usually adopts a flat brake disk which is mounted at one side of the hub of the bicycle rim. Consequently, the braking device can control the caliper to strongly rub against the brake disc to stop the bicycle without damaging the bicycle rim. However, the brake disc wears down quickly, requiring frequent replacement due to the abrasion of the caliper.
The brake disc made from stainless steel has a heavier weight, which affects the riding speed in a certain degree. To achieve a lightweight design, the traditional brake disc is usually made from aluminum alloy having a smaller density. Although aluminum alloy has a light weight, its rigidity is decreased accordingly. Furthermore, the fatigue performance of aluminum alloy is far lower than steel. A steel-made brake disc can bear an infinite cyclic load. However, the fatigue limit of aluminum alloy is near zero, meaning that a very small cyclic load can damage the brake disc made from aluminum alloy. Consequently, the functional life of the brake disc can be sharply decreased if the rigidity and the wear-resistance are not high enough.
The purpose of the present invention is to solve the shortcomings in the prior art, and provide a vehicle-used brake disc composite structure.
To achieve the above purpose, the present invention adopts the following technical solution:
A vehicle-used brake disc composite structure, comprising an inner ring piece made from a lightweight metal and a disc body having high rigidity, wear-resistance and heat-resistance. The inner surface of the inner ring piece is equally divided and extends to form a plurality of fixing portions in the radial direction. The inner ring piece is provided with a first engaging surface. A plurality of holes is disposed on the surface of the disc body, and an inner ring hole is disposed in the middle of the disc body. The disc body is provided with a second engaging surface, which is used to be fixed to the first engaging surface via welding method. The inner ring hole is covered by the inner ring piece.
In another aspect of the present invention, the outer surface of the inner ring piece is the first engaging surface, and the inner surface of the inner ring hole of the disc body is the second engaging surface. The inner ring piece is fixed in the inner ring hole of the disc body, and the first engaging surface is fixed to the second engaging surface via welding method, enabling the inner ring piece and the disc body to stay in the same horizontal plane.
In another aspect of the present invention, the first engaging surface is disposed on one side surface of the inner ring piece near the disc body, and the second engaging surface is disposed on one side surface of the disc body near the inner ring piece. The inner ring piece uses the first engaging surface to fix onto the second engaging surface via welding method.
In another aspect of the present invention, the outer edge of the inner ring piece is provided with a protruding step structure. The outer surface of the protruding step structure is the first engaging surface. A first engaging portion, which is annular-shaped, is disposed on the first engaging surface along the radial direction. The fracture surface of the inner ring hole of the disc body is provided with a step structure, and the inner side surface of the step structure is the second engaging surface. A second engaging portion is disposed on the second engaging surface to correspond to the first engaging surface. The first engaging portion and the second engaging portion align with each other, enabling the first engaging surface and the second engaging surface to be fixed via welding method.
In another aspect of the present invention, the circumferential outer surface of the inner ring piece is the first engaging surface. The first engaging surface is equally divided and extends to form a plurality of the first locating portions. The circumferential inner surface of the inner ring hole of the disc body is the second engaging surface. A plurality of the second locating portions, which is inwardly-recessed, is disposed on the second engaging surface to correspond to the first locating portions. Through the engagement between the first locating portion and the second locating portion, the first engaging surface is tightly attached to the second engaging surface. The first engaging surface is fixed to the second engaging surface via welding method, and the first engaging portion is fixed to the second engaging portion via welding method, enabling the inner ring piece and the disc body to stay in the same horizontal plane.
Compared with the prior art, the present invention has the following advantages:
First, the present invention adopts an inner ring piece made from a lightweight metal and a disc body having high rigidity, wear-resistance and heat-resistance, effectively reducing the overall weight of the brake disc. The disc body which is in contact with the caliper is made from a material having high rigidity, wear-resistance and heat-resistance. Consequently, the rigidity of the point where the disc body is frequently rubbed with the caliper can be greatly improved, prolonging the functional life and reducing the replacement frequency of the brake disc.
Second, the inner ring piece is fixed to the disc body via welding method, enabling the inner ring piece to cover the inner ring hole of the disc body to improve the integral strength of the brake disc. Compared with the traditional dismountable structure of the inner ring piece and the disc body which may easily cause loosening, the present invention ensures a higher integral safety of the brake disc.
To clearly expound the present invention or technical solution, the drawings and embodiments are hereinafter combined to illustrate the present invention. Obviously, the drawings are merely some embodiments of the present invention and those skilled in the art can associate themselves with other drawings without paying creative labor.
Drawings and detailed embodiments are combined hereinafter to elaborate the technical principles of the present invention.
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The third type of brake disc 102 is shown in
The fourth type of brake disc 103 is shown in
The previous descriptions are of preferred examples for implementing the invention, and the scope of the invention should not necessarily be limited by this description. The scope of the present invention is defined by the claims.
Number | Date | Country | Kind |
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201611203164.X | Dec 2016 | CN | national |