The invention refers to a ball joint device of the type used in automotive industry.
Different embodiments disclosing ball joint devices are known in the state of the art.
European patent EP 0481212 shows a ball joint with a ball head, a pivot pin and a ball joint pin housed in a joint casing with a pot-shaped interior, in which it can be moved in a pivoting manner. The ball joint is assembled in a sliding manner in a bearing joined to the joint casing. The device has an annular projection radially extending outward touching the front face of the side of the opening of the joint casing.
However, the embodiments proposed in the state of the art require a precise adjustment both in the manufacture and in the subsequent assembly of the components of the device. This high degree of precision in the manufacture is necessary because it could even occur that the assembly is not possible if the tolerances of the components are too broad or if, even in the case of being more restrictive, the manufactured parts do not comply with said design tolerances; these tolerances will also have an effect on the functioning of the device.
Ball joint devices with inappropriate tolerances cause a series of inadmissible flaws. In addition to being noticeable in a recently manufactured device, these flaws imply a premature deterioration of the device, shorten its useful life and affect the use of the device.
Another feature which ball joint devices must have is leak-tightness. Leak-tightness must be assured both through the adjustment of the components themselves of the ball joint, the design and manufacture tolerances of said components becoming important again, and through the use of auxiliary elements. These auxiliary elements are usually protective domes with their corresponding retaining or sealing elements joining said protective domes with the rest of the components of the ball joint device.
Another additional feature which ball joint devices must have is modularity, this being understood as the ability to constitute a module integrated in a system which said ball joint device is a part of. The devices known in the state of the art have a design and construction which does not facilitate this ability to be integrated in a system in a manner easily adaptable to different systems, given that to that end, they require that the system itself is modified.
The present invention proposes a ball joint device solving the drawbacks in the state of the art set forth above.
The design of the joining means and the contact areas of the components of the ball joint device on the joint surfaces assures the leak-tightness required in this type of devices. Said joining means also allow simplifying the process of manufacturing the device, given that leaks in the contact areas are absorbed by the configuration itself of said means; the notching or grooving included in the contact areas between the casing and the ball joint seat.
The relationship between the casing and the seat can also allow the casing to be designed such that it can be adapted to different applications according to the system in which the ball joint device is going to be incorporated.
On the other hand, the casing and the seat define a housing in which the protective dome is joined at one of its ends to the ball joint device; the use of a retaining element for said protective dome is thus prevented, achieving a reduction of the cost of the device, both by decreasing the number of components and by simplifying the assembly.
According to a first aspect, the invention describes a ball joint device comprising:
The first joining means can comprise a frustoconical portion in the casing and a conjugate frustoconical portion in the seat to hold the seat to the casing.
The frustoconical portion in the casing and the conjugate frustoconical portion in the seat can be provided with grooving, a striated surface, for:
The first joining means can also comprise an annular projection in the casing and a first annular groove in the seat for holding the seat to the casing.
The annular projection and the annular groove can be located in a first frontal contact surface between the casing and the seat.
The second joining means can further have a grooving for:
Optionally, the seat can also comprise a plurality of grooves in a first seat end to facilitate:
The seat can also comprise a plurality of channels in an inner surface of the first seat housing, said channels being configured to allow a distribution of a lubricant between the first ball joint portion and the inner surface of the first seat housing.
Further, the device of the invention can comprise a protective dome to protect the ball joint device.
In that case, the device of the invention can comprise a sealing ring to hold a first end of the protective dome to the ball joint.
On the other hand, the protective dome can comprise a plurality for annular grooves in the manner of a labyrinthine seal in a contact surface between the first end and the ball joint to assure leak-tightness between the protective dome and the ball joint.
The device of the invention can further comprise:
In the device of the invention, the casing can be of a material selected from:
The casing can comprise a body formed by a plurality of parts.
In the device of the invention, the ball joint seat can be of a material selected from:
The ball joint seat and casing can be joined by means of a process selected from welding, riveting and combinations thereof.
In the device of the invention:
In the device of the invention, the protective dome can be of an elastomeric material selected from:
In the device of the invention, the sealing ring can be of a material selected from:
Very briefly described below are a series of drawings aiding in better understanding the invention and which are expressly related to an embodiment of said invention presented as a non-limiting example thereof.
A preferred embodiment of the invention is described below with the aid of the figures.
In
The joint between the casing 1 and the ball joint seat 2 is carried out according to the materials of said casing 1 and seat 2. If the joint between the materials is plastic-plastic, the joint will be welding; should one of the materials not be plastic, the joint will be riveting.
As can be seen in
In the peripheral contact surfaces 1201 and 1301, both the casing 1 and the seat 2 incorporate notching.
In contact surface 1202, the casing 1 incorporates an annular projection 123, whereas the seat 2 incorporates an annular groove 124. The annular groove 124 can also be carried out in the casing 1, the seat 2 then incorporating the annular projection 123.
In
Said second annular groove 33 and third annular groove 34 define an annular cavity having a volume equal to the volume of the second end 32 of the protective dome 3. Thus, when the protective dome 3 is assembled in the device, the second end 32 becomes deformed in order to occupy the volume defined by the second annular groove 33 and third annular groove 34. With this arrangement:
In
Number | Date | Country | Kind |
---|---|---|---|
04380238.8 | Nov 2004 | EP | regional |