The invention relates to a lamp base in accordance with the precharacterizing clause of patent claim 1 and to an electric lamp having such a lamp base.
The laid-open specification WO 97/40521 has disclosed an electric lamp having such a lamp base. This document describes a halogen incandescent lamp for a vehicle headlamp having a lamp base, which has two power supply lines for the incandescent filament. Two silicone flexible tubes are arranged in the lamp base and are used for sealing off the lamp base in the region of the two power supply lines. These silicone flexible tubes in each case surround a section of the power supply lines annularly and are arranged with a press fit between the respective power supply line and the walls of a chamber of the lamp base. This type of sealing-off is relatively complex since a chamber for the silicone flexible tubes needs to be provided in the lamp base and a mechanism for producing the press fit needs to be provided.
The object of the invention is to provide a lamp base having a simplified way of sealing off the power supply lines.
This object is achieved according to the invention by the features of patent claim 1. Particularly advantageous embodiments of the invention are described in the dependent patent claims.
The lamp base according to the invention has at least one power supply line and sealing means for sealing off the lamp base in the region of the at least one power supply line, these sealing means comprising at least one of the following combinations of features A, B or C:
Each of the abovementioned combinations of features A, B or C makes it possible to seal off the lamp base in the region of the power supply lines as early as during the production of the plastic injection-molded part of the lamp base. The elastomer or rubber surrounding the at least one power supply line annularly and in an interlocking manner (combination of features A) is compressed in the injection-moulding process during production of the plastic injection-molded part and in this case bears tightly against the power supply line and against the plastic material of the plastic injection-molded part. As a result, the lamp base is sealed off from the ingress of moisture in this region.
Alternatively or in addition, a region of the at least one power supply line which is embedded in an interlocking manner in a plastic injection-molded part is provided with a surface profile or a roughened portion (combination of features B). As a result, the contact face between the at least one power supply line and the plastic material of the plastic injection-molded part is enlarged and the leakage path for the incoming moisture or gases is extended and therefore the sealing effect is increased.
Alternatively or in addition, a section of the at least one power supply line which is embedded in an interlocking manner in a plastic injection-molded part of the lamp base is provided with slits (combination of features C). As a result, the leakage path for the incoming moisture or gases is extended and therefore the sealing effect is increased.
Advantageously, a primer is provided for increasing the sealing effect. The primer is preferably arranged as an intermediate layer between the power supply line and the elastomer or rubber and applied to the section of the at least one power supply line which is provided with the surface profile or slits. The primer increases the adhesion of the plastic material of the plastic injection-molded part on the power supply line and compensates for the air gap arising on shrinkage or contraction of the plastic material.
Preferably, the abovementioned sealing means are arranged on a section of the at least one power supply line which is in the form of a sheet-metal part. The sheet-metal part makes it possible to securely anchor the power supply line in the plastic injection-molded part.
The invention will be explained in more detail below with reference to a plurality of preferred exemplary embodiments. In the drawing:
This lamp has a vitreous, substantially cylindrical lamp bulb 10 having a pinch foot 10a which is sealed in a gas-tight manner. The dome 10b of the lamp bulb 10 is provided with a light-absorbent coating. An incandescent filament 11, which is aligned parallel with the lamp bulb axis and is electrically conductively connected to two power supply wires 12, 13, which consist of molybdenum wire and are passed out of the pinch foot 10a, is used as the light source. The pinch foot 10a of the lamp bulb 10 is fixed in a metallic holder, which comprises the bowl-like holder part 14a, the intermediate ring 14e and the annular carrier sleeve 14b. In addition to the metallic holder 14a, 14b, the lamp base also has a plastic base part 15, which is provided with the electric terminals 16, 17 of the lamp and in which the annular metallic carrier sleeve 14b is anchored. The carrier sleeve 14b has three reference tabs 14c lying in one plane and a contact-pressure spring 14d for fitting the lamp in the reflector 20 of a motor vehicle headlamp. The reflector 20 is sealed off by means of a silicone sealing ring 19, which bears against the outer wall of the reflector 20 and against the plastic base part 15.
The electrical terminals 16, 17 of the lamp comprise two metallic contact lugs 16, 17, which are each welded to one of the power supply wires 12, 13 (not depicted). The contact lugs 16, 17 are manufactured from sheet steel and injection-molded in the plastic base part 15 of the lamp base. The contact lugs 16, 17 are each made from an L-shaped steel sheet. In each case one limb 16a, 17a of the L-shaped contact lugs 16, 17 is in the form of a plug-type contact, while the other limb 16b, 17b is equipped with a groove 16c, 17c, into which in each case the bent-back end of a power supply wire 12, 13 is threaded. The angled region of the L-shaped contact lugs 16, 17 is injection-molded tightly in the plastic base part 15.
The invention is not restricted to the exemplary embodiments explained in more detail above. For example, the contact lug 16 in accordance with the first exemplary embodiment may additionally have, in the angled region, a burled surface in accordance with the third exemplary embodiment and/or slits in accordance with the fourth exemplary embodiment. Alternatively, the contact lug 16 in accordance with the first exemplary embodiment may also have a roughened or burled surface in the region of the elastomer 161, however, with the result that the primer and the elastomer 161 are arranged on the roughened or burled surface. Instead of a burled surface, other profiles can also be used.
Number | Date | Country | Kind |
---|---|---|---|
10 2005 007 048.5 | Feb 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/DE2006/000182 | 2/6/2006 | WO | 00 | 8/15/2007 |