Cleaning and liquid contact with solids – Apparatus – With heating – cooling or heat exchange means
Reexamination Certificate
1999-04-27
2001-02-13
Stinson, Frankie L. (Department: 1746)
Cleaning and liquid contact with solids
Apparatus
With heating, cooling or heat exchange means
C134S123000, C134S198000, C239S284200
Reexamination Certificate
active
06186156
ABSTRACT:
BACKGROUND OF THE INVENTION
The invention relates to a cleaning device for a motor vehicle lens glass, in particular a motor vehicle lamp lens, having a washer jet which can be heated by means of a heating element, is provided for spraying the lens glass with washer fluid and is arranged such that it can be moved from a position of rest into an operating position.
Cleaning devices of this type are often used in today's motor vehicles for motor vehicle lamps in the form of front headlamps, and in practice are known. The washer jet is generally arranged in a fender in front of the lens glass and can be moved, by means of an axially displaceable piston, from a position of rest recessed in the contour of the motor vehicle into a position which protrudes with respect to the contour of the fender.
In the case of cleaning devices of this type, similarly to the case of immovable washer jets for cleaning the motor vehicle's windshield, there is the problem that the washer jet tends to freeze up when there is frost. In order to prevent this the washer jet is heated electrically in the case of known cleaning devices. For this purpose, the heating element is actuated by a control element, when the temperature falls below a critical ambient temperature, and thereby prevents the jet from freezing up. A disadvantage in this case is the relatively elaborate and wear-susceptible contacting of the electrically heatable washer jet. The contacting takes place, for example via flexible wires or sliding contacts which are easily damaged in the motor vehicle fender region, which is particularly frequently subjected to stress, and can result in the cleaning device malfunctioning.
BRIEF SUMMARY OF THE INVENTION
The invention is based on the problem of equipping a cleaning device of the type mentioned at the beginning with a heating element without a flexible, electrical contact being required for this purpose on the washer jet which can be moved from a position of rest into an operating position.
According to the invention, this problem is solved in that the heating element is positioned in a fixed location in the direct vicinity to the washer jet situated in the position of rest. By this means, the heating element can be arranged on an immovable part of the cleaning device and therefore does not require any electrical contacting compensating for the movement of the washer jet. Since the heating element lies in the direct vicinity of the washer jet in the position of rest of the washer jet, heating of the washer jet is possible without any problem so that the washer jet is reliably prevented from freezing up. While the washer jet is in the extended operating position, the heating element and the washer jet are at a distance from one another. This is insignificant because of the merely relatively short period of time in which the washer jet is situated in its operating position. Freezing up is virtually ruled out while the washer jet is in its operating position because the cleaning fluid is then flowing. The heating element can be arranged relatively easily on the cleaning device which is know per se.
The heating element can also be arranged retrospectively in the case of known cleaning devices in a particularly simple manner if the heating element is designed for heating the washer jet by heat radiation.
In this case, an embodiment of the invention is particularly advantageous in which the heating element is arranged on an element of the vehicle body. As a result, no structural changes are required to a conventional, unheated cleaning device. In this case, the heating element can be arranged without a great outlay on a support which holds the cleaning device. Extensive pre-assembly of the heating element, for example in the interior of a fender, is possible in this case. Furthermore, exchange of the heating element in the event of the cleaning device being damaged can be omitted as a result. In addition, there is the possibility of retrofitting the heating element in existing cleaning devices.
An embodiment of the invention is particularly favourable in this case in which the heating element has an electrical resistance element. Heating elements of this type make simple installation possible and have a relatively small overall height. They are therefore also suitable for use in comparatively unfavourable space conditions. Furthermore, the electrical resistance element can be designed such that it can be regulated by means of a control element which detects the outside temperature. The temperature sensors required for this purpose frequently already exist in today's vehicles and so the activating means of the resistance element can be integrated without a problem into the control unit.
A development of the invention is particularly appropriate in this case in which the heating element has a PTC element. Such a PTC element (Positive Temperature Coefficient), which is also known as PTC resistor, does not require any additional control element since the electrical resistance of the PTC element is dependent on temperature and therefore additional detection of the outside temperature is not required. As a result, easy retrofitting of the heating element, in particular also in motor vehicles which do not have a temperature sensor, is possible.
A development of the invention is also advantageous in which the heating element has a heat conducting element transmitting the waste heat from the motor vehicle engine. This heat conducting element is, for example, directly connected to the engine and can thus use the waste heat being produced at the engine for heating the washer jet. In this case, no electrical contacts of any type are required for the heating element and, in contrast to an electrically operated heating element, an additional consumption of energy does not arise.
In this case, an embodiment of the invention is particularly well suited in which the heating element is a heat exchanger which uses the heat energy from the engine cooling water. For this purpose, the heating element can be directly connected into the cooling water circuit by means of a hose connection and thus makes it possible for the heat energy which is present to be used without a problem. The use of flexible hose pipes also makes it possible for positions which are not easily accessible on the motor vehicle to be reached.
In a particularly effective development of the invention in which the heating element is designed such that it can be placed against the washer jet in the position of rest thereof, the losses which arise during the transfer of the heat from the heating element to the washer jet can be reduced. The heating element efficiency which is improved in this case enables a heating element of lower heating power to be used with the power being unchanged. As a result, savings in energy can be achieved and more cost-efficient heating elements used.
Another advantageous embodiment of the invention can also be achieved in that the heating element is switched off in the operating position of the washer jet. In the operating position of the washer jet the latter is at a relatively great distance from the heating element so that the heating element is ineffective. By switching off the heating element, unnecessary consumption of energy and hence cost can therefore be avoided.
For this purpose a development is particularly well suited in which the contacting of the heating element is interrupted in the operating position of the washer jet. A separate control element which initially detects the operating state and, if appropriate, interrupts the supply of energy to the heating element, if the washer jet is situated in the operating position, is therefore unnecessary. This can be done, for example, by means of contact pins which produce an electrical contact in the retracted position of rest of the washer jet and interrupt the contacting in the extended operating position.
The washer jet could be designed such that it can be moved by means of the fluid pressure of the washer fluid. In contrast, a particularly advantageou
Mannesmann VDO AG
Mayer Brown & Platt
Stinson Frankie L.
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