Bellows-type dispensing pump

Dispensing – With discharge assistant – Container with follower

Reexamination Certificate

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Details

C222S333000, C222S152000, C417S416000

Reexamination Certificate

active

06360921

ABSTRACT:

BACKGROUND OF THE INVENTION
The invention relates to an apparatus for discharging a liquid comprising a container containing the liquid and furthermore comprising a mobile element for reducing the volume of the container.
Apparatus of this type are known from, e.g., DE 42 19 161 A in connection with pumps in which the container or a hollow space is embodied in the shape of a cylinder in which a piston is caused to move for changing the container volume. The piston is sealed against the cylinder wall by means of a seal. Particles wear off due to the frictional forces between the seal and the interior cylinder wall, and these particles lead to contamination of the liquid that is to be discharged. This type of apparatus is therefore not suitable for discharging extremely pure liquids, e.g. chemicals or other liquids that are to be used for treatment or cleaning in the field of chip manufacturing when such treatment and cleaning require extremely pure media.
Known from U.S. Pat. No. 3,318,257, WO 96/10 534 A1, and U.S. Pat. No. 4,886,189 are pump arrangements in which diaphragms are provided for sealing the liquid container and for changing the container volume, and the position of diaphragms is changed by drive means that are either mechanical or hydraulic. It is not possible to discharge a liquid in a uniform, non-pulsing manner with these devices because it is not possible for them to have a uniform, non-pulsing change in the container volume. Therefore it is not possible for these apparatus to have uniform discharge at a constant volume per unit of time over a particular period of time.
Known from FR 13 82 439 is an apparatus in which a bellows constitutes the container containing the liquid. One disadvantage of this arrangement is that when there is a change in the bellows/container volume, the pressure that occurs in the bellows creates pressure on the surface of the bellows. Therefore, even when the travel motion is uniform, the volume and thus the discharge quantity of the liquid to be pumped is not uniform and constant across the entire range of travel.
The object of the invention is therefore to provide an apparatus that is constructed simply, avoids formation of particles during operation and thus avoids contaminating the liquid to be discharged, and makes it possible to discharge the liquid over the discharge period at a constant volume per unit of time.
SUMMARY OF THE INVENTION
This object is achieved in accordance with the invention with an apparatus for discharging a liquid comprising a container containing the liquid and furthermore comprising a mobile element for reducing the volume of the container, wherein the mobile element is movable in the container in a contact-free manner and is connected to an inner wall of the container in a liquid-tight manner, and the connection between the mobile element and the inner wall of the container is a bellows, the interior space oriented away from the container of which together with a housing constitute a space that is closed against the exterior and that contains a spindle for a drive apparatus that is connected in the interior space of the bellows to the mobile element.
Because one feature in accordance with the invention is the use of a bellows, the interior space of the container, in which the liquid to be discharged is located, is securely and reliably closed against the outside, even with respect to the mobile element, without limiting the mobility of the element for reducing the volume of the container and for generating the discharge pressure for the liquid. An essential advantage of this apparatus in accordance with the invention compared to conventional discharge apparatus, e.g. those that use pumps, is that no seal is necessary between the mobile element and the interior surface of the container. Frictional forces therefore do not occur between the mobile element and the container wall, so that no particles can be formed that could contaminate the liquid to be discharged that is contained in the container. In addition, the pressure to be exerted on the liquid to be discharged is substantially more uniform due to the fact that no uneven frictional forces occur. This results in the liquid being discharged in a substantially more uniform and pulsation-free manner.
The apparatus in accordance with the invention has significant advantages over diaphragm pumps, as well, since when using a bellows to connect the mobile element and an inner wall of the container independent of the container volume, that is, independent of the beginning or end of the pumping process, it is always possible to pump a constant volume per time unit since the container volume has a linear relationship to the movement of the mobile element and to the dimension of the drive for this element over the entire pumping process, in contrast to diaphragm pumps.
Although the mobile element during its movement can be in physical contact with the interior surface of the container, contact-free movement of the element in the container is particularly advantageous for reasons already cited because this avoids wear with certainty.
The mobile element is connected to a drive device in the bellows, characterized in the following as bellows. Since the bellows completely seals the interior of the container against the outside, no measures are required to protect the drive device from the liquid to be discharged. In conventional apparatus with sealing elements between the mobile element and the inner wall of the container, it is not possible to reliably prevent liquid from penetrating to the sealing elements even when the sealing elements are undamaged. The apparatus in accordance with the invention reliably avoids the difficulties and leaks that occur because of this, which are very disadvantageous, especially in the case of very aggressive or corrosive liquids. The drive device can therefore be more simple in its construction and can be produced with less expensive parts.
The drive device encompasses a mobile rod, preferably a servo-axis or a spindle, wherein this rod, servo-axis, or spindle can be constructed very simply and still permit very uniform linear movement at a very constant speed over the range of travel so that the liquid is discharged at a very constant volume per unit of time. A motor drives, moves or rotates the rod, servo-axis, or spindle.
Preferably the entire drive device is surrounded by a housing that preferably is attached to an exterior wall of the container, wherein the housing and the interior space of the bellows constitute a space that is closed against the outside. This design is not only simple in terms of construction as regards manufacturing and maintenance, but reliably protects the exterior space from a chemically aggressive environment as can be found in chemical facilities and in particular in facilities for treating and producing semiconductor chips. In order to protect the drive even better against external factors, the space formed by the housing for the drive device and the bellows is filled with an inert, neutral gas that can furthermore have an overpressure in order to reliably prevent aggressive vapors from being introduced into this space.
In accordance with an additional embodiment of the invention, arranged in the space formed between the housing and the bellows is a sensor that determines whether liquid to be discharged from the container travels into this space, e.g. when the bellows or connecting points between the bellows and the mobile element or the container wall leaks. In this case it is advantageous to arrange the sensor near the bellows. It is also possible, however, to provide a sensor alternatively or additionally in this space with which it can be determined whether gases have penetrated therein from outside.
Preferably the material from which the bellows is manufactured comprises a substance that is not affected by the liquid to be discharged.
The present invention is particularly suitable for use for conducting a liquid in a carrier stream. In this case it is very important that the liquid be introduced

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