Film Chamber with Measuring Volume for Gross Leak Detection
20170254720 · 2017-09-07
Inventors
Cpc classification
G01M3/26
PHYSICS
International classification
Abstract
A film chamber for receiving a test object which is to be tested with respect to the presence of a leak, wherein the film chamber has walls enclosing a film chamber volume, said walls having at least one flexible wall region, wherein a measuring volume adjoining the flexible wall region is arranged on the side of the flexible wall region which is situated opposite the film chamber volume and is hermetically separated from the film chamber volume.
Claims
1. A film chamber for receiving a test object which is to be tested for a presence of a leak, wherein the film chamber has walls enclosing a film chamber volume, said walls having at least one flexible wall portion, wherein a measuring volume adjoining the flexible wall portion is arranged on a side of the flexible wall portion which is situated opposite the film chamber volume and is hermetically separated from the film chamber volume.
2. The film chamber of claim 1, wherein the measuring volume is connected in a gas-conveying manner with a pressure sensor or a flow sensor.
3. The film chamber of claim 1, wherein the measuring volume is connected with an atmosphere surrounding the measuring volume via a ventilation valve.
4. The film chamber of claim 1, wherein the film chamber has a first and a second film layer which, in a closed state of the film chamber, enclose the film chamber volume wherein a first measuring volume adjoins the first film layer and a second measuring volume adjoins the second film layer.
5. The film chamber of claim 4, wherein the first and second measuring volumes are connected in a gas-conveying manner.
6. The film chamber of claim 1, wherein the measuring volume is formed by a measuring chamber ring supporting the flexible wall portion at the lower side thereof and a measuring chamber cover closing the measuring chamber ring on the side opposite the flexible wall portion.
7. The film chamber of claim 1, wherein the film chamber has an open state for placing a test object in the film chamber volume and a closed state in which the film chamber volume is hermetically closed, wherein the measuring volume is hermetically closed independent of the state of closure of the film chamber.
8. A method for testing a test object for the presence of a leak comprising: placing the test object in a film chamber, closing the film chamber, evacuating the film chamber, monitoring a measuring volume during evacuation of the film chamber, and assessing a size of a possible leak in the test object based on the monitoring result.
9. The method of claim 8, further comprising detecting a gross leak in response to the measuring volume increasing as the film chamber is evacuated.
10. The method of claim 8, wherein after the closing and evacuation of the film chamber, the measuring volume is ventilated if no gross leak is detected in the test object.
11. The method of claim 8, wherein a change in the measuring volume influenced by the test object placed therein is determined by measuring a pressure within the film chamber or by measuring a gas flow in the film chamber or from the film chamber.
12. The method of claim 8, wherein an absolute volume of the test object is determined by measuring a change in pressure in the film chamber or by measuring a gas flow in the film chamber or from the film chamber.
Description
[0012] The following is a detailed explanation of an embodiment of the invention with reference to the Figures. In the Figures:
[0013]
[0014]
[0015]
[0016]
[0017]
[0018] The film chamber 10 illustrated in
[0019] The measuring chamber cover 30, the measuring chamber ring 26 and the film layer 16 thus enclose an upper measuring volume 34, and the film layer 18, the measuring chamber ring 28 and the measuring chamber cover 32 enclose a lower measuring volume 36. The measuring volumes 34, 36 are hermetically separated from the film chamber volume 20 and the outer atmosphere surrounding the film chamber 10. The measuring volumes 34, 36 are connected with each other in a gas-conveying manner by means of a gas-conveying connection not illustrated in the Figures, e.g. a tube.
[0020] The upper measuring volume 34 is connected in a gas-conveying manner with a pressure sensor 38. A ventilation valve 40 formed in the upper measuring chamber cover 30 connects the upper measuring volume 34 with the atmosphere surrounding the film chamber 10 on the outside. In the closed state of the ventilation valve 40 the measuring volume 34 is hermetically separated from atmosphere and, in the open state of the valve, it is connected with atmosphere in a gas-conveying manner.
[0021] In the region of the outer edge a sealing ring 42 is provided between the two film layers 16, 18, which sealing ring provides a gas-tight connection between the film layers 16, 18 in the closed state of the film chamber 10.
[0022]
[0023] In the case of a leaky test object having a gross leak with a diameter of about 1 cm, the state illustrated in
[0024] Using the pressure sensor 38 the pressure in the measuring volumes 34, 36 can be monitored during evacuation of the film chamber 10, so as to determine from the pressure characteristic whether the test object has a gross leak.
[0025]