Method for detecting a leak on a non-rigid test specimen
US-9810600-B2 · Nov 7, 2017 · US
US10247637B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10247637-B2 |
| Application number | US-201515316782-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 9, 2015 |
| Priority date | Jun 12, 2014 |
| Publication date | Apr 2, 2019 |
| Grant date | Apr 2, 2019 |
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Leak detection device for measuring the differential pressure between a test chamber ( 10 ) and a reference chamber, which can be separated from the test chamber ( 10 ) gas-tight by a first check valve ( 24 ), wherein a differential pressure sensor ( 34 ) is connected to the reference chamber and to the test chamber ( 10 ) in order to measure the differential pressure between the internal pressure of the reference chamber and the internal pressure of the test chamber ( 10 ), characterized in that the test chamber ( 10 ) and the reference chamber each have at least one wall region formed from a flexible film, wherein the ratio of the test chamber volume ( 20 ) to the surface area of the flexible wall region of the test chamber ( 10 ) adjacent to the test chamber volume ( 20 ) and the ratio of the reference chamber volume to the surface area of the flexible wall region of the reference chamber adjacent to the reference chamber volume are substantially equal.
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The invention claimed is: 1. Leak detection device measuring a differential pressure between a test chamber circumscribing a first internal volume and a reference chamber circumscribing a second internal volume, which can be separated from the first internal volume of the test chamber in a gas-tight manner by a first check valve that is arranged in a gas flow path connecting the first internal volume of the test chamber with the second internal volume of the reference chamber, wherein a differential pressure sensor is arranged in another gas flow path connecting the second internal volume of the reference chamber with the first internal volume of the test chamber in order to measure the differential pressure between an internal pressure within the second internal volume of the reference chamber and an internal pressure within the first internal volume of the test chamber, wherein the test chamber and the reference chamber each have at least one wall region formed from a flexible film, wherein a ratio of the first internal volume of the test chamber to the surface area of the flexible wall region of the test chamber adjacent to the first internal volume of the test chamber and a ratio of the second internal volume of the reference chamber to the surface area of the flexible wall region of the reference chamber adjacent to the second internal volume of the reference chamber are substantially equal. 2. Leak detection device of claim 1 , wherein the test chamber and the reference chamber are each formed as a film chamber. 3. Leak detection device of claim 1 , wherein the reference chamber volume is smaller than or equal to the test chamber volume. 4. Leak detection device of claim 1 , wherein the test chamber and the reference chamber are of a similar design. 5. Leak detection device of claim 1 , wherein the inner sides of the flexible wall regions of the test chamber and the reference chamber, which are adjacent the respective inner volume, are each provided with a nonwoven layer. 6. Leak detection device of claim 1 , wherein the ratios chamber volume/surface area of the flexible wall region of the test chamber and of the reference chamber differ by a maximum of 20 percent, preferably by a maximum of 5 percent. 7. Leak detection device of claim 1 , wherein the first check valve and the reference chamber are connected to a vacuum pump via a second check valve, the vacuum pump serving to evacuate the test chamber and the reference chamber. 8. Method for leak detection comprising measuring a differential pressure between a test chamber and a reference chamber using the leak detection device of claim 7 , wherein both check valves are opened to evacuate the test chamber and the reference chamber by means of the vacuum pump, the second check valve is closed when a predetermined pressure is reached in the test chamber, and the first check valve is closed before the start of the differential pressure measurement.
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