Pump
US-9429159-B2 · Aug 30, 2016 · US
US10774835B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10774835-B2 |
| Application number | US-201615778119-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 14, 2016 |
| Priority date | Nov 24, 2015 |
| Publication date | Sep 15, 2020 |
| Grant date | Sep 15, 2020 |
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Official abstract text for this publication.
A vacuum pump with a primarily cylinder-shaped pump housing is provided. A bowl-shaped sound-absorbing cover is attached on the pump housing and a circumferential gap space for sound absorption is formed between the pump housing and the sound-absorbing cover. The pump housing has an end face in which at least one air outlet opening is arranged. An elastic upstream sound absorber element is arranged between the end face and the sound-absorbing cover so that an upstream chamber is formed therebetween into which the air flows from the air outlet opening. The upstream sound absorber element has a molded projection facing the end face with an air channel passing through the projection. The projection is arranged at a distance from the end face during operation of the vacuum pump. While the vacuum pump is idle, the projection makes contact with the end face through elastic deformation of the upstream sound absorber element, causing the air channel to be closed off and creating a check valve function.
Opening claim text (preview).
The invention claimed is: 1. A vacuum pump comprising: a primarily cylinder-shaped pump housing, in which a rotor with slider elements is mounted to swivel; at least one air outlet opening, wherein the pump housing including an end face in which at least one said air outlet opening is arranged; a bowl-shaped sound-absorbing cover is attached on the pump housing; a circumferential gap space for sound absorption formed between the pump housing and the sound-absorbing cover an elastic upstream sound absorber element arranged between the end face and the sound-absorbing cover so that an upstream chamber is formed between the upstream sound absorber element and the end face into which the air flows from the air outlet opening, wherein the upstream sound absorber element has a molded projection facing the end face with an air channel passing through the projection; wherein the projection is arranged at a distance from the end face during operation of the vacuum pump and, while the vacuum pump is idle, the projection makes contact with the end face through elastic deformation of the upstream sound absorber element, causing the air channel to be closed off and creating a check valve function. 2. The vacuum pump in accordance with claim 1 , wherein the upstream sound absorber element has a diaphragm section containing the projection with the air channel. 3. The vacuum pump in accordance with claim 2 , wherein the upstream sound absorber element is shaped like a circular disk and has an outer ring section used to hold the upstream sound absorber element between the sound-absorbing cover and the end face of the pump housing. 4. The vacuum pump in accordance with claim 3 , wherein the diaphragm section is formed between the projection and the ring section, where the projection is formed in the center of the circular disk shape of the upstream sound absorber element. 5. The vacuum pump in accordance with claim 3 , wherein a sealing lip is radially attached to the outside of the ring section, which is in contact with a circumferential ridge in the sound-absorbing cover. 6. The vacuum pump in accordance with claim 3 , wherein a circumferential holder ridge is formed in the sound-absorbing cover and holds the ring section of the upstream sound absorber element. 7. The vacuum pump in accordance with claim 2 , wherein inside the sound-absorbing cover, ribs are formed against which the upstream sound absorber element comes to rest at least with the diaphragm section if the vacuum pump is in operation. 8. The vacuum pump in accordance with claim 1 , wherein the air channel in the projection has a cross-section that is dimensioned with such a small size that an air-regulating effect is created when air flows through the air channel between the upstream chamber and a ribbed chamber formed between the upstream sound absorber element and the sound-absorbing cover.
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