Filter Insert and Method for Manufacturing a Filter Insert
US-2016256813-A1 · Sep 8, 2016 · US
US11154805B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11154805-B2 |
| Application number | US-201816160338-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 15, 2018 |
| Priority date | Oct 16, 2017 |
| Publication date | Oct 26, 2021 |
| Grant date | Oct 26, 2021 |
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Official abstract text for this publication.
A filter insert for installation in a fluid filter has at least one main separator for separating liquid from aerosol. The main separator is supported at a main separator support tube. The filter insert further has at least one post separator for separating liquid from aerosol that is supported at a post separator support tube. The post separator is arranged downstream of the main separator in a flow direction of a fluid to be cleaned. The post separator is arranged concentric to the main separator and is radially spaced by an intermediate space from the main separator. The post separator support tube is configured to add axial elasticity to the support tube.
Opening claim text (preview).
What is claimed is: 1. A filter insert for installation in a fluid filter, the filter insert comprising: at least one main separator configured to separate liquid from aerosol; a main separator support tube, wherein the at least one main separator is arranged about the main separator support tube and the main separator support tube supports the at least one main separator; at least one post separator configured to separate liquid from aerosol; a post separator support tube, wherein the at least one post separator is arranged about the post separator support tube and the post separator support tube supports the at least one post separator; wherein the at least one post separator is arranged downstream of the at least one main separator in a flow direction of a fluid to be cleaned; wherein the at least one post separator is arranged concentric to the at least one main separator and is radially spaced by an intermediate space from the at least one main separator; wherein the post separator support tube comprises axial elasticity; wherein the filter insert is substantially hollow cylindrical and comprises a first axial end face; and a second axial end face; wherein the filter insert comprises a first end disk covering the first axial end face; and a second end disk covering the second axial end face; wherein the main separator support tube is rigid and defines an axial spacing distance from the first to the second end disk; wherein the post separator support tube is elastically clamped between the first and second end disks; wherein the post separator support tube is axially oversize and wherein, in an unclamped state, has an uncompressed axial length that is greater than the defined axial spacing distance; wherein the post separator support tube, when clamped between the filter element end disks, is axially compressed to a reduced axial length relative to the uncompressed axial length of the post separator support tube; wherein the post separator support tube is elastically secured by the clamping between the end disks; wherein at least one terminal region of the post separator support tube is everted and forms an everted terminal region, wherein the everted terminal region is clamped radially between the first or second end disk covering one of the end faces of the filter insert and the post separator such that the everted terminal region is in direct contact with the end disk neighboring the everted terminal region. 2. The filter insert according to claim 1 , wherein the first end disk is open and the second end disk is closed. 3. The filter insert according to claim 1 , wherein, by an axial elastic deformation of the post separator support tube, an electrical contact between the post separator support tube and at least one component of electrically conductive material of the filter insert is produced. 4. The filter insert according to claim 3 , wherein at least one terminal region of the post separator support tube undergoes the axial elastic deformation. 5. The filter insert according to claim 3 , wherein the electrical contact by the axial elastic deformation of the post separator support tube is produced between the post separator support tube and at least one end disk of the filter insert covering one of the end faces of the filter insert and/or the main separator support tube. 6. The filter insert according to claim 3 , wherein the axial elastic deformation of the post separator support tube is realized by expansion, compression or stretching. 7. The filter insert according to claim 1 , wherein the post separator support tube is a tubular knitted wire mesh. 8. The filter insert according to claim 7 , wherein the tubular knitted wire mesh is circularly knitted. 9. The fluid insert according to claim 1 , wherein the filter insert is a coalescence filter insert. 10. A fluid filter comprising: the filter insert according to claim 1 ; and a pressure-resistant housing configured to receive the filter insert. 11. The fluid filter according to claim 10 , wherein the filter insert is a coalescence filter insert.
of wire gauze; of knitted wire; of expanded metal · CPC title
arranged concentrically or coaxially · CPC title
Prevention of static charge, e.g. by grounding · CPC title
characterised by the physical shape or structure of the filtering element · CPC title
Auxiliary equipment or operation thereof · CPC title
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