Filter insert as well as fluid filter
US-11154805-B2 · Oct 26, 2021 · US
US12544704B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12544704-B2 |
| Application number | US-202217742569-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 12, 2022 |
| Priority date | Nov 14, 2019 |
| Publication date | Feb 10, 2026 |
| Grant date | Feb 10, 2026 |
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A separation component for a filter element has a web-shaped support body with a top rim and a bottom rim. A web-shaped separator body covers a side face of the support body completely or partially. Support body and separator body are wound to a spiral shape with axially successive turns. The support body has a connecting fold at the top rim and at the bottom rim, respectively. The connecting folds engage each other in the axially successive turns of the spiral shape. The separation component can be manufactured by placing a web-shaped separator body onto a web-shaped support body and by winding support body and separator body to a spiral shape. During winding, a connecting fold at a top rim of a turn of the spiral shape and a connecting fold at a bottom rim of an axially successive turn are brought into engagement with each other.
Opening claim text (preview).
What is claimed is: 1 . A separation component for a filter element, the separation component comprising: a support body comprising a grid structure that permits flow of a fluid through the support body and comprised of a web with a top rim and with a bottom rim; a separator body comprised of a nonwoven web with a top rim and a bottom rim and covering at least one side face of the support body; wherein the support body and the separator body are wound together to a spiral shape comprising axially successive turns; wherein the support body and the separator body together comprise a connecting fold at the respective top rims and a connecting fold at the respective bottom rims, and wherein the connecting fold at the respective top rims and the connecting fold at the respective bottom rims engage each other in the axially successive turns of the spiral shape. 2 . The separation component according to claim 1 , wherein the connecting fold at the respective top rims is embodied as a bent top rim of the respective webs and the connecting fold at the respective bottom rims is embodied as a bent bottom rim of the respective webs. 3 . The separation component according to claim 1 , wherein the separator body covers the support body in a region of the connecting fold at the respective top rims and in a region of the connecting fold at the respective bottom rims. 4 . The separation component according to claim 1 , wherein the separator body is comprised of a coalescer material. 5 . The separation component according to claim 1 , wherein the separator body completely covers the at least one side face of the support body. 6 . The separation component according to claim 1 , wherein the separation component comprises a cylindrical spiral shape. 7 . The separation component according to claim 1 , wherein the connecting fold at the respective top rims and the connecting fold at the respective bottom rims are in form fit engagement with each other in the axially successive turns of the spiral shape. 8 . A filter element comprising: a top end disk; a bottom end disk; and a first separation component arranged between the top end disk and the bottom end disk, wherein the first separation component is the separation component according to claim 1 . 9 . The filter element according to claim 8 , further comprising a filter medium body arranged upstream or downstream of the first separation component in a flow direction of the fluid through the filter element. 10 . The filter element according to claim 8 , further comprising a second separation component arranged upstream or downstream of the first separation component in a flow direction of the fluid through the filter element. 11 . A filter device comprising: a filter element comprising a top end disk, a bottom end disk, and the separation component according to claim 1 arranged between the top end disk and the bottom end disk; and a filter housing configured to receive the filter element. 12 . A method for manufacturing a separation component for a filter element, the method comprising: arranging a web-shaped separator body comprised of a nonwoven web having a top rim and a bottom rim onto at least one side face of a web-shaped support body comprising a grid structure that permits flow of a fluid through the support body and comprised of a web having a top rim and a bottom rim; winding the support body and the separator body together to a spiral shape; during winding, bringing into engagement with each other a connecting fold at the respective top rims of the separator body and the support body of a turn of the spiral shape and a connecting fold at the respective bottom rims of the separator body and the support body of an axially successive turn of the spiral shape. 13 . The method according to claim 12 , further comprising producing the connecting fold at the respective top rims of the web-shaped separator body and the web-shaped support body and the connecting fold at the respective bottom rims of the web-shaped separator body and the web-shaped support body during winding. 14 . A filter element for a filter device, comprising: a top end disk comprising a central opening; a closed bottom end disk; and at least one separation component comprising a support body and a separator body; wherein the support body comprises a grid structure having a plurality of openings for permitting a fluid to flow through the support body, the support body comprising a web having a top rim and a bottom rim; wherein the separator body comprises a nonwoven web having a top rim and a bottom rim; wherein the support body and the separator body are spiral wound together in successive turns; wherein the top rim of the support body and the top rim of the separator body are bent together to form a first fold connection, and the bottom rim of the support body and the bottom rim of the separator body are bent together to form a second fold connection; and wherein the first fold connection and the second fold connection are engaged together to join the successive turns.
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