Fuel filter employing one or more layers of wetlaid synthetic fibers
An in tank depth media fuel filter assembly includes a closed body having an interior and an exterior. The closed body has a first composite panel of filtration media and a second composite panel of filtration media. Each of the composite panels includes and outer support layer and at least three inner layers of filtration material including at least two spunbonded layers of synthetic filaments and at least one layer of wetlaid synthetic fibers. An opening is provided in the body for providing fluid communication with the interior thereof.
1. An in tank depth media fuel filter assembly comprising, in combination, a closed body having an interior and an exterior, said closed body having a first composite panel of filtration media and a second composite panel of filtration media, each of said composite panels comprising and outer support layer and at least three inner layers of filtration material, said three inner layers being free of layers of meltblown fibers and including at least two spunbonded layers of synthetic filaments and at least one layer of wetlaid synthetic fibers, an opening in said body for providing fuel communication with the interior of said body.
2. The fuel filter of claim 1 , wherein said at least one layer of wetlaid synthetic fibers is uncalendered and is disposed between spunbonded layers of synthetic filaments in each of said composite panels.
3. The fuel filter of claim 1 , including at least two spunbonded layers and multiple layers of uncalendered wetlaid synthetic fibers between at least two spunbonded layers of synthetic filaments.
4. The fuel filter of claim 1 , wherein the synthetic filaments of the spunbonded layers include polyamide filaments.
5. The fuel filter of claim 1 , wherein the wetlaid synthetic fibers are polyester fibers.
6. The fuel filter of claim 1 , including at least three inner layers of filtration material, at least two of said layers being spunbonded layers of synthetic filaments and at least one of said layers being an uncalendered wetlaid synthetic fiber layer between layers of said spunbonded filaments.
7. The fuel filter of claim 1 , wherein the support layer is an extruded, apertured film.
8. The fuel filter of claim 1 , wherein the support layer is an extruded, mesh film.
9. The fuel filter of claim 1 , wherein said at least one layer of wetlaid synthetic fibers is disposed between spunbonded layers of synthetic filaments in each of said composite panels, said spunbonded layers being outer layers of each of said composite panels.
10. The fuel filter of claim 1 , wherein said at least one layer of wetlaid synthetic fibers is uncalendered and is disposed between spunbonded layers of synthetic filaments in each of said composite panels, said spunbonded layers being outer layers of each of said composite panels.