HIGH BURST STRENGTH WET-LAID NONWOVEN FILTRATION MEDIA AND PROCESS FOR PRODUCING SAME
Fibrous filtration media and method of making the same are provided. According to preferred embodiments, the filtration media includes an embossed wet-laid hot area-calendered nonwoven fibrous web which includes synthetic staple fibers, and from about 20 wt. % to about 80 wt. %, based on total weight of the fibrous web, of bicomponent staple fibers dispersed through the fibrous web. The fibrous web exhibits dry and wet burst strengths of greater than 5 bar, usually greater than 10 bar, and more preferably greater than about 12 bar, or even greater than about 15 bar in some embodiments.
1 . A fibrous filtration media comprising a wet-laid, hot area-calendered nonwoven fibrous web comprising:
from about 20 wt. % to about 80 wt. %, based on total weight of the fibrous web, bicomponent staple fibers dispersed through the fibrous web; and
other synthetic staple fibers, wherein
the fibrous web has a density greater than about 0.20 g/cm 3 , and exhibits a dry burst strength of greater than 5 bar.
2 . The fibrous filtration media according to claim 1 , wherein the fibrous web has an MD stiffness of at least 2000 mg after hot oil aging.
3 . The fibrous filtration media according to claim 1 , wherein the fibrous web has a dry burst strength of greater than about 10 bar.
4 . The fibrous filtration media according to claim 1 , wherein the fibrous web has a density greater than about 0.30 g/cm 3 .
5 . The fibrous filtration media according to claim 1 , wherein one side of the fibrous web comprises an embossing.
6 . The fibrous filtration media according to claim 1 which comprises between 0 and 20 wt. %, based on total weight of the fibrous web, of glass fibers.
7 . The fibrous filtration media according to claim 1 wherein the other synthetic staple fibers comprise a mixture of at least two different types of synthetic fibers.
8 . The fibrous filtration media according to claim 1 , wherein the other synthetic staple fibers comprise between about 5 wt. % to about 30 wt. % based on total weight of the fibrous web, of regenerated cellulosic fibers.
9 . The fibrous filtration media according to claim 1 , wherein the filtration media further comprises at least one additive selected from the group consisting of wet strength additives, optical brighteners, fiber retention agents, colorants, fuel-water separation aides, and flame or fire retardants.
10 . The fibrous filtration media according to claim 1 , wherein the other synthetic staple fibers are forms of a polymer selected from the group consisting of polyethylene terephthalate (PET), polybutylene terephthalate (PBT), polyethylene (PE), polypropylenes (PP), nylon-6, nylon 6,6, nylon-6,12, and combinations thereof.
11 . The fibrous filtration media according to claim 1 , wherein the other synthetic staple fibers are present at a level of at least 20 wt. % based on total weight of the fibrous web.
12 . The fibrous filtration media according to claim 1 , wherein the bicomponent staple fibers are present at a level in the range of between about 30 wt. % to about 60 wt. % based on total weight of the fibrous web.
13 . The fibrous filtration media according to claim 1 , wherein the bicomponent staple fibers are sheath-core bicomponent stable fibers.
14 . The fibrous filtration media according to claim 13 , wherein the sheath and core of the bicomponent staple fibers are formed of polyethylene terephthalate (PET), wherein the PET forming the sheath has a melting temperature which is less than that of the PET forming the core.
15 . The fibrous filtration media according to claim 1 , wherein the fibrous web has a Pore Size Range of 30 μm or less.
16 . The fibrous filtration media according to claim 1 , wherein the filtration media has a particle removal efficiency of at least 50% at 20 microns.
17 . A filter element comprising the filtration media of claim 1 for use in hot oil filtration.
18 . The filter element according to claim 17 , wherein one side of the filtration media comprises an embossing, and the one side of the filtration media comprising the embossing is positioned on a downstream side of the filter element.
19 . A method of making a fibrous web comprising:
a. forming a wet-laid fibrous web from an aqueous fibrous slurry comprising synthetic staple fibers and from about 20 wt. % to about 80 wt. %, based on total weight of the fibrous web, of sheath-core-bicomponent staple fibers;
b. subjecting the wet-laid fibrous web from step a to hot area calendering to melt the sheath of the bicomponent staple fibers so as to bond the synthetic staple fibers one to another and achieve a fibrous web having a density greater than about 0.20 g/cm 3 , and a dry burst strength of greater than 5 bar.
20 . The method according to claim 19 , wherein step b is practiced at a calendering pressure condition of between about 1 kN/m to about 150 kN/m and a calendering temperature condition of between about 110° C. to about 250° C. with a calendering line speed of between about 1 m/min to about 50 m/min.
21 . The method according to claim 19 , further comprising:
c. subjecting one side of the fibrous web to embossing.
22 . The method according to claim 21 , wherein step c is practiced at an embossing temperature condition of between about 150 and 200° C., and at an embossing pressure condition of between about 1 and 20 kgf/cm, and at an embossing machine speed of about 1 to 20 m/min.