Meltfusion bonded absorbant structure comprising fibres and superabsorbant particles method for manufacturing such structure
The present invention is an absorbent structure comprising a fibrous matrix ( 110 ), meltfusionable material and superabsorbent polymer particles ( 140 ). The absorbent structure is bonded by a meltfusion bond point ( 200 ) pattern, which is preferably created by ultrasonic welding.
1. A method for the manufacture of an absorbent structure,
said structure comprising
fibres forming a fibrous matrix having an x-, y-, and thickness or z-extension;
superabsorbent polymer (SAP) particles which are capable of exerting an expansion force upon swelling upon absorption of a liquid and which are positioned within the pores of said fibrous matrix;
at least one cover web,
and meltfusion bond points arranged in an x-y-directionally extending bonding pattern, penetrating z-directionally through said fibrous matrix,
said method comprising the steps of
providing a fibrous matrix;
providing SAP particles;
positioning said SAP particles in interfibre pores of said matrix at a basis weight of not less that about 50 g/m 2 ;
providing at least one cover web;
providing a support structure;
positioning said fibrous matrix with said SAP particles and said at least one cover web positioned parallel to both x-y-directionally extending surface of said structure on said support structure; applying energy to said structure to form meltfusion points in a predetermined pattern determined by said support structure,
wherein said meltfusion points connect said cover web positioned on both surfaces of said structure and exhibit an aspect ratio of their long axis to their short axis of at least 1.05 to 1 and wherein said meltfusion bonds are essentially free of particulate SAP.
2. A method according to claim 1 , wherein said support structure is in the form of a flexible anvil.
3. A method according to claim 1 , wherein said support structure is in the form of helical anvil.
4. A method for forming an absorbent structure according to claim 1 , wherein said energy is ultrasonic energy.
5. A method for forming an absorbent structure according to claim 1 , wherein said meltfusion points form a predetermined x-y-directional bond point pattern.
6. A method for forming an absorbent structure according to claim 5 , wherein said meltfusion points form a predetermined x-y-directional bond point pattern satisfying at least one of the conditions selected from the group consisting of the bond points have a bond point size of from about 0.1 mm 2 to about 20 mm 2 ;
the bond points exhibit an ellipsoidal shape;
the number of bond points in the pattern is from one bond point per 9 cm 2 to 1 bond point per 9 mm 2 ;
the bonding pattern comprises one or more sub-pattern.
7. A method for forming an absorbent structure according to claim 1 , wherein said fibrous matrix is provided as one or more prebonded web(s).
8. A method for forming an absorbent structure according to claim 1 , wherein said positioning of said particles in said web is aided by an embedding aiding means comprising one or more elements selected from the group consisting of
vacuum;
tentering x- or y-directionally;
mechanically activating between two flat, profiled or interdigitizing rolls;
shaking or vibrating.
9. A method for forming an absorbent structure according to claim 1 , further comprising one or more of the steps selected from the group consisting of
applying one or more secondary containment means, circumscribing said absorbent structure x-y-directionally;
applying an expansion aiding means;
providing the SAP particles in an essentially continuous stream, which is modulated, before said particles are positioned in the interfibre pores.
10. A method for forming an absorbent structure according to claim 9 , wherein said secondary containment means is a circumferential bonding, exhibiting a bond strength higher than the bond strength of said meltfusionable bond points.
11. A method for forming an absorbent structure according claim 9 , wherein said expansion aiding means is a circumferential fold line or a pop open line.
12. A method for forming an absorbent structure according to claim 9 , wherein said modulated continuous stream of SAP particles is interrupted before said particles are positioned in the interfibre pores.