Abstract:
Fibrous structures containing filaments and optionally, solid additives, wherein the pre-moistened fibrous structures exhibit wet mikroCAD values that are superior to known pre-moistened fibrous structures as measured according to the Wet MikroCAD Test Method described herein and methods for making same are provided.
Abstract:
The present disclosure relates to methods and apparatuses for mechanically bonding substrates together. The apparatuses may include a pattern roll including a pattern element protruding radially outward. The pattern element includes a pattern surface and includes one or more channels adjacent the pattern surface. The pattern roll may be positioned adjacent an anvil roll to define a nip between the pattern surface and the anvil roll, wherein the pattern roll is biased toward the anvil roll to define a nip pressure between pattern surface and the anvil roll. As substrates advance between the pattern roll and anvil roll, the substrates are compressed between the anvil roll and the pattern surface to form a discrete bond region between the first and second substrates. As such, during the bonding process, some yielded substrate material flows from under the pattern surface and into the channel to form a channel grommet region.
Abstract:
A method of reducing biofilm and/or planktonic contamination from a surface using a fibrous structure, the method comprising the steps of: i) applying water to the surface or to the fibrous structure; and ii( wiping the surface with the fibrous structure; and wherein the fibrous structure is: a) a two-dimensional fibrous structure comprising a core and a scrim wherein the core is more hydrophilic than the scrim; or b) a three-dimensional fibrous structure comprising a sheet and a gather strip element joined to the sheet, the gather strip element comprising plural superimposed layers folded upon one another, a plurality of said layers having strips extending outwardly.
Abstract:
Fibrous structures containing filaments and optionally, solid additives, wherein the pre-moistened fibrous structures exhibit wet compressive modulus values that are superior to known pre-moistened fibrous structures as measured according to the Wet Compressive Modulus Test Method described herein and methods for making same are provided.
Abstract:
Pre-moistened fibrous structures containing filaments and solid additives, wherein the fibrous structures exhibit mileage values that are superior to known pre-moistened fibrous structures as measured according to the Mileage Test Method described herein and methods for making same are provided.
Abstract:
Fibrous structures containing solid additives, and more particularly, fibrous structures containing two regions that exhibit at least one common micro-CT intensive property that differs in value and wherein the common micro-CT intensive property transitions between the two regions and methods for making same are provided.
Abstract:
Fibrous structures containing solid additives, and more particularly, fibrous structures containing two or more regions that comprise different average weight % levels of solid additives and methods for making same are provided.
Abstract:
A cleaning pad exhibiting a basis weight of at least 100 gsm, wherein the cleaning pad comprises two or more fibrous structure plies (10) comprising pulp fibers, wherein each of the fibrous structure plies exhibits a basis weight of less than 250 gsm and at least one of the fibrous structure plies exhibits a basis weight of greater than 70 gsm to less than 250 gsm. Furthermore a cleaning system wherein the cleaning pad is attached to an implement is provided.
Abstract:
Pre-moistened cleaning pads, for example floor cleaning pads, that are suitable for attachment to an implement, such as a cleaning pad holder and handle, wherein the pre-moistened cleaning pads have an attachment portion comprising pulp fibers and a liquid composition, and methods for making same are provided.
Abstract:
Fibrous structures, for example pre-moistened fibrous structures, having a novel contact surface (micro protrusion surface) and methods for using the fibrous structures and making the fibrous structures are provided.