US2005136218A1PendingUtilityA1

Bulky sheet and process for producing the same

Assignee: KAO CORPPriority: Mar 24, 2000Filed: Feb 8, 2005Published: Jun 23, 2005
Est. expiryMar 24, 2020(expired)· nominal 20-yr term from priority
Y10T428/24595Y10T428/24612B01D 39/1607B32B 27/12B32B 5/06Y10T428/24628B32B 2262/0276B32B 2535/00B32B 3/30B32B 5/26Y10T428/24603D04H 1/70Y10T428/24355B32B 2555/00D04H 1/495B32B 2432/00D04H 3/11B32B 2262/0253Y10T428/24479A47L 13/16D04H 13/00
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Claims

Abstract

A bulky sheet comprising a fiber aggregate formed by water needling of a fiber web is disclosed. The bulky sheet has a number of projections and depressions comprising the fiber aggregate. The projections and the depressions is formed both by rearrangement of the constituting fibers of the fiber aggregate by water needling of the fiber aggregate and by the multiple bending manner of the fiber aggregate along the thickness direction thereof. The projections and the depressions retains the shape thereof by themselves.

Claims

exact text as granted — not AI-modified
1 . A bulky sheet comprising: 
 a fiber aggregate formed by water needling of a fiber web,    said bulky sheet having a number of projections and depressions comprising said fiber aggregate,    said projections and said depressions being formed both by rearrangement of the constituting fibers of said fiber aggregate by water needling of said fiber aggregate and by the multiple bending manner of said fiber aggregate along the thickness direction thereof,    and said projections and said depressions retaining the shape thereof by themselves.    
   
   
       2 . A bulky sheet comprising: 
 a fiber aggregate formed by water needling of a fiber web and a network sheet,    said bulky sheet having a number of projections and depressions comprising said fiber aggregate, the constituting fibers of said fiber aggregate which are entangled with each other by said water needling are further entangled with and/or thermally bonded to said network sheet thereby forming a unitary body,    said projections and said depressions being formed both by rearrangement of the constituting fibers of said fiber aggregate by water needling of said fiber aggregate and by the multiple bending manner of said fiber aggregate along the thickness direction thereof,    and said projections and said depressions retaining the shape thereof by themselves.    
   
   
       3 . The bulky sheet according to  claim 1 , having an apparent thickness of 1 to 5 mm, and an apparent volume of 23 to 100 cm 3 /g.  
   
   
       4 . The bulky sheet according to  claim 1 , having an elongation of 5% or less in the machine direction thereof measured under the condition of 5N/30 mm.  
   
   
       5 . The bulky sheet according to  claim 1 , wherein said fiber aggregate contains fibers having a fineness of 5 dtex or less at an amount of 50% by weight or more, and has a basis weight of 30 to 100 g/m 2 .  
   
   
       6 . A process for producing the bulky sheet according to  claim 1  comprising the steps of: 
 water needling a fiber web to entangle the constituting fibers of said fiber web with each other thereby forming a fiber aggregate;    transferring said fiber aggregate onto a patterning member having a number of depressions and projections or a number of perforations; and    projecting part of said fiber aggregate into said depressions or said perforations to form a number of projections corresponding to said depressions or said perforations,    said patterning member having a thickness of 5 to 25 mm, or having an air permeability of 800 to 3000 cm 3 /(cm 2  sec),    the energy Em and the energy Ef are applied to said fiber web and said fiber aggregate, respectively, in such a manner that the energy Em and the energy Ef satisfy at least one of the following formulae:      200(kJ/kg)<Em+Ef<1250 (kJ/kg)      Em/10<Ef<2Em/3    wherein Em is an energy which is applied to said fiber web to form said fiber aggregate by said water needling, and Ef is an energy which is applied to said fiber aggregate to project part of said fiber aggregate on said patterning member.    
   
   
       7 . The process according to  claim 6 , wherein the constituting fibers of said fiber web are entangled with each other by said water needling thereby forming such a fiber aggregate as to have an entanglement coefficient of 0.05 to 2.0 N·m/g.  
   
   
       8 . A process for producing the bulky sheet according to  claim 2  comprising the steps of: 
 water needling a fiber web to entangle the constituting fibers of said fiber web with each other thereby forming a fiber aggregate;    superposing said fiber aggregate on one side or both sides of a network sheet and partially thermally bonding said constituting fibers to said network sheet thereby forming a unitary body;    transferring said fiber aggregate onto a patterning member having a number of depressions and projections or a number of perforations; and    projecting part of said fiber aggregate into said depressions or said perforations to form a number of projections corresponding to said depressions or said perforations,    said patterning member having a thickness of 5 to 25 mm, or having an air permeability of 800 to 3000 cm 3 /(cm 2  sec),    the energy Em and the energy Ef are applied to said fiber web and said fiber aggregate, respectively, in such a manner that the energy Em and the energy Ef satisfy at least one of the following formulae:      200 (kJ/kg)<Em+Ef<1250 (kJ/kg)  Em/10<Ef<2Em/3    wherein Em is an energy which is applied to said fiber web to form said fiber aggregate by said water needling, and Ef is an energy which is applied to said fiber aggregate to project part of said fiber aggregate on said patterning member.    
   
   
       9 . The bulky sheet according to  claim 2 , wherein said bulky sheet has not been subjected to heat shrinking of said network sheet, or said network sheet has a heat shrinkage of 3% or less as measured under 140° C. for 3 minutes.  
   
   
       10 . The bulky sheet according to  claim 1 , having a breaking strength 
 of at least 5 N at the width of the specimen of 30 mm.    
   
   
       11 . The bulky sheet according to  claim 1 , wherein the bulky sheet is a cleaning sheet for a floor.  
   
   
       12 . The bulky sheet according to  claim 1 , wherein the bulky sheet is used with wiper equipment for a floor.  
   
   
       13 . The bulky sheet according to  claim 1  or  2 , wherein the thickness change, which is evaluated by the difference between initial apparent thickness of the sheet under a load of 15 gf/25 cm 2  (=59 Pa) and the apparent thickness under a load of 96 gf/25 cm (=376 Pa), is 1 mm or less.  
   
   
       14 . The bulky sheet according to  claim 1 , wherein said network sheet is a non-woven fabric.  
   
   
       15 . A method of cleaning a surface comprising: 
 wiping a surface with the bulky sheet of  claim 1 .    
   
   
       16 . The method of  claim 15 , wherein said bulky sheet is a dry cleaning sheet.  
   
   
       17 . The method of  claim 15 , wherein said surface is being cleaned of dust.  
   
   
       18 . The method of  claim 17 , wherein, said dust is held in interstices among fibers of said fiber aggregate.

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