The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Aug. 18, 2020

Filed:

Apr. 11, 2017
Applicant:

O&m Halyard, Inc., Mechanicsville, VA (US);

Inventors:

Prasad Shrikrishna Potnis, Johns Creek, GA (US);

Christena Nash, Alpharetta, GA (US);

Eric C. Steindorf, Roswell, GA (US);

Assignee:

O&M Halyard, Inc., Mechanicsville, VA (US);

Attorney:
Primary Examiner:
Int. Cl.
CPC ...
B32B 3/30 (2006.01); B32B 5/02 (2006.01); B32B 27/12 (2006.01); B32B 27/18 (2006.01); A41D 13/11 (2006.01); A41D 13/12 (2006.01); A41D 31/02 (2019.01); A41D 31/102 (2019.01); A61B 46/00 (2016.01); A42B 1/04 (2006.01); B32B 5/26 (2006.01); B32B 5/32 (2006.01); B32B 5/18 (2006.01); B32B 3/08 (2006.01); B32B 7/14 (2006.01); B32B 3/22 (2006.01); B32B 27/30 (2006.01); B32B 27/06 (2006.01); B32B 5/24 (2006.01); B32B 27/32 (2006.01); A41D 31/14 (2019.01); A41D 31/30 (2019.01); A41D 13/005 (2006.01); A41D 31/28 (2019.01); A62B 23/02 (2006.01); F28D 20/02 (2006.01); A62B 18/02 (2006.01); A62B 17/00 (2006.01); B32B 27/08 (2006.01);
U.S. Cl.
CPC ...
B32B 3/30 (2013.01); A41D 13/11 (2013.01); A41D 13/1209 (2013.01); A61B 46/40 (2016.02); B32B 3/08 (2013.01); B32B 3/22 (2013.01); B32B 5/022 (2013.01); B32B 5/18 (2013.01); B32B 5/26 (2013.01); B32B 5/32 (2013.01); B32B 7/14 (2013.01); B32B 27/12 (2013.01); B32B 27/18 (2013.01); B32B 27/308 (2013.01); A41D 13/0053 (2013.01); A41D 13/1192 (2013.01); A41D 31/02 (2013.01); A41D 31/102 (2019.02); A41D 31/145 (2019.02); A41D 31/285 (2019.02); A41D 31/305 (2019.02); A41D 2400/36 (2013.01); A41D 2400/52 (2013.01); A41D 2500/30 (2013.01); A41D 2500/54 (2013.01); A42B 1/043 (2013.01); A62B 17/006 (2013.01); A62B 18/02 (2013.01); A62B 23/025 (2013.01); B01D 2239/045 (2013.01); B01D 2239/0407 (2013.01); B01D 2239/0442 (2013.01); B01D 2239/0478 (2013.01); B01D 2239/0686 (2013.01); B32B 5/245 (2013.01); B32B 27/065 (2013.01); B32B 27/08 (2013.01); B32B 27/32 (2013.01); B32B 2250/02 (2013.01); B32B 2250/03 (2013.01); B32B 2250/04 (2013.01); B32B 2250/20 (2013.01); B32B 2250/24 (2013.01); B32B 2255/02 (2013.01); B32B 2255/26 (2013.01); B32B 2262/12 (2013.01); B32B 2307/30 (2013.01); B32B 2307/4023 (2013.01); B32B 2307/56 (2013.01); B32B 2307/70 (2013.01); B32B 2307/718 (2013.01); B32B 2307/724 (2013.01); B32B 2307/7265 (2013.01); B32B 2307/73 (2013.01); F28D 20/023 (2013.01); Y10T 428/24025 (2015.01); Y10T 428/2457 (2015.01); Y10T 428/24182 (2015.01); Y10T 428/24562 (2015.01); Y10T 428/24612 (2015.01); Y10T 428/24826 (2015.01); Y10T 428/24851 (2015.01); Y10T 428/24893 (2015.01); Y10T 428/254 (2015.01); Y10T 442/659 (2015.04); Y10T 442/66 (2015.04); Y10T 442/68 (2015.04); Y10T 442/681 (2015.04);
Abstract

A splash resistant multi-layered structure is provided. The structure includes a specific arrangement of layers of material and a plurality of three-dimensional spacers that helps prevent penetration through the structure by a fluid that contacts an outer surface of the structure due to a state of forced separation that exists between two adjacent layers of the structure due to the presence of the plurality of three-dimensional spacers positioned between the layers. The plurality of three-dimensional spacers can be positioned on one of the adjacent layers of the structure such that a distance at least as large as the maximum height of the plurality of three-dimensional spacers separates the two layers from each other and can be present on a layer of material in a continuous or discontinuous pattern or can be present on a layer of material in a random fashion. The presence of the three-dimensional spacers can reduce the basis weight or eliminate one or more layers of the structure, which, in turn, can reduce thermal resistance, lower the pressure drop across the layers of the structure, and reduce the overall weight of the structure to enhance breathability and comfort.


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