A61L15/00

Activated films having low sound pressure levels
11912848 · 2024-02-27 · ·

A film having low pressure values is provided. The film may have from about 20 wt. % to about 75 wt. % of a polyolefin component, from about 5 wt. % to about 35 wt. % of an elastomeric resin, and from about 20 wt. % to about 45 wt. % of a particle component. The film may have a basis weight of from about 5 gsm to about 25 gsm. The film may have a predicted sound pressure level over the frequency octave range of 2000 Hz-6300 Hz of less than about 43 dB.

Activated films having low sound pressure levels
11912848 · 2024-02-27 · ·

A film having low pressure values is provided. The film may have from about 20 wt. % to about 75 wt. % of a polyolefin component, from about 5 wt. % to about 35 wt. % of an elastomeric resin, and from about 20 wt. % to about 45 wt. % of a particle component. The film may have a basis weight of from about 5 gsm to about 25 gsm. The film may have a predicted sound pressure level over the frequency octave range of 2000 Hz-6300 Hz of less than about 43 dB.

Activated films having low sound pressure levels
10487199 · 2019-11-26 · ·

A film comprising from about 20 wt. % to about 85 wt. % of a polyolefin component and from about 20 wt. % to about 45 wt. % of a particle component; wherein the film has a basis weight of from about 5 gsm to about 25 gsm; wherein the film is activated and subjected to an engineering strain of greater than about 20%; wherein the film has a predicted sound pressure level over the frequency octave range of 2000 Hz-6300 Hz of less than about 43 dB.

Activated films having low sound pressure levels
10487199 · 2019-11-26 · ·

A film comprising from about 20 wt. % to about 85 wt. % of a polyolefin component and from about 20 wt. % to about 45 wt. % of a particle component; wherein the film has a basis weight of from about 5 gsm to about 25 gsm; wherein the film is activated and subjected to an engineering strain of greater than about 20%; wherein the film has a predicted sound pressure level over the frequency octave range of 2000 Hz-6300 Hz of less than about 43 dB.

ADHESIVE PATCH CONTAINING AN IMPROVED RELEASE LINER SYSTEM
20190350873 · 2019-11-21 · ·

An adhesive patch is described that contains an improved release liner for the treatment of various skin conditions.

Poly (meth) acrylic acid (salt)-based particulate water-absorbing agent and production method therefor

To provide a disposable diaper enabling reduction in re-wet amount and having an excellent speed of incorporating liquid regardless of concentration and configuration of a water-absorbing agent in an absorbent material. A water-absorbing agent having excellent Gel Capillary Absorption (GCA) and Free Gel Bed Permeability (FGBP) is obtained by crushing a crosslinked hydrogel polymer obtained in a polymerization step to have a specific weight average particle diameter while fluid retention capacity and a surface tension of a water-absorbing agent are adjusted in a specific range, drying the crushed crosslinked hydrogel polymer, and then adding a liquid permeability enhancer thereto during surface crosslinking or after surface crosslinking.

Poly (meth) acrylic acid (salt)-based particulate water-absorbing agent and production method therefor

To provide a disposable diaper enabling reduction in re-wet amount and having an excellent speed of incorporating liquid regardless of concentration and configuration of a water-absorbing agent in an absorbent material. A water-absorbing agent having excellent Gel Capillary Absorption (GCA) and Free Gel Bed Permeability (FGBP) is obtained by crushing a crosslinked hydrogel polymer obtained in a polymerization step to have a specific weight average particle diameter while fluid retention capacity and a surface tension of a water-absorbing agent are adjusted in a specific range, drying the crushed crosslinked hydrogel polymer, and then adding a liquid permeability enhancer thereto during surface crosslinking or after surface crosslinking.

SINGLE-SHAFT EXTRUDER AND USE OF A SINGLE-SHAFT EXTRUDER, AND METHOD FOR ALTERING MORPHOLOGY OF A SUPERABSORBENT POLYMER GEL USING A SINGLE-SHAFT EXTRUDER

A single-screw extruder for changing a morphology of a superabsorbent polymer, specifically a polymer gel. The single-screw extruder has an input aperture, a channel, a screw and an output aperture. The screw has a pitch value of a pitch of the screw flights along the conveying zone of the channel, where the channel has a mixing-element arrangement with at least one mixing element which protrudes into the channel of the single-screw extruder and which is configured for the mixing of the SAP polymer gel.

Package for a surgical mesh

The package (1) for a surgical mesh (100) comprises: a receiving member (2) configured and dimensioned to receive at least one surgical mesh (100), and a covering member (3) configured and dimensioned to cover the said at least one surgical mesh (100) maintaining with the receiving member (2) the surgical mesh (100) in a substantially flat position, and a gas channelling network interposed between the said receiving member (2) and the said covering member (3) configured to channel a sterilization gas within the at least one surgical mesh (100).

Integrated temperature sensitive wound dressing device
20190274902 · 2019-09-12 ·

The present invention pertains to an integrated wound dressing device for treatment of an insertion site of percutaneous and drug delivery devices. The integrated wound dressing device preferably comprises a transparent film layer having a bottom side, a top side and a perimeter. The bottom side is coated with an adhesive impregnated with an antimicrobial agent. The transparent film has a radius cutout between a central opening and the perimeter. A liquid crystal temperature sensitive film with an adhesive placed on the top side of the transparent film layer is preferably near and around the central opening. The dressing also has a layer of double folded release paper below the bottom side of the transparent film layer. The preferred TLCs used are cholesteryl esters with a preferable temperature detection range of 35-40 C. The preferred antimicrobial agent is chlorohexidine gluconate (CHG).