B32B25/20

MULTILAYER RIBLET APPLIQUES

Multilayer riblet appliques are disclosed. An example riblet applique includes a fluorosilicone riblet structure including riblet ridges and a base from which the riblet ridges extend, and a support layer proximate the fluorosilicone riblet structure. The support layer includes a vacuum-plasma-treated polymer film having a first surface and a second surface opposite the first surface, and a polymer sub-layer proximate the second surface of the polymer film.

Intermediate transfer member

An intermediate transfer member (ITM) for use with a printing system, the ITM having (a) a support layer; and (b) a release layer having an ink reception surface and a second surface opposing the ink reception surface, the second surface attached to the support layer, the release layer formed of an addition-cured, hydrophobic silicone material, wherein the release surface of the release layer has relatively hydrophilic properties with respect to the addition-cured, hydrophobic silicone material.

Intermediate transfer member

An intermediate transfer member (ITM) for use with a printing system, the ITM having (a) a support layer; and (b) a release layer having an ink reception surface and a second surface opposing the ink reception surface, the second surface attached to the support layer, the release layer formed of an addition-cured, hydrophobic silicone material, wherein the release surface of the release layer has relatively hydrophilic properties with respect to the addition-cured, hydrophobic silicone material.

FLAME RESISTANT NON-NEWTONIAN PAD
20230067840 · 2023-03-02 ·

A pad for protective garments comprises an outer layer of heat and flame resistant material, and inner layer of heat and flame resistant material, and a cushioning layer disposed therebetween. The cushioning layer is produced from a non-newtonian material. A pad assembly may be formed using the pad along with a piece of flexible material attached thereto. The pad, or the pad assembly including the pad, may be used with protective garments such as firefighter turnout gear.

RADIATIVE COOLING FABRICS AND PRODUCTS
20230158786 · 2023-05-25 ·

A radiative cooling fabric comprises a flexible substrate layer and a functional layer stacked in order. The first functional layer comprises a first functional resin and a first functional filler dispersed in the first functional resin. A mass fraction of the first functional filler in the first functional layer is in a range of 1% to 20%. An emissivity of the radiative cooling fabrics in the wavelength of 7 μm to 14 μm is not less than 80%. A reflectivity of the radiative cooling fabrics in the wavelength of 300 nm to 2500 nm is not less than 80%. An average value of warp recovery angles of the radiative cooling fabrics is greater than or equal to 95°, and an average value of the weft recovery angles of the radiative cooling fabrics is greater than or equal to 91°.

RADIATIVE COOLING FABRICS AND PRODUCTS
20230158786 · 2023-05-25 ·

A radiative cooling fabric comprises a flexible substrate layer and a functional layer stacked in order. The first functional layer comprises a first functional resin and a first functional filler dispersed in the first functional resin. A mass fraction of the first functional filler in the first functional layer is in a range of 1% to 20%. An emissivity of the radiative cooling fabrics in the wavelength of 7 μm to 14 μm is not less than 80%. A reflectivity of the radiative cooling fabrics in the wavelength of 300 nm to 2500 nm is not less than 80%. An average value of warp recovery angles of the radiative cooling fabrics is greater than or equal to 95°, and an average value of the weft recovery angles of the radiative cooling fabrics is greater than or equal to 91°.

SELF-LAMINATING LABEL ASSEMBLY AND METHOD FOR USING THE SAME
20230162623 · 2023-05-25 ·

Self-laminating label assemblies, self-laminating labels and methods for laminating label facestocks are described herein. The self-laminating label assemblies may include a label support liner and one or more self-laminating label(s) releasably affixed to the label support liner. Each self-laminating label may include a label facestock releasably affixed to the label support liner and a laminating facestock for at least partially laminating the label facestock. The laminating facestock may be releasably affixable to the label support liner, directly or indirectly, and may be provided between a non-laminating configuration in which at least part of the aminating facestock is releasably affixed to the label support liner for holding the laminating facestock thereon or thereabout, and a aminating configuration in which the laminating facestock is at least partially affixed to, and laminates, the label facestock.

Engineering reversible elasticity in ductile or brittle thin films and products resulting from said engineering

The present disclosure relates to how to engineer reversible elasticity in thin films and/or layers and/or substrates, using a repeated Y-shaped motif, which is cut out through the film and/or layer and/or substrate. As an example, using a 75 μm thick polyimide (PI) foil, macroscopic dog-bone shaped structures with a range of geometrical parameters of the Y shape have been prepared according to an embodiment of the present disclosure. The tensile strain response of the film at its point of fracture was then recorded. The structures were also confirmed using finite element modeling. Upon stretching, the PI ligaments locally deflect out of plane, allowing the foil to macroscopically stretch.

SURGICAL TRAINING DEVICE

A surgical training device is provided and includes a first section, a second section, and a third section. The first section includes a first training station and defines a general triangular prism shape. The second section includes a second training station and is configured to engage the first section. The second section defines a general rectangular prism shape. The third section includes a third training station and is configured to engage the second section. The third section defines a general triangular prism shape.

SURGICAL TRAINING DEVICE

A surgical training device is provided and includes a first section, a second section, and a third section. The first section includes a first training station and defines a general triangular prism shape. The second section includes a second training station and is configured to engage the first section. The second section defines a general rectangular prism shape. The third section includes a third training station and is configured to engage the second section. The third section defines a general triangular prism shape.