B65C9/25

Meltblown-spunbonded-meltblown laminated fabric

There is disclosed a laminated, nonwoven fabric and a process for producing such a laminated, nonwoven fabric having desirable fluid holding and fluid release characteristics. The process provides that two sheets of meltblown fiber fabric are produced on forming wire assemblies, cooled at a cooling area, and are then laminated on opposite sides of a sheet of spunbonded fibers using to form the laminated, nonwoven fabric.

Systems and methods for on-aircraft composite repair using double vacuum debulking

An in-situ double vacuum debulk (DVD) composite repair system designed to produce partially or fully cured autoclave-quality hot-bond composite repairs on contoured structures. The system provides vacuum pressure for hot bond repairs to be performed on flat and contoured structures using one set-up capable of debulking (partially curing) and then fully curing composite repairs on composite and metallic aircraft structures. The use of in-situ DVD also eliminates handling of the patch/adhesive when transferring from an off-aircraft DVD chamber to the repair site on the aircraft. This can increase the probability of successful repairs because the possibility of contaminating and misaligning the adhesive and repair patch are eliminated.

DEVICE FOR PRINTING, SEVERING AND APPLYING SELF-ADHESIVE FLAT STRUCTURES, IN PARTICULAR LABELS
20190118988 · 2019-04-25 ·

A device for printing, severing and applying self-adhesive labels, wherein the device operates with a label material without a carrier strip. The label material has a printable layer, a carrier layer and a heat-sealable adhesive layer. The device has an applicator, by way of which the label is applied to an object to be labelled. The applicator can be moved up to the object to be labelled by way of a handling device, and the handling device is constructed in accordance with the principle of an open kinematic chain and has at least one translational kinematic axis and/or at least one rotational kinematic axis. The applicator can be heated by way of a heating device which operates in accordance with an electrical operating principle.

DEVICE FOR PRINTING, SEVERING AND APPLYING SELF-ADHESIVE FLAT STRUCTURES, IN PARTICULAR LABELS
20190118988 · 2019-04-25 ·

A device for printing, severing and applying self-adhesive labels, wherein the device operates with a label material without a carrier strip. The label material has a printable layer, a carrier layer and a heat-sealable adhesive layer. The device has an applicator, by way of which the label is applied to an object to be labelled. The applicator can be moved up to the object to be labelled by way of a handling device, and the handling device is constructed in accordance with the principle of an open kinematic chain and has at least one translational kinematic axis and/or at least one rotational kinematic axis. The applicator can be heated by way of a heating device which operates in accordance with an electrical operating principle.

PRODUCTION PROCESS FOR PACKAGE

The present invention bonds a label to an adherend with a heat-sensitive adhesive layer disposed therebetween, by sufficiently activating the heat-sensitive adhesive layer. Prepared is a label which comprises a label base and a heat-sensitive adhesive layer disposed on the back surface of the label base, wherein an ultraviolet-absorbing heating agent is contained in an area of the label base which at least includes the disposed heat-sensitive adhesive layer and/or in the heat-sensitive adhesive layer. Before or after the label is applied to an adherend, irradiation with ultraviolet is conducted to activate the heat-sensitive adhesive layer.

PRODUCTION PROCESS FOR PACKAGE

The present invention bonds a label to an adherend with a heat-sensitive adhesive layer disposed therebetween, by sufficiently activating the heat-sensitive adhesive layer. Prepared is a label which comprises a label base and a heat-sensitive adhesive layer disposed on the back surface of the label base, wherein an ultraviolet-absorbing heating agent is contained in an area of the label base which at least includes the disposed heat-sensitive adhesive layer and/or in the heat-sensitive adhesive layer. Before or after the label is applied to an adherend, irradiation with ultraviolet is conducted to activate the heat-sensitive adhesive layer.

Mechanical fastening nets and methods of making the same

A method of making a mechanical fastening net. The method includes providing a net having strands of polymer and open areas between the strands of polymer and molding a portion of the polymer in the strands of the net into upstanding posts to form the mechanical fastening net. A mechanical fastening net that includes a polymeric backing, a plurality of openings in the polymeric backing, and upstanding posts on at least one of the first or second major surface of the polymeric backing is also disclosed. The polymeric backing has a range of thicknesses ranging from minimum to maximum thickness, and for at least a portion of the polymeric backing, the minimum thickness of the polymeric backing is where it abuts one of the openings.

Inverted double dome double vacuum debulk tool

An inverted double dome double vacuum debulk tool having separable upper and lower chamber portions which can be assembled to form a vacuum chamber. In accordance with some embodiments, the top and bottom halves each comprise a circular cylindrical sidewall closed at one end by an inverted dome. The domes may be hemispherical or semi-elliptical with convex sides facing the chamber interior space. A base plate on which the composite patch rests is removable from the vacuum chamber. Various fittings pass electrical power and vacuum into the tool and sensor outputs out of the tool.

Method for producing fingernail tips
09968173 · 2018-05-15 · ·

An automated method for producing fingernail tips. Reinforcing fibers are provided as a strip and the strip is moved at a specific travel rate in the longitudinal direction of the strip. The strip is covered on one side and impregnated with the plastic, and then shaped in a shaping station, where is it bent into a curve that corresponds substantially to the shape of a natural fingernail or toenail. The strip maintains its shape after the plastic is cured and the covering is then removed. The fingernail tips are punched from the strip in a cutting station. The automated method allows the strip to be continuously or virtually continuously transported and then the fingernail tips to be automatically counted, sorted, and packaged.

Method for improving the heat sealability of packaging material and method for manufacturing heat-sealed container or package

A method for improving the heat sealability of a packaging material and a method for manufacturing a heat-sealed container or package are described. The material can be polymer-coated packaging paper or cardboard, or a polymeric packaging film. The material includes a polymer layer that contains polyester, particularly polylactide, the heat sealability of which is improved by ultraviolet radiation. Polylactide is useful as such or when blended, for example, with other biodegradable polyester. The containers and packages thus manufactured include disposable drinking cups and cardboard carton and box packages.