B29C2043/3216

CUSHION MATERIAL FOR HOT PRESSING
20230234315 · 2023-07-27 · ·

There is provided a cushion material 10 for hot pressing including a cushion layer 1, wherein the cushion layer 1 includes woven fabric 5 and polyimide resin 6 adhered to surfaces of fibers forming the woven fabric 5 and has pores in the cushion layer 1, and warp and/or weft of the woven fabric 5 is texturized yarns made of glass fiber. This cushion material for hot pressing can maintain good cushioning properties even when used in high temperature pressing at 280° C. or more repeatedly.

Composite structures constructed of wound tubular braiding
11534986 · 2022-12-27 · ·

A system for constructing a composite structure includes a braiding machine, a winding tool and a forming machine. The composite structure is constructed of a wound tubular braiding. The wound tubular braiding is constructed of a biaxial or triaxial tubular braid of unidirectional tape.

SHAPING SYSTEM INCLUDING AN EVAPORATION COVER, SHAPING PROCESS, AND METHOD OF MANUFACTURING AN ARTICLE
20230109973 · 2023-04-13 ·

A shaping system comprises a dispensing station configured to dispense formable material on a substrate, a shaping station configured to contact the dispensed formable material on the substrate with a plate, a positioning system configured to move the substrate having the dispensed formable material from the dispensing system to the shaping station, and a cover having one or more walls. While the substrate having the dispensed formable material is moved by the positioning system from the dispensing station to the shaping station, the cover is positioned to enclose the substrate and the dispensed formable material such that a ratio of a diameter of the substrate to a distance between the cover and the substrate to 80:1 to 30:1.

MULTILAYER COMPOSITE, METHOD FOR THE PRODUCTION THEREOF AND ITS USE
20200376817 · 2020-12-03 ·

Multi-layer composite at least comprising: a decorative layer comprising a first decorative material and a second decorative material, the first and the second decorative material lying in one plane in the decorative layer and having the same thickness; and a first carrier layer for a glue layer, the first carrier layer comprising a plastic which is contained in a nonwoven or a fabric, wherein the decorative layer is planarly connected to the first carrier layer by the glue layer.

TUBULAR MEDICAL DEVICE CLEANING BALL AND MANUFACTURING METHOD THEREFOR
20200323425 · 2020-10-15 ·

The present invention relates to: a tubular medical device cleaning ball; and a manufacturing method therefor and, more specifically, to: a tubular medical device cleaning ball capable of cleaning a tubular medical device by being injected together with a cleaning solution without using a separate brush and the like in order to clean the tubular medical device inserted into the human body during minimally invasive surgery; and a manufacturing method therefor. To this end, the cleaning ball is manufactured as a sphere having surface roughness and a cavity therein.

COMPOSITE STRUCTURES CONSTRUCTED OF WOUND TUBULAR BRAIDING
20200139643 · 2020-05-07 ·

A system for constructing a composite structure includes a braiding machine, a winding tool and a forming machine. The composite structure is constructed of a wound tubular braiding. The wound tubular braiding is constructed of a biaxial or triaxial tubular braid of unidirectional tape.

Shaping system including an evaporation cover, shaping process, and method of manufacturing an article

A shaping system comprises a dispensing station configured to dispense formable material on a substrate, a shaping station configured to contact the dispensed formable material on the substrate with a plate, a positioning system configured to move the substrate having the dispensed formable material from the dispensing system to the shaping station, and a cover having one or more walls. While the substrate having the dispensed formable material is moved by the positioning system from the dispensing station to the shaping station, the cover is positioned to enclose the substrate and the dispensed formable material such that a ratio of a diameter of the substrate to a distance between the cover and the substrate to 80:1 to 30:1.

FOAMING AND SHAPING PROCESS FOR A THERMOPLASTIC SHEET, AND ASSOCIATED APPARATUS AND SHAPED FOAMED THERMOPLASTIC SHEET
20240246267 · 2024-07-25 ·

A method of foaming and shaping a thermoplastic sheet comprising a poly(phenylene ether), a polyetherimide, or a combination thereof includes foaming the thermoplastic sheet with supercritical carbon dioxide to form a foamed thermoplastic sheet, and shaping the foamed thermoplastic sheet to form a shaped foamed thermoplastic sheet. The shaping step includes compressing the foamed thermoplastic sheet between a first metal plate and a secondi metal plate, each of which has a grooved surface facing the thermoplastic sheet. The first metal plate and the second metal plate are connected by a flexible, compressible linkage capable. When the flexible, compressible linkage is in its uncompressed state, only the second (lower) metal plate is in contact with the shaped foamed thermoplastic sheet. When the flexible, compressible linkage is in its compressed state, both the first (upper) and second (lower) metal plates are in contact with the shaped foamed thermoplastic sheet.

CUSHION MATERIAL FOR HOT PRESSING
20250001654 · 2025-01-02 · ·

A cushion material for hot pressing includes a cushion part that includes a woven fabric, in which texturized yarn made of glass fiber is used for at least one of warp or weft, and a polymer material adhered to a surface of the glass fiber. When t.sub.1 denotes a thickness of the cushion material at a time of compressing the cushion material under conditions of 230 C. and 0.01 kgf/cm.sup.2 and t.sub.2 denotes a thickness of the cushion material at a time of compressing the cushion material under conditions of 230 C. and 40 kgf/cm.sup.2, after the cushion material is repeatedly compressed 100 times under conditions of releasing pressurization after performing, in a pressurized state of 40 kgf/cm.sup.2, heating at 230 C. for 60 minutes and then cooling for 15 minutes, Fn obtained from [Fn=(t.sub.1t.sub.2)1000/t.sub.2] is 300 or more.