B29K101/00

Method and preform for forming a device comprising a shape memory polymer

There is provided herein a method of manufacturing a device comprising at least a first fibre using a draw apparatus, the method comprising: providing a first preform comprising a shape memory polymer to the draw apparatus; heating a first portion of the first preform; and drawing, using the draw apparatus, the heated first portion in order to form the first fibre.

METHOD FOR MANUFACTURING A MOLDED ARTICLE OF FIBROIN
20250162208 · 2025-05-22 ·

The present disclosure relates to a method for manufacturing a molded article with improved molding ability of fibroin, wherein the process comprises placing a powder containing a fibroin and a compound having two or more functional groups of a guanidyl group or an amino group and having carbon chains of three to six carbons between the functional groups into a mold, and compressing the powder in the mold with a piston.

Methods and apparatuses for hollow and multi-material stereolithography

Described herein are stereolithographic methods for preparing 3D objects comprising hollow regions and/or multiple materials. In certain embodiments, the methods comprise applying a blocking composition to fill hollow regions in the 3D printed object. In certain embodiments, an absorbent is applied to dispense material into the 3D printed objects and to remove unwanted resin from the hollow regions. Additionally, in certain embodiments, the modular stereolithographic apparatuses described herein contain an invertible, double vat, which enables users easy access to multiple materials throughout the 3D printing process.

Halogen-free modified high-filling recyclable plastic board and method of forming the same

A halogen-free modified high-filling recyclable plastic board is provided in this disclosure, which includes a substrate layer and a printed layer and a protective layer disposed sequentially on the substrate layer from bottom to top. Raw materials of the substrate layer include, by weight in percent, 20 to 25% of PEAT resin, 70 to 75% of stone powder, 0.5 to 0.8% of chain extender, 1 to 2% of white mineral oil, 3 to 6% PE, and 0.4 to 0.8% stearic acid. The plastic board according to the present disclosure is formed using a hot press process, without glue bonding and with good integrity; and the manufactured board is large in surface tension, its surface is easy to be processed and a substrate layer thereof has good compatibility with a printed layer and a protective layer, which can be recycled as a whole.