Granular material for heat-fusion type three-dimensional printers, method for manufacturing molded object, layered structure, and method for manufacturing layered structure
The present invention provides a granular material for a fused deposition three-dimensional printer that enables a flexible molded object to be manufactured with high precision. According to the present invention, provided is a granular material for a fused deposition three-dimensional printer. The granular material is formed of a thermoplastic elastomer, and thermoplastic elastomer has a Shore A hardness of 0 to 10 and a melt flow rate of 10 to 200 g/10 min at least one of measurement temperatures of 120 to 230° C.
1. A manufacturing method of a molded object, comprising:
a scanning step of scanning a strand formed by extruding, from a nozzle, a granular material formed of a thermoplastic elastomer melted in an extruder with a screw, wherein the thermoplastic elastomer has a Shore A hardness of 0 to 10 and a melt flow rate of 60 to 140 g/10 min at a molding temperature that is a temperature of the strand immediately after being extruded from the nozzle, the molding temperature being a temperature between 120° C. to 230° C.
2. The method of claim 1 , wherein a laminated structure is formed by laminating single-layer structures formed by performing the scanning step, the single-layer structures each comprise a plurality of parallel line portions spaced apart from each other, and two single-layer structures adjacent to each other in a vertical direction are provided so that pluralities of parallel line portions of the two single-layer structures intersect with each other.
3. The method of claim 2 , wherein a pitch ratio defined as a ratio of a pitch of the parallel line portions to a line width of the parallel line portions is 1.5 to 6.