Abstract:
The three-dimensional shaping device is provided with: a first forming section for forming the outline (210) of a shaping material layer at a first resolution by discharging the shaping material toward a shaping stage; and a discharge part and a curing part that configure a second forming section for forming the inside of the outline (210) at a second resolution that is lower than the first resolution by discharging a shaping material (182) toward the shaping stage.
Abstract:
An inkjet recording device includes: an inkjet unit that ejects ink to a recording medium while scanning in a main scanning direction; a first treatment liquid ejection head that is arranged side by side with the inkjet unit in the main scanning direction, scans together with the inkjet unit, and ejects a first treatment liquid to the recording medium; and a second treatment liquid ejection head that is arranged side by side with the inkjet unit in the main scanning direction, scans together with the inkjet unit, and ejects a second treatment liquid different from the first treatment liquid to the recording medium, wherein at least one of the first treatment liquid ejection head and the second treatment liquid ejection head is arranged on both sides of the inkjet unit in the main scanning direction.
Abstract:
An inkjet recording apparatus of a scanning type includes: a treatment liquid head that ejects a treatment liquid having a flocculation effect on a coloring material ink and a coloring material; and an ink head that ejects the coloring material ink in a single carriage, wherein the ink head does not pass through a treatment liquid discharging part after discharging the treatment liquid in a same scan.
Abstract:
A body-mounted component, molded using a 3D printer, which has excellent flexibility, with which the occurrence of breakages and the like when bent is suppressed, and which has a comfortable fit, and a method for manufacturing the same. Provided is a body-mounted component to be worn around a joint of a body, wherein the body-mounted component is formed from a resin material for a 3D printer; and a tensile rupture elongation of the resin material is 200% or more.
Abstract:
This orthosis manufacturing system is designed to manufacture an orthosis to be fitted on a human body and provided with: an orthosis modeling data generation unit (2) for generating orthosis modeling data (D4) for the orthosis on the basis of three-dimensional data (D1) of the human body generated by measuring the shape of a portion of the human body to which the orthosis is to be fitted, a model shape data (D2) for the orthosis, and manufacture history data (D3) relating to other orthoses manufactured in the past; and an orthosis formation unit (3) for three-dimensionally forming the orthosis on the basis of the modeling data (D4).