MOLDING APPARATUS
A molding apparatus includes: a receiving part on which a wire-shaped molding material that is formed of a bundle of continuous fibers impregnated with resin is discharged; a discharge part that discharges the molding material on the receiving part; and a rotation mechanism that rotates the discharge part to spirally twist the molding material being discharged from the discharge part.
1 . A molding apparatus comprising:
a receiving part on which a wire-shaped molding material that is formed of a bundle of continuous fibers impregnated with resin is discharged;
a discharge part that discharges the molding material on the receiving part; and
a rotation mechanism that rotates the discharge part to spirally twist the molding material being discharged from the discharge part.
2 . The molding apparatus according to claim 1 , further comprising a moving mechanism that allows the discharge part to move in a curve relative to the receiving part to form the molding material in a curved shape,
wherein the rotation mechanism rotates the discharge part in the same direction as the direction in which the discharge part moves in a curve relative to the receiving part to spirally twist the molding material discharged from the discharge part to be formed in a curved shape.
3 . The molding apparatus according to claim 2 , wherein
the moving mechanism allows the discharge part to move relative to the receiving part in a curve in a first curve direction to form the molding material in a curved shape curved in the first curve direction, and allows the discharge part to move relative to the receiving part in a curve in a second curve direction, which is opposite to the first curve direction, to form the molding material in a curved shape curved in the second curve direction, and
the rotation mechanism positively rotates the discharge part in the same direction as the first curve direction when the discharge part is relatively moved in the first curve direction, and negatively rotates the discharge part in the same direction as the second curve direction when the discharge part is relatively moved in the second curve direction.
4 . The molding apparatus according to claim 1 , further comprising a moving mechanism that allows the discharge part to move linearly relative to the receiving part to form the molding material in a linear shape, and that allows the discharge part to move in a curve relative to the receiving part to form the molding material in a curved shape,
wherein the rotation mechanism rotates the discharge part by a first rotational number when the discharge part is relatively moved linearly, and rotates the discharge part by a second rotational number, which is greater than the first rotational number, when the discharge part is relatively moved in a curve.
5 . The molding apparatus according to claim 2 , further comprising a moving mechanism that allows the discharge part to move linearly relative to the receiving part to form the molding material in a linear shape, and that allows the discharge part to move in a curve relative to the receiving part to form the molding material in a curved shape,
wherein the rotation mechanism rotates the discharge part by a first rotational number when the discharge part is relatively moved linearly, and rotates the discharge part by a second rotational number, which is greater than the first rotational number, when the discharge part is relatively moved in a curve.
6 . The molding apparatus according to claim 3 , further comprising a moving mechanism that allows the discharge part to move linearly relative to the receiving part to form the molding material in a linear shape, and that allows the discharge part to move in a curve relative to the receiving part to form the molding material in a curved shape,
wherein the rotation mechanism rotates the discharge part by a first rotational number when the discharge part is relatively moved linearly, and rotates the discharge part by a second rotational number, which is greater than the first rotational number, when the discharge part is relatively moved in a curve.
7 . The molding apparatus according to claim 4 , wherein
the moving mechanism allows the discharge part to move relative to the receiving part in a curve with a first radius of curvature to form the molding material in a curved shape, and allows the discharge part to move relative to the receiving part in a curve with a second radius of curvature, which is smaller than the first radius of curvature, to form the molding material in a curved shape, and
the rotation mechanism rotates the discharge part by the second rotational number when the discharge part is relatively moved in a curve with the first radius of curvature, and rotates the discharge part by a third rotational number, which is greater than the second rotational number, when the discharge part is relatively moved in a curve with the second radius of curvature.
8 . The molding apparatus according to claim 5 , wherein
the moving mechanism allows the discharge part to move relative to the receiving part in a curve with a first radius of curvature to form the molding material in a curved shape, and allows the discharge part to move relative to the receiving part in a curve with a second radius of curvature, which is smaller than the first radius of curvature, to form the molding material in a curved shape, and
the rotation mechanism rotates the discharge part by the second rotational number when the discharge part is relatively moved in a curve with the first radius of curvature, and rotates the discharge part by a third rotational number, which is greater than the second rotational number, when the discharge part is relatively moved in a curve with the second radius of curvature.
9 . The molding apparatus according to claim 6 , wherein
the moving mechanism allows the discharge part to move relative to the receiving part in a curve with a first radius of curvature to form the molding material in a curved shape, and allows the discharge part to move relative to the receiving part in a curve with a second radius of curvature, which is smaller than the first radius of curvature, to form the molding material in a curved shape, and
the rotation mechanism rotates the discharge part by the second rotational number when the discharge part is relatively moved in a curve with the first radius of curvature, and rotates the discharge part by a third rotational number, which is greater than the second rotational number, when the discharge part is relatively moved in a curve with the second radius of curvature.
10 . The molding apparatus according to claim 1 , further comprising a moving mechanism that allows the discharge part to move in a curve with the first radius of curvature relative to the receiving part to form the molding material in a curved shape, and that allows the discharge part to move in a curve with the second radius of curvature, which is smaller than the first radius of curvature, relative to the receiving part to form the molding material in a curved shape, wherein
the rotation mechanism rotates the discharge part by the first rotational number when the discharge part is relatively moved in a curve with the first radius of curvature, and rotates the discharge part by a second rotational number, which is greater than the first rotational number, when the discharge part is relatively moved in a curve with the second radius of curvature.
11 . The molding apparatus according to claim 2 , further comprising a moving mechanism that allows the discharge part to move in a curve with the first radius of curvature relative to the receiving part to form the molding material in a curved shape, and that allows the discharge part to move in a curve with the second radius of curvature, which is smaller than the first radius of curvature, relative to the receiving part to form the molding material in a curved shape, wherein
the rotation mechanism rotates the discharge part by the first rotational number when the discharge part is relatively moved in a curve with the first radius of curvature, and rotates the discharge part by a second rotational number, which is greater than the first rotational number, when the discharge part is relatively moved in a curve with the second radius of curvature.
12 . The molding apparatus according to claim 3 , further comprising a moving mechanism that allows the discharge part to move in a curve with the first radius of curvature relative to the receiving part to form the molding material in a curved shape, and that allows the discharge part to move in a curve with the second radius of curvature, which is smaller than the first radius of curvature, relative to the receiving part to form the molding material in a curved shape, wherein
the rotation mechanism rotates the discharge part by the first rotational number when the discharge part is relatively moved in a curve with the first radius of curvature, and rotates the discharge part by a second rotational number, which is greater than the first rotational number, when the discharge part is relatively moved in a curve with the second radius of curvature.
13 . The molding apparatus according to claim 1 , further comprising:
a detecting unit that detects the height of the molding material discharged from the discharge part on the receiving part; and
an ejecting part that ejects resin onto the molding material when the difference in height among portions of the molding material is greater than or equal to a predetermined threshold.
14 . The molding apparatus according to claim 13 , further comprising a pressure part that presses the molding material discharged from the discharge part on the receiving part, wherein the detecting unit detects the height of the molding material pressed by the pressure part.