Processing apparatus for electrode assembly of secondary battery
A processing apparatus for a base material tab protruding from a cylindrical electrode assembly includes: a vertical plate arranged in a second direction perpendicular to a first direction, the first direction being a longitudinal direction of the electrode assembly; a rotatable plate that is a planar plate arranged parallel to the vertical plate and coupled to be rotatable relative to the vertical plate; and a plurality of blades coupled between the vertical plate and the rotatable plate. The blades together form a variable diameter central area defined by ends of the blades according to the relative rotation of the rotatable plate to process the base material tab of the electrode assembly.
1 . A processing apparatus for a base material tab protruding from a cylindrical electrode assembly, the processing apparatus comprising:
a vertical plate arranged in a second direction perpendicular to a first direction, the first direction being a longitudinal direction of the electrode assembly;
a rotatable plate that is a planar plate arranged parallel to the vertical plate and coupled to be rotatable relative to the vertical plate; and
a plurality of blades coupled between the vertical plate and the rotatable plate, the blades together forming a variable diameter central area defined by ends of the blades according to the relative rotation of the rotatable plate to process the base material tab of the electrode assembly,
wherein each of the blades comprises a first protrusion and a second protrusion on opposite surfaces thereof and facing each other to be respectively coupled to the vertical plate and the rotatable plate, and
wherein each of the rotatable plate and the vertical plate has a plurality of linear guide holes, and the guide holes in the rotatable plate have a largest extension direction facing toward a center of the central area.
2 . The processing apparatus as claimed in claim 1 , wherein the ends of all of the plurality of blades are arranged at a same angle.
3 . The processing apparatus as claimed in claim 2 , wherein the angle of each of the ends of the blades corresponds to 360° divided by a number of the blades.
4 . The processing apparatus as claimed in claim 1 , wherein the first protrusion and the second protrusion of the blades are coupled to one of the guide holes in the rotatable plate and one of the guide holes in the vertical plate, respectively, such that movement of the blade corresponds to an extension direction of the guide holes.
5 . The processing apparatus as claimed in claim 1 , wherein the guide holes in the rotatable plate are at positions corresponding to the guide holes in the vertical plate.
6 . The processing apparatus as claimed in claim 5 , wherein the guide holes in the rotatable plate are arranged to extend at an angle with respect to the guide holes in the vertical plate.
7 . The processing apparatus as claimed in claim 1 , wherein the plurality of blades are configured to vary from a state in which the central area has a diameter equal to or greater than that of the base material tab when the central area is opened to a state in which the central area is has a diameter of zero.
8 . The processing apparatus as claimed in claim 1 , further comprising:
a gear part configured to move linearly on one surface of the vertical plate; and
an engagement part coupled to one side of the rotatable plate and engaged with the gear part to rotate the rotatable plate according to linear movement of the gear part.
9 . The processing apparatus as claimed in claim 1 , further comprising a support unit configured to move the electrode assembly in the first direction while fixing the electrode assembly.