WOUND TYPE BATTERY AND METHOD FOR FABRICATING SAME
A battery 1 has a wound body 4 accommodated in a cylindrical battery case 2 . The wound body 4 includes an electrode group 6 wound around a core 10 . The electrode group 6 includes a negative electrode plate 20 , a positive electrode plate 30 , and a separator 40 . The core 10 is made of a flexible linear conductor, and functions as a negative electrode lead.
1 . A wound type battery, comprising:
a cylindrical battery case having an opening at one end;
a sealing member attached to the battery case via an insulating material, for scaling the opening; and
a wound body accommodated in the battery case with an electrolyte, wherein
the wound body includes
a core, and
an electrode group wound around the core,
the electrode group includes
a positive electrode plate connected to the sealing member via a positive electrode lead,
a negative electrode plate connected to the battery case via a negative electrode lead, and
a separator provided between the positive electrode plate and the negative electrode plate, and
the core is made of a flexible linear conductor, and functions as the negative electrode lead.
2 . The wound type battery of claim 1 , wherein
a wire is used as the core.
3 . The wound type battery of claim 1 , wherein
one end of the core protrudes from the electrode group, and
the one end is bent to be fixed to an inner surface of the battery case.
4 . The wound type battery of claim 1 , wherein
the core has a diameter of 1 mm or less.
5 . The wound type battery of claim 1 , wherein
a nonaqueous organic electrolyte is used as the electrolyte, and the wound type battery functions as a secondary battery.
6 . A method for fabricating a wound type battery having a wound body in which an electrode group is wound, the method comprising:
a first step of straining a flexible linear material to maintain the linear material in a strained state in which the linear material is strained by a predetermined tension, and
a second step of winding the electrode group around the linear material in the strained state.
7 . The method for fabricating the wound type battery of claim 6 , wherein
the electrode group includes a positive electrode plate, a negative electrode plate, and a separator provided between the positive electrode plate and the negative electrode plate, and
the second step includes
a first process of fixing the linear material in the strained state to the negative electrode plate orthogonally to a winding direction to form a first connection body having the linear material located at a winding start end of the negative electrode plate,
a second process of laying the separator on the first connection body to form a second connection body in which a portion of the first connection body to which the linear material is fixed is connected to the separator,
a third process of winding the second connection body around the linear material by rotating the linear material, and
a fourth process of placing the positive electrode plate on the second connection body in the middle of the third process to lay the positive electrode plate on the second connection body.
8 . The method for fabricating the wound type battery of claim 7 , wherein
the wound type battery includes a cylindrical battery case which has an opening at one end and which accommodates the wound body,
the wound body includes the linear material,
a linear conductor having electrical conductivity is used as the linear material, and
the method includes
after the second step, a third step of forming the wound body by adjusting a length of an end of the linear conductor to a predetermined length, and
a fourth step of inserting the wound body in the battery case, and connecting the end of the linear conductor to an inner surface of the battery case.
9 . The method for fabricating the wound type battery of claim 8 , wherein
a wire is used as the linear conductor, and
the linear conductor is connected to the negative electrode plate and the battery case by welding.
10 . The method for fabricating the wound type battery of claim 7 , wherein
the first process includes a temporary connection process in which part of the negative electrode plate is wound around the linear material, with a tension applied to the negative electrode plate being lower than a tension applied to the negative electrode plate during winding.
11 . A wound type battery fabricated by the fabrication method of claim 6 .