B29C66/549

POUCH EXTERIOR MATERIAL FOR SECONDARY BATTERY, POUCH TYPE SECONDARY BATTERY USING THE SAME, AND METHOD OF MANUFACTURING THE SAME

A pouch exterior material that enables an electrode assembly to be easily mounted on an accommodating portion at a proper position, having an integrated shape and including an inserting portion provided at a center of the pouch exterior material and having a width equal to a thickness of the electrode assembly, accommodating portions provided symmetrically at two sides of the inserting portion and gradually deepening from a portion corresponding to a width center of the electrode assembly towards a portion corresponding to an edge of the electrode assembly, and a triangular stepped portion provided at two ends of the inserting portion and having a depth gradually decreasing towards an end.

Pouch-type secondary battery including pouch case with concave groove having bottom surface with area larger than opening area of concave groove and pouch film forming apparatus

Disclosed is a pouch-type secondary battery, which includes an electrode assembly having a positive electrode plate and a negative electrode plate disposed to face each other and a pouch case having a concave groove formed to accommodate the electrode assembly, wherein the pouch case includes a first pouch film and a second pouch film thermally fused to the first pouch film, and wherein a concave groove is formed in at least one of the first pouch film and the second pouch film, and the concave groove has a bottom surface on which the electrode assembly is placed so that the bottom surface has an area equal to or greater than an area of a reference surface that covers an opening of the concave groove.

METHOD OF FORMING A PACKAGE
20200287173 · 2020-09-10 ·

A method of forming a package is provided and includes providing two laminate edge portions of the package, each of which includes a foil layer between first and second resin layers; and welding together the respective first resin layers at a first position spaced apart from the edges while not welding the respective first resin layers at the edges, wherein the edge portions include edges from which electrode terminals extend such that portions of the electrode terminals are exposed beyond the edges, and wherein the edge portions are between a sealing portion and exposed portions of positive and negative electrode terminals.

METHOD OF FORMING A PACKAGE
20200287174 · 2020-09-10 ·

A method of forming a package is provided and includes providing two laminate edge portions of the package, each of which includes a foil layer between first and second resin layers; and welding together the respective first resin layers at a first position spaced apart from the edges while not welding the respective first resin layers at the edges, wherein the edge portions include edges from which electrode terminals extend such that portions of the electrode terminals are exposed beyond the edges, and wherein the edge portions are between a sealing portion and exposed portions of positive and negative electrode terminals.

METHOD OF FORMING A PACKAGE
20200067031 · 2020-02-27 ·

A method of forming a package is provided and includes providing two laminate edge portions of the package, each of which includes a foil layer between first and second resin layers; and welding together the respective first resin layers at a first position spaced apart from the edges while not welding the respective first resin layers at the edges, wherein the edge portions include edges from which electrode terminals extend such that portions of the electrode terminals are exposed beyond the edges, and wherein the edge portions are between a sealing portion and exposed portions of positive and negative electrode terminals.

PACKAGE AND HEAT SEALING DEVICE

Aspects of the present invention are directed to a heat sealed packaging wherein the heat seal is along a curved surface. Additional aspects of the present invention are directed to a device for heat sealing a package on a surface that is curved along the direction of force.

Pouch Type Secondary Battery, and Device and Method for Sealing the Same
20240106044 · 2024-03-28 · ·

A secondary battery according to the present invention includes an electrode assembly, in which an electrode and a separator are alternately stacked, and a pouch in which the electrode assembly is accommodated and of which a portion includes a sealing part that is a bonded portion. The sealing part may include a first sealing area, which is spaced a predetermined distance from the electrode assembly and disposed at an edge of the pouch, and a second sealing area that is an area corresponding to the electrode assembly. The present invention also includes a device for sealing the secondary battery and a method for forming same.

Free-Folding Apparatus for Pouch-Type Batteries

A pre-folding apparatus for a pouch-type battery includes: a main frame, a rib, a pusher support portion, and a pusher. The main frame includes a pair of columns and a horizontal bar configured to connect upper portions of the columns. The rib installed to be fixed across the pair of columns under the horizontal bar has a forming protrusion whose upper end is flat. The pusher support portion disposed above the rib includes a linear driving portion configured to move the pusher support portion in a vertical direction along the columns. Finally, the pusher installed at the pusher support portion is aligned with the forming protrusion.

Method of forming a package

A method of forming a package is provided and includes providing two laminate edge portions of the package, each of which includes a foil layer between first and second resin layers; and welding together the respective first resin layers at a first position spaced apart from the edges while not welding the respective first resin layers at the edges, wherein the edge portions include edges from which electrode terminals extend such that portions of the electrode terminals are exposed beyond the edges, and wherein the edge portions are between a sealing portion and exposed portions of positive and negative electrode terminals.

CONTAINERS

A blank for a box made from an expandable material, which is initially molded to be substantially flat and in which folds forming hinges are to be made to enable the formation of the box. The tooling defines the shape of the blank is such as to provide a thickness of the expanded material that is less than the thickness of a major portion of the blank, in which folds are to be made having defined edges, generally in the direction of each fold; the fold and subsequently applying pressure along an area where folds are to be permitted to reduce the blank are made without removing material therefrom for providing hinges to permit formation of the box. A related method for making the blank and a box that is made from the blank are further provided.