Abstract:
Die Erfindung betrifft ein Klebeband für einen fliegenden Rollenwechsel, das aufweist: ein Trägermaterial (1) mit einer Oberseite, einer Unterseite und zwei Längskanten (1a, b), wobei die Oberseite des Trägermaterials (1) mit einem Klebstoff (4) beschichtet und die Unterseite des Trägermaterials (1) nichtklebend ausgebildet ist; und ein doppelseitig klebendes Band (2) mit einer Oberseite, einer Unterseite und zwei Längskanten (2a, 2b), das ein spaltbares Trägermaterial (21) aufweist, das beidseitig mit einem Klebstoff (22, 23) beschichtet ist. Dabei ist das doppelseitig klebende Band (2) an der Unterseite des Trägermaterials (1) angeordnet. Es ist vorgesehen, dass das doppelseitig klebende Band (2) derart an der Unterseite des Trägermaterials (1) angeordnet ist, dass ein Teilbereich (B) des doppelseitig klebenden Bandes (2) von der einen Längskante (1a) des Trägermaterials (1) übersteht. Die Erfindung betrifft des Weiteren die Verwendung eines solchen Klebebandes für einen fliegenden Rollenwechsel.
Abstract:
The present invention relates to an electrode assembly body and a battery. The electrode assembly body, for example, has an adhesion tape attached on the outer circumference thereof that realizes a three-dimensional shape through an electrolyte, that enables effective fixing thereof on the inside of a can. Therefore, the electrode assembly body does not float or rotate inside the can due to an external vibration or a shock, and can prevent phenomena such as a damage of a tab in the welding regions, or a disconnection of an internal circuit.
Abstract:
A multi-functional electrically and thermally conductive adhesive tape is described. The adhesive tape (32) at least has the following structures: a complex structure or a single structure having a plurality of protuberant holes or concavities (210) extended from one side of the complex structure or the single structure. Adhesive material (204) is coated on both sides or a single side of the complex structure or the single structure, wherein the adhesive layer (204) is an electrically and thermally conductive layer or an electrically non-conductive layer. The electrically non-conductive adhesive layer, depending on the practical application, can be chosen from any kind of adhesive material. The electrically conductive adhesive layer can be chosen from any kind of adhesive material doped with electrically and thermally conductive dopants.
Abstract:
The invention concerns a linerless self-adhesive material obtained starting from a self-adhesive material with a liner, by means of a process that comprises the delamination of the liner from a self-adhesive layer, activation of the liner or self- adhesive layer, transferral of the liner over the self-adhesive layer and re-lamination of the two components so as to produce the linerless self-adhesive material. The liner or the self-adhesive layer is coated with a thermo-adhesive that allows for permanent lamination of the liner located on the self-adhesive layer.
Abstract:
A protective wrap for application to a wooden baseball bat to prevent the release of fragments should the baseball bat shatter during use is formed of an elongated piece of polymeric film that has a first end and an opposite second end, a first side edge, and an opposite second side edge. The piece has a first tapered region terminating at the first end and a second tapered region terminating in the second end. Within each of the first and second tapered regions, the first and second side edges converge. The piece also includes a main section located between the first and second tapered regions. The first and second side edges are parallel to one another along the length of the main section. A back surface of the polymeric film includes an adhesive for adhering the polymeric film to the baseball bat and to any underlying polymeric film.
Abstract:
A tape that includes a cellulosic substrate defining a first surface and an opposing second surface; a pressure sensitive adhesive disposed on the first surface of the cellulosic substrate; and an encapsulated fibrous material disposed on the first surface of the cellulosic substrate or the second surface of the cellulosic substrate.
Abstract:
The present invention relates to a method for manufacturing a tape and a battery for fixing an electrode assembly body. The tape for fixing an electrode assembly body, for example, realizes a three-dimensional shape through an electrolyte, thereby effectively fixing the electrode assembly body inside a can. Therefore, the tape prevents the electrode assembly from floating or rotating inside the can due to an external vibration or a shock, and prevents phenomena such as a damage of a tab in the welding regions or a disconnection of an internal circuit.