Abstract:
In an electrochemical energy store having a housing (I) and having at least one electrochemical cell (2) arranged in the housing (I), at least one wall of the housing (I) is coated or impinged on at least in regions with an extinguishing agent or an extinguishing agent additive (7-9).
Abstract:
Electrochemical energy storage device (1) with at least one electrode assembly, particularly a rechargeable electrode assembly (2), that is designed to at least temporarily supply electrical energy, which electrode assembly has at least two electrodes (3, 3a) of differing polarities, with a functional device (5) that is designed to be electrically connected to the at least two electrodes (3, 3a) of differing polarity, and which is designed to be switchable to a second state, wherein the electrodes (3, 3a) of differing polarity are electrically connected to each other when the functional device (5) is in the second state, with a cell housing (6) that is designed to at least partially surround the electrode assembly (2) and the functional device (5).
Abstract:
A battery housing comprises a cell compartment element (1) which at least partially delimits a cell compartment. Said cell compartment is designed to accommodate at least one electrochemical energy storage cell. A lid element (2) which is designed to be connected to the cell compartment element (1) obturates the cell compartment at least in sections thereof. The lid element (2) preferably comprises at least one fastening pin (29) and/or a bore (30) for a fastening pin for fastening the battery housing.
Abstract:
The present invention relates to an electrochemical cell for a lithium ion battery comprising at least (i) one electrolyte, (ii) at least one cathodic electrode, (iii) at least one anodic electrode and (iv) at least one separator disposed between cathodic electrode and anodic electrode, wherein said separator comprises at least one porous ceramic material. The electrochemical cell is enclosed in a gas-tight manner in a pressure-resistant housing, wherein said housing and said electrochemical cell do not comprise any means for reducing the pressure in the housing, especially no bursting device, pressure valve, one-way valve, central pin, mandrel or the like.
Abstract:
An electrochemical cell has an electrode stack, which is sealed off by a sheath, in particular in a gas-tight and/or liquid-tight manner, and at least one pressure-relief device, in particular in the form of a desired breaking point, wherein the pressure-relief device has a rupture diaphragm, which closes an aperture in the sheath.
Abstract:
An energy storage apparatus including at least first and second energy storage devices to supply, or also consume, an electric current. At least the second energy storage device is an electrochemical energy storage device. A control device controls at least supply of electric current by at least one of the energy storage devices and can also control consumption of electric current by at least one of the energy storage devices. Energy density of the second energy storage device is higher than energy density of the first energy storage device; energy density is defined as the ratio between energy that can be stored in the energy storage device in a charged state and weight of the energy storage device. The control device can trigger the first energy storage device to supply electric current when the electric current exceeds a predetermined threshold value for the current strength.
Abstract:
The invention relates to a galvanic cell (1, 10) which comprises an electrode stack (5). Said stack comprises at least one especially flat anode electrode (2), at least one especially flat cathode electrode (3), and at least one especially flat separator (4) which is interposed between said electrodes (3, 4). The invention is characterized in that the outer contour of the separator (4) has at least one cut-out section (42a, 42b) which is offset inwards with respect to said outer contour.