摘要:
The invention relates to a battery housing (1) for receiving one or more battery cells (2), comprising a cover surface (3), a floor surface (4), and a sealing plate (5) disposed between the cover surface and the floor surface. The invention further relates to a retaining frame (10) for a battery cell (2), comprising a floor part (11), a cover part (12), and a sealing part (12) disposed between the floor part and the cover part.
摘要:
The present invention relates to an accumulator with extended durability. The invention is described in relation to a lithium-ion-accumulator for supplying a motor vehicle drive. However, it should be noted that the invention will also be applicable for batteries without lithium and/or independent from motor vehicles.
摘要:
The invention relates to a battery cell (1) particularly of a prismatic or cylindrical design, comprising at least two electrode stacks (2), at least one current conductor connected to an electrode stack (2), a jacket (4) that at least partially encloses the electrode stack (2), at least one current conductor (3) extending partially out of the jacket (4), characterized in that a heat conducting plate (5) is arranged between two electrode stacks (2).
摘要:
Electrochemical cell comprising a positive and a negative elecrode and a layer of an inorganic substance arranged between the electrodes, characterized in that the layer is coated with a polyetherimide on one or both sides.
摘要:
The task at hand is achieved by a method for operating a battery having at least one galvanic cell. The at least one galvanic cell is subjected at least temporally to an examination, particularly at a predetermined operating state of the battery or the galvanic cell.
摘要:
The invention relates to a battery system comprising at least one battery. According to the invention, provisions are made that said battery system comprises at least one Peltier element, which is used for cooling and/or for heating at least one battery.
摘要:
A method for producing coated substrates with IR radiation reflecting properties is provided.The method includes applying a composition containing an inorganic compound onto at least one side of the substrate, drying the composition, and applying at least one coating containing a silane onto the dried composition wherein the composition and/or the coating contains at least one IR radiation reflecting pigment having a core and an electrical current conducting layer containing tin oxides and/or titanium oxides applied on the core.
摘要:
The present invention relates to a method for coating substrates, comprising the steps of: a) preparing a substrate, b) applying a composition onto at least one side of the substrate, the composition containing an inorganic compound, the inorganic compound containing at least one metal and/or semimetal selected from the group Sc, Y, Ti, Zr, Nb, V, Cr, Mo, W, Mn, Fe, Co, B, Al, In, Tl, Si, Ge, Sn, Zn, Pb, Sb, Bi or mixtures thereof and at least one element selected from the group Te, Se, S, O, Sb, As, P, N, C, Ga or mixtures thereof, and an electrically conductive substance selected from metals, particulate metals, metal alloys, particulate metal alloys, conductive compounds containing carbon or mixtures thereof, c) drying the composition applied in step b), d) applying at least one coating onto the at least one side of the substrate onto which the composition was applied in step b), the coating containing a silane of the general formula (Z1)Si(OR)3, where Z1 is R, OR or Gly (Gly=3-glycidyloxypropyl) and R is an alkyl radical having from 1 to 18 carbon atoms and all R may be identical or different, oxide particles selected from the oxides of Ti, Si, Zr, Al, Y, Sn, Zn, Ce or mixtures thereof, and an initiator, the coating preferably containing 3-aminopropyltrimethoxysilane and/or 3-aminopropyltriethoxysilane and/or N-2-aminoethyl-3-aminopropyltrimethoxysilane, and e) drying the coating applied in step d), as well as to the coated substrate.
摘要:
An electrical energy storage device includes at least one galvanic cell partly surrounded by a cell sheath, at least one heat-conducting device effectively connected to the galvanic cell, the heat-conducting device being suitable for supplying heat energy to the cell and/or conducting heat energy from the cell, a cell holding device enclosing an interior space at least partially with a wall, the interior space being suitable for accommodating each galvanic cell, and the cell sheath being at least partly effectively connected to the wall, at least one first measurement device suitable for acquiring a temperature at a prespecified position of the galvanic cell, and a control device suitable for evaluating a signal of each first measurement device that is present and/or for controlling the heat-conducting devices, heat-conducting apparatus being situated between the cell sheath and at least one of the wall of cell holding device and an additional cell sheath.
摘要:
A method of making an electrode for a device operating according to galvanic principles, in particular a lithium-ion cell, comprises the steps of: (i) making a sheet-like electrode (2), (ii) detecting where one or more imperfections (4, 4′, 4″) exist on said sheet-like electrode, and (iii) with respect to a respectively detected imperfection (4, 4′, 4″), correcting a surrounding area (6, 6′) of the imperfection (4, 4′, 4″) including said imperfection. Based on the result of detection step (ii), at least a portion (8, 8′, 8″) of the laminar electrode may be provided that has no imperfection.In an electrode made according to the method, in particular cathode or anode, for a device operating according to galvanic principles, in particular a lithium-ion cell comprising an electrode material that is arranged in a sheet-like manner, the electrode material is composed of at least a first, in particular slat-like portion (22-1), which is free from imperfections, and a second, in particular slat-like portion (22-2), which is free from imperfections.A device operating according to galvanic principles, in particular a lithium-ion cell, comprises the following layers, which are arranged one upon the other: a first electrode (32), which is free from imperfections, which comprises at least two assembled portions, which are free from imperfections, a separator layer (50) comprising a separator material (16) that is developed in a sheet-like manner, and a second electrode, which is free from imperfections, which consists of a one-piece portion or which comprises at least two assembled portions, which are free from imperfections, and which is complementary to the first electrode.