This application claims priority under 35 USC 119 to German Patent Appl. No. 10 2014 109 054.3 filed on Jun. 27, 2014, the entire disclosure of which is incorporated herein by reference.
1. Field of the Invention
The invention relates to a terminal holder, a battery module equipped with a terminal holder and to a method for producing a battery module of this kind.
2. Description of the Related Art
The term “electric vehicle” commonly includes any means of transport that is driven by electric energy. The above designation thus includes road vehicles, especially motor vehicles, rail vehicles, watercraft and aircraft. A “hybrid vehicle” has the electric drive combined with another drive. Energy required for driving that cannot be supplied continuously from outside is stored in the vehicle itself by suitable “traction batteries”. According to the prior art, such traction batteries are typically of modular construction, where each battery module can comprise secondary cells, generally of round construction. U.S. Pat. No. 8,642,203 B2, DE 10 2008 034 878 B4 and DE 10 2008 059 972 A1 disclose round cell accumulators of this type.
Another known practice is to connect respective poles of a number of battery cells to one another by means of a conductive board or a metal sheet. This component can serve as a connection terminal to contact all the battery cells of a battery module over an extended area. DE 10 2009 035 487 A1 describes an arrangement of this kind. However, the mechanical holding of the terminal proves problematic. In this respect, DE 10 2011 009 768 A1 proposes to weld or solder corresponding rail- or plate-shaped elements to the cells. Nevertheless, this gives rise to tolerances that have to be compensated for by additional measures according to the prior art.
In view of the above, an object of the invention is to fix a connection terminal reliably on an assembly of battery cells. A further object is provide a battery module and a method for producing a battery module of this type.
The invention relates to a battery module with round cells and a terminal holder that employs a combination of non-positive and positive connection techniques. At the same time, the proposed device supports a particularly uncomplicated manufacturing method, in which a terminal holder is inserted between three round cells and centers itself in a largely automatic way through the elasticity of its lip. These functional and procedural advantages allow a considerable lowering of unit costs as compared with conventional battery modules.
The development enables an introduction of a terminal holder between the round cells at any conceivable center angle by exploiting the rotational symmetry of the main body.
The terminal holder may be of integral construction thereby further reducing the complexity of the production process.
An insulator may be disposed between the round cells and the connection terminal. The insulator may be a polymer, such as a polyamide and may be fiber reinforced for additional strength, rigidity and toughness, while ensuring resistance to chemicals.
The round cells may be encapsulated with a potting compound after the terminal holder has been clamped to achieve high stability and sealing with a low weight.
An illustrative embodiment of the invention is shown in the drawings and is described in detail below.
A terminal holder according to the invention is identified by the numeral 10 in
The terminal holder 10 may be formed from a polyamide with DIN abbreviation PA 66 GF 30 and with a glass fiber content of 30%. However, an alternative embodiment may use of an unreinforced polyamide or some other nonconductive polymer that has the ductility and suitability for molding required for the respective use.
As
The pairwise contact between the round cells 14, 15, 16 requires that the circumferential surfaces thereof should pose a mechanical resistance to the penetration of the terminal holder 10, said resistance being dependent on the diameter of the lip 12 of the terminal holder 10. In this phase, the elasticity of the lip 12 is decisive and enables the lip 12 to adapt to the cavity remaining between the round cells 14, 15, 16. At the same time, the resiliently deformed lip 12 exerts a uniform restoring force with three equiangular direction components on the terminal holder 10 to achieve a clamped elastically between the round cells 14, 15, 16.
As shown in
In a final method step, preferably under the action of heat, the head 13 of the terminal holder 10 is plastically deformed and, as
Number | Date | Country | Kind |
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10 2014 109 054 | Jun 2014 | DE | national |
Number | Name | Date | Kind |
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8642203 | Joswig et al. | Feb 2014 | B2 |
20090214940 | Haussmann | Aug 2009 | A1 |
20120015227 | Hwang et al. | Jan 2012 | A1 |
20120258335 | Bae | Oct 2012 | A1 |
Number | Date | Country |
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102008034878 | Jan 2010 | DE |
102008059972 | Jun 2010 | DE |
102009035487 | Feb 2011 | DE |
102011009768 | Aug 2012 | DE |
Entry |
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German Search Report dated Mar. 11, 2015. |
Number | Date | Country | |
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20150380718 A1 | Dec 2015 | US |