Battery housing part for a traction battery of an electric or hybrid vehicle and battery housing
10593915 ยท 2020-03-17
Assignee
Inventors
Cpc classification
H01M50/249
ELECTRICITY
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M2220/20
ELECTRICITY
H01M50/242
ELECTRICITY
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A battery housing part for a traction battery of an electric or hybrid vehicle. A first partial region of the battery housing part is composed of a plastic and at least one second partial region is composed of a material that is different therefrom. In this way, high degree of stiffness of the battery housing part can be achieved together with low weight. The second partial region that is composed of a material of a different type can be provided in a targeted manner where the at least one second partial region enables the greatest advantage in respect of the stiffness of the battery housing part. The use of a plastic for other partial regions of the battery housing part makes it possible to keep the weight of the battery housing part low.
Claims
1. A battery housing part for a traction battery of an electric or hybrid vehicle, the battery housing part comprising: a first partial region of the battery housing part formed of a plastic material; and at least one second partial region of the battery housing part formed of a material different from said plastic material of said first partial region; a reinforcing component disposed on at least a portion of a periphery of the battery housing part, said reinforcing component consisting of a different material from said plastic material of said first partial region, said reinforcing component being a frame surrounding at least a portion of the periphery of the battery housing part, said reinforcing component being molded into the battery housing part, said reinforcing part having a cross section with a triangular portion with a chamfer and a web portion adjoining said triangular portion.
2. The battery housing part according to claim 1, wherein said reinforcing component is formed of an extruded profile.
3. The battery housing part according to claim 1, wherein said reinforcing component is mechanically connected on the battery housing part by way of a mechanical connection.
4. The battery housing part according to claim 1, which comprises at least one substantially flat plate element that consists, at least partially, of a material different from said plastic material of said first partial region.
5. The battery housing part according to claim 1, which comprises at least one reinforcing component disposed on at least a portion of a periphery of the battery housing part and at least one substantially flat plate element, wherein said at least one reinforcing component and/or said at least one plate element consists of a material selected from the group consisting of a metallic material, a fiber-reinforced plastic, and an organic sheet.
6. The battery housing part according to claim 1, which comprises a textile planar semi finished product integrated in the battery housing part.
7. The battery housing part according to claim 6, wherein said textile planar semi finished product comprises fibers selected from the group consisting of glass fibers, carbon fibers, metal fibers, and metallic sputter-coated fibers.
8. A battery housing of a traction battery of an electric or hybrid vehicle, the battery housing comprising at least one battery housing part according to claim 1.
9. A battery housing part for a traction battery of an electric or hybrid vehicle, the battery housing part comprising: a first partial region of the battery housing part formed of a plastic material; and at least one second partial region of the battery housing part formed of a material different from said plastic material of said first partial region; a reinforcing component disposed on at least a portion of a periphery of the battery housing part, said reinforcing component consisting of a different material from said plastic material of said first partial region, said reinforcing component being a frame surrounding at least a portion of the periphery of the battery housing part, said reinforcing part having a cross section with a triangular portion with a chamfer and a web portion adjoining said triangular portion.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
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DESCRIPTION OF THE INVENTION
(14) The exemplary embodiments shown in
(15) As depicted in
(16) To increase the mechanical stiffness of the battery housing part 1, in the exemplary embodiments depicted, the two frame-like reinforcing components 7 are preferably fixedly connected to the battery housing part 1. For this reason and in order to integrate the frame-like reinforcing components 7 well into the battery housing part 1 and give it a high stiffness, the reinforcing components 7as shown in
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(18) Alternatively or additionally to the recesses 17 or passage openings on the web portion 13, the reinforcing component 7 may also be subsequently attached to the otherwise complete battery housing part 1 by means of clip connections 19. Exemplary embodiments of such clip connections 19 between the reinforcing component 7 and the battery housing part 1, in the form of press catches shaped as pushbuttons or other locking tabs, are shown in
(19) It is also possible, instead of insertion and extrusion molding of the reinforcing component 7, first to create the battery housing part 1 and provide a groove 15 in the battery housing part 1 for the web portion 13 of the reinforcing component 7. The frame-like bent reinforcing component 7 may be inserted, with the web portion 13, subsequently in the groove 15 and fixed by substance bonding by adhesive or by form fit by screws, rivets etc.
(20) A second exemplary embodiment of a battery housing part 1 according to the invention with two substantially flat plate elements 21 and 23 is depicted in
(21) It is also possible to connect the plate elements 21 and 23 subsequently to the battery housing part 1. To this end, it is possible to insert the plate elements 21 and 23 in the battery housing part 1 from above or as shown in
(22) For sealing reasons, it is advantageous to provide a closed plastic surface in the interior of the battery housing part 1. To stiffen the battery housing part 1also in all exemplary embodiments according to the invention depictedbeads, ribs or other stiffening measures may suitably be molded onto the housing base 3.
(23) As depicted in
(24) Organic sheets are fiber matrix semifinished products which consist of a fiber woven or laid fabric embedded in a thermoplastic matrix. The advantages of a thermoplastic matrix lie in the hot-moldability of the semifinished product and the resulting short process times. Fiber materials frequently used are glass, aramide and carbon. For woven and laid fabrics, the fibers may also run at right angles to each other so that the mechanical properties of organic sheets, such as stiffness, strength and thermal expansion, may be better than those of metallic plates.
(25) It is particularly advantageous if the organic sheet is formed as a matrix material from the same or a similar plastic as the housing component 1 formed later e.g. in the injection molding process. In this way, a substance bonding occurs on molding, so that tightness requirements can easily be fulfilled and the base region of the battery housing part 1 need not be filled by further plastic material. Following this concept, it is even possible to create by molding only the peripheral housing wall 5 of the battery housing part 1 and the connections to the organic sheet. If such a flat spray-molding of the housing base 3 is omitted, an injection molding machine with low closing force may be used. This reduces the need for resources and energy.
(26) A third exemplary embodiment of a battery housing part 1 with an integrated textile planar semifinished product 31 is depicted in
(27) The textile planar semifinished product 31 is for exampleas shown in
(28) In principle however, a sputter coating of the housing component 1 with a metal to ensure adequate EMC protection is also possible.
(29) The peripheral edge 37 of the molded body 35 may however also be created in a subsequent process e.g. by primary forming.
(30) The present invention includes the combination of any features disclosed in the description, the claims and the figures.
LIST OF REFERENCE SIGNS
(31) 1 Battery housing part 3 Housing base 5 Housing wall 7 Frame-like reinforcing component 9 Triangular portion 11 Chamfer 13 Web portion 15 Groove 17 Recess 19 Clip connection 21 Plate element 23 Plate element 25 Web 27 Web 29 Recess 31 Planar semifinished product 33 Laid or woven fabric 35 Molded body 37 Edge