A method for improving a battery pack by utilizing a composite sandwich plate structure
A composite material and structural improvement technology, applied in the field of composite materials, can solve problems such as hindering the improvement of the energy density of battery packs and increase the weight of trams, and achieve the effect of improving energy density, eliminating the need for assembly and reducing weight
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Embodiment 1
[0039] Provide battery pack design with prismatic cells
[0040] According to the size of the battery box for small passenger cars, make a 1300mm×931mm sandwich plate battery pack, including all modules, and the total number of battery cells is consistent with this type of commercial battery pack. The design is as follows:
[0041] (1) The bottom angle of the isosceles trapezoidal corrugation of the interlayer is 75°, the upper bottom is 148mm, the lower bottom is 207mm, and the height is 110mm. The panel adopts [0° / +45° / 90° / -45°]s8-layer layup method, the material is X850 prepreg, and the core material can be [0° / +45° / 90° / -45°]4 layer by layer. The total weight of the simple sandwich panel is calculated as: 5.2kg, plus some additional binding materials and adhesives, it is about 10kg (estimated), which is called the weight of the structure.
[0042] (2) A total of five corrugations are set, and the two adjacent corrugations are in the relationship between the upper and low...
Embodiment 2
[0045] Provide battery pack design with cylindrical cells
[0046]Cylindrical battery cells have a small capacity, so the quantity requirement is large. They should also be bundled with thermoplastic prepreg tapes and connected to long strip battery modules, and then placed in composite sandwich panels.
[0047] Design a battery pack that has the same energy as a square cell but uses 21700 cylindrical cells.
[0048] The performance of domestic 21700 batteries is shown in the table below.
[0049] type
size
Capacity / Ah
voltage / v
Weight / g
Energy density (wh / kg)
21700 cylindrical
21*70
4
3.7
69.3
214
[0050] (1) According to the principle of consistent energy, use at least 1776 21700 batteries of this type; design ten modules, each module has 178 batteries, such as Figure 5 shown. Due to the large number of batteries, the batteries should be arranged tangentially and closely, and insulating tapes with negligible thickn...
Embodiment 3
[0055] The design scheme of providing battery packs with soft pack cells
[0056] Soft-pack batteries packaged in aluminum-plastic film are generally very thin, with a thickness of less than one centimeter. The soft-pack batteries are modularized in advance and become square shells to facilitate subsequent installation.
[0057] (1) First of all, several soft-packed batteries are bundled up in advance, and the electrodes can be connected to each other through the circuit board by welding to form a battery unit with a certain voltage. This battery unit is similar to a hard-shell battery. easy to fix,
[0058] (2) Process the above-mentioned square battery module that has been modularized through the soft package into a module by winding prepreg tape, and the remaining printed circuit boards for battery management functions and aluminum alloy plates for cooling are as shown in Example 1 way to install.
[0059] (3) The module enters the interlayer board, the fixation of the mo...
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