Lightweight Honeycomb Structural Battery Pack
20230361414 ยท 2023-11-09
Inventors
Cpc classification
H01M50/242
ELECTRICITY
H01M50/509
ELECTRICITY
H01M50/249
ELECTRICITY
H01M50/213
ELECTRICITY
H01M2220/20
ELECTRICITY
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
International classification
H01M50/213
ELECTRICITY
H01M50/242
ELECTRICITY
H01M50/249
ELECTRICITY
H01M50/509
ELECTRICITY
Abstract
The premise of this invention is to simplify and improve the previous methods used for battery systems in any vehicle that relies on battery power. This new method uses a honeycomb structure, in either hexagonal, circular, rectangular, or even ovular grids. Each of these grids will house each individual battery cell. This battery pack can be used for structural purposes of the car. This could replace the chassis or become part of it. The structural battery pack can be in beam-like segments to run from one end of the vehicle to the other, either side to side or front to back. The beam-like battery pack can be diagonal if necessary. The honeycomb grid itself can be made of metal, polymer, paper, wood veneer/products, or fiberglass.
The entire negative side of the battery pack can be a conductive plate that can be embedded to connect all the negative sides of each cell. Likewise, there will be a plate on the positive side of the honeycomb grid connecting each cell's positive connection. This will create a parallel connection between all the battery cells, increasing the overall amperage. More than one of the blocks of battery cells with the parallel connection will then be connected in a series to another block of parallel battery cells. Multiple blocks can be connected to achieve the required output. Batteries can be pre-arranged before bonding. Batteries can be randomly placed. Once placed, it is bonded for additional strength.
The complete modular battery pack, with cells inserted, can be easily placed in a group. The top and bottom plates, positive and negative connectors, can be pre-wired for easy installation and the case will become part of the integral structure. The interconnected housings and honeycomb grid will be water-tight to allow the air, or coolant to pass without creating a short-circuit or other issues.
Modular battery packs have battery cells with casings which function as the sandwich core grids or you can have a flange connect each casing forming the honeycomb grid. Each flange has a hole for air or coolant to pass through for core temperature control. The combination of flange and casing will become the newest technology, the casing of the battery will form the honeycomb grid. This invention will make battery cells become lighter in weight by functioning as the sandwich structural core. It will also simplify production. Instead of making individual batteries, you can insert the core of the battery cells into the honeycomb grid, which becomes the battery casing. It will have at least one layer of sandwiched skin on both sides. The most strength will be provided by gluing. By itself, the grid is a lightweight honeycomb structure. By adding multiple battery packs, it will glue together with at least one layer of skin on each side for weather protection and strongest strength with minimum weight; due to the honeycomb grid structure and battery casing connected to form an enclosed sandwich grid without additional weight.
Claims
1. Lightweight/honeycomb structure for use as main frame structure, post/beams, and panel for moving objects and vehicles by supporting and attaching all major components and accessories of those moving objects and vehicles. It functions as a chassis or part of the chassis. It has a rigid frame on all edges and solid anchor points at locations for securely attaching accessories, wheels, and cabins. Solid plates or blocks can be used to create secure anchoring points. The Honeycomb Structural Battery Pack is made of honeycomb grids with battery cells inserted into each individual grid structure that form the honeycomb core structure. Battery cells inside of each individual grid forms the inner core of the lightweight/sandwich panel. The honeycomb structure housing the battery cells can span across the entire floor pan of the vehicle or can be in beam-like sections. The beam-like sections can span across the vehicle from side to side, front to back, or diagonally. The beam-like sections of battery cell housing can be easily removed or replaced. Honeycomb battery cell housing structure grids can be made of metal, polymer, paper, wood products, or fiberglass. The lightweight structural strengthening honeycomb panel can be used for the main frame, without battery cells, for vehicles that use energy sources other than electricity. Insulated honeycomb structural panel can combine with at least one honeycomb panel with battery cells in place to strengthen and provide insulating qualities, such as patented Sing Core, U.S. Pat. No. 7,147,741.
2. In accordance with claim 1, The inside of lightweight/honeycomb battery panels consists of conductive plates or circuit boards placed on the positive side, connecting all positives; and on the negative side, connecting all of the negatives, making all cells connected parallel and increasing overall amperage. Each modular block of battery cells will be connected to each other in series increasing the overall voltage. Battery cell housings will be interconnected and waterproof so that air or coolant can pass around or above each cell. The top and bottom plate/circuit board can be pre-wired for simple installation. Battery cells in the pack with covers on both sides will be glued together with structural sandwich grids containing the battery cells inside of grids, which is the housing to store the batteries. This creates an enclosed honeycomb panel with battery cells inside as a modular unit. These are the components to build a larger panel by adding a large skin on both sides of multiple battery packs, creating a strong lightweight high strength sandwich lightweight panel by gluing everything together as one unit. This will become the main frame structure for the moving object and vehicle to attach and/or carry the weight of all vehicle components.
3. In accordance with claim 1, the battery casing will interconnect to each other casing to form a lightweight sandwich structural core. For inserted battery core components, the grid will function as the casing of the battery and function as a structural core grid. By adding skin on both sides of this structural core it will become lightweight sandwich panels or post and beam structures. As the major structure components of moving object and/or vehicle. This device also applies to bulkheads for boats, walls, floors and roof structures of moving objects and vehicles. Also function as an impact resistant surface, such as bumpers. Especially for vehicle roofs, floor, or side walls by using insulated honeycomb panels such as Sing Core and other cores, providing additional insulation, climate control, and sound deadening.
4. In accordance with claim 1, battery casings are interconnected by honeycomb grids, creating an enclosed structure. Each honeycomb grid wall has at least one hole to transfer coolant or air between all grid sections to aid in temperature control. Coolant systems can be provided by adding at least one honeycomb panel with the interconnected grid to provide circulation of coolant or air. This can be installed on any side of the battery pack but on top is preferred. Not only does it provide temperature control but also adds to the structural strength. Battery sandwich panel and coolant sandwich panel can be multilevel to form stronger panel, or post and beam.
5. In accordance with claim 1, battery cells can sit vertically, or perpendicular, in relation to the outer skin. Battery cells can lay horizontally, or parallel, to the outer skin. Modular battery packs can stack vertically or horizontally, preferably glued together to increase strength. Can also be bolted together. After glued, both sides with the skin provide extra strength. Glue at least two sides of the face is most essential for strength.
6. In accordance with claim 1, battery cells are sandwich between two skin are punctured and secured bonding to the panel then add circuitry form the first sandwich panel. Top and bottom can be honeycomb panel or at least one layer of skin material. Skin material can be any flat structural material; veneer/plywood, veneer/plywood soaked in resin, veneer/plywood pressure treated in resin, veneer/plywood treated with fireproofing and waterproof material, veneer/plywood covered with plastic, sheet aluminum, sheet metal, plastic, additional honeycomb panels, etc. . . . Skin can be removed, or a hole can be drilled to repair/replace faulty battery cells.
Description
SHORT FIGURE DESCRIPTION OF DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0039] The honeycomb structural battery pack
[0040] The honeycomb structure can be used by itself if needed
[0041] The honeycomb structure can be used without the battery cells in place to provide high strength while keeping overall weight down. The honeycomb structure can be used as the main frame for any vehicle
[0042] The honeycomb structure can replace the common tube style frame of a bicycle. But if used for an electric powered bicycle, the honeycomb can house the necessary amount of battery cells to power the bicycle