IP Library Granted Patent US 12,087,976
Granted Patent B2
US 12,087,976 · App. 17/277,369 · Granted Sep 10, 2024

Compositions for bipolar plates and processes for manufacturing said compositions

Inventors: Stéphane Bizet (Serquigny, FR); Jérôme Chauveau (Serquigny, FR)
Assignee: Arkema France
H01M8/0226B29C45/0001C08J3/12C08J3/201C08J3/203C08K3/04H01M8/0213H01M8/0221H01M8/184B29K2027/16B29K2105/0023B29L2031/3468C08J2327/16C08K2201/001C08K2201/014
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Quick Facts
Patent No.
US 12,087,976
App. No.
17/277,369
Granted
Sep 10, 2024
Kind
B2
Abstract

The present invention relates to new compositions for bipolar plates and processes for manufacturing said compositions. More particularly, the invention relates to a process for manufacturing a composition, comprising the following steps: —mixing a thermoplastic polymer in the molten state with a first conductive filler in order to obtain a conductive thermoplastic polymer, —grinding said conductive thermoplastic polymer in order to reduce it to powder; —mixing the conductive thermoplastic polymer powder with a second conductive filler.

Claims (21)

1. A process for manufacturing a composition, comprising the following steps:

mixing a molten thermoplastic fluoropolymer with a first conductive filler so as to obtain a conductive fluoropolymer;

milling said conductive fluoropolymer to reduce it to powder having a volume-mean diameter (Dv50) ranging from 10 μm to 1 mm;

mixing the conductive fluoropolymer powder with a second conductive filler, wherein the first conductive filler is present in an amount ranging from 0.1% to 8%, based on the weight of the conductive fluoropolymer composition, and

wherein the second conductive filler is present in an amount ranging from 40% to 90%, based on the total weight of the composition.

2. The process of claim 1 , wherein the second conductive filler is graphite.

3. The process of claim 1 wherein the first conductive filler is chosen from: electronic conductive polymers, carbon black, carbon nanotubes, graphene, graphite, carbon fibers and mixtures thereof.

4. The process of claim 1 , wherein the step in which the conductive fluoropolymer powder is mixed with a second conductive filler is a compounding step performed in an extruder.

5. The process of claim 1 , wherein the conductive fluoropolymer is present in an amount ranging from 10% to 60% and the second conductive filler is present in an amount ranging from 40% to 90% based on the total weight of the composition.

6. The process of claim 1 , wherein the thermoplastic fluoropolymer is chosen from polyvinylidene fluoride homopolymer and copolymers comprising vinylidene fluoride units and units derived from at least one other comonomer that is copolymerizable with vinylidene fluoride.

7. A composition comprising a second conductive filler and particles of a conductive fluoropolymer, characterized in that the particles of the conductive fluoropolymer comprise a fluoropolymer matrix in which a first conductive filler is dispersed, wherein the second conductive filler is present in an amount ranging from 40% to 90%, based on the total weight of the composition and the first conductive filler is present in an amount ranging from 0.1% to 8%, based on the weight of the conductive fluoropolymer.

8. The composition of claim 7 , wherein the second conductive filler is graphite and/or the first conductive filler is chosen from: electronic conductive polymers, carbon black, carbon nanotubes, graphene, graphite, carbon fibers and mixtures thereof.

9. The composition of claim 7 , wherein the second conductive filler is present in an amount ranging from 60% to 90% based on the total weight of the composition and/or the first conductive filler is present in an amount ranging from 0.25% to 8% based on the weight of the conductive fluoropolymer composition.

10. A process for manufacturing a bipolar plate, comprising the following steps:

preparing a composition according to the process of claim 1 ;

subjecting the composition to injection molding.

11. The bipolar plate obtained via the process of claim 10 .

12. A process for manufacturing a bipolar plate, comprising the following steps:

providing the composition of claim 7 ;

subjecting the composition to injection molding.

13. The bipolar plate obtained via the process of claim 12 .

Assignments (2)
CHANGE OF ADDRESS Recorded Jul 4, 2025
From: ARKEMA FRANCE
To: ARKEMA FRANCE
Reel/Frame 071814/0739 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 13, 2021
From: BIZET, STEPHANE; CHAUVEAU, JEROME
To: ARKEMA FRANCE
Reel/Frame 055909/0700 →
Priority Claims (1)
FR 1858597 · Sep 21, 2018 · national
Continuity (1)
Related Publication 20220037677A1 · Feb 3, 2022