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Ti Tanium Plate For Pem Fuel Cell

Supplier From China
Apr-11-22

Titanium felt, a diffusion layer material, provides electrons between the catalyst layer and the bipolar plate or the current distributor on the anode side. Due to its three-dimensional network porous structure, high porosity, high corrosion resistance and other characteristics, titanium felt has become one of the best materials of diffusion layer in fuel cell and hydrogen production by water electrolysis.
Parameters:
Material: Titanium
Size:1500*1200mm
Thickness:0.2mm, 0.25mm, 0.40mm, 0.60mm, 0.80mm, 1.00mm, 2.0mm.
Porosity:60% - 75%

â?» Porosity and Size can be customized.



Technological Process

Pure titanium (special process)-titanium fiber (laying, sintering)-titanium fiber felt (with three-dimensional network porous structure)- Titanium felt for LGDL


Features:
1. Three-dimensional grid porous structureï¼?
2. Strong corrosion resistanceï¼?
3. Optimal electrolysis performanceï¼?
4. High porosity and current densityï¼?
5. Uniform pore size distribution.


Applicantion

1. Liquid/gas diffusion layer;
2. Hydrogen absorber;
3. Hydrogen-rich water dispenser;
4. Diffusion layer of hydrogen cell stack;
5. PEM hydrogen production by water electrolysis.

Price and Minimum Quantity

Price: $10
MOQ: Not Specified

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More Items Similiar to: Ti Tanium Plate For Pem Fuel Cell

GOLD Member
Jul-13-17
Supplier From Sheridan, Wyoming, United States
Apr-09-22

Pem Titanium For Fuel Cell

$10
MOQ: Not Specified
Supplier From Shaoxing, Zhejiang, China
 
Titanium felt, a diffusion layer material, provides electrons between the catalyst layer and the bipolar plate or the current distributor on the anode side. Due to its three-dimensional network porous structure, high porosity, high corrosion resistance and other characteristics, titanium felt has become one of the best materials of diffusion layer in fuel cell and hydrogen production by water electrolysis.
Parameters:
Material: Titanium
Size:1500*1200mm
Thickness:0.2mm, 0.25mm, 0.40mm, 0.60mm, 0.80mm, 1.00mm, 2.0mm.
Porosity:60% - 75%

â?» Porosity and Size can be customized.



Technological Process

Pure titanium (special process)-titanium fiber (laying, sintering)-titanium fiber felt (with three-dimensional network porous structure)- Titanium felt for LGDL


Features:
1. Three-dimensional grid porous structureï¼?
2. Strong corrosion resistanceï¼?
3. Optimal electrolysis performanceï¼?
4. High porosity and current densityï¼?
5. Uniform pore size distribution.


Applicantion

1. Liquid/gas diffusion layer;
2. Hydrogen absorber;
3. Hydrogen-rich water dispenser;
4. Diffusion layer of hydrogen cell stack;
5. PEM hydrogen production by water electrolysis.
GOLD Member
Apr-18-24
Supplier From Dubai, United Arab Emirates
Aug-18-23
 
In PEM fuel cells, 0.5microns sintered porous Ti plate for PEM is commonly used as electrode materials for anodes and cathodes. It has high electrical conductivity and good chemical stability, and is suitable for the occurrence of electrode reactions.
0.5microns sintered porous Ti plate acts as both anode and cathode electrodes in PEM fuel cells. It provides the supporting structure of the catalyst layer and provides a conductive path for the oxidation reaction of hydrogen and the reduction reaction of oxygen, thereby realizing the electrochemical reaction of fuel and oxygen and generating electricity.
Parameters
Material: pure titanium powder
Technical: sintering and coating
Size:as drawing
Porosity:30-40%
Pore size:0.5microns

Advantages
High electrical conductivity: The sintered porous titanium plate has good electrical conductivity and can effectively conduct electrons. This is crucial for the electrode reaction to proceed, ensuring smooth transport of electrons between the anode and cathode.

High surface area: The porous structure of the sintered porous titanium plate provides a large amount of surface area, increasing the contact area with the catalyst reaction. This increases the reaction rate and enhances the efficiency of the electrochemical reaction between fuel and oxygen.

Good chemical stability: Sintered porous titanium plate has good chemical stability and can resist corrosion under acidic environment and high temperature conditions. This makes it work stably for a long time in PEM fuel cells.

Suitable for catalyst immobilization: The surface of sintered porous titanium plate can accommodate and immobilize catalysts, such as platinum or its alloys. This provides good catalytic activity and maintains catalyst stability and dispersibility.

Strong adaptability: The sintered porous titanium plate can be customized in shape and size according to needs, so as to adapt to fuel cell stack designs of different sizes and forms. It can also be used in combination with other materials to achieve better electrode performance.
There are several commonly used materials that can be used in combination with sintered porous titanium plates to enhance electrode performance, the following are some of these common combinations:
Platinum Catalyst
Carbon materials
Oxide
Conductive polymers
Transition metal nitrides
GOLD Member
Apr-28-25

Titanium Nitride, AAA

$75 - $90 / Kilogram (FOB)
MOQ: 5  Metric Tonnes
Sample Available
 
Product name:Titanium nitride
Formula:TiN
CAS No.:25583-20-4
EINECS No.:247-117-5
Melting point:2950 �ºC
Appearance:Brown powder


Application:

There are all kinds of surface treatments - TiN coating (titanium nitride) being one of them. Industries such as energy, food processing, aerospace, medical, and automotive use this coating on a regular basis.
The following industries frequently use TiN coatings:
1.Food processing equipment
2.Extrusion dies
3.Plastic molds
4.Dental instruments and implants
5.Surgical implants and medical devices
6.Aerospace components
The Properties of Titanium Nitride:
Used to prevent material buildup, the material has a nonstick surface. It protects sliding surfaces when used as a coating. For welding applications and hot stamping, this is particularly critical
Because of its corrosion resistance and strength, popular uses for titanium nitride include end mills and drill bits. Cutting edges are kept intact by the coating. Also for that reason, it is frequently used in medical devices. Studies are currently being done as to the use of titanium nitride for hip replacements and other surgical implants
Sep-11-23
 
Titanium bipolar plates are a high performance component designed for battery fuel cell systems. It is made of high-purity titanium material with excellent mechanical properties, corrosion resistance and electrical conductivity, providing reliable support and excellent performance for fuel cells. Through advanced manufacturing process, titanium bipolar plates ensure high precision and consistency, with flat surface and fine processing to ensure the stable operation of the battery fuel cell system and provide the best gas and liquid sealing performance.

The main advantages of titanium bipolar plates are their lightweight design, high electrical conductivity and corrosion resistance. The lightweight nature of titanium reduces the weight of the entire battery fuel cell system, helping to improve energy efficiency. Its excellent electrical conductivity ensures effective current conduction, reduces energy loss, and improves system efficiency and response speed. In addition, the corrosion resistance of titanium material enables it to resist the erosion of corrosive substances such as acid and alkali in harsh environments and prolong the service life of the system.

Parameter
Material: titanium
Size: according to the drawing
Type: Etching / Chemical Machining, Other Machining Services
Etching accuracy: Line width: 0.01mm; Aperture: 0.03mm; Tolerance: �±0.01mm
Aug-05-23
 
Titanium bipolar electrolyser plate in electrolysis is a special electrode for electrolysis, usually made of pure titanium. In electrochemical processes, electrodes are usually divided into anodes and cathodes, each responsible for the flow of electrons and the flow of ions. A bipolar plate is an electrode that has both anodic and cathodic properties.

In electrolysis, titanium bipolar electrolyser plates are usually used in the fields of electroplating, electrolytic preparation and water treatment. They can withstand high voltage and high current density, but also have good corrosion resistance, which allows them to be used in harsh environments such as strong acid, strong alkali, high temperature and high pressure.

Parameters
Material: Gr1 titanium
Size: Customized according to the drawing
Application: Fuel cell

Features
1.Good electrical conductivity: Titanium bipolar plates have excellent electrical conductivity and can withstand high voltage and high current density, thus effectively promoting electrochemical reactions.

2.Good corrosion resistance: Titanium bipolar plates have good corrosion resistance and can be used in harsh environments such as strong acid, strong alkali, high temperature and high pressure, and are not easily corroded and worn.

3.Good mechanical properties: Titanium bipolar plates have high strength and rigidity, can withstand large forces and pressures, and are not easily deformed and broken.

4.Lightweight: Titanium bipolar plates have a lower density and are a lightweight material that can reduce the weight of the entire electrolytic cell and improve overall efficiency.

Methods of coatings for Ti bipolar plates
A number of methods are used to deposit coatings onto metallic bipolar plates. Processes include physical vapor deposition techniques such as electron beam evaporation, sputtering and glow discharge decomposition, chemical vapor deposition techniques, and liquid phase chemical techniques such as electroplating and electroless deposition, chemical anodizing/oxidation coatings and painting.
Sep-11-23
 
Titanium bipolar plates are a high performance component designed for battery fuel cell systems. It is made of high-purity titanium material with excellent mechanical properties, corrosion resistance and electrical conductivity, providing reliable support and excellent performance for fuel cells. Through advanced manufacturing process, titanium bipolar plates ensure high precision and consistency, with flat surface and fine processing to ensure the stable operation of the battery fuel cell system and provide the best gas and liquid sealing performance.


Parameter
Material: titanium
Size: according to the drawing
Type: Etching / Chemical Machining, Other Machining Services
Etching accuracy: Line width: 0.01mm; Aperture: 0.03mm; Tolerance: �±0.01mm

Features
1.Lightweight design: The titanium bipolar plate is made of titanium material, which has the characteristics of light weight. Compared with traditional metal materials, such as steel, titanium material has a lower density, so it can reduce the overall weight of the fuel cell system. This is especially important for automotive and other mobile applications, improving energy efficiency and driving range.

2.High Electrical Conductivity: Titanium bipolar plates have excellent electrical conductivity and can effectively conduct electric current. This helps reduce energy loss and increases the efficiency and responsiveness of the fuel cell system. Good electrical conductivity can also help maintain stable current distribution and balance, and improve the operating stability of the system.

3.Corrosion resistance: Titanium material has excellent corrosion resistance and can resist the erosion of corrosive substances such as acid and alkali. In fuel cells, where acidic or alkaline environments are involved, the use of titanium bipolar plates can provide longer life and reduce maintenance requirements.

4.High temperature resistance: Titanium bipolar plates can maintain stable performance under high temperature conditions. Some parts of the fuel cell system may be exposed to high temperature environments, such as inside the fuel cell stack. Titanium's high temperature resistance makes it ideal for reliable operation in these demanding conditions.
Aug-16-24
 
Platinum-coated titanium bipolar plates are essential components in fuel cells, where titanium serves as a sturdy base material and platinum is applied as a thin layer to enhance electrical conductivity and catalytic activity. These plates play a vital role in facilitating electrochemical reactions within fuel cells, particularly in proton exchange membrane fuel cells (PEMFCs), by providing a durable and efficient platform for electricity generation. The combination of titanium's corrosion resistance and platinum's catalytic properties ensures improved performance, longevity, and reliability in harsh electrochemical environments, making them integral to the efficiency of fuel cell systems.

Specifications:

Material: pure titanium, titanium alloy, or others.
Size: 54*54*20mm, customized according to the drawings
Coating: Platinum
Coating thickness: 1 micron
Coating area: All sides
Type: Etching / Chemical Machining, Other Machining Services
Surface: Smooth and flat surface

Advantages of platinum-coated titanium bipolar plates in fuel cell applications:

1. Enhanced Catalyst Activity: The platinum coating on the titanium bipolar plates serves as a catalyst, promoting the necessary electrochemical reactions within the fuel cell. This leads to increased efficiency and improved overall performance of the fuel cell system.

2. Reduced Overpotential: Platinum-coated titanium bipolar plates help lower the overpotential required for various electrochemical reactions, which translates to more efficient conversion of chemical energy into electrical energy within the fuel cell.

3. Improved Heat Dissipation: The thermal conductivity of titanium combined with the catalytic properties of platinum allows for effective heat dissipation during fuel cell operation, contributing to the overall thermal management of the system.

4. Longevity and Durability: The corrosion-resistant nature of titanium, augmented by the protective platinum coating, enhances the durability and longevity of the bipolar plates, resulting in a longer service life for the fuel cell system.

5.Environmental Benefits: By enabling the efficient conversion of chemical energy into electricity, platinum-coated titanium bipolar plates contribute to the reduction of greenhouse gas emissions and help promote environmentally friendly energy generation.

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