GR1 Titanium Porous Getter For Controlling The Atmosphere Inside The Isostatic Equipment

GR1 Titanium Porous Getter For Controlling The Atmosphere Inside The Isostatic Equipment

Material: Gr1 titanium

Size: standard size φ2.5*1.5mm, φ3.2*1.5mm, φ4.8*1.5mm, φ4*1.8mm, φ4*5mm, φ5*5mm, φ5*2mm, and other customized size

Pore size: 2 micron, 10micron, 20micron, 30 micron and 40 micron

Technique: sintering

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Product Introduction

TOPTITECH's latest innovation, the GR1 Titanium Porous Getter, is a high-efficiency gas-absorbing material made from high-purity Grade 1 titanium powder through advanced powder metallurgy sintering processes. This product features a precisely engineered porous structure and outstanding physical stability, making it ideal for use in vacuum and controlled atmosphere environments. It effectively absorbs active gases such as O₂, H₂, CO, N₂, and H₂O, ensuring a stable and clean gas phase within sensitive systems.

 

By fine-tuning sintering parameters, we have optimized the pore size distribution, specific surface area, and microstructure of the material. This results in exceptional gas absorption capacity, enhanced performance, and reusability across multiple operational cycles.

 

The GR1 Titanium Getter is particularly suitable for environments requiring stringent gas atmosphere control, including vacuum systems, inert gas shielding processes, and precision heat treatment applications.

 

Products Specifications

 

Material 

Gr1 titanium

Pore size

2 micron, 10micron, 20micron, 30 micron and 40 micron

Size

standard size φ2.5*1.5mm, φ3.2*1.5mm, φ4.8*1.5mm, φ4*1.8mm, φ4*5mm, φ5*5mm, φ5*2mm, and other customized size

Technique

Sintering

 

Products Features
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1. Superior Gas Absorption Performance

This titanium-based getter demonstrates strong and irreversible chemical absorption of active gases such as oxygen, hydrogen, water vapor, carbon monoxide, and nitrogen, especially under vacuum or low-pressure conditions. It maintains low partial pressures over extended periods, ensuring consistent atmosphere control.

2. Precisely Controlled Porous Structure

Through advanced powder metallurgy techniques, we achieve precise control over porosity and pore size distribution. The well-developed porous network increases the specific surface area, enhances gas transport, and maximizes reaction efficiency-greatly improving overall performance.

 

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3. Excellent Thermal Stability and Mechanical Strength
Engineered to withstand high temperatures, the GR1 Titanium Getter maintains structural integrity without cracking or collapsing. It resists degradation during repeated thermal cycles and performs reliably under mechanical stress or dynamic gas environments.

4. Environmentally Friendly and Fully Customizable
Made from pure titanium without harmful additives, the getter is non-toxic and produces no secondary emissions, aligning with green manufacturing standards. We offer custom sizes, shapes, and structural configurations to meet specific installation and operational requirements of industrial systems.
 

 applications

1. Vacuum Systems and Vacuum Equipment
In high or ultra-high vacuum systems, the getter effectively reduces residual gas concentrations, enhances vacuum levels, and promotes stable long-term operation. Commonly used in vacuum furnaces, physical vapor deposition (PVD) systems, and electron beam welding setups.

 

2. Semiconductor Manufacturing and Microelectronics Packaging
Maintaining ultra-low levels of oxygen and moisture is critical in semiconductor and microelectronics production. The titanium getter absorbs residual gases within sealed environments, prolonging device life and improving product reliability.

 

3. Inert Atmosphere Protection Processes
During the sintering, welding, or heat treatment of titanium alloys, high-temperature superalloys, and other sensitive materials, the GR1 getter purifies inert atmospheres (e.g., argon), preventing oxidation and degradation.

 

4. Aerospace Environmental Control Systems
Used in sealed environments such as spacecraft cabins and avionics enclosures, the getter helps regulate gas composition and remove hazardous impurities, ensuring safety and system integrity in aerospace missions.

 

5. Energy and Nuclear Industry
In hydrogen energy systems, lithium batteries, and nuclear reactors, controlling moisture and oxygen levels is critical to safety and efficiency. The GR1 getter supports atmosphere purification in demanding applications such as sodium-cooled reactors and fast neutron systems.

 

6. Scientific Research and Atmosphere Simulation Equipment
In advanced laboratories across materials science, chemistry, and physics, the titanium getter ensures precise atmosphere control. It is widely used in atmosphere-controlled furnaces, plasma reactors, and experimental vacuum chambers.

 

Contact us
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Tel: 0917-3873009

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Phone: +86 18992731201

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Fax: 0917-3873009

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Address: No. 195, Gaoxin Avenue, High-tech Development Zone, Baoji City, Shaanxi, China

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Whatsapp: +86 18992731201

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