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Pure sponge titanium sintered porous plate for gas distribution and membrane electrode materials

6.5 USD
Min. Order: 10 Piece/Pieces
Trade Term: FOB,CIF
Payment Terms: Paypal, L/C, D/P, T/T, WU, Money Gram
Supply Ability: 5000pcs/month
Place of Origin: Shaanxi

Company Profile

Location: Baoji, Shaanxi, China (Mainland)
Business Type: Manufacturer

Product Detail

Model No.: customized
Means of Transport: Ocean, Air
Structure: Others
Material: Others
Function: Purification Filter
Brand Name: Along
Size: customized
Application: Gs/liquid filtrtaion and separation, titanium porous electrode
Material: Pure Gr1 titanium
peformance: low density, high specific strength, good corrosion resistance and good biocompatibility.
Production Capacity: 5000pcs/month
Packing: Packed in cartons or wooden cases
Delivery Date: 5-30days
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Product Description

Pure sponge titanium sintered porous plate for gas distribution and membrane electrode materials

Pure sponge titanium sintered porous plate for gas distribution and membrane electrode materials

1.Titanium sintering porous materials

Titanium sintered porous material is a kind of porous material with high quality spherical and high purity titanium powder as raw material and it is made rigid by forming and sintering at high temperature.

a.Features of titanium sintered porous materials:

Titanium sintered porous materials have the characteristics of low density, high specific strength, good corrosion resistance and good biocompatibility.

Material

Filter Rating

Porosity

Penetrability

Working pressure

Operating temperature

Shape

specific 

surface area

Pure Titanium powder

5um-80um

25-45%

3-800M³/M²hKPa

2.5MPa

300℃

Round disc,sheet,tube,round bar,cap

10-1000px²/cm³

 

b.Specification of titanium sintered porous materials

Production

(Diameter)Length

(Diameter)Width

Thickness

Customized

Sintered porous round discs

Max φ800mm


0.5-30mm

 Yes

Sintered porous sheets

Max 800mm

Max 350mm

0.5-30mm

Yes

Sintered porous tubes

Max 1200mm

Max φ200mm

2-10mm

Yes

c.Manufacture Standard:                                                              

GB/T 6887-2007Sintered metal filter elements.

d.Properties of titanium sintered porous materials:

1) Pore diameter uniformity, pore stability, high separation efficiency.

2) High porosity, low filtration resistance and high permeability.

3) Good chemical stability, corrosion resistance, oxidation resistance.

4) Morphological stability, no particle shedding, comply with food hygiene and pharmaceutical GMP requirements.                                                 

5) Good mechanical properties, low differential pressure, large flow.

6)Strong anti-microbial ability, does not interact with microorganisms.

7) Online regeneration, easy cleaning, long service life.

8) Excellent biocompatibility, can be widely used in biological, food, pharmaceutical, medical industry.

9) Excellent electromagnetic shielding performance.

10) Good damping and shock resistance.

e.Application of titanium sintered porous materials:                                                                 

Titanium sintered porous materials are mostly used for filtering materials,electrodes,heat transfer materials,catalyst carrier materials,noise cancelling materials according to their physical and structural properties.

1)Decarburization filtration of pharmaceutical liquids.

2)Electrolytic gas industry precision filtration, gas distribution.

3)he medical industry makes biological implants.

4) Water treatment industry odor sterilization filtration and ozone aeration.

5) Clarification and filtration in food and beverage processing.

6) Prefiltration of reverse osmosis system for electronics industry.

7) Terminal filtration of petroleum products in petrochemical industry and filtration of carbonic alkali liquid in chemical industry.

8) High pressure air filtration in aerospace industry.

9) Filtration and recovery of precious metal catalyst in fine chemical industry.

10) The electrode matrix of a fuel cell.

11) Catalyst carrier in gas and liquid catalytic reactions.


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