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High Melting Point Electrical Industry Tantalum Rings 996 C Degrees Celsius

Place of Origin: Zhejiang

Company Profile

Location: Suzhou, Jiangsu, China (Mainland)
Business Type: Manufacturer
Main Products: Titanium Capillary Tube, Seamless Titanium Tube, Tantalum Capillary Tube

Product Description

High melting point  RO5255  tantalum ring  for electrical industry

 

 

 

Specifications:

1. Grade:Ta1 ,TaNb3,Ta2.5W

2. Purity :> =99.95%

3. Characteristic:

Melting Point: 2996 °C Degrees Celsius

Boiling Point:5425

Density: 16.6 g/m3

High quality, workability

4. Certificate: ISO9001

5. Product Feature: High melting point, High-density, high temperature oxidation resistance, long service life, resistance to corrosion.

6. Dimensions and tolerance(According to clients’ requirements):

   Chemical composition:

   R05200: Fe: 0.01, Si: 0.005, -Ni 0.01, W 0.05, Mo: 0.02, Ti: 0.01, Nb0.1, O: 0.015, C:0.01, H: 0.0015,   N: 0.01   Ta: Remainder

   R05400: Fe: 0.01, Si: 0.005, -Ni 0.01, W 0.05, Mo: 0.02, Ti: 0.01, Nb0.1, O: 0.03, C:0.01, H: 0.0015, N: 0.01   Ta: Remainder

7. Application:

It has very good properties of corrosion resistance.It also has good electrical conducivity and easy be machined in the room temperature.The most application of tantalum is electrical industry,such as capacitors and etc.

 

 

Feature:

 

Tantalum Rings  is dark (blue-gray),dense, ductile, very hard, easily fabricated, and highly conductive of heat and electricity. The metal is

 renowned for its resistance to corrosion by acids; in fact, at temperatures below 150 °C tantalum is almost 

completely immune to attack by the normally aggressive aqua regia. It can be dissolved with hydrofluoric acid 

or acidic solutions containing the fluoride ion and sulfur trioxide, as well as with a solution of potassium 

hydroxide. Tantalum's high melting point of 3017 °C (boiling point 5458 °C) is exceeded among the elements 

only by tungsten, rhenium and osmium for metals, and carbon.

 

 

Chemical composition:  


                O                   0.0150   %max 
                C                   0.0100   %max 
                N                   0.0100   %max 
                H                   0.0015   %max 
                Fe                  0.0100   %max 
                Ti                   0.0100   %max 
                Ni                   0.0100   %max 
                Si                   0.0050   %max 
                Mo                 0.0200   %max 
                W                  0.0500   %max 
                Nb                 0.1000   %max 
                Ta                 Remainder

 

 

 

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