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Total: 35 results found.

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1. Hafnium and Zirconium-<span class="highlight">Machining</span>
(Hafnium and Zirconium-Machining)
Three basic machining parameters should be used for all operations involving zirconium and hafnium alloys: Slow Speeds Heavy Feeds A flood coolant system using a water soluble oil lubricant. Zirconium ...
Created on 29 June 2010
2. Zirconium- <span class="highlight">Machining</span>
(Zirconium- Machining)
Typical Mechanical Properties: Modulus of Elasticity (psi): 14.4 x 106 Shear Modulus (psi): 5.25 x 106 Poisson’s Ratio (Ambient Temp.): 0.35 Speed of Sound Through Zr: Long: 1.8 x 105 in/sec Shear ...
Created on 28 June 2010
3. Zirconium and Hafnium- <span class="highlight">Machining</span>
(Zirconium and Hafnium- Machining)
Three basic machining parameters should be used for all operations involving zirconium and hafnium alloys: Slow Speeds Heavy Feeds A flood coolant system using a water soluble oil lubricant. Zirconium ...
Created on 22 June 2010
4. Vanadium-<span class="highlight">Machining</span>
(Vanadium-Machining)
  Machining: High speed steel and carbide tools may be used to machine vanadium. Speed as well as tool angles and lubrication should be monitored to avoid galling. Turning: See general instructions ...
Created on 22 June 2010
5. Tungsten-Copper- <span class="highlight">Machining</span>
(Tungsten-Copper- Machining)
    The principal Tungsten/Copper alloys contain from 2% to 45% copper by weight. The addition of copper increases the thermal conductivity of the alloy while reducing the hardness and modulus of rupture. ...
Created on 22 June 2010
6. Tungsten- <span class="highlight">Machining</span>
(Tungsten- Machining)
    Forming and Stamping: Tungsten can be fabricated into many simple shapes and configurations. It can be folded, bent, formed, spun, flow-turned, sheared, stamped, punched, and riveted. On the ...
Created on 22 June 2010
7. Titanium- <span class="highlight">Machining</span>
(Titanium- Machining)
    Titanium can be economically machined on a routine production basis if shop procedures are set up to allow for the physical characteristics common to the metal. The factors which must be given ...
Created on 22 June 2010
8. Tantalum <span class="highlight">Machining</span>
(Tantalum Machining)
 Most of the procedures in working and fabricating tantalum are conventional, and can be mastered without too much difficulty. At the out set, however, two important characteristics of tantalum must be ...
Created on 22 June 2010
9. Niobium-<span class="highlight">Machining</span>
(Niobium-Machining)
All the normal machining techniques can be used for niobium. The metal has a strong tendency to gall, however, and special attention must be paid to tool design and lubricant use. In lathe turning, the ...
Created on 18 June 2010
10. Nickel and Nickel Alloys- <span class="highlight">Machining</span>
(Nickel and Nickel Alloys- Machining)
Machinability:  Nickel alloys work harden rapidly, and the high pressures produced during machining cause a hardening effect that slows further machining and may also cause warping in small parts. Using ...
Created on 18 June 2010
11. Molybdenum- <span class="highlight">Machining</span>
(Molybdenum- Machining)
The main property of pure molybdenum which has influence on its machinability is its grain structure. In the "as sintered" condition, it can be machined relatively easily, but it is somewhat more difficult ...
Created on 17 June 2010
12. Densalloy-<span class="highlight">Machining</span>
(Densalloy-Machining)
The machining and grinding characteristics of Densalloy are very similar to those of hard grey cast iron. Being non-porous, standard water soluble coolants may be used if desired, but are not required. ...
Created on 16 June 2010
13. Aluminum - <span class="highlight">Machining</span>
(Aluminum - Machining)
Typical Physical Properties: Density: 2698 kg ⋅ m-3 Vapor Pressure: 3.7 ⋅ 10-3 Pa (to 927 oC) Melting Point: 660 oC Boiling Point: 2056 oC Mass Internal Energy: 3.98 ⋅ 105 J ⋅ kg-1 Mass Thermal ...
Created on 14 June 2010
14. Zirconium Powder
(Zirconium Powder)
    SAFETY DATA SHEET     1   PRODUCT AND SUPPLIER IDENTIFICATION Product Name:     Zirconium Powder Formula:              Zr Supplier:              ESPI Metals                             ...
Created on 01 December 2014
15. Titanium Powder
(Titanium Powder)
    SAFETY DATA SHEET     1   PRODUCT AND SUPPLIER IDENTIFICATION Product Name:    Titanium Powder Formula:             Ti Supplier:             ESPI Metals                             ...
Created on 26 November 2014
16. Hafnium Powder
(Hafnium Powder)
    SAFETY DATA SHEET     1   PRODUCT AND SUPPLIER IDENTIFICATION Product Name:    Hafnium Powder Formula:              Hf Supplier:              ESPI Metals                             ...
Created on 18 November 2014
17. Tungsten Boride
(Tungsten Boride)
    MATERIAL SAFETY DATA SHEET     I.   PRODUCT IDENTIFICATION Manufacturer/Supplier:  ESPI Metals 1050 Benson Way, Ashland, OR 97520 Toll Free (800) 638-2581 * Fax (541) 488-8313 ...
Created on 07 September 2010
18. Tungsten Oxide
(Tungsten Oxide)
    MATERIAL SAFETY DATA SHEET     I.   PRODUCT IDENTIFICATION Manufacturer/Supplier: ESPI Metals 1050 Benson Way, Ashland, OR 97520 Toll Free (800) 638-2581 * Fax (541) 488-8313 E-Mail: ...
Created on 02 September 2010
19. Sapphire
(Sapphire)
      MATERIAL SAFETY DATA SHEET     I.   PRODUCT IDENTIFICATION Manufacturer/Supplier: ESPI Metals 1050 Benson Way, Ashland, OR 97520 Toll Free (800) 638-2581 * Fax (541) 488-8313 ...
Created on 31 August 2010
20. Zirconium
(Zirconium (Zr))
MATERIAL OVERVIEW Characteristics: Hard, lustrous, grayish, crystalline scales or gray amorphous powder. Soluble in hot, very concentrated acids. Insoluble in water and cold acids. Corrosion-resistant; ...
Created on 16 July 2010
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