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  • The Effect of Process Impurities on the Corrosion Resistance of Zirconium and Titanium: Case Histories (.pdf)
    , it was concluded that the Ti-6Al-4V impeller had failed due to "spontaneous. combustion" in a pyrophoric reaction with the process stream. Base Metal. of the. Compressor. Impeller. Oxide Layer. on Surface. Figure 2. Burned surface of impeller spine showing titanium globules in an oxide matrix. 50. It is known
  • Comparative Corrosion Resistance of RU- and Pd- Modified C.P. Titanium Alloys (.pdf)
    3. 33. -. Ti-0.4Ni-0.15Cr-0.015Pd-0.025Ru. AKOTÒ 4. 1) RMI Titanium Company, trademark. 3) Nippon Mining Co., LTD., trade name. 2) Sumitomo Metal Industries, LTD., trade name. 4) Kobe Steel, LTD., registered trademark. Table II. Corrosion Test Matrix for Evaluating Pd- and Ru-Modified Titanium
  • The Case for Specified Ranges of Interstitial Elements and Iron in Titanium Welding Filler Metal (.pdf)
    important. Oxygen, nitrogen, carbon are termed interstitial elements because they. occupy sites between titanium atoms in the regular metal matrix. Iron is a substitutional element. because it normally occupies a site in place of a titanium atom. Table I. Average Ingot Chemistry. Chemistry. Oxygen
  • Metal-Matrix Composites
    the matrix properties of superalloys, titanium, copper, magnesium, or iron. Like all composites, aluminum-matrix composites are not a single material but a family of materials whose stiffness, strength, density, and thermal and electrical properties can be tailored. The matrix alloy, the reinforcement
  • Ceramic-Matrix Composites
    vapor deposition. A thick layer of silicon carbide is deposited on a thin fiber substrate of tungsten or carbon. Diameter of the final product is about 140 m. Although developed initially to reinforce aluminum and titanium matrices,
  • Reactive Metals for Specialized Industrial Applications (.pdf)
    are, therefore, not as conditional as Titanium and. Niobium. All of the reactive metals are passive like most corrosion resistant metals. The difference is. that the reactive metals have the capability of dissolving their oxide film into the metal matrix. As a. consequence, they all have temperature
  • Optimization of Melt Chemistry and Properties of Drawn Filled Tube
    The purpose of this paper is to review the property improvements of this alloyed wire through the use of enhanced melting chemistry. The new chemistry is the 35N LT(R) material which meets the requirements of ASTM F 562. It will be shown that the reduction in titanium content of the melt
  • The Effects of Varying Active Af Temperatures on the Fatigue Properties of Nitinol Wire (.pdf)
    The influence of deformation temperature on mechanical properties of Shape Memory and Superelastic Nickel-Titanium (Nitinol) alloys has been studied and is well documented. In determining the effectiveness of a device when it is deployed and maintained under strain at ambient or body temperature

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