𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Non-contact measurements of thermophysical properties of titanium at high temperature

✍ Scribed by Paul-François Paradis; Won-Kyu Rhim


Publisher
Elsevier Science
Year
2000
Tongue
English
Weight
306 KB
Volume
32
Category
Article
ISSN
0021-9614

No coin nor oath required. For personal study only.

✦ Synopsis


Four thermophysical properties of both solid and liquid titanium measured using the high-temperature electrostatic levitator at JPL are presented. These properties are density, thermal expansion coefficient, constant pressure heat capacity, and hemispherical total emissivity. For the first time, we report the density, the thermal expansion coefficient, and the ratio of the constant pressure heat capacity to the hemispherical total emissivity of undercooled titanium over a wide range of temperatures. Over the 1650 K to 2000 K temperature span, the liquid density can be expressed as ρ(T )/(kg

1943 K, and the corresponding volume expansion coefficient as α = 1.169 • 10 -4 K -1 . Similarly, over the 1540 K to 1940 K temperature range, the measured density of the solid can be expressed as ρ(T )/(kg • m -3 ) = 4.321 • 10 3 -0.212 • (T -T m )/K, giving a volume expansion coefficient α = 4.76 • 10 -5 K -1 . The constant pressure heat capacity of the liquid phase could be estimated as C p,m (T )/(J • K -1

• mol -1 ) = 45.5 -3.21 • 10 -3 • (T -T m )/K if the hemispherical total emissivity of the liquid phase ε T remains constant at 0.34 over the 1650 K to 2000 K temperature range. Over the 1540 K to 1940 K temperature span, the hemispherical total emissivity of the solid phase could be rendered as ε T (T ) = 0.297 + 5.952 • 10 -5

• (T -T m )/K. The enthalpy of fusion has also been calculated as 14.3 kJ • mol -1 .


📜 SIMILAR VOLUMES


Thermophysical properties of epoxy compo
✍ I.E. Evseeva; S.A. Tanaeva 📂 Article 📅 1995 🏛 Elsevier Science 🌐 English ⚖ 370 KB

The thermal conductivity, thermal diffusivity and specific heat of epoxy composite materials were investigated from 5 to 400 K. Experimental results of thermal expansion measurements in the temperature range 77-380 K are also presented. The spectrum of relaxation transitions is obtained by two indep

Measurements of caloric properties of fl
✍ H. Pieper; O. Schmid; H. Knapp 📂 Article 📅 1984 🏛 Elsevier Science 🌐 English ⚖ 570 KB

The information about the caloric properties of materials is important for the design of low temperature processes. The design of a multipurpose flow calorimeter is explained. The average heat capacity, the isenthalpy and the isothermal throttling effect of pure nitrogen were determined and compared

Non-stoichiometry of apatites at high te
✍ Prof. Dr. J. Arends; Mr. J. Schuthof; Drs. G. J. Flim 📂 Article 📅 1973 🏛 John Wiley and Sons 🌐 English ⚖ 208 KB 👁 1 views

## Abstract Schottky defects in apatites are formed by a decomposition reaction at temperatures in excess of 1000°K. In this investigation thermogravimetrie experiments on fluorapatite single crystals and powders have been carried out in the temperature range 1000–1600°K. Relative weightlosses of 1

Elastic properties of two titanium alloy
✍ E.R. Naimon; W.F. Weston; H.M. Ledbetter 📂 Article 📅 1974 🏛 Elsevier Science 🌐 English ⚖ 297 KB

Sound velocities and elastic constants were determined semi-continuously for two annealed polycrystalline titanium alloys between 4 and 300 K. Results are given for: longitudinal sound velocity, transverse sound velocity. Young's modulus, shear modulus, bulk modulus, Poisson's ratio, and elastic Deb