المساق
arXiv 2011-10-12 DOI 10.1016/j.cryogenics.2011.10.004 0 مشاهدة

High-precision CTE measurement of hybrid C/SiC composite for cryogenic space telescopes

Enya, K. · Yamada, N. · Imai, T. · Tange, Y. · Kaneda, H. · Katayama, H. · Kotani, M. · Maruyama, K. · Naitoh, M. · Nakagawa, T. · Onaka, T. · Suganuma, M. · Ozaki, T. · Kume, M. · Krodel, M. R.

الأصل · EN

This paper presents highly precise measurements of thermal expansion of a "hybrid" carbon-fiber reinforced silicon carbide composite, HB-Cesic - a trademark of ECM, in the temperature region of 310-10K. Whilst C/SiC composites have been considered to be promising for the mirrors and other structures of space-borne cryogenic telescopes, the anisotropic thermal expansion has been a potential disadvantage of this material. HB-Cesic is a newly developed composite using a mixture of different types of chopped, short carbon-fiber, in which one of the important aims of the development was to reduce the anisotropy. The measurements indicate that the anisotropy was much reduced down to 4% as a result of hybridization. The thermal expansion data obtained are presented as functions of temperature using eighth-order polynomials separately for the horizontal (XY-) and vertical (Z-) directions of the fabrication process. The average CTEs and their dispersion (1σ) in the range 293-10K derived from the data for the XY- and Z-directions were 0.805±0.003×10⁻⁶ K⁻¹ and 0.837±0.001×10⁻⁶ K⁻¹, respectively. The absolute accuracy and the reproducibility of the present measurements are suggested to be better than 0.01×10⁻⁶ K⁻¹ and 0.001×(10)⁻⁶ K⁻¹, respectively. The residual anisotropy of the thermal expansion was consistent with our previous speculation regarding carbon-fiber, in which the residual anisotropy tended to lie mainly in the horizontal plane.

الترجمة العربية

لا توجد ترجمة عربية لهذا البحث بعد. كن أوّل من يطلبها: تستغرق ثوانيَ معدودة، وتُحفظ النتيجة لكل قارئ قادم.

تحقّق أمني

اكتب الأحرف الظاهرة أعلاه

حتى 10 ترجمات لكل شخص يومياً.