PENGARUH α-CASE DAN ANGKA KEKERASAN (SIFAT MEKANIK) TERHADAP LAJU PERUBAHAN ELONGASI (DEFORMASI) MATERIAL Ti6AL4V HASIL PROSES SUPERPLASTIS FORMING

Penulis

  • Armila Universitas Muhammadiyah Sumatera Barat

DOI:

https://doi.org/10.21063/jtm.2012.v2.i1.13-19

Kata Kunci:

Superplastic, material Ti6AL4V and deformation

Abstrak

Superplastic materials may be stretched in tension to elongations typically in excess of 200% and more commonly in the range of 400–2000%. There are rare reports of higher tensile elongations reaching as much as 8000%. The high ductility is obtained only for superplastic materials and requires both the temperature and rate of deformation (strain rate) to be within a limited range. The temperature and strain rate required depend on the specific material. A variety of forming processes can be used to shape these materials; most of the processes involve the use of gas pressure to induce the deformation under isothermal conditions at the suitable elevated temperature. The tools and dies used, as well as the superplastic material, are usually heated to the forming temperature. There are a number of commercial applications of super-plastic forming for aerospace, Examples are wing access panels in the Airbus A310 and A320, bathroom sinks in the Boeing 737, turbo-fanengine cooling-duct components, external window frames in the space shuttle, front covers of slot machines.

Referensi

Cheschini, L & Afrinakov, A., “Superplastic Forming (SPF) of Material and Combined with Diffusion Bonding: Tecnological and Design Aspect “, Metalurgy Science and Tecnology vol 10 (3) (1992).

International Conference on Superplasticity – Grenoble September 16-19, 1985, edition du C.M.R.S. Paris 1985.

Jain, M., “Strain Rate Sensitivity effect with Forming Characteristic of Superplastic Ti6AL4V, Material Science and Engineering, A 138 (1991).

Wirawan, B., Ardianto, DS, Sulystiowati, D. “perubahan harga kekerasan dan cacat Kaviatasi pada produk pembentukan Superplastis Material Ti6AL4V”. Reseach note RN A2321, ARD-PT.IPTN/1998.

ASM, “Titanium and Alloys, Source book”, Ohio 1982.

Arsenault, R.J. “Plastic Deformation of Metal” vol 6, Academic Press , New York, 1976.

ASM, “Metal Handbook” Vol. 1 8th Edition, 1974.

Dieter, G. E., “ Mechanical Metalurgy” 3rd Edition, New York, 1986.

Langdon, TG “The Physic of Superplastic Deformation” Material Science and Engineering, A 137 (1991).

Honey Combe, R.W.K., The Plastic Deformation of Metal”, Edward Arnold, London, 1971.

Smallman, RE. Metalurgi Fisik Moderen” edisi ke empat Gramedia, Jakarta 1991.

Unduhan

Diterbitkan

2012-10-31

Cara Mengutip

PENGARUH α-CASE DAN ANGKA KEKERASAN (SIFAT MEKANIK) TERHADAP LAJU PERUBAHAN ELONGASI (DEFORMASI) MATERIAL Ti6AL4V HASIL PROSES SUPERPLASTIS FORMING. (2012). Jurnal Teknik Mesin, 2(1), 13-19. https://doi.org/10.21063/jtm.2012.v2.i1.13-19