[1]
K.M. Rajan, K. Narasimhan, An approach to selection of material and manufacturing processes for rocket motor cases using weighted performance index, Mat. Eng. Perform, 11 (2002) 444-449.
DOI: 10.1361/105994902770343980
Google Scholar
[2]
P.K. Liaw, M.G. Peck, G.E. Rudd, T.K. Lai, Fatigue crack growth behavior of D6AC space shuttle steel, Eng Fract Mech, 43 (1992) 379-400.
DOI: 10.1016/0013-7944(92)90108-q
Google Scholar
[3]
D.B. Garcia, R. Forman, D. Shindo, Experimental evaluation of fatigue crack initiation from corroded hemispherical notches in aerospace structural materials, Fatigue Fract. Engin. Mat. Struct., 35 (2012) 122-140.
DOI: 10.1111/j.1460-2695.2011.01599.x
Google Scholar
[4]
S. -C. Wu, H. -C. Wene, K. -H. Tseng, W. -H. Yau, M. -J. Wu, C. -P. Chou, W. -K. Hsu, Sliding wear resistance of tempered D6AC steel, Vacuum, 87 (2013) 89-94.
DOI: 10.1016/j.vacuum.2012.06.005
Google Scholar
[5]
K. Abbaszadeh, H. Saghafian, S. Kheirandish, Effect of Bainite Morphology on Mechanical Properties of the Mixed Bainite-martensite Microstructure in D6AC Steel, Mat. Sci. Tech., 28 (2012) 336-342.
DOI: 10.1016/s1005-0302(12)60065-6
Google Scholar
[6]
V.V. Gorozhankin, V.I. Kolmykov, D.N. Romanenko, Reinforcement of button roller bits by thermo-chemical processing, Gornyi Zhurnal, 10 (2013) 98-100.
Google Scholar
[7]
R.A. Khrunyk, Development of new low-alloy steels for rock roller drill bits, Mat. Sci., 36 (2000) 437-444.
DOI: 10.1007/bf02769608
Google Scholar
[8]
M.A. Ryzhkov, M.V. Maisuradze, Yu.V. Yudin, A.V. Khuppeev, K.P. Ajeet Babu, Experience in improving silicon steel component heat treatment quality, Metallurgist, 59 (2015) 401-405.
DOI: 10.1007/s11015-015-0117-2
Google Scholar
[9]
V.A. Khotinov, S.V. Oshchukov, V.M. Farber, Structure and mechanical properties of medium-carbon steels after heating in the intercritical temperature range, Met. Sci. Heat Treat., 53 (2012) 545-549.
DOI: 10.1007/s11041-012-9430-6
Google Scholar
[10]
M. V. Maisuradze, M. A. Ryzhkov, Yu. V. Yudin, A. A. Ershov, Heat treatment technology for high-strength engineering steel variable cross-section components, Metallurgist, 58 (2014) 712-716.
DOI: 10.1007/s11015-014-9982-3
Google Scholar
[11]
S. -J. Lee, J. -S. Park, Y. -K. Lee, Effect of austenite grain size on the transformation kinetics of upper and lower bainite in a low-alloy steel, Scr. Mat., 59 (2008) 87-90.
DOI: 10.1016/j.scriptamat.2008.02.036
Google Scholar
[12]
C.P. Luo, J. Liu, Crystallography of lath martensite and lower bainite in alloy steels, Mat. Sci. Eng. A., 438-440 (2006) 149-152.
DOI: 10.1016/j.msea.2005.12.046
Google Scholar
[13]
M.V. Maisuradze, Yu.V. Yudin, M.A. Ryzhkov, Numerical simulation of pearlitic transformation in steel 45Kh5MF, Met. Sci. Heat Treat., 56 (2015) 512-516.
DOI: 10.1007/s11041-015-9791-8
Google Scholar
[14]
Steel and its Heat Treatment: a Handbook, Swerea IVF, Molndal, (2012).
Google Scholar
[15]
I. Barsoum, F. Khan, Z. Barsoum, Analysis of the torsional strength of hardened splined shafts, Mat. Design, 54 (2014) 130-136.
DOI: 10.1016/j.matdes.2013.08.020
Google Scholar
[16]
I. Fedorova, A. Kostka, E. Tkachev, A. Belyakov, R. Kaibyshev, Tempering behavior of a low nitrogen boron-added 9% Cr steel, Mat. Sci. Eng. A, 662 (2016) 443-455.
DOI: 10.1016/j.msea.2016.03.092
Google Scholar
[17]
D. Lian, Microstructure properties of tempered D6AC steel, App. Surf. Sci., 264 (2013) 100-104.
DOI: 10.1016/j.apsusc.2012.09.129
Google Scholar
[18]
Y. Deng, M. Chen, Y. Jin, Y. Zhang, D. Zou, Y. Lu, Theoretical and experimental study on the penetration rate for roller cone bits based on the rock dynamic strength and drilling parameters, Nat. Gas Sci. Eng. 36A (2016) 117-123.
DOI: 10.1016/j.jngse.2016.10.019
Google Scholar
[19]
H. Karasawa, T. Ohno, K. Miyazaki, A. Eko, Experimental results on the effect of bit wear on torque response, Int. J. Rock Mech. Min. Sci., 84 (2016) 1-9.
DOI: 10.1016/j.ijrmms.2016.01.013
Google Scholar
[20]
ASM Handbook, Vol. 16, Machining, ASM International, OH, (1989).
Google Scholar