- Sheads, A. Lunz, Rodman: Last of the Seacoast Muzzle-Loaders, Cultural Resource Management, 20(14) (1997) 6-17.
- R.D. Manning, Bursting pressure as the basis for cylinder design, Journal of Pressure Vessel Technology, 100(4) (1978) 374 -381.
- Chen, Bauschinger and hardening effect on residual stresses in an autofrettaged thick-walled cylinder, Journal of Pressure Vessel Technology, 108 (1986) 108–112.
- Xiaoying, L. Gangling, Autofretted calculative method of a thick-walled cylinder for the open-ended case, in: Fifth International Conference on Pressure Vessel Technology, 1 (1984) 85-95.
- Yang, R. Zhu, Autofrettage of thick cylinders, International Journal of Pressure Vessels & Piping, 75 (1998) 443-446.
- S. Wang, An elastic-plastic solution for a normally loaded center hole in a finite circular body, International Journal of Pressure Vessels & Piping, 33 (1988) 269-284.
- Xinlin, W. Xuexia, An elasto-plastic analytical solution for a closed-end thick-walled cylinder of a strain-hardening material, Petro-Chemical Equipment Technology, 20(6) (1991) 37-40.
- Xinlin, An exact elasto-plastic solution for an opened-end thick-walled cylinder of a strain-hardening material, International Journal of Pressure Vessels & Piping, 5(1) (1992) 129-144.
- Wanlin, Elastic-plastic analysis of a finite sheet with a cold -worked hole, Engineering Fracture Mechanics, 45(6) (1993) 857-864.
- Clark, Fatigue Crack Growth Through Residual Stress Field-Theoretical and Experimental Studies on Thick-Walled Cylinders, Theoretical and Applied Fracture Mechanics, 2 (1984) 111-125.
- Perl, Stress Intensity Factor Approximate Formulae for Uniform Crack Arrays in Pressurized or Autofrettaged Cylinders, Engineering Fracture Mechanics, 43(5) (1992) 725-732.
- Yong, The Axial Stress Intensity Factors in Autofrettaged Cylinders with External Hoop Cracks, Engineering Fracture Mechanics, 42(2) (1992) 265-271.
- M. Shu, J. Petit, G. Bezine, Stress Intensity Factors for Radial Cracks in Thick-Walled Cylinders-II, Combination of Autofrettage and Internal Pressure, Engineering Fracture Mechanics, 49(4) (1994) 625-629.
- Zhu, X.Y. Tao, L. Cengdian, Fatigue Strength and Crack Propagation Life of In-Service High Pressure Tubular Reactor under Residual Stress, International Journal of Pressure Vessels & Piping, 75 (1998) 871–877.
- Musani, Sound Advice, A10052, INTERNATIONAL DEFENSIVE PISTOL ASSOCIATION TACTICAL JOURNAL, USA, 2003.
- Department of Defense, Design Criteria Standard, Noise Limits, MILITARY STANDARD: DESIGN CRITERIA STANDARD, NOISE LIMITS 1474D, (1997).
- Firehole Consulting Services, Analysis of M4-A1 Integral Suppressed Weapon Barrel, Case Study, http://www.firehole.com/, USA, 2009.
- Littlefield, E. Hyland, Development and Testing of Prestressed Carbon Fiber Composite Overwrapped Gun Tubes, in: 7th International Conference on Composite MaterialsAt: Edinburgh, Scotland, July (2009).
- Littlefield, E. Hyland, A. Andalora, N. Klein, R. Langone, R. Becker, Carbon Fiber/Thermoplastic Overwrapped Gun Tube, Journal of Pressure Vessel Technology, 128 (2006) 257-262.
- Tzeng, Dynamic Fracture of Composite Overwrap Cylinders, Journal of Reinforced Plastics and Composites, 19(1) (2000) 2-14.
- L. Anderson, Fracture Mechanics-Fundamentals and Applications, Second Edition, Texas: CRC Press LLC, (1995).
- Wheeler, Spectrum loading and crack growth, Journal of Basic Engineering Transaction, ASME, Series D 94(1) (1972).
- Broek, The practical use of fracture mechanics, FractuREsearch Inc., Galena, OH, USA, (1988).
- S. Salzar, Influence of autofrettage on metal matrix composite reinforced gun barrels, Composites Part B: Engineering, 30(8) (1999) 841-847.
- M. Aziz, V.K. Kodur, Effect of temperature and cooling regime on mechanical properties of high-strength low-alloy steel, Fire and Materials, 40, (2016) 926–939.
- K. Brindley, S.L. Draper, J.I. Eldridge, M.V. Nathal, S.M. Arnold, The effect of temperature on the deformation and fracture of SiC/Ti-24Al-11Nb, Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, 23 (1992) 2527-2540.
- K. Wright, Measurement of Residual Stresses in Metal Matrix Composites, Journal of Engineering for Gas Turbines and Power, 116(3) (1994) 605–610.
- Milosevic, I. Aleksic, Thermophysical properties of solid phase Ti-6Al-4V alloy over a wide temperature range, International Journal of Materials Research, 103(6) (2012) 707-714.
- Seif, T. McAllister, Stability of wide flange structural steel columns at elevated temperatures, Journal of Constructional Steel Research, 84 (2013) 17-26.
- Rahman, R. Hawileh, M. Mahamid, The Effect of Fire Loading on A Steel Frame and Connection, 76 (2004) 307-316.
- Yuhan, J. Lianguang, L. Xuefeng, Investigation on Behavior of Castellated Composite Beams under Fire, MATEC Web of Conferences 175 (2018) 02032.
- S. Dixit, R. Shufen, Finite element method modeling of hydraulic and thermal autofrettage processes, Mechanics of Materials in Modern Manufacturing Methods and Processing Techniques, (2020) 31-69.
- Mishra, A. Hameed, B. Lawton, A novel scheme for computing gun barrel temperature history and its experimental validation, Journal of Pressure Vessel Technology, 132(6) (2010) 061202.
- Ullah, R.A. Pasha, G.Y. Chohan, F. Qayyum, Numerical simulation and experimental verification of CMOD in CT specimens of TIG welded AA2219-T87, Arabian Journal for Science and Engineering, 40(3) (2015) 935-944.
- Asghar, M.A. Nasir, F. Qayyum, M. Shah, M. Azeem, S. Nauman, S. Khushnood, Investigation of fatigue crack growth rate in CARALL, ARALL and GLARE, Fatigue & Fracture of Engineering Materials & Structures, 40(7) (2017) 10861100.
- Mukhtar, F. Qayyum, H. Elahi, M. Shah, Studying the effect of thermal fatigue on multiple cracks propagating in an SS316L thin flange on a shaft specimen using a Multiphysics numerical simulation model, Journal of Mechanical Engineering, 65(10) (2019) 565-573.
- P. Parker, Autofrettage of Open-End Tubes—Pressures, Stresses, Strains, and Code Comparisons, Journal of Pressure Vessel Technology, 123(3) (2001) 271–281.
- Klobcar, J. Tusek, B. Taljat, Thermal fatigue of materials for die-casting tooling, Materials Science and Engineering A, 472(1-2) (2008) 198-207.
- N. Katz, L.A. Bracamonte, J.C. Withers, S. Chaudhury, Hybrid Ceramic Matrix/Metal Matrix Composite Gun Barrels, Materials and Manufacturing Processes, 21(6) (2006) 579-583.
- Zhu, J. Yang, Autofrettage of thick cylinders, International Journal of Pressure Vessels and Piping, 75(6) (1998) 443-446.
- Qayyum, M. Shah, O. Shakeel, F. Mukhtar, M. Salem, F. Rezai-Aria, Numerical simulation of thermal fatigue behavior in a cracked disc of AISI H-11 tool steel, Engineering Failure Analysis, 62 (2016) 242-253.
- Lei, N.P. O’dowd, G.A. Webster, Fracture mechanics analysis of a crack in a residual stress field, International Journal of Fracture, 106(3) (2000) 195-216.
- Shah, M. Ali, A. Sultan, M. Mujahid, H. Mehmood, N. Ullah, M. Shuaib, An investigation into the fatigue crack growth rate of electron beam-welded H13 tool steel: effect of welding and post-weld heat treatment, Metallography, Microstructure, and Analysis, 3(2) (2014) 114-125.
- Shah, C. Mabru, F. Rezai-Aria, I. Souki, R.A. Pasha, An estimation of stress intensity factor in a clamped SE (T) specimen through numerical simulation and experimental verification: case of FCGR of AISI H11 tool steel, Acta Metallurgica Sinica, 25(4) (2012) 307-319.
- Amadio, C. Bedon, M. Fasan, Numerical assessment of slab interaction effects on the behavior of steel-concrete composite joints, Journal of Constructional Steel Research, 139 (2017) 397-409.
- Szmytka, M. Salem, F. Rezai-Aria, A. Oudin, Thermal fatigue analysis of automotive Diesel piston: experimental procedure and numerical protocol, International Journal of Fatigue, 73 (2015) 48-57.
- Oudin, Thermo-mechanical fatigue of hot work tool steels, PhD ENSMP, dissertation these realized in Ecole Des Moines d’Albi, (2001).
- Zhang, G. Bernhart, D. Delagnes, Cyclic behavior constitutive modelling of a tempered martensitic steel including ageing effect, International Journal of Fatigue, 30(4) (2008) 706-716.
- Scarabeli Barbosa, C. Ruggieri, Fracture Toughness Testing of a Low Alloy Structural Steel Using Non-Standard Bend Specimens and an Exploratory Application to Determine the Reference Temperature, T0, in: Proceedings of the ASME 2017 Pressure Vessels and Piping Conference. Volume 5: High-Pressure Technology; ASME Nondestructive Evaluation, Diagnosis and Prognosis Division (NDPD); SPC Track for Senate. Waikoloa, Hawaii, USA. July (2017) 16–20.
- Underwood, G. Vigilante, C. Mulligan, Review of thermo-mechanical cracking and wear mechanisms in large caliber guns, Wear, 263(7-12) (2007) 1616-1621.
- V. Mises, Mechanik der festen Keorper im plastisch-deformablen Zustand. Nachrichten von der Gesellschaft der Wissenschaften zu Gottingen, Mathematisch-Physikalische Klasse, 1913 (1913) 582-592.
- Mishra, A. Hameed, B. Lawton, A novel scheme for computing gun barrel temperature history and its experimental validation, Journal of Pressure Vessel Technology, 132(6) (2010) 061202.
- Ullah, R.A. Pasha, G.Y. Chohan, F. Qayyum, Numerical simulation and experimental verification of CMOD in CT specimens of TIG welded AA2219-T87, Arabian Journal for Science and Engineering, 40(3) (2015) 935-944.
- Asghar, M.A. Nasir, F. Qayyum, M. Shah, M. Azeem, S. Nauman, S. Khushnood, Investigation of fatigue crack growth rate in CARALL, ARALL and GLARE, Fatigue & Fracture of Engineering Materials & Structures, 40(7) (2017) 1086-1100.
- Shah, C. Mabru, F. Rezai-Aria, Investigation of crack propagation in X38CrMoV5 (AISI H11) tool steel at elevated temperatures, Procedia Engineering, 2(1) (2010) 2045-2054.
- H. Underwood, E. Troiano, Critical fracture processes in army cannons: a review, Journal of Pressure Vessel Technology, 125(3) (2003) 287-292.
- H. Underwood, M.D. Witherell, S. Sopok, J.C. McNeil, C.P. Mulligan, G.N. Vigilante, Thermomechanical modeling of transient thermal damage in cannon bore materials, Wear, 257(9-10) (2004) 992-998.
- Xiaolong, Z. Yong, M. Lei, L. Yong, Q. Qin, Erosion analysis of machine gun barrel and lifespan prediction under typical shooting conditions, Wear, 444-445, (2019) 203177.
- Oudin, P. Lamesle, L. Penazzi, S. Le Roux, F. Rezai-Aria, Thermomechanical fatigue behavior and life assessment of hot work tool steels, European structural integrity society, 29 (2002) 195-201.
- Astm STP590 Standard, A symposium sponsored by Committee E-24 on Fracture Testing of Metals, AMERICAN SOCIETY FOR TESTING AND MATERIALS Brown University, Providence, R. I., 26-28 Aug, (1974).
- Hesse, K. Brueninghaus, W. Dahl, Yielding- and fracture behavior of ferritic steels in the transition region of quasistatic to dynamic loading, Nuclear Engineering and Design, 96(2/3) (1986) 167-172.
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