Analisis Komponen Rear Back-Up Fitting Terhadap Damage Tolerance dan Durability Pada Vertical Tail Pesawat
Submitted : 2025-09-16, Published : 2026-02-20.
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J. Arrieta and A. G. Striz, “Optimal design of aircraft structures with damage tolerance requirements,” Struct. Multidiscip. Optim., vol. 30, no. 2, pp. 155–163, 2005, doi: 10.1007/s00158-004-0510-0.
R. Jones A.C, “Fatigue crack growth and damage tolerance,” Fatigue Fract. Eng. Mater. Struct., vol. 37, Feb. 2014, doi: 10.1111/ffe.12155.
G. Molinari, I. Meneghin, M. Melega, and E. Troiani, “Parametric damage tolerance design of metallic aeronautical stiffened panels,” Aeronaut. J., vol. 116, pp. 815–831, Aug. 2012, doi: 10.1017/S0001924000007296.
R. Talreja and N. Phan, “Assessment of damage tolerance approaches for composite aircraft with focus on barely visible impact damage,” Compos. Struct., vol. 219, pp. 1–7, 2019, doi: https://doi.org/10.1016/j.compstruct.2019.03.052.
S. Pfingstl, D. Steinweg, M. Zimmermann, and M. Hornung, “On the Potential of Extending Aircraft Service Time Using a Fatigue Damage Index,” pp. 1–19, 2021, [Online]. Available: http://arxiv.org/abs/2008.03138
F. Carta and A. Pirondi, “Damage tolerance analysis of aircraft reinforced panels,” 9th Youth Symp. Exp. Solid Mech. YSESM 2010, vol. 16, pp. 19–24, 2010, doi: 10.3221/igf-esis.16.04.
R. Qomariyah, “Fatigue And Damage Tolerance” Dapat Memperbaiki Sistem Pemeliharaan Struktur Pesawat Udaratle,” J. TNI Angkatan Udar., vol. 1, no. 1, 2022.
T. . Anderson, T.L., & Anderson, Fracture Mechanics : Fundamental and Applications, Third Edit. CRC Press, 2005. doi: 10.1201/9781420058215.
S. M. O. Tavares and P. M. S. T. De Castro, Damage tolerance of metallic aircraft structures: materials and numerical modelling. Springer, 2019.
H. A. Wood and R. M. Engle Jr, “USAF Damage Tolerant Design Handbook: Guidelines for the analysis and Design of Damage Tolerant Aircraft Structures. Revision A,” 1979.
C. Boller, G. Dobmann, and E. Schneider, “In-situ structural integrity monitoring based on non-destructive testing principles”.
J. N. Reddy, An introduction to the finite element method, vol. 3. McGraw-Hill New York, 2005.
M. Liu, Y. Gan, D. A. H. Hanaor, B. Liu, and C. Chen, “An improved semi-analytical solution for stress at round-tip notches,” Eng. Fract. Mech., vol. 149, pp. 134–143, 2015.
A. Beatrin Selan, “Analisis Damage Tolerance Dan Crack Growth Pada Alumunium 2024-T3 Dan Alumunium 7075-T7351 Menggunakan Perangkat Lunak Matlab,” 2018, Institut Teknologi Dirgantara Adisutjipto.
M. Boscolo, G. Allegri, and X. Zhang, “Design and modelling of selective reinforcements for integral aircraft structures,” AIAA J., vol. 46, no. 9, pp. 2323–2331, 2008.
C. Bathias and A. Pineau, “Fatigue of materials and structures,” 2010.
F. R. Steinbacher, “Discussion:‘Analysis of stresses and strains near the end of a crack traversing a plate’(Irwin, GR, 1957, ASME J. Appl. Mech., 24, pp. 361–364),” 1958.
M. H. Aerodynamics, “Airframe Structural Design: Practical Design Information and Data on Aircraft Structures. MCY Niu. Conmilit Press Ltd.”.
F. Erdogan, “Fracture Mechanics and Contact Problems in Materials Involving Graded Coatings and Interfacial Zones,” 2001.
E. Orowan, “Fracture and strength of solids,” Reports Prog. Phys., vol. 12, no. 1, p. 185, 1949.
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