References
- Robinson M. J., Kosmatka J. B. Development of a Short-Span Fiber-Reinforced Composite Bridge for Emergency Response and Military Applications. Journal of Bridge Engineering [Internet]. 2008;13(4):388–97. Available from: https://ascelibrary.org/doi/abs/10.1061/(ASCE)1084-0702(2008)13:4(388)
- Macke A, Schultz B, Rohatgi PK. Metal Matrix Composites Offer the Automotive Industry an Opportunity to Reduce Vehicle Weight, Improve Performance. Advanced Materials and Processes. 2012;170:19–23.
- Mieczkowski G, Szpica D, Borawski A, Diliunas S, Pilkaite T, Leisis V. Application of Smart Materials in the Actuation System of a Gas Injector. Materials. Basel Switzerland [Internet]. 2021;14(22). Available from: https://pubmed.ncbi.nlm.nih.gov/34832384/
- Borawski A. Impact of Operating Time on Selected Tribological Properties of the Friction Material in the Brake Pads of Passenger Cars. Materials 2021;14(4):884 [Internet]. Available from: https://www.mdpi.com/1996-1944/14/4/884/htm
- Beck AJ, Hodzic A, Soutis C, Wilson CW. Influence of Implementation of Composite Materials in Civil Aircraft Industry on reduction of Environmental Pollution and Greenhouse Effect. IOP Conference Series: Materials Science and Engineering [Internet]. 2011;26:12015. Available from: https://doi.org/10.1088%2F1757-899x%2F26%2F1%2F012015
- Richerson DW. Modern Ceramic Engineering: Properties, Processing, and Use in Design, Third Edition. CRC Press. 2005.
- Ibrahim IA, Mohamed FA, Lavernia EJ. Particulate reinforced metal matrix composites — a review. Journal of Materials Science [Internet]. 1991;26(5):1137–56. Available from: https://link.springer.com/article/10.1007/BF00544448
- Zhao X, Wang J, Chen Q, Jiang H, Chen C, Tu W. Microstructure design and optimization of multilayered piezoelectric composites with wavy architectures. [Internet]. 2023. Available from: https://www.tandfonline.com/doi/abs/10.1080/15376494.2023.2172234
- Mieczkowski G. Static Electromechanical Characteristics of Piezoelectric Converters with various Thickness and Length of Piezoelectric Layers. Acta Mechanica et Automatica. 2019;13(1):30–6.
- Borawski A, Szpica D, Mieczkowski G, Borawska E, Awad MM, Shalaby RM, et al. Theoretical Analysis of the Motorcycle Front Brake Heating Process during High Initial Speed Emergency Braking. Journal of Applied and Computational Mechanics. 2020;6(Special Issue):1431–7.
- Wang C, Ping X, Zhang Y, Xiao Z, Xiao Y. On the three-dimensional singular stress field near the corner front of revolution-shaped inclusions. Acta Mechanica [Internet]. 2021;232(12):4867–95. Available from: https://link.springer.com/article/10.1007/s00707-021-03078-2
- Ran Z, Yan Y, Li J, Qi Z, Yang L. Determination of thermal expansion coefficients for unidirectional fiber-reinforced composites. Chinese Journal of Aeronautics [Internet]. 2014;27(5):1180–7. Available from: https://linkinghub.elsevier.com/retrieve/pii/S1000936114000429
- Santos JA, Sanches AO, Akasaki JL, Tashima MM, Longo E, Malmonge JA. Influence of PZT insertion on Portland cement curing process and piezoelectric properties of 0–3 cement-based composites by impedance spectroscopy. Construction and Building Materials. 2020;238:117675.
- Oh KH, Han KS. Short-fiber/particle hybrid reinforcement: Effects on fracture toughness and fatigue crack growth of metal matrix composites. Composites Science and Technology [Internet]. 2007;67(7):1719–26. Available from: http://www.sciencedirect.com/science/article/pii/S026635380600251X
- Sijo MT, Jayadevan KR. Analysis of Stir Cast Aluminium Silicon Carbide Metal Matrix Composite: A Comprehensive Review. Procedia Technology [Internet]. 2016;24:379–85. Available from: http://www.sciencedirect.com/science/article/pii/S2212017316301360
- Caban J, Droździel P, Ignaciuk P, Kordos P. The impact of changing the fuel dose on chosen parameters of the diesel engine start-up process. Transport Problems. 2019;14(4):51–62.
- Szpica D. Fuel dosage irregularity of LPG pulse vapor injectors at different stages of wear. Mechanika. 2016;22(1):44–50.
- Duschlbauer D, Böhm HJ, Pettermann HE. Computational Simulation of Composites Reinforced by Planar Random Fibers: Homogenization and Localization by Unit Cell and Mean Field Approaches. [Internet]. 2006;40(24):2217–34. Available from: https://journals.sagepub.com/doi/10.1177/0021998306062317
- Tornabene F, Luo Y. Microstructure-Free Finite Element Modeling for Elasticity Characterization and Design of Fine-Particulate Composites. Journal of Composites Science [Internet]. 2022;6(2):35. Available from: https://www.mdpi.com/2504-477X/6/2/35/htm
- Tu ST, Cai WZ, Yin Y, Ling X. Numerical Simulation of Saturation Behavior of Physical Properties in Composites with Randomly Distributed Second-phase. [Internet]. 2005;39(7):617–31. Available from: https://journals.sagepub.com/doi/10.1177/0021998305047263
- Warguła Ł, Wojtkowiak D, Kukla M, Talaśka K. Symmetric Nature of Stress Distribution in the Elastic-Plastic Range of Pinus L. Pine Wood Samples Determined Experimentally and Using the Finite Element Method (FEM). Symmetry 2021;13(1):39 [Internet]. Available from: https://www.mdpi.com/2073-8994/13/1/39/htm
- Yao Z, Kong F, Wang H, Wang P. 2D Simulation of composite materials using BEM. Engineering Analysis with Boundary Elements. 2004;28(8):927–35.
- Chen X, Liu Y. Multiple-cell modeling of fiber-reinforced composites with the presence of interphases using the boundary element method. Computational Materials Science. 2001;21(1):86–94.
- Drugan WJ, Willis JR, Drugan WJ, Willis JR. A micromechanics-based nonlocal constitutive equation and estimates of representative volume element size for elastic composites. JMPSo [Internet]. 1996;44(4):497–524. Available from: https://ui.adsabs.harvard.edu/abs/1996JMPSo..44..497D/abstract
- Kanit T, Forest S, Galliet I, Mounoury V, Jeulin D. Determination of the size of the representative volume element for random composites: statistical and numerical approach. International Journal of Solids and Structures. 2003;40(13–14):3647–79.
- Widom B. Random Sequential Addition of Hard Spheres to a Volume. The Journal of Chemical Physics [Internet]. 1966;44(10):3888–94. Available from: /aip/jcp/article/44/10/3888/81726/Random-Sequential-Addition-of-Hard-Spheres-to-a
- Böhm HJ, Eckschlager A, Han W. Multi-inclusion unit cell models for metal matrix composites with randomly oriented discontinuous reinforcements. Computational Materials Science. 2002;25(1–2):42–53.
- Kari S, Berger H, Gabbert U. Numerical evaluation of effective material properties of randomly distributed short cylindrical fibre composites. Computational Materials Science. 2007;39(1):198–204.
- Lee WJ, Son JH, Park IM, Oak JJ, Kimura H, Park YH. Analysis of 3D random AI18B4O33 whisker reinforced Mg composite using FEM and random sequential adsorption. Materials Transactions. 2010;51(6):1089–93.
- Bailakanavar M, Liu Y, Fish J, Zheng Y. Automated modeling of random inclusion composites. Engineering with Computers. 2012;30(4):609–25.
- Zhou J, Qi L, Gokhale AM. Generation of Three-Dimensional Micro-structure Model for Discontinuously Reinforced Composite by Modified Random Sequential Absorption Method. Journal of Engineering Materials and Technology, Transactions of the ASME [Internet]. 2016;138(2). Available from: https://asmedigitalcollection.asme.org/materialstechnology/article/138/2/021001/384156/Generation-of-Three-Dimensional-Microstructure
- Jin BC, Pelegri AA. Three-dimensional numerical simulation of random fiber composites with high aspect ratio and high volume fraction. Journal of Engineering Materials and Technology [Internet]. 2011;133(4). Available from: https://asmedigitalcollection.asme.org/materialstechnology/article/133/4/041014/469603/Three-Dimensional-Numerical-Simulation-of-Random
- Qing H. Automatic generation of 2D micromechanical finite element model of silicon–carbide/aluminum metal matrix composites: Effects of the boundary conditions. Materials & Design. 2013;44:446–53.
- Eberly D. Robust Computation of Distance Between Line Segments. Geometric Tools [Internet]. 2018;1–14. Available from: https://www.geometrictools.com/
- Mieczkowski G. Determination of effective mechanical properties of particle - Reinforced composite material with use of numerical approach. Engineering for Rural Development. 2020;19:571–7.