References
- Anderson P., Bror Person B., Performance of Cables Subjected to Elevates Temperatures, Brandforsk Project 625-001, Available online: https://publications.iafss.org/publications/fss/8/1121/view/fss_8-1121.pdf (accessed on 18 March 2025).
- Bernstein B.S., Cable Testing: Can we do better?, IEEE Electr. Insul. Mag. 1994, 10, 33-38.
- Chaohe T., Chengyu L., Standardization analysis of electric vehicle charging cable, Electr. Ind. 2013, 11, 60-63.
- Cosau E.R., Goanta V., Blanari I., Alkisswani L., Samara F., Determination of Tensile Characteristics and Electrical Resistance Variation of Cables Used for Charging Electric Vehicles, Polymers 2025, 17, 1317, https://doi.org/10.3390/polym17101317.
- Du Y., Peng J.Z., Yuen J., Liew R., Li G.Q., Mechanical properties of high tensile steel cables at elevated temperatures, Constr. Build. Mater. 2018, 182, 52-56.
- EN 50520:2020/A1:2021, Cover Plates and Cover Tapes for the Protection and Location Warning of Buried Cables or Buried Conduits in Underground Installations, EU Technical Committee‒CLC/TC 213‒Cable Management Systems, European Committee for Electrotechnical Standardization: Brussels, Belgium, 2021.
- EN 60811-10, Electric and Optical Fibre Cables‒Test Methods for Non-Metallic Materials‒Part 100: General, EU Technical Committee‒CLC/TC 20‒Electric Cables, European Committee for Electrotechnical Standardization: Brussels, Belgium, 2012.
- Guo Z., Dai C., Qin, J., Zhou C., Li J., Yu W., Liu F., Yang D., Huang C. Li L. et al., Research on mechanical properties of high-performance cable-in-conduit conductors with different design, Supercond. Sci. Technol. 2020, 33, 4.
- IEC 60228:2023; Conductors of Insulated Cables, International Electrotechnical Commission: Geneva, Switzerland, 2023.
- IEC 60502-1, Power Cables with Extruded Insulation and Their Accessories for Rated Voltages from 1 kV (Um = 1,2 kV) up to 30 kV (Um = 36 kV) ‒Part 1, Cables for Rated Voltages of 1 kV (Um = 1,2 kV) and 3 kV (Um = 3,6 kV), IEC Technical Committee 20: Electric Cables. International Electrotechnical Commission: Geneva, Switzerland, 2021.
- IEC 60811-202:2012, Electric and Optical Fibre Cables‒Test Methods for Non-Metallic Materials‒Part 202, General Tests‒Measurement of Thickness of Non-Metallic Sheath, IEC Technical Committee 20: Electric Cables. International Electrotechnical Commission: Geneva, Switzerland, 2012.
- IEC 60332-1-2, Tests on Electric and Optical Fibre Cables Under Fire Conditions‒Part 1-2: Test for Vertical Flame Propagation for a Single Insulated Wire or Cable, International Electrotechnical Commission: Geneva, Switzerland, 2025.
- IEC 62893-1, Charging Cables for Electric Vehicles for Rated Voltages up to and Including 0.6/1 kV‒Part 1: General Requirements, EC Technical Committee 20: Electric Cables, International Electrotechnical Commission: Geneva, Switzerland, 2020.
- Jingle Jabha D.F., Selvi K., Joselin R., Determination of Tensile Strength and Dielectric Strength in XLPE Power Cables Using Acoustic Emission Technique, Non-Destr. Eval. 2016, 22, 162-168.
- Kuzmanov N., Borisov B., Muhtarov I., Tensile testing of Inconel 600 wire at high temperatures, IOP Conf. Ser. Mater. Sci. Eng. 2020, 878, 012057.
- Li P. Zhao X., Qiu J., Qian J., Zhu Z., Zhang Z., Meng L., Experimental and Numerical Investigation into the Stability Behaviour of Cable-Stiffened Steel Columns, Materials 2022, 15, 8813.
- Lin L., Xiao Zhiyong X., Guiping L., Finite Element Modeling and Simulation of Mechanical Properties of DC Charging Cables for Electric Vehicles, In Proceedings of IncoME-V & CEPE Net, 2021, Springer: Cham, Switzerland.
- Lin L., Xiao Zhiyong X., Guiping L., Mechanical Performance Test and Analysis of DC Charging Cable for Electric Vehicle, E3S Web Conf. 2020, 185, 01070, Polymers 2025, 17, 1317 15 of 15.
- Linshu L., Jie Y., Hu Yongle H., FEM and Simulation of bending of DC charging cable of electric vehicle, Wire Cable 2019, 2, 12–21.
- Rickman S.L., Furst B., Johnson K.L., Thermal Testing and Analysis Techniques for Wires and Wire Bundles, J. Phys. Conf. 2021, 2116, 01207.
- Singh A., Vishnuram P., Alagarsamy S., Bajaj M., Blazek V., Damaj I., Rathore R.S., Al-Wesabi F.N., Othman K., Electric vehicle charging technologies, infrastructure expansion, grid integration strategies, and their role in promoting sustainable, Alex. Eng. J. 2024, 105, 300-330.
- Stevens A., Bilotti E., Peijs T., Busfield C.J., Development of a novel fatigue test method for cord-rubber composites. Polym. Test. 2018, 71, 238–247.
- Xiao Z., Lu G., Zhong Z., Design and Research of New-Type Clamping Fixture Based on Tensile Test of Wire and Cable Materials, In Advances in Asset Management and Condition Monitoring. Smart Innovation, Systems and Technologies; Ball, A., Gelman, L., Rao, B., Eds., 2020, Springer: Berlin/Heidelberg, Germany, p. 166.
- Yiyan C., Simulation of tensile mechanical behavior of high strength composite cable, Mater. Dev. Appl. 2017, 32, 47-52.
- Zhang Z., Xu Y., Huang Y., Wei Chen W.W., Ni Y., Ye J., Jiang J., Experiment study on the mechanical properties and constitutive model of grade 1960 steel wires under and after elevated temperatures, J. Build. Eng. 2024, 82, 108318.
- Zhao Y., Hu J., Song S., Zhang T., Li P., Xiong G., Global Stability Behavior of Pre-Cast Cable-Stiffened Steel Columns, Buildings 2024, 14, 248.
- Zichuan G., Chao D., Jinggang Q., Chao Z., Jiangang L., Research on mechanical properties of high-performance cable-in-conduit conductors with different design, Supercond.Sci.Technol. 2020, 33, 4, 045002, Published: Feb 17, 2020, DOI: 10.1088/1361-6668/ab6ec4.