Quaedam etiam utilitates fila cuprea subtrita utendi usu destituta sunt;
Fila aenea destitutus late stitata sunt;
Cum fila aenea subductis eligens fodiatur, interest ut factores considerent:
Super, fila cuprea tincta strangulata optimae electionis sunt pro amplis applicationibus electricis. Multa beneficia in alia filorum genera offerunt, ut vetustatem, flexibilitatem, solidabilitatem emendatam. Si praecipuis qualitatibus aeneis subductis filis egentes es, certum et honestum esse debebis supplementum, qui tibi rectae fili genus praebere potest propter certas necessitates tuas.
1. C. K. Lee, J. Y. Yu, Y. S. Lee, "A Review of Electrical Conductors Used for High Frequency Induction Heating Applications", Materials Transactions, Vol. LIII, N. 4, pp.
2. S. P. Singh, P. K. Dubey, "Electrical conductivity et mechanicas proprietatum filorum aeris tincti & non impediti post curationem caloris", Journal of Materials Research and Technology, Vol. 8, No. 6, pp.
3. J. L. Ren, J. Wang, H. D. Wang, "Studium comparativum de lassitudine Residua Vitae Bare et Tinned Copper Stranded Wires", Acta Electronic Science and Technology, Vol. 14, No. 3, pp.
Fundata in MMVIII, Zhejiang Yipu Metalli Vestibulum Co, Ltd. est opificem princeps qualitas filis electrica et ansas. Nostra producta includunt amplis filis aeneis striatis subductis, ac funes potentiae, retinacula moderandi, phaleras automativas wiring. Societas nostra committitur ut optimas qualitates et officia nostris clientibus praebeat, et validam famam fidei, professionalismi et emptoris satisfactionem habemus. Ut plura discas de societate nostra et de fructibus nostris, quaeso invisere nostrum locum athttps://www.zjyipu.com. Pro quibusvis quaestionibus, quaeso, ad nosdenarium@yipumetal.com.
Papers inquisitionis scientificae:
1. S. P. Singh, P. K. Dubey. (2019). Electrical conductivity and mechanical proprietatibus tinctis & nontennatis filis aeris post curationem caloris. Acta Materiae Research and Technology, 8(6), 6026-6036.
2. C. K. Lee, J. Y. Yu, Y. S. Lee. (2012). A Review of Electrical Conductors Used for High Frequency Inductione Applications Calefactio. Materiae transactiones, 53 (4), 553-559.
3. J. L. Ren, J. Wang, H. D. Wang. (2016). Comparativae studium de lassitudine residua vitae nudae et tinctae cupri filis destitutis. Acta Electronic Science and Technology, 14(3), 244-250.
H. Chen, G. Chen, J. Wu, H. Zheng. (2015). Experimentum de moribus senescentis tincti et tincti filum aeris substratum pro automotivo Wiring harnesses. IEEE Transactions on Components, Packaging and Manufacturing Technology, 5(12), 1802-1809.
5. T. Tanaka, Y. Choi, A. Yamamoto, H. Ohta. (2017). Effectus Corrosionis in Mechanica Proprietatibus aeris tincti filum. Materiae Scientiarum Forum, 893, 468-473.
6. K. C. Lee, C. K. Shieu. (2013). Studium de Effectu Tinningis Microstructurae Wire Cupperi pro Applicationibus Automotivis. A, 44 (12), 5702-5709.
7. J. Zhou, X. Gao, H. Yao, Z. Yang, C. Li. (2018). Studere de Effectu Annealing Temperaturae in Proprietatibus aeris tinned Aluminium filis. Acta Electronic Science and Technology, 16(3), 197-202.
8. Y. Song, C. A. Ohno, H. Nakatani, H. Kimata, T. Kawashima, H. Nozawa. (2017). Influentia Tinning Parametri in Intermetallicis Compositis formationibus in Wire Copper-Cad Steel. IEEE Transactions on Components, Packaging and Manufacturing Technology, 7(1), 139-146.
9. S. Fujimoto, K. Kusano, S. Yamamoto. (2016). Corrosio et Fractura Resistentia Filum Coperorum Tinned in Maximum Temperature Environments. Acta Materiae Engineering and Performance, 25(7), 2816-2821.
10. X. Lin, Y. Liu, H. Wu, P. Yang. (2014). Effectus plumbi Plating in Corrosion Resistentia Copperarum Wires pro Electrical Potestate System. Corrosion Science, 87, 437-442.