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Models for the Influence of Transmission Errors and Hobbing Forces Upon a Complex Gear Drive


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Abood A., Dynamic Analysis of the Cutting Forces in Gear Hobbing – PhD Thesis, Univ. of Newcastle, UK, 2002. Search in Google Scholar

Alazar A.S., Werner M., Nicolescu C.M., Development of Cutting Force Measurement for Gear Hobbing, Proc. of the ASME 2011 Int. Design Eng. Techn. Conf. & Computers and Inform. in Eng. Conf., IDETC/CIE 2011, Washington DC, USA, 8, 48121.10.1115/DETC2011-48121 Search in Google Scholar

Atanasiu V., Rozmarin C., Leohchi D., Iacob M.R., Robust Design for Minimization of Dynamic Transmission Error, Bul. Inst. Polit. Iaşi, LVI(LX), 4A, s. Constr. Maș., 219-226 (2010). Search in Google Scholar

Bostan I., Mazuru S., Scaticailov S., Modelul de calcul al componentei radiale a forţei de aşchiere la rectificarea angrenajelor. Conf. internaţ. „Tehnologii Moderne, Calitate, Restructurare”, TMCR 2001, Chişinău, Rep. Moldova, 3, 280-283. Search in Google Scholar

Bostan I., Mazuru S., Vaculenco M., Aprecierea calităţii organelor de maşini la etapa de pregătire tehnologică a producţiei, Bul. Inst. Polit. Iaşi, LIV, Vc, s. Constr. Maș., 749-752 (2004). Search in Google Scholar

Bostan I., Toca A., Mazuru S., Scaticailov S., Cercetarea variaţiei secţiunii transversale teoretice a aşchiilor dintre sculă şi roata dinţată conică precesională la rectificare şi frezare, Bul. Inst. Polit. Iaşi, LIV, Vc, s. Constr. Maș., 753-756 (2004). Search in Google Scholar

Bostan I., Mazuru S., Botnari V., Kinetic Process of Teeth Grinding, 15th International Conference of Modern Technologies, Quality and Innovation, ModTech 2011, Vadul lui Voda, Rep. Moldova, 121-124. Search in Google Scholar

Bostan I., Mazuru S., Scaticailov S., Technologies for Precessional Planetary Transmissions Toothing Generation, Tehnomus J., 20, 226-233 (2013). Search in Google Scholar

Bouzakis K.D., Lili E., Michailidis N., Friderikos O., Manufacturing of Cylindrical Gears by Generating Cutting Processes: A Critical Synthesis of Analysis Methods, CIRP Annals – Manuf. Technol., 57, 676-696 (2008). Search in Google Scholar

Hrytsay I., Stupnytskyy V., Topchii V., Improved Method of Gear Hobbing Computer Aided Simulation, Arch. of Mech. Eng., 66, 4, 475-494 (2019). Search in Google Scholar

Iliescu M., Tehnologii de fabricare a componentelor mecanice ale roboţilor industriali - elemente fundamentale, Ed. Printech, București, 2013. Search in Google Scholar

Kučera P., Píštěk V., Prokop A., Řehák K., Transmission Error Analysis for Heavy-Duty Gearbox, Vibroeng. Procedia, 18, 113-116 (2018). Search in Google Scholar

Mazuru S., Procedee tehnologice de generare a profilurilor nestandarde ale angrenajelor precesionale – Teza abilitare, Univ. Tehn. a Moldovei, Chişinău, 2019. Search in Google Scholar

Merticaru E., Merticaru V.jr., A Dynamic Study of a Complex Gear Transmission, ACME 2020, IOP Conf. Ser.: Mater. Sci. Eng., 997, 012078 (2020). Search in Google Scholar

Merticaru E., Merticaru V., Merticaru V.jr., Caracteristicile cinematico-dinamice ale mecanismelor, partea 2, Ed. Performantica, Iași, 2014. Search in Google Scholar

Merticaru E., Merticaru V.jr., Fenomene dinamice în funcționarea mecanismelor cu came, Ed. Performantica, Iași, 2004. Search in Google Scholar

Merticaru V., Probleme dinamice ale funcționării mecanismelor, Ed. Junimea, Iași, 1991. Search in Google Scholar

Merticaru V., Merticaru E., Merticaru V.jr., Caracteristicile cinematico-dinamice ale mecanismelor, partea 1, Ed. PIM, Iași, 2009. Search in Google Scholar

Raghuraman N., Jain S., Glinsky C., Prediction of Dynamic Factors for Helical Gears in a High-Speed Multibody Gearbox System, The J. of Gear Manuf., 35, 3, 44-54 (2018). Search in Google Scholar

Rusu O.T., Contribuții privind studiul procesului de frezare cu viteze mari de așchiere, pe centre de prelucrare - Teză de doctorat, Univ. Tehn. „Gheorghe Asachi” din Iaşi, Romania, 2015. Search in Google Scholar

Sabkhi N., Pelaingre C., Barlier C., Moufki A., Nouari M., Characterization of the Cutting Forces Generated During the Gear Hobbing Process: Spur Gear, 15th CIRP Conf. on Modelling of Machining Op., Procedia CIRP 31, 411-416 (2015).10.1016/j.procir.2015.03.041 Search in Google Scholar

Tabacaru V., Îndrumar 1 EMCO Concept MILL 55: Caracteristici mecanice. Elemente de tehnologie. Comenzi Emco-Siemens. Operare și programare, Univ. Dunărea de Jos, Galați, http://www.if.ugal.ro/CD/SIP_SFF_SECN_Capitole123.pdf. Search in Google Scholar

Vispute B., Borse R., Sonar R., Jagtap T., Detection of Gear Tooth Defects by Using MATLAB & FEA Technique, IJARIIE, 3, 2, 951-960 (2017). Search in Google Scholar

Yang Y., Li X., Zou Z., Zeng L., Wang L., Theoretical Analysis of the Influence of Workpiece Spindle Vibration Displacement on Machining Accuracy of Gear Hobbing Machine, J. of Vibroeng., 21, 2, 286-300 (2019). Search in Google Scholar

*** Bazele generării suprafeţelor. Prelucrarea prin aşchiere a roţilor dinţate, https://www.cmmi.tuiasi.ro/docs/cursuri/Danturarea%20rotilor%20dintate.pdf. Search in Google Scholar