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Tytuł artykułu

Acceptability testing and development of a novel wood lathe balanced rest

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The utility model discussed in this study discloses a wood lathe balancing rest that is advantageous in terms of design, ergonomics, and functions. The study aimed to fabricate a safety device for the wood lathe machine to prevent kickback and slow down vibration from the workpiece attached to the lathe machine to avoid the vibration of the workpiece and to avoid an accident to the operator and to avoid damage of the materials. The utility model is planned not exclusively to spare time yet also for the wellbeing of the laborers amid activity. It is designed to hold the workpiece when turning and control the vibration, it can be mounted on the bed of the lathe near the center of the turning planetary.
Słowa kluczowe
Rocznik
Tom
Strony
59--65
Opis fizyczny
Bibliogr. 20 poz., tab.
Twórcy
  • Cebu Technological University, Cebu City 6000, Philippines
  • Cebu Technological University, Cebu City 6000, Philippines
  • Cebu Technological University, Cebu City 6000, Philippines
  • Cebu Technological University, Cebu City 6000, Philippines
  • Cebu Technological University, Cebu City 6000, Philippines
  • Cebu Technological University, Cebu City 6000, Philippines
Bibliografia
  • [1] Carlile, P. R. (2002). A pragmatic view of knowledge and boundaries: Boundary objects in new product development. Organization Science, 13(4), 442-455. Retrieved from https://goo.gl/KTiwzH
  • [2] Darmawan, W., Nandika, D., Massijaya, Y., Kabe, A., Rahayu, I., Denaud, L., &Ozarska, B. (2015). Lathe check characteristics of fast-growing sengon veneers and their effect on LVL glue-bond and bending strength. Journal of Materials Processing Technology, 215, 181-188. Retrieved from https://goo.gl/2E5dy3
  • [3] Denaud, L. E., Bleron, L., Ratle, A., &Marchal, R. (2007). Online control of wood peeling process: Acoustical and vibratory measurements of lathe checks frequency. Annals of Forest Science, 64(5), 569-575. Retrieved from https://goo.gl/ZgFqAB
  • [4] Etcuban, J.O., Campanilla, B.S., & Horteza, A.D. (2019). The use of Mathcad in the achievement of Education students in teaching College Algebra in a university. Int Elect J Math Ed. 2019;14(2), 341-351. Retrieved from https://doi.org/10.29333/iejme/5718
  • [5] Fang, C. H., Mariotti, N., Cloutier, A., Koubaa, A., & Blanchet, P. (2012). Densification of wood veneers by compression combined with heat and steam. European Journal of Wood and Wood Products, 70(1-3), 155-163. Retrieved from https://goo.gl/MBqhuX
  • [6] Jennings, N. R. (2001). An agent-based approach for building complex software systems. Communications of the ACM, 44(4), 35-41. Retrieved from https://goo.gl/mJ4sbD
  • [7] Johnson, L., Becker, S. A., Estrada, V., & Freeman, A. (2014). NMC horizon report: 2014 K (pp. 1-52). The New Media Consortium. Retrieved from https://goo.gl/hn9QSj
  • [8] Kitch, E. W. (1977). The nature and function of the patent system. The Journal of Law and Economics, 20(2), 265-290. Retrieved from https://goo.gl/6aY3aN
  • [9] Manos, N. P., Bedi, S., Miller, D., & Mann, S. (2007). Single controlled axis lathe mill. The International Journal of Advanced Manufacturing Technology, 32(1- 2), 55-65. Retrieved from https://goo.gl/mR7aUD
  • [10] McGavin, R. L., Bailleres, H., Lane, F., Diwan, P., & Singh, A. (2015). Numerical Analysis of Wood Lathe. In Proceedings of the International Conference on Technologies for Sustainability-Engineering, Information Technology, Management and Environment. Blackburn, D., Vega, M., &Ozarska, B. (2013). Veneer recovery analysis of plantation eucalypt species using spindle-less lathe technology. BioResources, 9(1), 613-627. Retrieved from https://goo.gl/gq7Vvy
  • [11] Patterson, T. F. (2007). The rise and fall of innovative education: An Australian university case study. Innovative Higher Education, 32(2), 71-84. Retrieved from https://goo.gl/iHRgVz
  • [12] Prater, M. G., Backes, C., & McElvey, R. (2005). A tale of three teachers. Journal of Industrial Teacher Education, 42(2), 77-83. Retrieved from https://goo.gl/Xe1Y8D
  • [13] Qin, G., Sun, S., Ye, H., & Lu, D. (2011). Strategies on teaching reformation for mechanical manufacturing technology. International Journal of Education and Management Engineering, 1(6), 70. Retrieved from https://goo.gl/rScCpz
  • [14] Tomppo, L., Tiitta, M., & Lappalainen, R. (2009). Ultrasound evaluation of lathe check depth in birch veneer. European Journal of Wood and Wood Products, 67(1), 27-35. Retrieved from https://goo.gl/VUWMbu
  • [15] Denaud, L. E., Bléron, L., Ratle, A., & Marchal, R. (2007). Online control of wood peeling process: Acoustical and vibratory measurements of lathe checks frequency. Annals of forest science, 64(5), 569-575.
  • [16] Conover, E. (2001). The Lathe Book: A Complete Guide to the Machine and Its Accessories (p. 180). Taunton.
  • [17] Ulewicz, R. (2016). Quality Management System operation in the woodworking industry. Path forward for wood products: A global perspective, proceedings of scientific papers, 51-56.
  • [18] Fragassa, C. (2017). Material selection in machine design: The change of cast iron for improving the high-quality Iin woodworking. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 231(1), 18-30.
  • [19] Thakur, U. S., Chandrasen, A., & Singh, P. (2018). Design and Fabrication of Mini Wood Lathe Machine. International Journal of Research, 5(12), 2618-2622.
  • [20] Diwan, P., & Singh, A. (2015). Numerical Analysis of Wood Lathe. In Proceedings of the International Conference on Technologies for Sustainability- Engineering, Information Technology, Management and Environment.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2ac60cbf-50f7-4845-a12a-d5c9d4ba7f03
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