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A Method to Determine Allowable Speed for a Unit Load in a Pallet Flow Rack

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1. Accorsi, R., Baruffaldi, G., Manzini, R. (2017), Design and manage deep lane storage system layout. An iterative decision-support model, Int J Adv Manuf Technol, 92(1-4), 57–67.10.1007/s00170-016-9962-9Search in Google Scholar

2. Aleksandrov A.A., Devisilov V.A., Ivanov M.V. (2016), A role of education system in creation of safety culture, Chemical Engineering Transactions, 53, 211–216.Search in Google Scholar

3. Boysen, N., Boywitz, D., Weidinger, F. (2018), Deep-lane storage of time-critical items: one-sided versus two-sided access, OR Spectrum, 40(4), 1141–1170.10.1007/s00291-017-0488-9Search in Google Scholar

4. Boywitz, D., Boysen, N. (2018), Robust storage assignment in stack- and queue-based storage systems, Computers & Operations Research, 100, 189–200.10.1016/j.cor.2018.07.014Search in Google Scholar

5. Crisan, A., Ungureanu, V., Dubina, D. (2012), Behaviour of cold-formed steel perforated sections in compression. Part 1-Experimental investigations, Thin-walled structures, 61, 86–96.10.1016/j.tws.2012.07.016Search in Google Scholar

6. Derhami, S., Smith, JS., Gue, KR. (2017), Optimising space utilisation in block stacking warehouses, Int J Of Prod Res, 55(21), 6436–6452.10.1080/00207543.2016.1154216Search in Google Scholar

7. Dynamic storage catalogue Damon [available at: http://damon-group.com.au/catalogues/dynamic-storage-catalogue.pdf, access 29 March 2017].Search in Google Scholar

8. Eo, J., Sonico, J., Su, A., Wang, W., Zhou, C., Zhu, Y., Wu, S., Chokshi, T. (2015), Structured comparison of pallet racks and gravity flow racks, IIE Annual Conference and Expo 2015, 1971–1980.Search in Google Scholar

9. EPAL Euro Pallet [available at https://www.epal-pallets.org/euen/load-carriers/epal-euro-pallet, access 7 December, 2017]Search in Google Scholar

10. Gesamtkatalog_2012_D.pdf [available at: http://www.euroroll.de/tl_files/Gesamtkatalog_2012_D.pdf, access 29 March 2017].Search in Google Scholar

11. Ghalehkhondabi, I., Masel, DT. (2018), Storage allocation in a warehouse based on the forklifts fleet availability, Journal Of Algorithms & Computational Technology, 12(2), 127–135.10.1177/1748301818761130Search in Google Scholar

12. Ghomri, L., Sari, Z. (2017), Mathematical modeling of the average retrieval time for flow-rack automated storage and retrieval systems, Journal Of Manufacturing Systems, 44, 165–178.10.1016/j.jmsy.2017.05.002Search in Google Scholar

13. Halim, N.H.A., Jaffar, A., Yusoff, N., Adnan, A.N. (2012), Gravity Flow Rack's material handling system for Just-in-Time (JIT) production, 2nd International Symposium on Robotics and Intelligent Sensors 2012, IRIS 2012, Procedia Engineering, 41, 1714–1720.10.1016/j.proeng.2012.07.373Search in Google Scholar

14. Hamzaoui, MA., Sari, Z. (2015), Optimal dimensions minimizing expected travel time of a single machine flow rack AS/RS, Mechatronics, 31, 158–168.10.1016/j.mechatronics.2014.10.006Search in Google Scholar

15. Heragu, SS., Cai, X., Krishnamurthy, A., Malmborg, CJ. (2011), Analytical models for analysis of automated warehouse material handling systems, Int J Of Prod Res, 49(22), 6833–6861.10.1080/00207543.2010.518994Search in Google Scholar

16. Interroll Pallet Roller Flow PF 1100 [available at: https://www.interroll.ru/fileadmin/products/en/Resources_pdf_344683531.pdf, access 29 March 2017].Search in Google Scholar

17. Jones R. (2009), Deformation theory of plasticity, Bull Ridge Publishing, USA.Search in Google Scholar

18. Kulwiec R. (1985), Material handling handbook, 2nd edition, John Wiley & Sons, Inc, USA.10.1002/9780470172490Search in Google Scholar

19. Lerher, T., Borovinsek, M., Ficko, M., Palcic, I. (2017), Parametric study of throughput performance in SBs/Rs based on simulation, Int J Of Simul Model, Vol. 16, No. 1, 96–107.10.2507/IJSIMM16(1)8.372Search in Google Scholar

20. Live pallet racking [available at: https://mecaluxuk.cdnwm.com/catalogues/live-pallet-racking3.1.0.pdf#_ga=1.79741783.1709563512.1490605253, access 29 March 2017].Search in Google Scholar

21. Metahri, D., Hachemi, K. (2017), Automated storage and retrieval systems: a performances comparison between Free-fall-flow-rack and classic flow-rack, 6-th International Conference On Systems And Control (ICSC’ 17), Edited by: Drid, S., Mehdi D., Aitouche, A., 589–594.10.1109/ICoSC.2017.7958654Search in Google Scholar

22. Nash W. (1998), Schaum’s Outline of Theory and Problems of Strength of Materials, 4-th edition, McGraw-Hill, USA.Search in Google Scholar

23. Nosko A.L., Safronov E.V., Soloviev V.A. (2018), Study of Friction and Wear Characteristics of the Friction Pair of Centrifugal Brake Rollers, Journal of Friction and Wear, 39(2), 145–151.10.3103/S1068366618020125Search in Google Scholar

24. Ol’shanskii V.P., Ol’shanskii S.V. (2013), Calculation of the dynamic deflection of a beam on inelastic impact by the Cox and Saint-Venant theories, Strength of materials, 45(3), 361–368.10.1007/s11223-013-9466-xSearch in Google Scholar

25. POT R M-029-2003 (2003), Mezhotraslevyye pravila po okhrane truda pri ekspluatatsiipromyshlennogo transporta (konveyyernyy, truboprovodnyy i drugiye transportnyyesredstva nepreryvnogo deystviya, Izd-vo NTS ENAS, Moscow (in Russian).Search in Google Scholar

26. Rollenbahnen-Trennvorrichtung [available at: http://www.rackandroll.de/default.aspx?Pagename=Rollenbahnen_Trennvorrichtung, access 29 March 2017] (in Deutsch).Search in Google Scholar

27. Rushton A., Croucher P., Baker P. (2010), The handbook of logistics & distribution management, 4th edition, Kogan Page Limited, London.Search in Google Scholar

28. Saleh, A., Far, H., Mok, L. (2018), Effects of different support conditions on experimental bending strength of thin walled cold formed steel storage upright frames, Journal of constructional steel research, 150, 1–6.10.1016/j.jcsr.2018.07.031Search in Google Scholar

29. Sulirova, I., Zavodska, L., Rakyta, M., Pelantova, V. (2017), State-of-the-art approaches to material transportation, handling and warehousing, 12th International scientific conference of young scientists on sustainable, modern and safe transport, Procedia Engineering, 192, 857–862.10.1016/j.proeng.2017.06.148Search in Google Scholar

30. Talebian, N., Gilbert, BP., Pham, CH, Chariere, R., Karampour, H. (2018), Local and Distortional Biaxial Bending Capacities of Cold-Formed Steel Storage Rack Uprights, Proceedings of the 7th International Conference on Coupled Instabilities in Metal Structures, JournaL Of StructuraL Engineering, 144, No. 6.10.1061/(ASCE)ST.1943-541X.0002029Search in Google Scholar

31. Thombare C.N., Sangle K.K., Mohitkar V.M. (2016), Nonlinear buckling analysis of 2-D cold-formed steel simple cross-aisle storage rack frames, Journal of Building Engineering, 7, 12–22.10.1016/j.jobe.2016.05.004Search in Google Scholar

32. Vujanac R., Miloradovic N., Vulovic S. (2016), Dynamic storage systems, ANNALS of Faculty Engineering Hunedoara – International Journal of Engineering, XIV, 79–82.Search in Google Scholar

33. Wu S., Wu Ya., Wang Ya. (2016), A structured comparison study on storage racks system, Journal of Residuals Science & Technology, 13(8), 2016.Search in Google Scholar

34. Zaerpour, N., Yu, YG., de Koster RBM (2015), Storing Fresh Produce for Fast Retrieval in an Automated Compact Cross-Dock System, Production And Operations Management, 24(8), 1266–1284.10.1111/poms.12321Search in Google Scholar