Improving the efficiency of robotic fabrication of steel truss welded structures

Author:

Korzhyk V.M., ,Grynyuk A.A.,Khaskin V.Yu.,Illiashenko Ye.V.,Klochkov I.M.,Ganushchak O.V.,Xuefen Yu,Huang Liuyi, , , , , , ,

Publisher

International Association Welding

Subject

Mechanical Engineering

Reference13 articles.

1. 1. Radu, D., Radu, B. (2014) Truss beams welded joints strengthening solutions. 41th anniversary faculty of civil engineering subotica. International Conference «Contemporary achievements in civil engineering», 24 April 2015, Subotica, Serbia, pp. 261-269. DOI: https://doi.org/10.14415/konferencijaGFS 2015.033.

2. 2. Paton, B.E., Lobanov, L.M., Tereshchenko, V.I. et al. (1994) Robotic production of welded trusses for industrial building overlaps. Avtomatich. Svarka, 12, 26-29 [in Russian].

3. 3. Casper, H.-J. (2014) The First Fully Welded Integral Tube- Truss Bridge of Germany. Petzek E., Bancila R. (Eds) The Eight International Conference «Bridges in Danube Basin». Springer Vieweg, Wiesbaden, pp. 163-172. DOI: https://doi.org/10.1007/978-3-658-03714-7_11.

4. 4. Radu, D., Galatanu, Tf. (2016) Optimization solutions for truss beams elements welded joints. 4th International Conference «Contemporary achievements in civil engineering», 22 April 2016, Subotica, Serbia, pp. 105-111. DOI: https://doi.org/10.14415/konferencijaGFS 2016.009.

5. 5. Zhao, X.L., Tong, L.W. (2011) New Development in Steel Tubular Joints. Advances in Structural Engineering, 14, 4, 699-715. DOI: https://doi.org/10.1260/1369-4332.14.4.699.

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