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Calculation of Shear Stability of Conjugation of the Main Pillars with the Foundation in Wooden Frame Buildings

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International Scientific Conference Energy Management of Municipal Facilities and Sustainable Energy Technologies EMMFT 2018 (EMMFT-2018 2018)

Abstract

The authors give a list of wood advantages as a building material and main glued-wooden constructions. Glued-wooden frame constructions, their elements and manufacturing methods are considered. The advantages and disadvantages of glued-plywood and glued-plank wooden uprights and the area of their application are listed. The issues related to the design and interface node manufacture (support node) of these structures with foundation are considered. The authors note the ways of increasing the stiffness, strength and reliability of these nodes and their advantages. As a node connector of glued-wooden upright with foundation, a steel claw washer C1-type is investigating. The variants of connecting such nodes for glued-plywood and glued-plank wooden uprights are offered, the example of calculation is given. As a material for the study, two variants for fastening wooden patch plate to glued-wooden upright (rectangular and box section) are adopted: the 1st - by bolts; the 2nd - by claw connectors. For each fasten variant, the required number of connectors is calculated. The calculation indicated that claw connectors C1-type have a greater load-bearing capacity than a bolted connection 16 mm in diameter. As a result of the research, it was found that the use of claw connectors reduces steel intensity of the interface node in 2.1–2.3 times, as well as provides the strength, stiffness and operational reliability of the connection.

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References

  1. Vidy derevyannykh kleyenykh konstruktsiy v stroitelstve [Types of wooden glued constructions] [Elektronnyy resurs]. http://engstroy.spbstu.ru/autors/literature_samples.pdf. Accessed 25 Dec 2017

  2. Uzly stoyek [Nodes of racks] [Elektronnyy resurs]. https://studfiles.net/preview/5847511/page:20/. Accessed 25 Dec 2017

  3. Labudin, B.V., Morozov, V.S., Karel’skiy, A.V, Petrova, A.L., Orlov, A.O.: Sovershenstvovaniye konstruktivnykh resheniy osnovnykh stoyek karkasnykh zdaniy [Perfection of constructive solutions of the main racks of frame buildings]. In: Sbornik materialov konferentsii “Stroitelnaya nauka XXI-vek: teoriya, obrazovaniye, praktika, innovatsii Severo-Arkticheskomu regionu”. Arkhangelsk, pp. 118–128 (2017). (rus)

    Google Scholar 

  4. Popov, Ye.V.: Sovershenstvovaniye konstruktsii i tekhnologii izgotovleniya derevokompozitnykh plito-rebristykh izdeliy dlya domostroyeniya [Perfection of a design and manufacturing technology of wood-composite slab-ribbed products for house-building]. Dissertatsiya. Arkhangelsk, 175 p. (2017). (rus)

    Google Scholar 

  5. Rimshin, V.I., Labudin, B.V., Melekhov, V.I., Popov Ye.V., Roshchina S.I.: Soyedineniya elementov derevyannykh konstruktsiy na shponkakh i shaybakh [Connections of elements of wooden structures on dowels and washers]. Vestnik MGSU, no. 9, pp. 35–50 (2016). (rus)

    Google Scholar 

  6. Labudin, B.V.: Sovershenstvovaniye kleyenykh derevyannykh konstruktsiy s prostranstvenno-regulyarnoy strukturoy: monografiya [Perfection of wood structures with a spatially regular structure: monograph]. Arkhangelsk. Arkhang. Gos. Tekhn. Un-t, 267 p. (2007). (rus)

    Google Scholar 

  7. Naychuk, A.Ya., Leshchuk, Ye.V.: Chislennoye issledovaniye napryazhennogo sostoyaniya drevesiny v zone vintov, rabotayushchikh na vydergivaniye poperek volokon [Numerical study of stress state of wood in zone of screws working on pulling across the fibers]. In: Sb. trudov mezhdunarodnoy nauchno-tekhnicheskoy konf. “Stroitelnaya nauka – XXI vek: teoriya, obrazovaniye, praktika, innovatsii severo - arkticheskomu regionu”. Arkhangelsk, pp. 276–283 (2014). (rus)

    Google Scholar 

  8. Johanson, K.W.: Theory of timber connections. International Association for Bridge and Structural Engineering, no. 9, pp. 249–262 (1949)

    Google Scholar 

  9. Blass, H.J., Schädle, P.: Ductility aspects of reinforced and non-reinforced timberjoints. Eng. Struct. 33, 3018–3026 (2011)

    Article  Google Scholar 

  10. Hilson, B.O.: Joints with Dowel-type Fasteners—Theory. Paper C3: Timber Engineering Step 1: Basis of Design, Material Properties, Structural Components and Joints. Centrum Hout, Almere, The Netherlands

    Google Scholar 

  11. Wilkinson, T.L.: Dowel bearing strength, 12 p. Res. Pap. FPL-Rp-505. US DA Forest Serv. Forest Prod. Lab, Madison, WI (1991)

    Google Scholar 

  12. Smith, I.: Short-term load-deformation relationship for joints with dowel type connectors. Ph.D. thesis, CNAA (1983)

    Google Scholar 

  13. Roche, S., Robeller, C., Humbert, L., Weinand, Y.: On the semi-rigidity of dovetail joint for the joinery of LVL panels. Eur. J. Wood Wood Prod. 73(5), 667–675 (2015)

    Article  Google Scholar 

  14. Šmak, M., Straka, B.: Development of new types of timber structures based on theoretical analysis and their real behaviour. Wood Res. 59(3), 459–470 (2014)

    Google Scholar 

  15. Karelskiy, A.V., Zhuravleva, T.P., Labudin, B.V.: Ispytaniye na izgib derevyannykh sostavnykh balok, soyedinennykh metallicheskimi zubchatymi plastinami, razrushayushchey nagruzkoy [The test for bending of wooden composite beams connected by metal toothed plates by destroying load]. Inzhenerno-stroitelnyy zhurnal 2(54), 77–85 (2015). (rus)

    Google Scholar 

  16. Ishmayeva, D.D.: Zhestkiye uzlovyye soyedineniya na kleyenykh stal’nykh shaybakh v balochnykh strukturakh iz kleyenykh derevyannykh elementov [Rigid junctions on glued steel washers in beam structures made of glued wooden elements]. Dissertatsiya. Penza, 171 p. (2014). (rus)

    Google Scholar 

  17. Chernykh, A.G., Danilov, Ye.V.: Metody issledovaniya soyedineniy derevyannykh konstruktsiy na kogtevykh shponkakh [Methods for studying of wooden structures on nails]. Sovremennyye problemy nauki i obrazovaniya, no. 2, pp. 150–157 (2013). (rus)

    Google Scholar 

  18. Arkayev, M.A.: Usileniye derevyannykh konstruktsiy s ispolzovaniyem stalnykh vitykh krestoobraznykh sterzhney [Strengthening of wooden structures using steel twisted cross-shape rods]. Dissertatsiya. Orenburg, 190 p. (2017). (rus)

    Google Scholar 

  19. Malinowski, C.: Zur Geschichteder Verbindungstechnik-Verbinderaus Stahlblech. Bauenmit Holz. Bd. 11, pp. 776–779; Bd. 12, pp. 872–877 (1989)

    Google Scholar 

  20. Yao, V.: Razrabotka i raschet uzlovykh soyedineniy nesushchikh, prostranstvennykh sterzhnevykh konstruktsiy iz bambuka [Development and calculation of nodal connections of load-bearing, three dimensional core structures from bamboo]. Dissertatsiya. SPb., 163 p. (2015). (rus)

    Google Scholar 

  21. Vdovin, V.M., Mukhayev, A.I., Ariskin, M.V.K.: Otsenke napryazhenno-deformirovannogo sostoyaniya derevyannykh elementov, soyedinennykh tsentrovymi vkleyennymi shponkami [Evaluation of the stressed-deformed state of the wooden elements connected by central glued dowels]. Regionalnaya arkhitektura i stroitelstvo, no. 2, pp. 81–90 (2013). (rus)

    Google Scholar 

  22. Meghlat, E., Oudjene, M., Ait-Aider, H., Batoz, J.: A new approach to model nailed and screwed timber joints using the finite element method. Constr. Build. Mater. 41, 263–269 (2013)

    Article  Google Scholar 

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Correspondence to Vladimir Rimshin .

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Rimshin, V., Labudin, B., Morozov, V., Orlov, A., Kazarian, A., Kazaryan, V. (2019). Calculation of Shear Stability of Conjugation of the Main Pillars with the Foundation in Wooden Frame Buildings. In: Murgul, V., Pasetti, M. (eds) International Scientific Conference Energy Management of Municipal Facilities and Sustainable Energy Technologies EMMFT 2018. EMMFT-2018 2018. Advances in Intelligent Systems and Computing, vol 983. Springer, Cham. https://doi.org/10.1007/978-3-030-19868-8_85

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