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Formation of input information arrays for computer simulation of welded trusses behavior under thermal force effects

НазваFormation of input information arrays for computer simulation of welded trusses behavior under thermal force effects
Назва англійськоюFormation of input information arrays for computer simulation of welded trusses behavior under thermal force effects
АвториYaroslav Kovalchuk, Natalya Shynhera, Yaroslav Shved
ПринадлежністьTernopil Ivan Puluj National Technical University, Ternopil, Ukraine
Бібліографічний описFormation of input information arrays for computer simulation of welded trusses behavior under thermal force effects / Yaroslav Kovalchuk, Natalya Shynhera, Yaroslav Shved // Scientific Journal of TNTU. — Tern.: TNTU, 2023. — Vol 110. — No 2. — P. 118–124.
Bibliographic description:Kovalchuk Ya., Shynhera N., Shved Ya. (2023) Formation of input information arrays for computer simulation of welded trusses behavior under thermal force effects. Scientific Journal of TNTU (Tern.), vol 110, no 2, pp. 118–124.
УДК

621.177; 621.314

Ключові слова

welded truss, thermal influence, temperature deformations.

A methodological approach is proposed for detecting the behavior of welded structures under thermomechanical influences with high reliability of results using computer modeling experiments. A series of samples were produced from a batch of rolled angle bars with dimensions of 25x25x4. By applying standardized methods on the certified electro-hydraulic testing complex STM-100, experimental investigations of the mechanical characteristics of VSt3ps steel were conducted both at room temperature and within the range of technological and fire temperatures. The obtained results were subjected to statistical analysis, and an input data array for the ultimate strength and yield strength of VSt3ps steel was formed within the temperature range from +20 to +450°C. It was found that the research results follow a normal distribution law. The scattering of values for the ultimate strength is 2.1%, and for the yield strength is 2.6%, which is significantly lower than the information provided by Ukrainian National Standard and quality certificates of the material.

ISSN:2522-4433
Перелік літератури
  1. Klymenko F. E., Barabash V. M., Storozshenko L. I. Metalevy konstruktsiy. Lviv: Svit, 2002. 312 p.
  2. Dolgov V. M. Mehanichny vlastyvosti i konstruktsiyna mitsnist materialiv: lektsiyniy kurs. Dnipro: NTU “Dniprovska Politehnika”, 2022. 199 p. URL: https://btpm.nmu.org.ua/ua/download/lecture-course/132% 20%D0%BA%D0%BE%D0%BD%D1%81%D0%BF%20%D0%9C%D0%92%D0%9A%D0%9C%D0%9C.pdf/
  3. Shynhera N. Ya. Statystychna model dlia vyznachennia zalyshkovoho resursu typovoi zvarnoi fermy pry tsyklichnykh navantazhenniakh: dys. … kand. tekhn. nauk: 01. 05.02.Ternopil, 2012. 166 p.
  4. DSTU 2651:2005 Stal vuglytseva zvychaynoiy yakosti. Marky GOST 380-2005. Derzspozivstandart. Ukraina. Kyiv. 2006. 56 p.
  5. Yang Y., Lin T., Leu L., Huang C. Inelastic postbuckling response of steel trusses under thermal loadings. Journal of Constructional Steel Research. 2008. 12 p.
  6. Rotter J., Usmani A. Fundamental principles of structural behavior under thermal effects. Fist international workshop on structures in fire. 2000. Copenhagen.
References:
  1. Klymenko F. E., Barabash V. M., Storozshenko L. I. Metalevy konstruktsiy. Lviv: Svit, 2002. 312 p.
  2. Dolgov V. M. Mehanichny vlastyvosti i konstruktsiyna mitsnist materialiv: lektsiyniy kurs. Dnipro: NTU “Dniprovska Politehnika”, 2022. 199 p. URL: https://btpm.nmu.org.ua/ua/download/lecture-course/132% 20%D0%BA%D0%BE%D0%BD%D1%81%D0%BF%20%D0%9C%D0%92%D0%9A%D0%9C%D0%9C.pdf/
  3. Shynhera N. Ya. Statystychna model dlia vyznachennia zalyshkovoho resursu typovoi zvarnoi fermy pry tsyklichnykh navantazhenniakh: dys. … kand. tekhn. nauk: 01. 05.02.Ternopil, 2012. 166 p.
  4. DSTU 2651:2005 Stal vuglytseva zvychaynoiy yakosti. Marky GOST 380-2005. Derzspozivstandart. Ukraina. Kyiv. 2006. 56 p.
  5. Yang Y., Lin T., Leu L., Huang C. Inelastic postbuckling response of steel trusses under thermal loadings. Journal of Constructional Steel Research. 2008. 12 p.
  6. Rotter J., Usmani A. Fundamental principles of structural behavior under thermal effects. Fist international workshop on structures in fire. 2000. Copenhagen.
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