DURABILITY AND DEFORMATION OF STEEL AND BAZALT-PLASTIC ANCHOR JUNCTION

Authors

Abstract

In a project-constrructiv work it is accurately impossible to estimate the strenght of basalt-plastic anchors and anchor band in the case of longitudinal and cross-cut stress for the absence of standards and normative documents. Because of the absence  of necessary techniques for carring out the  tests of  metal and basalt-plastic anchor junction the assessment of their bearing capacity is become more complicated. Application of anchor bonds was based on the assessment of their bearing capacity and research in the case of anchor junction

It is  allowed to modernize the normative base in this sphere. The purpose of the research in the work of anchor junction in concrete and reinforced concrete was determined by the evaluation of their bearing capacity, while the concrete seemed to be elastic materials in the areas of compression and stretching

Final  elements method has been used to carry out the reseach of  basalt-plastic and anchors work installd in concrete samples. In the sample  model, the non-linear work of concrete was taken during stretching with the of cracks along the entire length of the sample.

In the research it has been taken into account  the influence of the final element and the load degree at maximum marginal loads on the spacer anchor. The analysis of experiments showed the following.

The strength of basalt-plastic anchor junction depends on the strength  of the sample materials in which the anchors were plugged. The  deformation of these junction also depends on the materials. The experiments have also improved  that the used techniques allow a  to determine the zone of elastic work of the anchor at the detachment and, probably, can be used for all types of anchors (steel, polyamide dowel and chemical)

 Keywords: basalt-plastic anchor junction, foam concrete, concrete, loading speed, strength, deformability

Author Biographies

, O.M.Beketov National University of Urban Economy

кандидат технічних наук, доцент кафедри буд конструкції.

, Ukrainian State University of Railway Transport

доктор технічних наук, професор кафедри будівельні матеріали, конструкції та споруди

, O.M.Beketov National University of Urban Economy

кандидат технічних наук, доцент кафедри буд конструкції.

, Ukrainian State University of Railway Transport

кандидат технічних наук, доцент кафедри колії та колійного господарства

, O.M.Beketov National University of Urban Economy

аспірант кафедри будівельних конструкцій

, O.M.Beketov National University of Urban Economy

аспірант кафедри будівельних конструкцій

References

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. Et ag № 001. Guideline for european technical appro val of metal anchors for use in concrete, brüssels, (1997).27.

Kurniawan, D. Kim, B. S. Lee, H. Y., Lim, J. Y. (2012) Atmospheric pressure glow discharge plasma polymerization for surface treatment on sized basalt fiber/polylactic acid composites. Composites Part B: Engineering, Vol. 43, pp 1010-1014. Retrieved from

http://www.sciencedirect.com/science/article/pii/S1359836811004768

Ballarini, R., Shal, S.P., Keer, L.M. (1986). Failure chargterictics of short anchor bolts embedded in brittle material. Proceedings Royl Society. London, A 404, 35-54.

Оzbolt, J., Eligehausen, R. (1990). Numerical Analysis of headed studs embedded in large plain concrete blocks, In: Bicanic, N.; Mang, and Design of Concrete Structures. Pinerdige Press, London.

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Published

2017-10-23

How to Cite

, , , , , & . (2017). DURABILITY AND DEFORMATION OF STEEL AND BAZALT-PLASTIC ANCHOR JUNCTION. Municipal Economy of Cities, (137), 104–108. Retrieved from https://khg.kname.edu.ua/index.php/khg/article/view/5073

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