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Abstract

Currently the recidivism rate in Ukraine. This indicates failure to achieve the goal of punishment – correction of the convict. The purpose of the article is to research the problems of resocialization of convicts, taking into consideration the psychological characteristics of the person serving the sentence. The subject of research: the subject of research is the resocialization of convicts. The following scientific methods were used to study the international experience of resocialization of convicts, to prove the hypotheses, to formulate conclusions: dialectical method, monographic method, logical method, comparative method, generalization method, system and structural method. The results of the research: it was found out that serving a certain term of imprisonment or life imprisonment affects convicts and leads to a change in their psychology in completely different ways. It is proved that the process of resocialization should be set up during the selection of convict’s type and size of punishment (taking into account the circumstances of the case, the perpetrator personality and criminogenic risks that may contribute to recidivism), continue during punishment (using training, work and communication, and providing psychological support to overcome possible psychological crises) and finish after the release from penitentiary institutions (with control over the released, employment assistance or the provision of temporary residence).
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Authors and Affiliations

Alla Yosipiv
1
Halyna Kuzan
2
Halyna Berezhnytska
3
Oksana Boiarchuk
2
Nataliya Maslak
4

  1. Lviv State University of Internal Affairs, Lviv, Ukraine
  2. National University “Lviv Polytechnic”, Lviv, Ukraine
  3. Lviv National Agrarian University, Lviv, Ukraine
  4. Yaroslav Mudryi National Law University, Kharkiv, Ukraine
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Abstract

Skin dynamic termography supplemented by a mathematical model is presented as an objective and sensitive indicator of the skin prick test result. Termographic measurements were performed simultaneously with routine skin prick tests. The IR images were acquired every 70 s up to 910 s after skin prick. In the model histamine is treated as the principal mediator of the allergic reaction. Histamine produces vasolidation and the engorged vessels are responsible for an increase in skin temperature. The model parameters were determined by fitting the analytical solutions to the spatio-temporal distributions of the differences between measured and baseline temperatures. The model reproduces experimental data very well (coefficient of determination = 0.805÷0.995). The method offers a set of parameters to describe separately skin allergic reaction and skin reactivity. The release of histamine after allergen injection is the best indicator of allergic response. The diagnostic parameter better correlates with the standard evaluation of a skin prick test (correlation coefficient = 0.98) than the result of the thermographic planimetric method based on temperature and heated area determination (0.81). The high sensitivity of the method allows for determination of the allergic response in patients with the reduced skin reactivity.

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Authors and Affiliations

E. Rokita
T. Rok
G. Tatoń
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Abstract

A study of scour downstream of free hydraulic jump in stilling basin of stepped spillways was carried out. This paper employed an experimental study to investigate the stepped spillway with the movable bed material of D50 = 3.1 mm. The effect of the contraction ratio of the stepped spillway was highlighted. Different downstream divergent angle was studied to minimise the scour depth, the results showed that the relative scour depth was reduced by 23% for divergent angle is equal to 170°, different shapes of buffer in stilling basin were also studied to reduce the scour depth where the considered buffer decrease the relative scour depth up to 84%. This study was simulated by Flow 3D program to analyse the scour hole formed using velocity vectors at the bed. The simulated results well agreed with the measured data.
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Bibliography

ABDELHALEEM F.S. 2013. Effect of semi-circular baffle blocks on local scour downstream clear-overfall weirs. Ain Shams Engineering Journal. Vol. 4 p. 675–684. DOI 10.1016/j.asej.2013.03.003.
ABDELHALEEM F.S. 2016. Discharge estimation for submerged parallel radial gates. Flow Measurement and Instrumentation. Vol. 52 p. 240–245. DOI 10.1016/j.flowmeasinst.2016.11.001.
ABDELHALEEM F.S. 2017. Hydraulics of submerged radial gates with a sill. ISH Journal of Hydraulic Engineering. Vol. 23(2) p. 177–186. DOI 10.1080/09715010.2016.1273798.
ABDELHALEEM F.S., AMIN A.M., BASIOUNY M.E., IBRAHEEM H.F. 2020. Adaption of a formula for simulating bedload transport in the Nile River, Egypt. Journal of Soils and Sediments. Vol. 20(3) p. 1742–1753. DOI 10.1007/s11368-019-02528-8.
AWAD A.S., NASR-ALLAH T.H., MOHAMED Y.A., ABDEL-AAL G.M. 2018. Minimizing scour of contraction stepped spillways. Journal of Engineering Research and Reports. Vol. 1(1), 41543 p. 1–11. DOI 10.9734/jerr/2018/v1i19779.
AYTAC S., GUNAL M. 2008. Prediction of scour downstream of grad control structures using neural networks. Journal of Hydraulic Engineering. Vol. 10(11) p. 1656–1660. DOI 10.1061/(ASCE)0733-9429(2008)134:11(1656).
AZAMATHULLA H.M., DEO M.C., DEOLALIKAR P.B. 2006. Estimation of scour below spillways using neural networks. Journal Hydraulic Research, International Association Hydraulic Research. Vol. 44 (1) p. 61–69. DOI 10.1080/00221686.2006.9521661.
BAGHDADI K.H. 1997. Local scour downstream drop structure. Alexandria Engineering Journal. Vol. 36. No. 2.
BORMANN N.E., JULIEN P.Y. 1991. Scour downstream of grade-control structures. Journal of Hydraulic Engineering. Vol. 117(5) p. 579– 594. DOI 10.1061/(ASCE)0733-9429(1991)117:5(579).
CHANSON H. 2001. The hydraulics of stepped chutes and spillways. Lisse, The Netherlands. Balkema. ISBN 90-5809-352-2 pp. 418.
CHANSON H., GONZALEZ C.A. 2004. Stepped spillways for embankment dams. Review, progress and development in overflow hydraulic. In: Hydraulics of dams and river structures. Eds. F. Yazdandoost, J. Attari. Proceedings of the International Conference. Tehran, Iran, 26–28 April 2004. London. Taylor & Francis Group p. 287– 294. DARGAHI B. 2003. Scour development downstream of a spillway. Journal of Hydraulic Research. Vol. 41(4) p. 417–426. DOI 10.1080/00221680309499986.
EL-MASRY A.A, SARHAN T.E. 2000. Minimization of scour downstream heading-up structure using a single line of angle baffles. Engineering Research Journal. Vol. 69 p. 192–207.
ELNIKHELY E.A. 2016. Minimizing scour downstream of spillways using curved vertical sill. International Water Technology Journal. Vol. 6. No. 3.
KOOCHAK P., BAJESTAN M.S. 2016. The effect of relative surface roughness on scour dimensions at the edge of horizontal apron. International Journal of Sediment Research. Vol. 31(2) p. 159– 163. DOI 10.1016/j.ijsrc.2013.02.001.
NAJAFZADEH M., BARANI G.A., KERMANI M.R. 2014. Group method of data handling to predict scour at downstream of a ski-jump bucket spillway. Earth Science Informatics. Vol. 7(4) p. 231–248. DOI 10.1007/s12145-013-0140-4.
NOVAK P.J. 1961. Influence of bed load passage on scour and turbulence downstream of stilling basin. Congress, IAHR, Dubrovnik, Croatia.
OLIVETO G., COMUNIELLO V. 2009. Local scour downstream of positive- step stilling basins. Journal of Hydraulic Engineering. Vol. 135 (10) p. 846–851. DOI 10.1061/(ASCE)HY.1943-7900.0000078.
PETERKA A.J. 1978. Hydraulic design of stilling basin and energy dissipaters [online]. A Water Resources Technical Publication. Engineering Monograph. No. 95. Denver. U.S. Dept. of the Interior. Bureau of Reclamation. [Access 12.12.2020]. Available at: https://www.usbr.gov/tsc/techreferences/hydraulics_lab/pubs/ EM/EM25.pdf
PILLAI N.N. 1989. Hydraulic jump type stilling basin for low Froude numbers. Journal of Hydraulic Engineering. Vol. 115(7) p. 989– 994. DOI 10.1061/(ASCE)0733-9429(1989)115:7(989).
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Authors and Affiliations

Tarek H. Nasralla
1

  1. Benha University, Benha Faculty of Engineering, Civil Engineering Department, 13512, Benha, Qalubiya, Egypt
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Abstract

The solubility of Fe in aluminium alloys is known to be a problem in the casting of aluminium alloys. Due to the formation of various intermetallic phases, the mechanical properties decrease. Therefore, it is important to determine the formation mechanisms of such intermetallic. In this work, A360 alloy was used, and Fe additions were made. The alloy was cast into the sand and die moulds that consisted of three different thicknesses. In this way, the effect of the cooling rate was investigated. The holding time was selected to be 5 hours and every hour, a sample was collected from the melt for microstructural analysis. Additionally, the melt quality change was also examined by means of using a reduced pressure test where the bifilm index was measured. It was found that the iron content was increased after 2 hours of holding and the melt quality was decreased. There was a correlation between the duration and bifilm index. The size of Al-Si-Mn-Fe phases was increased in parallel with the bifilm content regardless of the iron content.
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Bibliography

[1] Bjurenstedt, A., Ghassemali, E., Seifeddine, S. & Dahle, A.K. (2019). The effect of Fe-rich intermetallics on crack initiation in cast aluminium: An in-situ tensile study. Materials Science and Engineering: A. 756, 502-507. DOI:10.1016/j.msea.2018.07.044
[2] Ferraro, S. & Timelli, G. (2015). Influence of sludge particles on the tensile properties of die-cast secondary aluminum alloys. Metallurgical and Materials Transactions B. 46(2), 1022-1034. DOI:10.1007/s11663-014-0260-3
[3] Ma, Z., Samuel, A., Samuel, F., Doty, H. & Valtierra, S. (2008). A study of tensile properties in Al–Si–Cu and Al–Si–Mg alloys: Effect of β-iron intermetallics and porosity. Materials Science and Engineering: A. 490(1-2), 36-51. https://doi.org/10.1016/j.msea.2008.01.028
[4] Zahedi, H., Emamy, M., Razaghian, A., Mahta, M., Campbell, J. & Tiryakioğlu, M. (2007). The effect of Fe-rich intermetallics on the Weibull distribution of tensile properties in a cast Al-5 pct Si-3 pct Cu-1 pct Fe-0.3 pct Mg alloy. Metallurgical and Materials Transactions A. 38(3), 659-670. DOI: 10.1007/s11661-006-9068-3
[5] Tunçay, T., Özyürek, D., Dişpinar, D. & Tekeli, S. (2020). The effects of Cr and Zr additives on the microstructure and mechanical properties of A356 alloy. Transactions of the Indian Institute of Metals. 73(5), 1273-1285. DOI: 10.1007/s12666-020-01970-4
[6] Gao, T., Hu, K., Wang, L., Zhang, B. & Liu, X. (2017). Morphological evolution and strengthening behavior of α-Al (Fe, Mn) Si in Al–6Si–2Fe–xMn alloys. Results in physics. 7, 1051-1054. https://doi.org/10.1016/j.rinp.2017.02.040
[7] Gorny, A., Manickaraj, J., Cai, Z. & Shankar, S. (2013). Evolution of Fe based intermetallic phases in Al–Si hypoeutectic casting alloys: Influence of the Si and Fe concentrations, and solidification rate. Journal of Alloys and Compounds. 577, 103-124. DOI: 10.1016/j.jallcom.2013. 04.139
[8] Taylor, J.A. (2012). Iron-containing intermetallic phases in Al-Si based casting alloys. Procedia Materials Science. 1, 19-33. https://doi.org/10.1016/j.mspro.2012.06.004
[9] Khalifa, W., Samuel, F. & Gruzleski, J. (2003). Iron intermetallic phases in the Al corner of the Al-Si-Fe system. Metallurgical and Materials Transactions A. 34(13), 807-825. DOI:10.1007/s11661-003-1009-9
[10] Liu, L., Mohamed, A., Samuel, A., Samuel, F., Doty, H. & Valtierra, S. (2009). Precipitation of β-Al5FeSi phase platelets in Al-Si based casting alloys. Metallurgical and Materials Transactions A. 40(10), 2457-2469. DOI:10.1007/s11661-009-9944-8
[11] Tupaj, M., Orłowicz, A., Mróz, M., Trytek, M. & Markowska, O. (2016). Usable properties of AlSi7Mg alloy after sodium or strontium modification. Archives of Foundry Engineering. 16(3), 129-132. DOI:10.1515/afe-2016-0064
[12] Dinnis, C.M., Taylor, J.A. & Dahle, A. (2006). Iron-related porosity in Al–Si–(Cu) foundry alloys. Materials Science and Engineering: A. 425(1-2), 286-296. DOI: 10.1016/j.msea.2006.03.045
[13] Mikołajczak, M. & Ratke, L. (2015). Three dimensional morphology of β-Al5FeSi intermetallics in AlSi alloys. Archives of Foundry Engineering. 15(1), 47-50. DOI:10.1515/afe-2015-0010
[14] Tunçay, T., Tekeli, S., Özyürek, D. & Dişpinar, D. (2017). Microstructure–bifilm interaction and its relation with mechanical properties in A356. International Journal of Cast Metals Research. 30(1), 20-29. https://doi.org/10.1080/13640461.2016.1192826
[15] Cao, X. & Campbell, J. (2000). Precipitation of primary intermetallic compounds in liquid Al 11.5 Si 0.4 Mg alloy. International Journal of Cast Metals Research. 13(3), 175-184. https://doi.org/10.1080/13640461.2000.11819400
[16] Cao, X. & Campbell, J. (2003). The nucleation of Fe-rich phases on oxide films in Al-11.5 Si-0.4 Mg cast alloys. Metallurgical and Materials Transactions A. 34(7), 409-1420.
[17] Cao, X. & Campbell, J. (2004). Effect of precipitation and sedimentation of primary α-Fe phase on liquid metal quality of cast Al–11.1 Si–0.4 Mg alloy. International Journal of Cast Metals Research. 17(1), 1-11. https://doi.org/10.1179/136404604225014792
[18] Cao, X. & Campbell, J. (2004). The solidification characteristics of Fe-rich intermetallics in Al-11.5 Si-0.4 Mg cast alloys. Metallurgical and Materials Transactions A. 35(5), 1425-1435. DOI:10.1007/s11661-004-0251-0
[19] Bjurenstedt, A., Casari, D., Seifeddine, S., Mathiesen, R.H. & Dahle, A.K. (2017). In-situ study of morphology and growth of primary α-Al (FeMnCr) Si intermetallics in an Al-Si alloy. Acta Materialia. 130, 1-9.
[20] Shabestari, S. (2004). The effect of iron and manganese on the formation of intermetallic compounds in aluminum–silicon alloys. Materials Science and Engineering: A. 383(2), 289-298. https://doi.org/10.1016/j.msea.2004.06.022
[21] Ferraro, S., Fabrizi, A. & Timelli, G. (2015). Evolution of sludge particles in secondary die-cast aluminum alloys as function of Fe, Mn and Cr contents. Materials Chemistry and Physics. 153, 168-179. DOI:10.1016/j.matchemphys. 2014.12.050
[22] Dispinar D. & Campbell, J. (2014). Reduced pressure test (RPT) for bifilm assessment. In: Tiryakioğlu, M., Campbell, J., Byczynski, G. (eds) Shape Casting: 5th International Symposium 2014. Springer, Cham. https://doi.org/10.1007/978-3-319-48130-2_30.
[23] Gyarmati G. et al., (2021). Controlled precipitation of intermetallic (Al, Si) 3Ti compound particles on double oxide films in liquid aluminum alloys. Materials Characterization. 181, 111467. https://doi.org/10.1016/j.matchar.2021.111467
[24] Podprocká, R., Malik, J. & Bolibruchová, D. (2015). Defects in high pressure die casting process. Manufacturing technology. 15(4), 674-678. DOI: 10.21062/ujep/x.2015/a/ 1213-2489/MT/15/4/674
[25] Samuel, A. Samuel, F. & Doty, H. (1996). Observations on the formation of β-Al5FeSi phase in 319 type Al-Si alloys. Journal of Materials Science. 31(20), 5529-5539. DOI:10.1080/13640461.2001.11819429
[26] Gyarmati, G., Fegyverneki, G., Mende, T. & Tokár, M. (2019). Characterization of the double oxide film content of liquid aluminum alloys by computed tomography. Materials Characterization. 157, 109925. DOI:10.1016/j.matchar. 2019.109925
[27] Liu, K., Cao, X. & Chen, X.-G. (2011). Solidification of iron-rich intermetallic phases in Al-4.5 Cu-0.3 Fe cast alloy. Metallurgical and Materials Transactions A. 42(7), 2004-2016. DOI: 10.1007/s11661-010-0578-7
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Authors and Affiliations

E.N. Bas
1
S. Alper
1
T. Tuncay
2
ORCID: ORCID
D. Dispinar
3
ORCID: ORCID
S. Kirtay
1
ORCID: ORCID

  1. Istanbul University-Cerrahpasa, Turkey
  2. Karabuk University, Turkey
  3. Foseco, Netherlands
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Abstract

Article presents results of laser overlaying welding of metal powder Inconel 625. Laser metal deposition by laser engineered net shaping (LENS) is modern manufacturing process for low scale production series. High alloy materials such as Inconel 625 nickel based super alloy have high thermal resistant and good mechanical properties, nevertheless it's hard to machining. Plastic forming of high alloy materials such as Inconel 625 are difficult. Due to high strength characteristic performing components made from Inconel alloy are complex, selective melting of metallic powder using laser beam are alternative method for Inconel tooling. Paper present research of additive deposition of spatial structure made from Inconel 625 metallic powder with CO2 laser and integrated powder feeder. Microstructure analysis as well as strength characteristic in normal condition and at elevated temperature was performed. Possibility of using LENS technology for manufacturing components dedicated for work in high temperature conditions are presented.

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Authors and Affiliations

H. Danielewski
B. Antoszewski
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Abstract

The objective of the paleoecological studies undertaken in the "Klocie Ostrowieckie" reserve was mainly to reconstruct the subfossil mire vegetation at a local and regional scale. This article presents the results of palynological and plant macroremain analyses of this site, and belongs to the first published studies of such a type, made in the Drawieński National Park. Based on our studies, five phases in the history of the mire development were determined. The most pronounced feature of that history, was a decline of Cladietum marisci clearly concurrent with a strong yet puzzling expansion of pine stands occurring approximately 1000 years ago.

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Authors and Affiliations

Mariusz Gałka
Kazimierz Tobolski
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Abstract

A fractional-order control strategy for a pneumatic position servo-system is presented in this paper. The idea of the fractional calculus application to control theory was introduced in many works, and its advantages were proved. This paper deals with the design of fractional order PIλ controllers, in which the orders of the integral and derivative parts, λ and µ, respectively, are fractional. Experiments with fractional-order controller are performed under various conditions, which include position signal with different frequencies and amplitudes or a step position signal. The results show the effectiveness of the proposed schemes and verify their fine control performance for a pneumatic position servo-system.

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Authors and Affiliations

P.A. Laski

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