British Journal of Educational Studies

Taylor & Francis
Taylor & Francis
ISSN: 00071005, 14678527

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SCImago
Q1
WOS
Q2
Impact factor
1.7
SJR
0.909
CiteScore
4.5
Categories
Education
Areas
Social Sciences
Years of issue
1952-2025
journal names
British Journal of Educational Studies
BRIT J EDUC STUD
Publications
5 088
Citations
19 395
h-index
58
Top-3 citing journals
Top-3 organizations
University of Birmingham
University of Birmingham (64 publications)
University of York
University of York (51 publications)
University of Oxford
University of Oxford (49 publications)
Top-3 countries
United Kingdom (755 publications)
USA (91 publications)
Australia (80 publications)

Most cited in 5 years

Found 
from chars
Publications found: 1754
Effect of Mg Content on the Hot Tearing Susceptibility of Al–Zn–Mg–Cu Alloys
Lin Y., Wang L.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Vacuum Die Casting Process and Microstructure/Mechanical Characteristics Study of Magnesium Alloy Composite Hybridize with Zirconium Dioxide and Silicon Nitride
Aruna M., Ramakrishnan H., Prabagaran S., Kavitha N., Venkatesh R., Parthipan N., Mohanavel V., Soudagar M.E., Al Obaid S., Alharbi S.A.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Effect of Cu Addition on the Hot Tearing Susceptibility and Fluidity of Mg-5Zn-xCu-0.5Zr Alloys
Cong W., Wang F., Bai S., Du X., Wang Z., Zhou L., Wei Z., Mao P., Li J.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Investigation of Microstructure, Mechanical Properties and Corrosion Behaviour of As-Cast Mg-4Sn-2Al-X (X = 0.5 Ca and 0.25 Mn) Alloys
Kurt P., Kurnaz S.C.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0  |  Abstract
Abstract In this study, 0.5 wt. % of Ca, and 0.25 wt. % Mn was added to Mg-4Sn-2Al alloy, and its mechanical and corrosion properties were investigated. Production was carried out by gravity casting under a controlled atmosphere. Microstructures were investigated using SEM/EDS and XRD. In addition to the microstructure, the effects of alloying element addition on tensile properties, hardness, fracture surfaces, strain hardening exponent, anisotropy coefficients, corrosion microstructures, and corrosion rates were also investigated. According to the results obtained, Mg–4Sn–2Al–0.5Ca, and Mg–4Sn–2Al–0.25Mn alloys showed lower mechanical properties than Mg–4Sn–2Al alloys. While the ultimate tensile strength was 131 MPa for the Mg-4Sn-2Al alloy, this value decreased to 92.5 MPa with the addition of Ca, and to 102 MPa for the Mg-4Sn-2Al–0.25Mn alloy. Also, the strain hardening coefficient for Mg-4Sn-2Al alloy was 0.35, while it decreased to 0.28 with the addition of Ca. With the addition of Mn, it gave a value of 0.36, which is almost the same as Mg-4Sn-2Al alloy. When the anisotropy coefficients are examined, the anisotropy coefficient of Mg-4Sn-2Al alloy, which was 0.83, increased to 0.872 with the addition of Ca, and 1.293 with the addition of Mn. According to the results obtained from potentiodynamic and immersion corrosion tests, the Mn doped alloy showed the highest corrosion resistance in both tests. The corrosion rate of the Mn doped alloy was 18.96 mpy according to potentiodynamic results and 65.32 mpy according to immersion test results.
Cast Structures and Their Susceptibility to Failure
Ruxanda R.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Preventing Graphite Degeneration with Fluorine-Free Feeders
Pesci M.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Understanding Heterogeneous Nucleation in Iron Alloys from First Principles: A Review and Discussion
Lekakh S.N.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Enhancement of Mechanical and Corrosion Behaviours of AZ91D Magnesium Hybrid Composites Reinforced with B4C and BN Particles
Raj P.P., Ramadoss N., Shoba M.K., Vijayakumar P.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Effect of 0.12wt%Sr Addition on Structural, Mechanical and Tribological Properties of Al-12Si+10wt%Zn Alloy
Hekimoğlu A.P., Zimitoğlu S., Hacıosmanoğlu M.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0  |  Abstract
Abstract The effects of 0.12wt%Sr additive on some material properties of Al-12Si+10wt%Zn alloy were examined in this study. Al-12Si+10wt%Zn and Al-12Si+10wt%Zn+0.12wt%Sr alloys were manufactured by permanent mold casting. Microstructures of these alloys were examined with both optic and scanning electron microscopes. Phases in the alloys were identified by energy-dispersive spectroscopy and X-ray diffraction analyses. Hardness measurements were performed with the Brinell method. Mechanical and tribological properties of the alloys were investigated with tensile and friction-wear tests, respectively. The microstructure of the Al–12Si+10wt%Zn alloy consists of α-Al, eutectic Al-Si mixture, primary Si and β phases. Al-12Si+10wt%Zn+0.12wt%Sr alloy includes the Al-Zn-Fe-Si and Sr-Al-Si phases in addition to phases observed in the Al-12Si+10wt%Zn alloy. Sr addition resulted in the eutectic silicon particles becoming thinner and a spherical-like shape. The Sr addition to the Al-12Si+10wt%Zn alloy caused the hardness, yield strength and tensile strength to increase from 97 HBN to 138 HBN, 163 MPa to 233 MPa and 215 MPa to 240 MPa, respectively. The addition of Sr also caused coefficient of friction and wear volume of the Al-12Si-10Zn alloy to decrease from 0.5189 to 0.4621 and 4.488 mm3 to 4.025 mm3, respectively. Effects of Sr additive on the material properties of the Al-12Si+10wt%Zn alloy were discussed based on the microstructural changes.
Effect of Friction Stir Processing on the Microstructure and Mechanical Properties of Iron-Bearing A356 Cast Aluminum Alloy
Asharsheikh B., Daneshifar M.H., Jabbareh M.A.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Some Effects of Low-Frequency Vibration During Solidification of Fe–28Mn–12Al–0.9Si–1.4C Steel As-Cast Ingots
Smirnov O., Voron M., Tymoshenko A., Skorobagatko Y., Schwab S., Semenko A.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Multi-Objective Optimization of A356 Engine Block Casting Process Parameters Based on Response Surface Method and NSGA-II Genetic Algorithm
Deng W., Song Z., Lei J., Luo K., Zhang Y., Yu M.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Metalcasting Industry Research
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
From the Editor
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0
Lost Foam Molds Produced by Additive Manufacturing AFS Projects 19-20 #07 and #08
Miller M.L.
Q2
Springer Nature
International Journal of Metalcasting 2025 citations by CoLab: 0

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Publishing organizations in 5 years

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Publishing countries

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United Kingdom, 755, 14.84%
USA, 91, 1.79%
Australia, 80, 1.57%
China, 41, 0.81%
Canada, 39, 0.77%
Italy, 37, 0.73%
Ireland, 22, 0.43%
Netherlands, 20, 0.39%
Israel, 18, 0.35%
New Zealand, 16, 0.31%
Turkey, 15, 0.29%
Spain, 12, 0.24%
Singapore, 11, 0.22%
Belgium, 10, 0.2%
Sweden, 9, 0.18%
South Africa, 8, 0.16%
Germany, 6, 0.12%
Cyprus, 6, 0.12%
Finland, 6, 0.12%
Estonia, 5, 0.1%
Brazil, 4, 0.08%
Norway, 4, 0.08%
Republic of Korea, 4, 0.08%
France, 3, 0.06%
Greece, 3, 0.06%
India, 3, 0.06%
Indonesia, 3, 0.06%
Iran, 3, 0.06%
Pakistan, 3, 0.06%
Chile, 3, 0.06%
Japan, 3, 0.06%
Hungary, 2, 0.04%
Denmark, 2, 0.04%
Kyrgyzstan, 2, 0.04%
Mexico, 2, 0.04%
Poland, 2, 0.04%
Switzerland, 2, 0.04%
Portugal, 1, 0.02%
Austria, 1, 0.02%
Brunei, 1, 0.02%
Ghana, 1, 0.02%
Iraq, 1, 0.02%
Qatar, 1, 0.02%
Lebanon, 1, 0.02%
Morocco, 1, 0.02%
Nigeria, 1, 0.02%
UAE, 1, 0.02%
Romania, 1, 0.02%
Saudi Arabia, 1, 0.02%
Uganda, 1, 0.02%
Jamaica, 1, 0.02%
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Publishing countries in 5 years

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United Kingdom, 164, 53.07%
China, 20, 6.47%
Australia, 20, 6.47%
USA, 11, 3.56%
Ireland, 8, 2.59%
Israel, 6, 1.94%
Spain, 4, 1.29%
Italy, 4, 1.29%
Turkey, 4, 1.29%
Germany, 3, 0.97%
Estonia, 3, 0.97%
Indonesia, 3, 0.97%
Canada, 3, 0.97%
France, 2, 0.65%
Belgium, 2, 0.65%
Iran, 2, 0.65%
New Zealand, 2, 0.65%
Norway, 2, 0.65%
Singapore, 2, 0.65%
Finland, 2, 0.65%
South Africa, 2, 0.65%
Brazil, 1, 0.32%
Brunei, 1, 0.32%
Denmark, 1, 0.32%
India, 1, 0.32%
Cyprus, 1, 0.32%
Lebanon, 1, 0.32%
Morocco, 1, 0.32%
Mexico, 1, 0.32%
Netherlands, 1, 0.32%
UAE, 1, 0.32%
Poland, 1, 0.32%
Romania, 1, 0.32%
Saudi Arabia, 1, 0.32%
Japan, 1, 0.32%
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