Int. Journal of Refractory Metals and Hard Materials
Z. Guo-jun et al. / Int. Journal of Refractory Metals and Hard Materials 29 (2011) 608–613 609 Mo-0.3Si alloy which annealed at 1050 °C for 1 hour exhibit fracture surface different from other samples as seen in Fig. 4(d) the sample
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· I. Konyashin et al. International Journal of Refractory Metals Hard Materials 78 (2019) 247–253 248 are not fully etched by the Murakami reagent and exhibit a brown color
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· 16 T. Polcar A. Cavaleiro/Int. Journal of Refractory Metals Hard Materials 28 (2010) 15–22. 3.1.2. Hardness residual stress and adhesion The evolution of the residual stress and the hardness as a func-tion of the nitrogen content in W–N coatings depicted in Fig. 3 fol-
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Refractory metals are defined as metals with melting points higher than 1800 °C. These are tungsten molybdenum chromium tantalum niobium hafnium and rhenium as well as many compounds and alloys based thereupon. Hard materials that are included in the scope of this journal are defined as materials with hardness values higher than 1000 kg
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LetPub Scientific Journal Selector () INTERNATIONAL JOURNAL OF REFRACTORY METALS HARD MATERIALS published in 1982 ENGLAND.
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· 138 Q. Zhou P. Chen / Int. Journal of Refractory Metals and Hard Materials 52 (2015) 137–142. The relationship between the preheating temperature and final densities is shown in Fig. 4. It shows an appropriate temperature with which a high density can be achieved in hot-shock consolidation.
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· D. Vallauri et al./Int. Journal of Refractory Metals Hard Materials 27 (2009) 996–1003 997. cracks and the corresponding temperature was identified as the critical temperature. The critical quenching temperature difference was determinedas differencebetweenthe criticaltemperature and
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· G. Mühl et al. International Journal of Refractory Metals Hard Materials 72 (2018) 141–148 142. and carburized in an industrial graphite pusher type furnace at 1500 °C and 2000 °C respectively. After carburization the slightly sintered
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· The International Journal of Refractory Metals and Hard Materials (IJRMHM) publishes original research articles concerned with all aspects of refractory metals and hard materials. Refractory metals are defined as metals with melting points higher than 1800 °C. These are tungsten molybdenum chromium tantalum niobium hafnium and rhenium
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· International Journal of Refractory Metals Hard Materials For example for single-crystal micropillars of metals an inverse power-law has been found between the critical resolved shear stress along the slip plane and the pillar diameter 21 22 27 28 . For polycrystalline
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· The International Journal of Refractory Metals and Hard Materials (IJRMHM) publishes original research articles concerned with all aspects of refractory metals and hard materials. Refractory metals are defined as metals with melting points higher than 1800 °C. These are tungsten molybdenum chromium tantalum niobium hafnium and rhenium
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· 16 T. Polcar A. Cavaleiro/Int. Journal of Refractory Metals Hard Materials 28 (2010) 15–22. 3.1.2. Hardness residual stress and adhesion The evolution of the residual stress and the hardness as a func-tion of the nitrogen content in W–N coatings depicted in Fig. 3 fol-
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Erratum to "Study of wear performance and tribological characterization of AlTiN PVD coatings with different Al/Ti ratios during ultra-high speed turning of stainless steel 304" International Journal of Refractory Metals and Hard Materials 96 (2021) 105488 Qianxi He Jose M. DePaiva Joern Kohlscheen Ben D. Beake Stephen C. Veldhuis.
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· International Journal of Refractory Metals Hard Materials For example for single-crystal micropillars of metals an inverse power-law has been found between the critical resolved shear stress along the slip plane and the pillar diameter 21 22 27 28 . For polycrystalline
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International Journal of Refractory Metals Hard Materials PubMed
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International Journal of Refractory Metals Hard Materials PubMed
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· International Journal of Refractory Metals Hard Materials For example for single-crystal micropillars of metals an inverse power-law has been found between the critical resolved shear stress along the slip plane and the pillar diameter 21 22 27 28 . For polycrystalline
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cDepartment of Electrical Energy Metals Mechanical constructions Systems Ghent University 9052 Ghent Belgium dKarlsruhe Institute of Technology (KIT) Institute for Applied Materials 76344 Eggenstein-Leopoldshafen Germany eInstitute of Plasma Physics The Czech Academy of Sciences 18200 Prague Czech Republic
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Int. Journal of Refractory Metals and Hard Materials 29 (2011) 608–613 ⁎ Corresponding author at School of Materials Science Engineering Xi an University of Technology Xi an 710048 PR China. Tel. 86 29 8231 2592 fax 86 29 . E-mail address zhangguojun mail.xjtu.edu.cn (Z.
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The ISSN of International Journal of Refractory Metals and Hard Materials journal is . An International Standard Serial Number (ISSN) is a unique code of 8 digits. It is used for the recognition of journals newspapers periodicals and magazines in all kind of forms be it print-media or electronic.
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LetPub Scientific Journal Selector () INTERNATIONAL JOURNAL OF REFRACTORY METALS HARD MATERIALS published in 1982 ENGLAND.
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· N. Chen et al. International Journal of Refractory Metals Hard Materials 71 (2018) 141–146 142. The SEM micrographs were used to further analyze the surface characteristics of the synthesized diamond crystals. The SEM micro-graphs of the synthesized diamonds obtained in the E-1 to E-3 experi-
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· H. Liu et al. / Int. Journal of Refractory Metals and Hard Materials 37 (2013) 121–126 123. tensile properties exhibited by this alloy are not surprising. The hardness (HRC) and tensile strength of the material sintered at 1100 °C are the highest reaching 34 and 1050 MPa respectively. This is
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· Int. Journal of Refractory Metals and Hard Materials 53 (2015) 46–50 ⁎ Corresponding author at Engineering Ceramic Center Korea Institute of Ceramic Engineering and Technology 3321 Gyeongchung Rd. Sindun Icheon Gyeonggi Republic of Korea.
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· The International Journal of Refractory Metals and Hard Materials (IJRMHM) publishes original research articles concerned with all aspects of refractory metals and hard materials. Refractory metals are defined as metals with melting points higher than 1800 °C. These are tungsten molybdenum chromium Read more
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· INTERNATIONAL JOURNAL OF REFRACTORY METALS HARD MATERIALS INT J REFRACT MET H SCI " INT J REFRACT MET H "
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· N. Chen et al. International Journal of Refractory Metals Hard Materials 71 (2018) 141–146 142. The SEM micrographs were used to further analyze the surface characteristics of the synthesized diamond crystals. The SEM micro-graphs of the synthesized diamonds obtained in the E-1 to E-3 experi-
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· INTERNATIONAL JOURNAL OF REFRACTORY METALS HARD MATERIALS INT J REFRACT MET H 2020/JCR 1.105/Q2 ENGLAND Bimonthly 1982 196
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cDepartment of Electrical Energy Metals Mechanical constructions Systems Ghent University 9052 Ghent Belgium dKarlsruhe Institute of Technology (KIT) Institute for Applied Materials 76344 Eggenstein-Leopoldshafen Germany eInstitute of Plasma Physics The Czech Academy of Sciences 18200 Prague Czech Republic
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