2018
DOI: 10.1007/s11771-018-3937-y
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RETRACTED ARTICLE: Development and characterization of hot dip aluminide coated stainless steel 316L

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Cited by 8 publications
(14 citation statements)
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“…The Young's moduli of TNTZ1MoST, TNTZ 3MoST, and TNTZ5MoST are around 58 GPa, 59 GPa, and 64 GPa, respectively. The Young's moduli of solutionized specimens in present study are lower than SUS316L, CP Ti, and Ti64 ELI, 3,5) and also lower than some other ¢-type Ti alloys with changeable Young's modulus, such as Ti (15³18)Mo and Ti(10³14)Cr. 20,21) The Young's moduli of the four alloys increase after CR.…”
Section: Microstructuresmentioning
confidence: 49%
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“…The Young's moduli of TNTZ1MoST, TNTZ 3MoST, and TNTZ5MoST are around 58 GPa, 59 GPa, and 64 GPa, respectively. The Young's moduli of solutionized specimens in present study are lower than SUS316L, CP Ti, and Ti64 ELI, 3,5) and also lower than some other ¢-type Ti alloys with changeable Young's modulus, such as Ti (15³18)Mo and Ti(10³14)Cr. 20,21) The Young's moduli of the four alloys increase after CR.…”
Section: Microstructuresmentioning
confidence: 49%
“…Mo is supposed to bring solution hardening, but the decreasing amount of other alloying elements reduces the hardening effect. Therefore, TNTZST and TNTZ (1,3,5)MoST show near the same ultimate tensile strength of 650 MPa. The elongations are all higher than 20%, which is acceptable for biomedical application.…”
Section: Microstructuresmentioning
confidence: 86%
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“…Therefore, the speed and depression at seems to change from about 401,560 m/ and 29 bars respectively under a temperature of 293,20 K. Through these results we note no significant difference in the behavior of the air flow of the two molds, in other words, the air velocity and depression look very similar in different molds (401,560 m / and 29 bars). This is very interesting, the same output speed caused relevant point of adhesion of PET film with stainless steel mold [9][10][11][12].…”
Section: Thermal Behavior Of Blowingmentioning
confidence: 80%
“…Magnetized particles present in these chains, support this aggregation. The bigger aggregation attracts more and more magnetic particles around it and the process becomes faster at higher magnetic fields . So, liquid microneedle containing a relatively large number of MPs attracts nearby small‐sized needles, which collapse and start aggregating with this needle.…”
Section: Resultsmentioning
confidence: 99%