Search Results - "Mathabathe, M.N"

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  1. 1

    Investigating the mechanical properties of A356 (Sr doped) using mechanical stirring by Nyakane, N.E, Mathabathe, M.N, Bolokang, A.S, Siyasiya, C.W

    Published in MATEC web of conferences (2023)
    “…The Aluminium alloy A356 alloy is primarilyusually used for automobile and aerospace components owing to its high strength to weight ratio, and its relatively…”
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    Journal Article Conference Proceeding
  2. 2

    Comparison study on the effect of oxygen, nitrogen and hydrogen absorption on phase transformation and mechanical properties of quenched CP Ti and Ti6Al4V alloy by Mguni, N., Mathabathe, M.N., Shongwe, M.B., Bolokang, A.S.

    Published in Materials chemistry and physics (15-01-2025)
    “…Microstructures and mechanical properties of commercial pure Ti and Ti6Al4V metal were studied after water quenching. The nitrogen (N), oxygen (O) and hydrogen…”
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    Journal Article
  3. 3

    A comparison of the microstructures, thermal and mechanical properties of pressed and sintered Ti–Cu, Ti–Ni and Ti–Cu–Ni alloys intended for dental applications by Machio, C., Mathabathe, M.N., Bolokang, A.S.

    Published in Journal of alloys and compounds (25-12-2020)
    “…The effect of Ni and Cu on the α→β phase transformation temperature, possible retention of the β-phase, and mechanical properties of Ti, Ti–13Cu, Ti–4.5Ni and…”
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    Journal Article
  4. 4

    Phase transformation and microstructural control of the α-solidifying γ-Ti-45Al-2Nb-0.7Cr-0.3Si intermetallic alloy by Mathabathe, M.N., Govender, S., Bolokang, A.S., Mostert, R.J., Siyasiya, C.W.

    Published in Journal of alloys and compounds (15-08-2018)
    “…The γ-Ti-45Al-2Nb-0.7Cr-0.3Si based intermetallic alloy was developed. Microstructure evolution of the as-cast and heat-treated alloy yielded the spheriodised…”
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    Journal Article
  5. 5

    The vacuum melted ɣ-TiAl (Nb, Cr, Si)-doped alloys and their cyclic oxidation properties by Mathabathe, M.N., Bolokang, A.S., Govender, G., Mostert, R.J., Siyasiya, C.W.

    Published in Vacuum (01-08-2018)
    “…The γ-TiAl intermetallic alloy doped with Nb, Cr, and Si metals has been developed. It has emerged that the ternary Ti-48Al-2Nb and quinary…”
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    Journal Article
  6. 6

    Structure-property orientation relationship of a γ/α2/Ti5Si3 in as-cast Ti-45Al-2Nb-0.7Cr-0.3Si intermetallic alloy by Mathabathe, M.N., Bolokang, A.S., Govender, G., Mostert, R.J., Siyasiya, C.W.

    Published in Journal of alloys and compounds (15-10-2018)
    “…Structure-property relationship of the as-cast γ-Ti-45Al-2Nb-0.7Cr-0.3Si based intermetallic alloy was examined. The phases stable at room temperature in the…”
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    Journal Article
  7. 7

    Development and characterization of Al–Al3Ni–Sn metal matrix composite by Gxowa-Penxa, Z., Daswa, P., Modiba, R., Mathabathe, M.N., Bolokang, A.S.

    Published in Materials chemistry and physics (01-02-2021)
    “…The Al–Al3Ni–Sn composite was developed using a powder compassion and sintering metallurgical processing route. Microstructures of the sintered samples…”
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    Journal Article
  8. 8

    Vacuum melting of compressed powders and hot rolling of the as-cast Ti-48Al-2Nb-0.7Cr-0.3Si intermetallic alloy: Mechanical properties and microstructural analysis by Ellard, J.J.M., Mathabathe, M.N., Siyasiya, C., Bolokang, A.S.

    Published in Journal of manufacturing processes (08-09-2023)
    “…The amalgamated effect of hot-rolling, rapid cooling and heat treatment on the grain refinement and the resultant mechanical properties of an intermetallic…”
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    Journal Article
  9. 9

    Cold-pressing and vacuum arc melting of γ-TiAl based alloys by Mathabathe, M.N., Bolokang, A.S., Govender, G., Siyasiya, C.W., Mostert, R.J.

    “…[Display omitted] •Development of γ-based TiAl-doped with Nb, Cr alloys was studied.•The study showed that the alloy solidified by L + β → α peritectic…”
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    Journal Article
  10. 10

    Characterization of the nitrided γ-Ti-46Al–2Nb and γ-Ti-46Al–2Nb-0.7Cr-0.3Si intermetallic alloys by Mathabathe, M.N., Bolokang, A.S., Govender, G., Siyasiya, C.W., Mostert, R.J.

    Published in Materials chemistry and physics (01-01-2021)
    “…The thermal, surface properties and microstructures of the nitrided γ-Ti-46Al–2Nb and Ti–46Al–2Nb-0.7Cr-0.3Si intermetallic alloys were investigated. These…”
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    Journal Article
  11. 11

    Surface characterization of the cyclically oxidized γ-Ti-48Al-2Nb-0.7Cr alloy after nitridation by Mathabathe, M.N., Govender, G., Siyasiya, C.W., Mostert, R.J., Bolokang, A.S.

    Published in Materials characterization (01-08-2019)
    “…Surface properties of the nitrided γ-Ti-48Al-2Nb-0.7Cr intermetallic alloy after cyclic oxidation was characterized. The nitride coating was successfully…”
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    Journal Article
  12. 12

    The effects of quaternary alloying additions on the γTiAl alloy: Preferential site occupancy, interfacial energetics to physical parameters by Mathabathe, M.N., Modiba, R., Bolokang, A.S.

    Published in Surfaces and interfaces (01-08-2021)
    “…•Effect of Nb,Sn,Mn and Si on the structural stability of γ-Ti-Al based alloy have been investigated.•Mn preferred to be alloyed on the Ti site, while the Sn,…”
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    Journal Article
  13. 13

    Thermal analysis and morphology of the ball-milled Ti-Ni powder by Bolokang, A.S., Mathabathe, M.N., Mathebula, C., Machio, C.N.

    Published in Materials today : proceedings (2021)
    “…The initially spherical titanium (Ti) powder particles were flattened to ‘pan-cake” shape during Ball milling (BM) of the Ti-Ni powder mixture. Ultrafine Ni…”
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    Journal Article
  14. 14

    Investigating the heat resistant properties of the TiNi shape memory alloy on the B19′→B2 phase transformation using the alloy powder by Bolokang, A.S., Mathabathe, M.N., Chikosha, S., Motaung, D.E.

    Published in Surfaces and interfaces (01-09-2020)
    “…The high temperature resistance behaviour of the TiNi shape memory alloy (SMA) B19′→B2 phase transformation zone was investigated in TiNi alloy powder. The…”
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    Journal Article
  15. 15

    Deformation and fracture behaviour of the γ-TiAl based intermetallic alloys by Mathabathe, M.N., Bolokang, A.S., Govender, G., Siyasiya, C.W., Mostert, R.J.

    “…The ß-solidifying g-TAl intermetallic alloys of nominal composition Ti-48Al (binary alloy), Ti-48Al-2Nb (ternary alloy), Ti-48Al-2Nb-0.7Cr (quaternary alloy),…”
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    Journal Article