Search Results - "Pricop, B."

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  1. 1

    On Bending Creep Behaviour of a Powder Metallurgy FeMnSiCrNi Shape Memory Alloy by Ciurcă, L, Pricop, B, Agop, M, Bujoreanu, L -G

    Published in Archives of metallurgy and materials (01-01-2022)
    “…FeMnSiCrNi alloys represent a promising class of FeMnSi-based shape memory alloys (SMAs) characterized by excellent characteristics of formability and…”
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    Journal Article
  2. 2

    Thermal Memory Degradation in a Cu-Zn-Al Shape Memory Alloy During Thermal Cycling with Free Air Cooling by Bujoreanu, L. G., Lohan, N. M., Pricop, B., Cimpoeşu, N.

    “…A fragment of a Cu-15Zn-6Al (mass%) shape memory alloy (SMA), in hot rolled-water quenched condition, was subjected to thermal cycling performed by means of a…”
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    Journal Article
  3. 3

    Structural-Morphological Fluctuations Induced by Thermomechanical Treatment in a Fe – Mn – Si Shape Memory Alloy by Cimpoesu, N., Mihalache, E., Lohan, N.-M., Suru, M.-G., Comãneci, R. I., Özkal, B., Bujoreanu, L.-G., Pricop, B.

    Published in Metal science and heat treatment (01-11-2018)
    “…Variation of the sizes and chemical compositions of martensite plates in the structure of powder-metallurgy shape memory alloy Fe – 14 wt.% Mn – 6 wt.% Si – 9…”
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  4. 4

    Thermal Behavior of Mechanically Alloyed Powders Used for Producing an Fe-Mn-Si-Cr-Ni Shape Memory Alloy by Pricop, B., Söyler, U., Lohan, N. M., Özkal, B., Bujoreanu, L. G., Chicet, D., Munteanu, C.

    “…In order to produce shape memory rings for constrained-recovery pipe couplings, from Fe-14 Mn-6 Si-9 Cr-5 Ni (mass%) powders, the main technological steps were…”
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  5. 5

    A Study of Free Recovery in a Fe – Mn – Si – Cr Shape Memory Alloy by Spiridon, I.-P., Lohan, N.-M., Suru, M.-G., Mihalache, E., Bujoreanu, L.-G., Pricop, B.

    Published in Metal science and heat treatment (01-01-2016)
    “…Video recording of the free recovery of “hot shape” (typical for the austenitic domain) in shape-memory alloy Fe – 28% Mn – 6% Si – 5% Cr during heating of…”
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  6. 6

    Structural Changes Caused by High-Temperature Holding of Powder Shape Memory Alloy 66% Fe – 14% Mn – 6% Si – 9% Cr – 5% Ni by Pricop, B., Özkal, B., Söyler, U., Van Humbeeck, J., Lohan, N. M., Suru, M.-G., Spiridon, I.-P., Bujoreanu, L.-G.

    Published in Metal science and heat treatment (01-01-2016)
    “…Shape memory alloy Fe – 14Mn – 6Si – 9Cr – 5Ni (wt.%) obtained by cold pressing and sintering of a mixture of powder elements or of mechanically alloyed powder…”
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  7. 7

    Effects of hot working procedure on surface relief characteristic in an Fe-Mn-Si-Cr shape memory alloy by Suru, M.-G., Dan, I., Lohan, N. M., Paraschiv, A. L., Pricop, B., Spiridon, I. P., Baciu, C., Bujoreanu, L.-G.

    Published in Materialwissenschaft und Werkstofftechnik (01-01-2014)
    “…The paper reports the evolution of surface relief and shape memory behavior in an Fe–28Mn–6Si–5Cr (mass%) shape memory alloy (SMA) as a function of the applied…”
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    Journal Article
  8. 8

    Effects of Dynamic Loading under Extreme Conditions on Wear Resistance of T105Mn120 Castings for Railway Safety Systems by Bulbuc, V., Paleu, V., Pricop, B., Popa, M., Cârlescu, V., Cimpoesu, N., Bujoreanu, L. G.

    “…Hadfield steels are materials with high wear resistance used in the construction of parts that work in abrasive friction, high pressures and mechanical shock…”
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  9. 9

    Influence of Dynamic Three Point Bending on the Work Hardening Capacity of T105Mn120 Manganese Steel by Bulbuc, V., Pricop, B., Maxim, F., Popa, M., Cimpoeşu, N., Bujoreanu, L. G.

    “…The paper analyzes work hardening behavior of T105Mn120 Hadfield steel under dynamic conditions. The specimens were investigated under two states: (a)…”
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  10. 10

    Hot Rolling Effects on the Microstructure and Chemical Properties of NiTiTa Alloys by Lohan, N. M., Pricop, B., Popa, M., Matcovschi, E., Cimpoeşu, N., Cimpoeşu, R., Istrate, B., Bujoreanu, L. G.

    “…In the present paper, a Ni-37Ti-15Ta (wt.%) shape memory alloy was analyzed in as-cast and hot-rolled conditions, by differential scanning calorimetry,…”
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  11. 11
  12. 12

    Structural Effects of Training Cycles in Shape Memory Actuators for Temperature Control by Vitel, G., Suru, M. G., Paraschiv, A. L., Lohan, N. M., Pricop, B., Baciu, M., Bujoreanu, L. G.

    Published in Materials and manufacturing processes (01-12-2012)
    “…Lamellar thermal actuators, for temperature control in hydraulic systems, were manufactured from a Cu-Zn-Al shape memory alloy and trained in bending, between…”
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  13. 13
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  15. 15

    Comparative Evolution of Surface Relieves of Stress-induced Martensite Plates in Shape Memory Alloys with Different Crystalline Structures by Suru, M.G., Moroşanu, C., Comăneci, R.I., Mihalache, E., Pricop, B., Lohan, N.M., Baciu, C., Bujoreanu, L.G.

    Published in Materials today : proceedings (2015)
    “…The evolution of surface relief characteristics of stress induced martensite plates was investigated at Fe-Mn-Si-Cr, Fe-Mn-Si-Cr-Ni and Cu-Al-Ni shape memory…”
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  16. 16

    A Study of Martensite Formation in Powder Metallurgy Fe-Mn-Si-Cr-Ni Shape Memory Alloys by Pricop, B., Söyler, U., Özkal, B., Suru, M.G., Lohan, N.M., Comăneci, R.I., Cimpoeşu, N., Muşat, V., Gurău, G., Istrate, B., Mihalache, E., Bujoreanu, L.G.

    Published in Materials today : proceedings (2015)
    “…Parallelepiped specimens were pressed and sintered from as-blended powders of shape memory alloy (SMA) with nominal chemical composition 66Fe-14Mn-6Si-9Cr-5Ni…”
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    Journal Article