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  • Fonte: Materials Performance and Characterization. Unidade: EP

    Assuntos: NANOPARTÍCULAS, REVESTIMENTOS, TRIBOLOGIA

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      KOLAWOLE, Funsho Olaitan et al. Nano-Scratch and Micro-Scratch Properties of CrN/DLC and DLC-W Coatings. Materials Performance and Characterization, 2023Tradução . . Disponível em: https://doi.org/10.1520/MPC20230028 Acesso em: 30/10/2023. Acesso em: 18 abr. 2024.
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      Kolawole, F. O., Santos, M. D. dos, Kolawole, S. K., Vencovsky, P. K., Ludewigs, D. A., & Tschiptschin, A. P. (2023). Nano-Scratch and Micro-Scratch Properties of CrN/DLC and DLC-W Coatings. Materials Performance and Characterization. doi:10.1520/MPC20230028
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      Kolawole FO, Santos MD dos, Kolawole SK, Vencovsky PK, Ludewigs DA, Tschiptschin AP. Nano-Scratch and Micro-Scratch Properties of CrN/DLC and DLC-W Coatings [Internet]. Materials Performance and Characterization. 2023 ;[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20230028 Acesso em: 30/10/2023
    • Vancouver

      Kolawole FO, Santos MD dos, Kolawole SK, Vencovsky PK, Ludewigs DA, Tschiptschin AP. Nano-Scratch and Micro-Scratch Properties of CrN/DLC and DLC-W Coatings [Internet]. Materials Performance and Characterization. 2023 ;[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20230028 Acesso em: 30/10/2023
  • Fonte: Materials Performance and Characterization. Unidade: EP

    Assuntos: CORROSÃO, AÇO INOXIDÁVEL AUSTENÍTICO

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      VALERA JIMENEZ, Luis Bernardo et al. Corrosion resistance of low-temperature and conventional plasma-nitrided 410S ferritic-martensitic stainless steels. Materials Performance and Characterization, v. 10, n. 1, p. 181-188, 2021Tradução . . Disponível em: https://doi.org/10.1520/MPC20200099. Acesso em: 18 abr. 2024.
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      Valera Jimenez, L. B., Uemura, M. T., Calderon-Hernández, J. W., Pinedo, C. E., Kolawole, F. O., & Tschiptschin, A. P. (2021). Corrosion resistance of low-temperature and conventional plasma-nitrided 410S ferritic-martensitic stainless steels. Materials Performance and Characterization, 10( 1), 181-188. doi:10.1520/MPC20200099
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      Valera Jimenez LB, Uemura MT, Calderon-Hernández JW, Pinedo CE, Kolawole FO, Tschiptschin AP. Corrosion resistance of low-temperature and conventional plasma-nitrided 410S ferritic-martensitic stainless steels [Internet]. Materials Performance and Characterization. 2021 ;10( 1): 181-188.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20200099
    • Vancouver

      Valera Jimenez LB, Uemura MT, Calderon-Hernández JW, Pinedo CE, Kolawole FO, Tschiptschin AP. Corrosion resistance of low-temperature and conventional plasma-nitrided 410S ferritic-martensitic stainless steels [Internet]. Materials Performance and Characterization. 2021 ;10( 1): 181-188.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20200099
  • Fonte: Materials Performance and Characterization. Unidades: EESC, IQSC

    Assuntos: TÊMPERA, TRANSFERÊNCIA DE CALOR, MATERIAIS, ÓLEO DE SOJA

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      FRIED, Zoltán et al. Parallelized particle swarm optimization to estimate the heat transfer coefficients of palm oil, canola oil, conventional, and accelerated petroleum oil quenchants. Materials Performance and Characterization, v. 8, n. 2, p. 894-903, 2019Tradução . . Disponível em: https://doi.org/10.1520/MPC20180049. Acesso em: 18 abr. 2024.
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      Fried, Z., Felde, I., Otero, R. L. S., Viscaino, J. M., Totten, G. E., & Canale, L. de C. F. (2019). Parallelized particle swarm optimization to estimate the heat transfer coefficients of palm oil, canola oil, conventional, and accelerated petroleum oil quenchants. Materials Performance and Characterization, 8( 2), 894-903. doi:10.1520/MPC20180049
    • NLM

      Fried Z, Felde I, Otero RLS, Viscaino JM, Totten GE, Canale L de CF. Parallelized particle swarm optimization to estimate the heat transfer coefficients of palm oil, canola oil, conventional, and accelerated petroleum oil quenchants [Internet]. Materials Performance and Characterization. 2019 ; 8( 2): 894-903.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20180049
    • Vancouver

      Fried Z, Felde I, Otero RLS, Viscaino JM, Totten GE, Canale L de CF. Parallelized particle swarm optimization to estimate the heat transfer coefficients of palm oil, canola oil, conventional, and accelerated petroleum oil quenchants [Internet]. Materials Performance and Characterization. 2019 ; 8( 2): 894-903.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20180049
  • Fonte: Materials Performance and Characterization. Unidades: EESC, IQSC

    Assuntos: TRANSFERÊNCIA DE CALOR, TÊMPERA, ÓLEOS VEGETAIS, MATERIAIS

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      OTERO, Rosa Lucia Simencio et al. Quenchant cooling curves, rewetting, and surface heat flux properties of vegetable oils. Materials Performance and Characterization, v. 8, n. 2, p. 143-169, 2019Tradução . . Disponível em: https://doi.org/10.1520/MPC20180042. Acesso em: 18 abr. 2024.
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      Otero, R. L. S., Viscaino, J. M., Jun, X., Jianfeng, G., Totten, G. E., & Canale, L. de C. F. (2019). Quenchant cooling curves, rewetting, and surface heat flux properties of vegetable oils. Materials Performance and Characterization, 8( 2), 143-169. doi:10.1520/MPC20180042
    • NLM

      Otero RLS, Viscaino JM, Jun X, Jianfeng G, Totten GE, Canale L de CF. Quenchant cooling curves, rewetting, and surface heat flux properties of vegetable oils [Internet]. Materials Performance and Characterization. 2019 ; 8( 2): 143-169.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20180042
    • Vancouver

      Otero RLS, Viscaino JM, Jun X, Jianfeng G, Totten GE, Canale L de CF. Quenchant cooling curves, rewetting, and surface heat flux properties of vegetable oils [Internet]. Materials Performance and Characterization. 2019 ; 8( 2): 143-169.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20180042
  • Fonte: Materials Performance and Characterization. Unidades: EESC, IQSC

    Assuntos: TRANSFERÊNCIA DE CALOR, ÓLEOS VEGETAIS, MATERIAIS

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      MEEKISHO, Lemmy et al. Assessment of cooling and heat transfer properties of quenchants with MATLAB. Materials Performance and Characterization, v. 8, n. 2, p. 128-142, 2019Tradução . . Disponível em: https://doi.org/10.1520/MPC20180046. Acesso em: 18 abr. 2024.
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      Meekisho, L., Otero, R. L. S., Viscaino, J. M., MacKenzie, D. S., Totten, G. E., & Canale, L. de C. F. (2019). Assessment of cooling and heat transfer properties of quenchants with MATLAB. Materials Performance and Characterization, 8( 2), 128-142. doi:10.1520/MPC20180046
    • NLM

      Meekisho L, Otero RLS, Viscaino JM, MacKenzie DS, Totten GE, Canale L de CF. Assessment of cooling and heat transfer properties of quenchants with MATLAB [Internet]. Materials Performance and Characterization. 2019 ; 8( 2): 128-142.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20180046
    • Vancouver

      Meekisho L, Otero RLS, Viscaino JM, MacKenzie DS, Totten GE, Canale L de CF. Assessment of cooling and heat transfer properties of quenchants with MATLAB [Internet]. Materials Performance and Characterization. 2019 ; 8( 2): 128-142.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20180046
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: MATERIAIS, TENSÃO RESIDUAL, TRATAMENTO TÉRMICO, TÊMPERA

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      MATTOS, Wellington da Silva e TOTTEN, George Edward e CANALE, Lauralice de Campos Franceschini. Uphill quenching of aluminum alloys. Materials Performance and Characterization, v. 6, n. 5, p. Paper MPC20160125 894-903, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160125. Acesso em: 18 abr. 2024.
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      Mattos, W. da S., Totten, G. E., & Canale, L. de C. F. (2017). Uphill quenching of aluminum alloys. Materials Performance and Characterization, 6( 5), Paper MPC20160125 894-903. doi:10.1520/MPC20160125
    • NLM

      Mattos W da S, Totten GE, Canale L de CF. Uphill quenching of aluminum alloys [Internet]. Materials Performance and Characterization. 2017 ; 6( 5): Paper MPC20160125 894-903.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160125
    • Vancouver

      Mattos W da S, Totten GE, Canale L de CF. Uphill quenching of aluminum alloys [Internet]. Materials Performance and Characterization. 2017 ; 6( 5): Paper MPC20160125 894-903.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160125
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: NIÓBIO, FERRO FUNDIDO, DESGASTE DOS MATERIAIS

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      SOARES, Carolina et al. Characterization of niobium carbide layers produced in ductile cast iron using thermo-reactive treatments. Materials Performance and Characterization, v. 6, n. 4, p. 607-616, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160093. Acesso em: 18 abr. 2024.
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      Soares, C., Mariani, F. E., Casteletti, L. C., Lombardi Neto, A., & Totten, G. E. (2017). Characterization of niobium carbide layers produced in ductile cast iron using thermo-reactive treatments. Materials Performance and Characterization, 6( 4), 607-616. doi:10.1520/MPC20160093
    • NLM

      Soares C, Mariani FE, Casteletti LC, Lombardi Neto A, Totten GE. Characterization of niobium carbide layers produced in ductile cast iron using thermo-reactive treatments [Internet]. Materials Performance and Characterization. 2017 ; 6( 4): 607-616.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160093
    • Vancouver

      Soares C, Mariani FE, Casteletti LC, Lombardi Neto A, Totten GE. Characterization of niobium carbide layers produced in ductile cast iron using thermo-reactive treatments [Internet]. Materials Performance and Characterization. 2017 ; 6( 4): 607-616.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160093
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: DESGASTE DOS MATERIAIS, TRATAMENTO TÉRMICO, LIGAS METÁLICAS

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      TAKEYA, Gustavo Satoru et al. Aging of a Fe-Mn-Al steel using plasma nitrocarburizing. Materials Performance and Characterization, v. 6, n. 4, p. 554-560, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160094. Acesso em: 18 abr. 2024.
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      Takeya, G. S., Mariani, F. E., Casteletti, L. C., Lombardi Neto, A., & Totten, G. E. (2017). Aging of a Fe-Mn-Al steel using plasma nitrocarburizing. Materials Performance and Characterization, 6( 4), 554-560. doi:10.1520/MPC20160094
    • NLM

      Takeya GS, Mariani FE, Casteletti LC, Lombardi Neto A, Totten GE. Aging of a Fe-Mn-Al steel using plasma nitrocarburizing [Internet]. Materials Performance and Characterization. 2017 ; 6( 4): 554-560.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160094
    • Vancouver

      Takeya GS, Mariani FE, Casteletti LC, Lombardi Neto A, Totten GE. Aging of a Fe-Mn-Al steel using plasma nitrocarburizing [Internet]. Materials Performance and Characterization. 2017 ; 6( 4): 554-560.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160094
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: CINÉTICA, TRATAMENTO TÉRMICO, NIÓBIO

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      MARIANI, Fábio Edson et al. Kinetics of layers produced on niobium by salt bath boriding. Materials Performance and Characterization, v. 6, n. 4, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160095. Acesso em: 18 abr. 2024.
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      Mariani, F. E., Takeya, G. S., Casteletti, L. C., Lombardi Neto, A., & Totten, G. E. (2017). Kinetics of layers produced on niobium by salt bath boriding. Materials Performance and Characterization, 6( 4). doi:10.1520/MPC20160095
    • NLM

      Mariani FE, Takeya GS, Casteletti LC, Lombardi Neto A, Totten GE. Kinetics of layers produced on niobium by salt bath boriding [Internet]. Materials Performance and Characterization. 2017 ; 6( 4):[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160095
    • Vancouver

      Mariani FE, Takeya GS, Casteletti LC, Lombardi Neto A, Totten GE. Kinetics of layers produced on niobium by salt bath boriding [Internet]. Materials Performance and Characterization. 2017 ; 6( 4):[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160095
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: TENSÃO RESIDUAL, MECÂNICA DA FRATURA, MATERIAIS

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      ALBANO, Luigi Leonardo Mazzucco et al. Development and use of a small laboratory intensive quenching (IQ) system. Materials Performance and Characterization, v. 6, n. 5, p. Paper MPC20160126 785-794, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160126. Acesso em: 18 abr. 2024.
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      Albano, L. L. M., Misina, F. S., Canale, A. C., Totten, G. E., & Canale, L. de C. F. (2017). Development and use of a small laboratory intensive quenching (IQ) system. Materials Performance and Characterization, 6( 5), Paper MPC20160126 785-794. doi:10.1520/MPC20160126
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      Albano LLM, Misina FS, Canale AC, Totten GE, Canale L de CF. Development and use of a small laboratory intensive quenching (IQ) system [Internet]. Materials Performance and Characterization. 2017 ; 6( 5): Paper MPC20160126 785-794.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160126
    • Vancouver

      Albano LLM, Misina FS, Canale AC, Totten GE, Canale L de CF. Development and use of a small laboratory intensive quenching (IQ) system [Internet]. Materials Performance and Characterization. 2017 ; 6( 5): Paper MPC20160126 785-794.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160126
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: ÓLEOS VEGETAIS, TRATAMENTO TÉRMICO, TRANSFERÊNCIA DE CALOR, MATERIAIS

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      OTERO, Rosa Lucia Simencio et al. Vegetable oils as metal quenchants: a comprehensive review. Materials Performance and Characterization, v. 6, n. 1, p. Paper MPC20160112 174-250, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160112. Acesso em: 18 abr. 2024.
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      Otero, R. L. S., Canale, L. de C. F., Totten, G. E., & Meekisho, L. (2017). Vegetable oils as metal quenchants: a comprehensive review. Materials Performance and Characterization, 6( 1), Paper MPC20160112 174-250. doi:10.1520/MPC20160112
    • NLM

      Otero RLS, Canale L de CF, Totten GE, Meekisho L. Vegetable oils as metal quenchants: a comprehensive review [Internet]. Materials Performance and Characterization. 2017 ; 6( 1): Paper MPC20160112 174-250.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160112
    • Vancouver

      Otero RLS, Canale L de CF, Totten GE, Meekisho L. Vegetable oils as metal quenchants: a comprehensive review [Internet]. Materials Performance and Characterization. 2017 ; 6( 1): Paper MPC20160112 174-250.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160112
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: AÇO INOXIDÁVEL AUSTENÍTICO, DESGASTE DOS MATERIAIS, TRATAMENTO TÉRMICO

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      MARIANI, Fábio Edson et al. Characterization and wear performance of borided AISI 304 and UNS S31254 stainless steels. Materials Performance and Characterization, v. 6, n. 4, p. 523-530, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20160096. Acesso em: 18 abr. 2024.
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      Mariani, F. E., Aureliano, R. T., Casteletti, L. C., Lombardi Neto, A., & Totten, G. E. (2017). Characterization and wear performance of borided AISI 304 and UNS S31254 stainless steels. Materials Performance and Characterization, 6( 4), 523-530. doi:10.1520/MPC20160096
    • NLM

      Mariani FE, Aureliano RT, Casteletti LC, Lombardi Neto A, Totten GE. Characterization and wear performance of borided AISI 304 and UNS S31254 stainless steels [Internet]. Materials Performance and Characterization. 2017 ; 6( 4): 523-530.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160096
    • Vancouver

      Mariani FE, Aureliano RT, Casteletti LC, Lombardi Neto A, Totten GE. Characterization and wear performance of borided AISI 304 and UNS S31254 stainless steels [Internet]. Materials Performance and Characterization. 2017 ; 6( 4): 523-530.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160096
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: FERRO FUNDIDO CINZENTO, DESGASTE ADESIVO, TRATAMENTO TÉRMICO

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      MARIANI, Fábio Edson et al. Austempering and boro-austempering treatments in gray cast iron. Materials Performance and Characterization, v. 6, n. 1, p. 262-271, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20150038. Acesso em: 18 abr. 2024.
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      Mariani, F. E., Assis, G. B. de, Casteletti, L. C., Takeya, G. S., Lombardi Neto, A., & Totten, G. E. (2017). Austempering and boro-austempering treatments in gray cast iron. Materials Performance and Characterization, 6( 1), 262-271. doi:10.1520/MPC20150038
    • NLM

      Mariani FE, Assis GB de, Casteletti LC, Takeya GS, Lombardi Neto A, Totten GE. Austempering and boro-austempering treatments in gray cast iron [Internet]. Materials Performance and Characterization. 2017 ; 6( 1): 262-271.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150038
    • Vancouver

      Mariani FE, Assis GB de, Casteletti LC, Takeya GS, Lombardi Neto A, Totten GE. Austempering and boro-austempering treatments in gray cast iron [Internet]. Materials Performance and Characterization. 2017 ; 6( 1): 262-271.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150038
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: MICROELETRÔNICA, TRANSFERÊNCIA DE CALOR, ÓLEOS E GORDURAS VEGETAIS COMESTÍVEIS, TRATAMENTO TÉRMICO, MATERIAIS

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      MATIJEVIC, Bozidar et al. Comparative measurement and evaluation of the quenching intensity of palm oil, canola oil and a conventional petroleum oil quenchant based on temperature gradient measurements. Materials Performance and Characterization, v. 6, n. 5, p. Paper MPC20170041 757-776, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20170041. Acesso em: 18 abr. 2024.
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      Matijevic, B., Liscic, B., Totten, G. E., & Canale, L. de C. F. (2017). Comparative measurement and evaluation of the quenching intensity of palm oil, canola oil and a conventional petroleum oil quenchant based on temperature gradient measurements. Materials Performance and Characterization, 6( 5), Paper MPC20170041 757-776. doi:10.1520/MPC20170041
    • NLM

      Matijevic B, Liscic B, Totten GE, Canale L de CF. Comparative measurement and evaluation of the quenching intensity of palm oil, canola oil and a conventional petroleum oil quenchant based on temperature gradient measurements [Internet]. Materials Performance and Characterization. 2017 ; 6( 5): Paper MPC20170041 757-776.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20170041
    • Vancouver

      Matijevic B, Liscic B, Totten GE, Canale L de CF. Comparative measurement and evaluation of the quenching intensity of palm oil, canola oil and a conventional petroleum oil quenchant based on temperature gradient measurements [Internet]. Materials Performance and Characterization. 2017 ; 6( 5): Paper MPC20170041 757-776.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20170041
  • Fonte: Materials Performance and Characterization. Unidades: EESC, IQSC

    Assuntos: DESGASTE CORROSIVO, ESTRUTURAS METÁLICAS

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      RÊGO, Galtiere Corrêa et al. Silica-based coatings for corrosion protection of AA7075 aluminum alloy. Materials Performance and Characterization, 2017Tradução . . Disponível em: https://doi.org/10.1520/MPC20170020. Acesso em: 18 abr. 2024.
    • APA

      Rêgo, G. C., Bandeira, R. M., Aureliano Junior, R. T., Lombardi, A. N., Casteletti, L. C., & Totten, G. E. (2017). Silica-based coatings for corrosion protection of AA7075 aluminum alloy. Materials Performance and Characterization. doi:10.1520/MPC20170020
    • NLM

      Rêgo GC, Bandeira RM, Aureliano Junior RT, Lombardi AN, Casteletti LC, Totten GE. Silica-based coatings for corrosion protection of AA7075 aluminum alloy [Internet]. Materials Performance and Characterization. 2017 ;[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20170020
    • Vancouver

      Rêgo GC, Bandeira RM, Aureliano Junior RT, Lombardi AN, Casteletti LC, Totten GE. Silica-based coatings for corrosion protection of AA7075 aluminum alloy [Internet]. Materials Performance and Characterization. 2017 ;[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20170020
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: DESGASTE DOS MATERIAIS, REVESTIMENTOS

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      MARIANI, Fábio Edson et al. Wear behavior of a borided nickel-based self-fluxing thermal spray coating. Materials Performance and Characterization, v. 5, n. 4, p. 414-422, 2016Tradução . . Disponível em: https://doi.org/10.1520/MPC20150064. Acesso em: 18 abr. 2024.
    • APA

      Mariani, F. E., Rêgo, G. C., Lombardi Neto, A., Totten, G. E., & Casteletti, L. C. (2016). Wear behavior of a borided nickel-based self-fluxing thermal spray coating. Materials Performance and Characterization, 5( 4), 414-422. doi:10.1520/MPC20150064
    • NLM

      Mariani FE, Rêgo GC, Lombardi Neto A, Totten GE, Casteletti LC. Wear behavior of a borided nickel-based self-fluxing thermal spray coating [Internet]. Materials Performance and Characterization. 2016 ; 5( 4): 414-422.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150064
    • Vancouver

      Mariani FE, Rêgo GC, Lombardi Neto A, Totten GE, Casteletti LC. Wear behavior of a borided nickel-based self-fluxing thermal spray coating [Internet]. Materials Performance and Characterization. 2016 ; 5( 4): 414-422.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150064
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: AÇO INOXIDÁVEL, TRATAMENTO TÉRMICO

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      MARIANI, Fábio Edson et al. Heat treatment of precipitation-hardening stainless steels alloyed with niobium. Materials Performance and Characterization, v. 5, n. 1, p. 38-46, 2016Tradução . . Disponível em: https://doi.org/10.1520/MPC20150039. Acesso em: 18 abr. 2024.
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      Mariani, F. E., Takeya, G. S., Casteletti, L. C., Lombardi Neto, A., & Totten, G. E. (2016). Heat treatment of precipitation-hardening stainless steels alloyed with niobium. Materials Performance and Characterization, 5( 1), 38-46. doi:10.1520/MPC20150039
    • NLM

      Mariani FE, Takeya GS, Casteletti LC, Lombardi Neto A, Totten GE. Heat treatment of precipitation-hardening stainless steels alloyed with niobium [Internet]. Materials Performance and Characterization. 2016 ; 5( 1): 38-46.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150039
    • Vancouver

      Mariani FE, Takeya GS, Casteletti LC, Lombardi Neto A, Totten GE. Heat treatment of precipitation-hardening stainless steels alloyed with niobium [Internet]. Materials Performance and Characterization. 2016 ; 5( 1): 38-46.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150039
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: AÇO FERRAMENTA, DESGASTE DOS MATERIAIS

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      PEREIRA, Ricardo Gomes et al. Characterization of layers produced by boriding and boriding-PVD on AISI D2 tool steel. Materials Performance and Characterization, v. 5, n. 4, p. 406-413, 2016Tradução . . Disponível em: https://doi.org/10.1520/MPC20150067. Acesso em: 18 abr. 2024.
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      Pereira, R. G., Mariani, F. E., Lombardi Neto, A., Totten, G. E., & Casteletti, L. C. (2016). Characterization of layers produced by boriding and boriding-PVD on AISI D2 tool steel. Materials Performance and Characterization, 5( 4), 406-413. doi:10.1520/MPC20150067
    • NLM

      Pereira RG, Mariani FE, Lombardi Neto A, Totten GE, Casteletti LC. Characterization of layers produced by boriding and boriding-PVD on AISI D2 tool steel [Internet]. Materials Performance and Characterization. 2016 ; 5( 4): 406-413.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150067
    • Vancouver

      Pereira RG, Mariani FE, Lombardi Neto A, Totten GE, Casteletti LC. Characterization of layers produced by boriding and boriding-PVD on AISI D2 tool steel [Internet]. Materials Performance and Characterization. 2016 ; 5( 4): 406-413.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150067
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: AÇO INOXIDÁVEL AUSTENÍTICO, BAIXA TEMPERATURA

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      FERNANDES, F. A. P. e CASTELETTI, Luiz Carlos e GALLEGO, J. Low temperature plasma nitriding and nitrocarburising of a superaustenitic stainless steel. Materials Performance and Characterization, v. 5, n. 5, p. 664-674, 2016Tradução . . Disponível em: https://doi.org/10.1520/MPC20160048. Acesso em: 18 abr. 2024.
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      Fernandes, F. A. P., Casteletti, L. C., & Gallego, J. (2016). Low temperature plasma nitriding and nitrocarburising of a superaustenitic stainless steel. Materials Performance and Characterization, 5( 5), 664-674. doi:10.1520/MPC20160048
    • NLM

      Fernandes FAP, Casteletti LC, Gallego J. Low temperature plasma nitriding and nitrocarburising of a superaustenitic stainless steel [Internet]. Materials Performance and Characterization. 2016 ; 5( 5): 664-674.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160048
    • Vancouver

      Fernandes FAP, Casteletti LC, Gallego J. Low temperature plasma nitriding and nitrocarburising of a superaustenitic stainless steel [Internet]. Materials Performance and Characterization. 2016 ; 5( 5): 664-674.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20160048
  • Fonte: Materials Performance and Characterization. Unidade: EESC

    Assuntos: TRATAMENTO TÉRMICO, TENSÃO DOS MATERIAIS, MATERIAIS

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      VATAVUK, Jan et al. Comparative impact behavior of high-C steel after conventional quenching, tempering, and austempering. Materials Performance and Characterization, v. 5, n. 1, p. 220-231, 2016Tradução . . Disponível em: https://doi.org/10.1520/MPC20150042. Acesso em: 18 abr. 2024.
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      Vatavuk, J., Totten, G. E., Nucci, J. E., Albano, L. L. M., & Canale, L. de C. F. (2016). Comparative impact behavior of high-C steel after conventional quenching, tempering, and austempering. Materials Performance and Characterization, 5( 1), 220-231. doi:10.1520/MPC20150042
    • NLM

      Vatavuk J, Totten GE, Nucci JE, Albano LLM, Canale L de CF. Comparative impact behavior of high-C steel after conventional quenching, tempering, and austempering [Internet]. Materials Performance and Characterization. 2016 ; 5( 1): 220-231.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150042
    • Vancouver

      Vatavuk J, Totten GE, Nucci JE, Albano LLM, Canale L de CF. Comparative impact behavior of high-C steel after conventional quenching, tempering, and austempering [Internet]. Materials Performance and Characterization. 2016 ; 5( 1): 220-231.[citado 2024 abr. 18 ] Available from: https://doi.org/10.1520/MPC20150042

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