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Doctoral Thesis
DOI
https://doi.org/10.11606/T.85.2019.tde-07082019-110056
Document
Author
Full name
Edson Pereira Soares
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2019
Supervisor
Committee
Takiishi, Hidetoshi (President)
Casini, Julio César Serafim
Ett, Gerhard
Leal Neto, Ricardo Mendes
Venancio, Everaldo Carlos
Title in Portuguese
Efeito das substituições de elementos de liga na decrepitação por hidrogênio e tratamentos térmicos nas características físico-químicas das ligas de Ni-MH
Keywords in Portuguese
bateria Ni-MH
decrepitação por hidrogênio
ligas de armazenamento de hidrogênio
microestrutura
propriedades eletroquímicas
terras raras
Abstract in Portuguese
Neste trabalho, avaliou-se o efeito da substituição parcial do Ni pelos elementos Co, Cu e Sn, e do La e Mg pelo Pr em ligas do tipo AB5 para as ligas nominais La0,7Mg0,3Al0,3Mn0,4Cu0,5Ni3,8, La0,7Mg0,3Al0,3Mn0,4Co0,5Ni3,8 e La0,7Mg0,3Al0,3Mn0,4Sn0,5Ni3,8, La0,7Pr0,3Al0,3Mn0,4Co0,5Ni3,8, Pr0,7Mg0,3Al0,3Mn0,4Co0,5Ni3,8 sem e com tratamento térmico de 750° e 850°C por 9 e 16 horas. Estas ligas absorvedoras de hidrogênio foram utilizadas como material ativo em eletrodos negativos de baterias de Ni-HM. Avaliou-se a influência destas substituições e do tratamento térmico na microestrutura e nas propriedades eletroquímicas nas ligas. A substituição parcial do Ni pelo Co com o tratamento térmico de 750°C por 16 horas apresentou duas novas fases Al6Mn e PrCo13. Na substituição parcial do Ni pelo Sn formou a fase LaNi2Sn2 na liga. Utilizou-se caracterização de raios-X com refinamento de Rietveld para quantificar as fases em cada composição. Mediu-se a absorção de hidrogênio utilizando um Aparato Sieverts para obtenção das curvas PCT. Observou-se que as ligas La0,7Mg0,3Al0,3Mn0,4Co0,5Ni3,8 e La0,7Pr0,3Al0,3Mn0,4Co0,5Ni3,8 apresentaram as melhores capacidades de absorção de hidrogênio. Verificou-se o comportamento destas ligas na capacidade de descarga, estabilidade cíclica das baterias de Ni-HM. Comparando as ligas, a maior capacidade de descarga medida foi para a substituição parcial do Ni pelo Co, alcançando 406,1 mAh após o tratamento térmico de 850° C por 16 horas. A melhor capacidade de absorção obtida na analise de PCT, foi para a liga La0,7Pr0,3Al0,3Mn0,4Co0,5Ni3,8 com valor de H/M de 0,980. Também, foi avaliada uma correlação das propriedades eletroquímicas com a capacidade de absorção obtida na analise da curva PCT.
Title in English
Effect of replacement of alloying elements in decreptation by hydrogen and annealing treataments on physical-chemistry characteristcs Ni-MH alloys
Keywords in English
alloys structure
electrochemical properties
hydrogen decrepitation
hydrogen storage alloy
Ni-MH battery
rare earth based alloys
Abstract in English
In this work, it was evaluated the effect of the partial substitution of Ni by the elements Co, Cu and Sn and of the La and Mg by the Pr in type AB5 alloys to the nominal alloys La0,7Mg0,3Al0,3Mn0,4Cu0,5Ni3,8, La0,7Mg0,3Al0,3Mn0,4Co0,5Ni3,8, La0,7Mg0,3Al0,3Mn0,4Sn0,5Ni3,8, La0,7Pr0,3Al0,3Mn0,4Co0,5Ni3,8 and Pr0,7Mg0,3Al0,3Mn0,4Co0,5Ni3,8, as castting and with annealing treatment of 750 °C and 850 °C for 9 and 16 hours. These hydrogen-absorbing alloys were used as active material on negative electrodes of Ni-HM batteries. The influence of these substitutions and the annealing treatment on the microstructure and on the electrochemical properties in the alloys was evaluated. The partial substitution of Ni by Co with the annealing treatment of 750 °C for 16 hours presented two new phases Al6Mn and PrCo13. In the partial substitution of Ni by Sn formed the LaNi2Sn2 phase in the alloy. It was characterized by X-ray diffraction using Rietveld's refinement to quantify the phases in each composition. Hydrogen absorption was measured using the Sieverts apparatus to obtain the PCT curves. It was observed that the alloys La0,7Mg0,3Al0,3Mn0,4Co0,5Ni3,8 and La0,7Pr0,3Al0,3Mn0,4Co0,5Ni3,8, presented the best capacities of hydrogen absorption. The behavior of these alloys in the discharge capacity, the cyclic stability of the Ni-HM batteries, was verified. Comparing the alloys, the biggest discharge capacity measured was for the partial substitution of Ni by Co alloy, reaching 406.1 mAh after the annealing treatment of 850 °C for 16 hours. The finest absorption capacity obtained in the PCT analysis was for the La0,7Pr0,3Al0,3Mn0,4Co0,5Ni3,8 alloy with an H/M value of 0.980. Also, a correlation of the electrochemical properties with the absorption capacity obtained in the analysis of the PCT curve was evaluated.
 
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2019SoaresEfeito.pdf (14.79 Mbytes)
Publishing Date
2019-09-12
 
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