- Tytuł:
- Effect of annealing time for quenching CuAl7Fe5Ni5W2Si2 bronze on the microstructure and mechanical properties
- Autorzy:
- Pisarek, B. P.
- Powiązania:
- https://bibliotekanauki.pl/articles/382884.pdf
- Data publikacji:
- 2012
- Wydawca:
- Polska Akademia Nauk. Czytelnia Czasopism PAN
- Tematy:
-
innowacyjne technologie odlewnicze
innowacyjne materiały odlewnicze
wyżarzanie
hartowanie
właściwości mechaniczne
brąz Al-Fe-Ni-W-Si
innovative foundry technologies
innovative foundry material
annealing
quenching
microstructure
mechanical properties
Al-Fe-Ni-W-Si bronze - Opis:
- This paper presents the influence of annealing time 30, 60 and 120 min at 1000 C for quenching CuAl7Fe5Ni5W2Si2 bronze in 10% water solution of NaCl, on the microstructure and mechanical properties. The presented results concern the species newly developed aluminum-iron-nickel bronze, with additions W and Si. In order to determine changes in the microstructure of the hardened bronze metallographic studies were performed on cylindrical samples of diameter 10 mm, on the metallographic microscope with digital image analysis, X-ray phase analysis, EDX point with the digital recording on the computer. Specified percentage of the microstructure of martensite and bainite, participation of proeutectoid \alfa phase in the microstructure, grain size of former \beta phase, the amount of dissolved \kappa phase. It was found that in the microstructure of bronze in the cast state, there are a number of intermetallic phases of \kappa type. At interphase boundaries of primary intermetallic faceted precipitates, especially rich in tungsten (IM_W), nucleate and grow dendritic primary intermetallic [...] phases, with chemical composition similar to the type of Fe3Si iron silicide. Dissolved, during the heating, in the \beta phase are all the intermediate phase included in the microstructure, with the exception of primary intermetallic phases of tungsten and [...]. Prolongation of the isothermal annealing causes coagulation and coalescence of primary phases. In microstructure of the bronze after quenching obtained the \alfa phase precipitation on the grain boundary of secondary \beta phase, coarse bainite and martensite, for all annealing times. With the change of annealing time are changed the relative proportions of individual phases or their systems, in the microstructure. In the microstructure of bronze, hold at temperature of 1000 C for 60 min, after quenching martensitic microstructure was obtained with the primary phases, and the least amount of bainite.
- Źródło:
-
Archives of Foundry Engineering; 2012, 12, 2; 187-204
1897-3310
2299-2944 - Pojawia się w:
- Archives of Foundry Engineering
- Dostawca treści:
- Biblioteka Nauki