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Formation and Growth Mechanism of Globular Crystal of ADC12 Aluminum Alloy by Near-Liquidus Squeeze Casting

机译:近液挤压铸造ADC12铝合金球状晶体的形成与生长机理

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摘要

A new method of near-liquidus squeeze casting (NLSC), which obtains globular crystal, has been developed. The research focuses on the formation and growth mechanism of globular crystals of ADC12 alloy by NLSC. Globular crystal transforms into rosette crystal, average grain size (AGS) increases, and average globular coefficient (ASC) decreases with the rise of pouring temperature. But AGS decreases to 17.8 μm directly and ASC increases directly to 0.46 when the pouring temperature is 650℃. NLSC globular crystal of different sizes (AGS is 22.5 μm; ASC is 0.73) distributes uniformly in matrix. Heterogeneous nucleation grows on the solid particles of metal walls and fusing grains. The formation and growth modes of globular crystal include normal grain growth, annexation of small globular crystal, and fracture and spherulization of rosette crystal. NLSC globular crystal critical radius is inversely proportional to degree of supercooling. The pressure has very little influence on critical radius by increase of melting point and thermal conductivity, but it affects critical radius greatly by changing the degree of supercooling. NLSC globular crystal has no enough time to exceed the critical radius.
机译:已开发出一种新的获得球状晶体的近液相挤压铸造法(NLSC)。 NLSC研究的重点是ADC12合金球状晶体的形成和生长机理。随着浇注温度的升高,球状晶体转变为玫瑰状晶体,平均晶粒度(AGS)增加,平均球状系数(ASC)降低。但浇注温度为650℃时,AGS直接降低至17.8μm,ASC直接升高至0.46。大小不同的NLSC球状晶体(AGS为22.5μm; ASC为0.73)均匀分布在基质中。异相形核生长在金属壁和熔融晶粒的固体颗粒上。球状晶体的形成和生长方式包括正常晶粒生长,小球状晶体的吞并,玫瑰花状晶体的断裂和球化。 NLSC球状晶体的临界半径与过冷度成反比。压力通过增加熔点和导热系数对临界半径的影响很小,但通过改变过冷度会极大地影响临界半径。 NLSC球状晶体没有足够的时间超过临界半径。

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