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首页> 外文期刊>Journal of Materials Processing Technology >Effect of gate shape and forging temperature on the mechanical properties in the injection forging process of semi-solid aluminum material
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Effect of gate shape and forging temperature on the mechanical properties in the injection forging process of semi-solid aluminum material

机译:浇口形状和锻造温度对半固态铝材料注射锻造过程中力学性能的影响

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摘要

Semi-solid materials (SSM) were fabricated under two fabrication conditions by mechanical stirring.Re-heating conditions of SSM with the two fabrication methods (mechanical and electro-magneticstirring) were studied with two holding times and three re-heating temperatures. SSM forging wasconducted with three different die temperatures (T{sub}(die) = 250, 300 and 350℃) and two gatetypes (straight gate and orifice gate). The mechanical properties of semi-solid forging componentscan be predicted indirectly, from the microstructure of SSM fabricated at a cooling rate of 0.0094℃s{sup}-1 and a stirring speed of 1000 rpm. The initial microstructure of the SSM affects themicrostructure of the SSM in the process of re-heating, a smaller initial microstructure providing amore globular microstructure after re-heating. The microstructure of SSM held for 15 min is superiorto that of SSM held for 20 min in terms of globulization and size. The effect of die temperature is notserious to fill a die cavity in straight gate die. The mechanical properties of forging componentsfabricated at the orifice gate die are superior to those of components fabricated at the straight gate,e.g. an ultimate strength of U =320 MPa for the orifice gate compared to an ultimate strength of U=250 MPa for the straight gate.
机译:通过机械搅拌在两个制造条件下制造半固态材料(SSM)。研究了两种制造方法(机械搅拌和电磁搅拌)对SSM的再加热条件,两个保持时间和三个再加热温度。采用三种不同的模具温度(T {sub}(模具)分别为250、300和350℃)和两种浇口类型(直浇口和孔口浇口)进行SSM锻造。半固态锻件的力学性能可以通过在0.0094℃s {sup} -1的冷却速度和1000 rpm的搅拌速度下制造的SSM的微观结构来间接预测。 SSM的初始微观结构会在重新加热过程中影响SSM的微观结构,较小的初始微观结构在重新加热后会提供更多的球状微观结构。在球化和尺寸方面,保持15分钟的SSM的微观结构优于保持20分钟的SSM的微观结构。模具温度对填充直浇口模具中的模具腔影响不大。在孔板浇口模头上制造的锻造部件的机械性能优于在直浇口模头上制造的部件的机械性能。孔板浇口的极限强度为U = 320 MPa,而直板浇口的极限强度为U = 250 MPa。

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