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首页> 外文期刊>Metals >Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process
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Microstructure of Semi-Solid Billets Produced by Electromagnetic Stirring and Behavior of Primary Particles during the Indirect Forming Process

机译:电磁搅拌产生的半固态钢坯的微观结构和间接成形过程中的初级粒子行为

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An A356 alloy semi-solid billet was fabricated using electromagnetic stirring. After inserting the semi-solid billet into an indirect die, a thin plate of 1.2 mm thickness was fabricated by applying compression. The microstructure of the semi-solid billets fabricated in various stirring conditions (solid fraction and stirring force) were analyzed. The deformation and behavior of the primary α-Al particles were analyzed for various parameters (solid fraction, die friction, compression rate, and compression pressure). In the stirred billets, a globular structure was dominant, while a dendrite structure was dominant in the unstirred billets. As the solid fraction decreased and the stirring current increased, the equivalent diameter and roundness of the primary α-Al particles decreased. The primary α-Al particle sizes were reduced as the compressing velocity increased, while a greater number of particles could move as the compressing pressure increased. As the path over which the motion occurred became smoother, the fluidity of the particles improved. Under compression, bonded primary α-Al particles became separated into individual particles again, as the bonds were broken. As wearing caused by friction and collisions between the particles during this motion occurred, the particle sizes were reduced, and the particle shapes become increasingly spheroid.
机译:使用电磁搅拌制造A356合金半固态坯料。将半固态坯料插入间接模具后,通过施加压力来制造1.2 mm厚度的薄板。分析了在各种搅拌条件(固含量和搅拌力)下制造的半固态坯料的微观结构。针对各种参数(固体分数,模头摩擦,压缩率和压缩压力)分析了初生α-Al颗粒的变形和行为。在搅拌的钢坯中,球状结构占主导,而未搅拌的钢坯中,枝晶结构占主导。随着固形分的减少和搅拌电流的增加,初级α-Al颗粒的当量直径和圆度降低。随着压缩速度的增加,初生α-Al颗粒尺寸减小,而随着压缩压力的增加,大量的颗粒会移动。随着运动发生的路径变得更平滑,颗粒的流动性得到了改善。在压缩下,键断裂时,键合的初生α-Al颗粒再次分离为单个颗粒。由于在该运动期间由于颗粒之间的摩擦和碰撞而引起磨损,所以颗粒尺寸减小,并且颗粒形状变得越来越球形。

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