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Damage Simulation of Pre-Forming V-Neck Plates with Variations in Material Type, Time and Temperature Using the Taguchi Method

机译:使用TAGUCHI方法具有材料类型,时间和温度的预成型V领板的损伤模拟

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摘要

In metal forming, damage can be caused by several factors: load on the workpiece, initial heating temperature, and temperature due to the friction between the die and the material for pre-forming. The metal forming process can be executed in 2 ways, namely by hot working and cold working. During these two types of mechanical working process, the metal undergoes plastic deformation. In hot working, the required deformation force is relatively low, and changes in mechanical properties are also insignificant. In cold working, a higher force is required, but the strength of the metal will increase significantly. The use of simulation has become increasingly widespread to predict and describe process mechanisms and optimize the pre-forming process. The study was conducted using a three-dimensional (3D) simulation to predict the effect of variations in time, material and temperature on the damage of pre-forming blocks. The simulation results showed that the greatest damage occurred after 0.006 s and at 25 °C to the specimen 1 (Aluminium 1xxx) with the highest damage value of 0.011833 which occurred. Specimen 7 (Aluminium 3xxx) had the lowest damage with the value of 0.011542 which occurred after 0.010 s and at 25 °C.
机译:在金属成型中,损坏可能是由几个因素引起的:工件上的负载,初始加热温度和温度导致的模具与用于预成形的材料之间的摩擦。金属成形过程可以以2种方式执行,即通过热工作和冷加工来执行。在这两种类型的机械加工过程中,金属经历塑性变形。在热工作中,所需的变形力相对较低,并且机械性能变化也是微不足道的。在冷的工作中,需要更高的力量,但金属的强度将显着增加。使用模拟已经越来越广泛地普遍普遍普遍,以预测和描述工艺机制并优化预成型过程。使用三维(3D)模拟进行该研究以预测时间,材料和温度变化对预成型块的损坏的影响。仿真结果表明,0.006秒和25℃以后的标本1(铝1xxx)后发生最大的损坏,损伤最高的损伤发生了0.011833的损伤。样品7(铝3xxx)的损伤最低,值为0.011542,在0.010秒和25℃后发生。

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