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Repetitive forging (RF) using inclined punches as a new bulk severe plastic deformation method

机译:使用倾斜冲头的重复锻造(RF)作为一种新的整体严重塑性变形方法

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摘要

A new bulk severe plastic deformation method based on repetitive forging (RF) using inclined punches is proposed. This process consists of two half cycles. In the first half cycle, a square cross section deforms to parallelogram by forging with two inclined punches, and the parallelogram cross section is forged back to square using two flat punches in the second half cycle. This method was applied to commercially pure copper and significant grain refinement was achieved after four passes of RF. The results showed that significant improvement in the mechanical properties was obtained. Notable increase of yield and ultimate strengths corresponding to 358 MPa and 381 MPa after four passes of RF from the initial values of 121 MPa and 230.5 MPa is detectable. Microhardness increases to about 100 Hv after four passes of RF from the initial value of 53 Hv. Finite element (FE) results illustrate that RF is able to impose extremely high plastic strains to the materials. In the RF process, the processed samples have the same dimensions and geometry as those of the initial sample without any waste material and there is no need for back pressure.
机译:提出了一种新的基于倾斜冲头的重复锻造(RF)的大块塑性变形方法。该过程包括两个半周期。在前半个循环中,通过使用两个倾斜的冲头进行锻造,将正方形横截面变形为平行四边形,在下半个周期中,使用两个平冲头将平行四边形的横截面锻造为正方形。将该方法应用于商业纯铜,经过四次RF加工后,晶粒明显细化。结果表明获得了机械性能的显着改善。从121 MPa和230.5 MPa的初始值开始经过四次RF后,相当于358 MPa和381 MPa的屈服强度和极限强度显着增加。在经过四次射频照射后,显微硬度从初始值53 Hv增加到大约100 Hv。有限元(FE)结果表明,RF能够对材料施加极高的塑性应变。在射频过程中,处理后的样品具有与初始样品相同的尺寸和几何形状,而没有任何浪费的材料,并且不需要背压。

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