首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Hydrostatic tube cyclic expansion extrusion (HTCEE) as a new severe plastic deformation method for producing long nanostructured tubes
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Hydrostatic tube cyclic expansion extrusion (HTCEE) as a new severe plastic deformation method for producing long nanostructured tubes

机译:静液管环状膨胀挤出(HTCEE)作为一种生产长纳米结构管的重大塑性变形方法

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In the current study, hydrostatic tube cyclic expansion extrusion (HTCEE) was proposed as a new severe plastic deformation (SPD) method for producing relatively long and large ultrafine-grained (UFG) tubes. In this process, a moving mandrel placed inside the hollow tube sample and also using high fluid pressure are the cores of this technology. To investigate the applicability of the process, commercially pure copper tube was processed and mechanical properties and microstructure were examined. It was shown that the grain size was reduced to below 150 nm after the only a single pass of HTCEE from the initial value of 65 mu m. The results demonstrated that both yield and ultimate strengths were increased to 270 MPa and 345 MPa after one pass of HTCEE from the initial value of 75 MPa and 207 MPa respectively while the elongation was reduced to 41% from 55%. It is realized that the remarkable increase in the strength is obtained with a very low ductility loss. Microhardness was also enhanced to about 133 Hv from the initial value of 59 HV after HTCEE process while exhibiting excellent hardness homogeneity. Reducing the total load, increasing the processable tube length and interestingly achieving simultaneous strength and ductility are important advantages of HTCEE. This method seems to be very interesting and very promising for the future industrial application. (C) 2019 Elsevier B.V. All rights reserved.
机译:在目前的研究中,提出了静液管环状膨胀挤出(HTCEE)作为一种新的严重塑性变形(SPD)方法,用于生产相对长而大的超细晶粒(UFG)管。在该过程中,放置在中空管样品内的移动心轴以及使用高流体压力是该技术的核心。为了研究该方法的适用性,处理市售纯铜管,检查机械性能和微观结构。结果表明,在初始值为65μm的初始值的单一通过后,晶粒尺寸降至150nm以下。结果表明,在HTCEE从初始值为75MPa和207MPa的初始值,伸长率降至55%的延伸减少到41%后,产量和极限强度均增加到270MPa和345MPa。实现了具有非常低的延展性损失的强度显着增加。在HTCEE过程后,微硬度也从HTCEE过程后的初始值增加到约133HV,同时表现出优异的硬度均匀性。减少总负荷,增加可加工管长度,有趣地实现同时强度和延展性是HTCEE的重要优势。这种方法似乎对未来的工业应用非常有趣,非常有前途。 (c)2019 Elsevier B.v.保留所有权利。

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