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Vacancy-type defects study on ultra-fine grained aluminium processed by severe plastic deformation

机译:塑性变形严重的超细晶粒铝空位缺陷研究

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摘要

Vacancy-type defects play an important role in the metal materials deformed by severe plastic deformation (SPD). The present work use positron annihilation lifetime spectroscopy (PALS) to test the vacancy-type defects in aluminium alloys processed by equal channel angular pressing (ECAP) and accumulative roll bonding (ARB). ECAP at room temperature (RT-ECAP) and cryogenic temperature (CT-ECAP) was conducted to AA1050 andARB with 200 °C pre-heating was conducted to AA1050 and AA6061 to produce laminated AA1050 sheets,AA6061 sheets and AA1050/AA6061 composites. High fraction of vacancy-type defects were detected in allthe deformed samples. Vacancies associated with dislocations and bulk mono-vacancies have been identifiedin RT-ECAP deformed samples. Three types of vacancy-type defects, vacancies associated with dislocations,bulk mono-vacancies and bulk di-vacancies, have been identified in the CT-ECAP processed samples. TheARB process is more efficient in grain refinement and strengthening. However, the accumulation of vacancytypedefects in ARB deformation seems less efficient. Vacancies associated with dislocations are the majorvacancy-type defects for ARB processed AA1050 sheets but there exist some bulk mono-vacancies. However,most of the vacancy-type defects in the ARB processed AA6061 are vacancies associated with dislocations.A very small fraction of bulk mono-vacancies can be extracted but it is so small that it can be neglected. Thelifetimes of ARB processed AA1050/AA6061 composites are generally in between the values of AA1050 sheetsand AA6061 sheets. Voids were not detected in neither of the samples.
机译:空位型缺陷在因严重塑性变形(SPD)而变形的金属材料中起着重要作用。本工作使用正电子an没寿命谱(PALS)来测试通过等通道角挤压(ECAP)和累积辊压键合(ARB)处理的铝合金中的空位型缺陷。将室温下的ECAP(RT-ECAP)和低温(CT-ECAP)导入AA1050,并将ARB加热至200°C进行AA1050和AA6061,以生产层压的AA1050片,AA6061片和AA1050 / AA6061复合材料。在所有变形样品中都检测到高比例的空位型缺陷。在RT-ECAP变形样品中已确定了与位错和大量单空位相关的空位。在CT-ECAP处理过的样品中已鉴定出三种类型的空位缺陷,即与位错相关的空位,大量的单空位和大量的双空位。 ARB工艺在晶粒细化和强化方面效率更高。但是,空位类型缺陷在ARB变形中的积累似乎效率较低。与位错相关的空位是ARB处理的AA1050板材的主要空位类型缺陷,但存在一些大的单空位。然而,ARB处理后的AA6061中的大多数空位类型缺陷都是与位错相关的空位。可以提取很小一部分的整体单空位,但它很小,可以忽略不计。 ARB处理的AA1050 / AA6061复合材料的使用寿命通常在AA1050片和AA6061片之间。在两个样品中均未检测到空隙。

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