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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Foaming of A1050 aluminum precursor by generated frictional heat during friction stir processing of steel plate
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Foaming of A1050 aluminum precursor by generated frictional heat during friction stir processing of steel plate

机译:钢板摩擦搅拌加工中产生摩擦热量的A1050铝前体的发泡

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摘要

The foaming of an A1050 precursor was performed using only the frictional heat generated during the traversing of a friction stir processing (FSP) tool on a steel plate. In this study, the experimental conditions during FSP were optimized for relatively high melting point A1050 precursor. For tool traversing speeds of 10 mm/min and 20 mm/min, the A1050 precursor was successfully foamed, where the precursor gradually foamed during the traversing of the tool. However, too much heat was generated, which resulted in excess heat input, in the case of tool traversing speed of 10 mm/min, whereas there was less excess heat input in the case of tool traversing speed of 20 mm/min. Large pores were observed owing to the coalescence of pores, which may have induced the release of gas from the top surface of the Al foam during foaming, decreasing the porosity of the obtained Al foam. In the case of tool traversing speed of 30 mm/min, the latter half of the Al foam was sufficiently foamed and fine pores were observed, although the first half of the precursor was not foamed. Moreover, it was indicated that a uniform temperature distribution during FSP is necessary to obtain uniform pore structures, which may be achieved by gradually increasing the tool traversing speed. The use of a steel plate with lower thermal conductivity was effective for foaming the precursor, which may introduce too much heat into the precursor with less heat diffusion.
机译:仅使用在钢板上横移摩擦搅拌处理(FSP)工具期间产生的摩擦热来进行A1050前体的发泡。在该研究中,针对相对高熔点A1050前体进行了FSP期间的实验条件。对于10mm / min和20mm / min的工具横向速度,A1050前体成功发泡,其中前体在横穿工具期间逐渐发泡。然而,产生太多的热量,导致过量的热输入,在刀具横向速度为10mm / min的情况下,在刀具横跨速度为20mm / min的情况下,在较少的过热输入。由于孔的聚结而观察到大孔,这可能在发泡过程中诱导从Al泡沫的顶表面释放气体,从而降低所获得的Al泡沫的孔隙率。在工具横跨速度为30mm / min的情况下,Al泡沫的后半部分是足够的发泡,观察到细孔,尽管前体的前半部没有发泡。此外,表明在FSP期间均匀的温度分布是必要的,以获得均匀的孔结构,这可以通过逐渐增加刀具的速度来实现。使用具有较低导热性的钢板可有效地发泡前体,这可能将过多的热量引入前体,其热扩散较少。

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