首页> 外文会议>International congress on applications of lasers electro-optics;ICALEO 2003;Laser materials processing conference;Laser microfabrication conference >Laser Surface Engineering for Improving Cavitation Erosion and Corrosion Resistance of Manganese Nickel Aluminium Bronze (P542)
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Laser Surface Engineering for Improving Cavitation Erosion and Corrosion Resistance of Manganese Nickel Aluminium Bronze (P542)

机译:改善锰镍铝青铜(P542)的气蚀和耐蚀性的激光表面工程

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Laser surface melting (LSM) of Manganese Nickel Aluminium Bronze (Cu-Mn-Al-Ni-Fe) to improve cavitation erosion and corrosion resistance was performed using a 2-kW continuous wave (CW) Nd-YAG laser. A modified layer with a single β-phase structure and with highly refined and homogenized grains was obtained. Under favorable laser processing conditions (Power = 1 kW; Scanning velocity = 35 mm/s; Spot diameter = 2 mm) the microhardness was increased by 2 times and the cavitation erosion resistance in 3.5 wt% NaCl solution was increased by 5.8 times. This was even higher than that of Nickel Aluminium Bronze (NAB). For as-received MAB, the SEM micrographs of the surface taken at an early stage of the cavitation erosion and general corrosion tests revealed that the iron/manganese-rich κI phase and the α/κI interface were initiation sites of damage. On the other hand, attack was much milder in the laser melted samples and started at the triple junctions of the grain boundaries. The corrosion current density in 3.5 wt% NaCl was also improved after laser surface melting, with a reduction from 9.54 μA/cm2 to 4.26 μA/cm2. The corrosion potential also shifted in the noble direction by about 80 mV. It could be concluded that the improvement in both cavitation erosion and corrosion resistance was in particular attributable to homogenization and refinement of the microstructure.
机译:使用2 kW连续波(CW)Nd-YAG激光器进行了锰镍铝青铜(Cu-Mn-Al-Ni-Fe)的激光表面熔化(LSM),以改善空蚀和耐蚀性。获得具有单β相结构并且具有高度细化和均质的晶粒的改性层。在有利的激光加工条件下(功率= 1 kW;扫描速度= 35 mm / s;光斑直径= 2 mm),显微硬度提高了2倍,在3.5 wt%NaCl溶液中的抗气蚀性提高了5.8倍。这甚至比镍铝青铜(NAB)的还要高。对于已接收的MAB,在空化腐蚀早期进行的表面SEM显微照片和一般腐蚀测试表明,富铁/锰的κI相和α/κI界面是破坏的起始点。另一方面,在激光熔化的样品中,侵袭要轻得多,并且始于晶界的三重结。激光表面熔化后,在3.5 wt%NaCl中的腐蚀电流密度也得到了改善,从9.54μA/ cm2降低到4.26μA/ cm2。腐蚀电位也沿贵族方向移动了约80 mV。可以得出结论,气蚀和耐蚀性的提高尤其归因于微观结构的均质化和细化。

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