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Fabrication and characteristics of porous NiTi shape memory alloy synthesized by microwave sintering

机译:微波烧结合成多孔NiTi形状记忆合金的制备及性能

摘要

Porous nickel titanium (NiTi) shape memory alloy (SMA) was successfully fabricated by microwave sintering method. This method allows formation of porous structures without using any pore-forming agents. Moreover, microwave sintering of NiTi SMA can be successfully performed at a relatively low sintering temperature of 850 °C and a short sintering time of 15. min. The pore characteristics, microstructure, phase transformation and stress-strain behavior of the porous NiTi SMA were investigated. The porous NiTi SMA exhibited porosity ratios from 27% to 48% and pore sizes range from 50 to 200 μm when using different sintering temperatures and holding times. The predominant B2 (NiTi) and B19′ (NiTi) phases were identified in the porous NiTi SMA. A multi-step phase transformation took place on heating and a two-step phase transformation took place on cooling of the porous NiTi SMA. The irrecoverable strains decreased with increasing sintering temperature, but the holding time had little effect on the stress-strain behavior at 60 °C.
机译:通过微波烧结成功地制备了多孔镍钛(NiTi)形状记忆合金(SMA)。该方法允许在不使用任何成孔剂的情况下形成多孔结构。此外,NiTi SMA的微波烧结可以在较低的850°C的烧结温度和15分钟的短烧结时间下成功进行。研究了多孔NiTi SMA的孔隙特性,微观结构,相变和应力应变行为。当使用不同的烧结温度和保持时间时,多孔NiTi SMA的孔隙率为27%至48%,孔径范围为50至200μm。在多孔NiTi SMA中鉴定出主要的B2(NiTi)和B19'(NiTi)相。多孔NiTi SMA加热时发生多步相变,冷却时发生两步相变。不可恢复的应变随着烧结温度的升高而降低,但保持时间对60°C时的应力应变行为影响很小。

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