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  • 學位論文

鉭添加對於Fe-30Mn-6Si-5Cr形狀記憶合金之效應

Effects of Tantalum Addition on Fe-30Mn-6Si-5Cr Shape Memory Alloys

指導教授 : 林新智

摘要


Fe-Mn-Si-Cr形狀記憶合金具有良好的加工成形性、良好的形狀記憶效應、以及相對低廉的單位成本。除此之外,Fe-Mn-Si-Cr合金只具有單向記憶效應,一旦經過加熱回復形狀一次後,形狀就不會再隨溫度變化而改變。因此Fe-Mn-Si-Cr合金對於大尺度、只需要一次性變形的機構應用來說,是相當理想的材料。工業上應用的實例如連接管路用的套筒元件、連接軌道的魚尾板、以及鉚釘。本研究藉由添加0.1wt%以及1.0wt%的鉭元素於Fe-30Mn-6Si-5Cr合金中,搭配2小時500到800℃的時效處理,來改善其形狀記憶效應。其中添加1.0wt%鉭並經過2小時700℃時效處理後的合金,與未經添加與熱處理的合金相比,有最高的形狀回復率,其增加量達16%。經過時校處理後,在γ基地發現有TaC與χ相兩種不同的第二相顆粒,在不同的鉭添加與時效處理溫度下,這些析出物的大小與分佈也隨之不同。本研究發現,鉭添加對於改善形狀記憶效應的機制有以下數種:固溶強化與析出第二相強化 γ奧氏體母相、γ奧氏體母相的晶粒細化、析出物在γ晶粒內對於不同方向ε麻田散鐵成長的區隔效應、以及增加γ母相內的疊差機率。

並列摘要


Fe-Mn-Si-Cr based shape memory alloys (SMAs) have desirable formability, moderate shape memory effect (SME) and low cost. This makes ferrous SMAs highly potential in large-scaled applications such as pipe coupling, rail fish plates, and other smart construction methods. Also, Fe-Mn-Si-Cr alloys only have one-way shape memory effect, which is ideal for applications that require only-one-time shape recovery as the fixed structure shape. In this study, the shape memory effect of Fe-30Mn-6Si-5Cr (in wt%) SMAs are improved by adding 0.1 wt% and 1.0 wt% Ta along with ageing treatment from 500 to 800℃ for 2 hours. 1.0 weight percent Ta addition followed by ageing at 700℃ for 2 hours increases recovery ratio up to 16 percent. Precipitate particles such as TaC and χ were found in the aged samples with different size and distribution in the γ matrix. Mechanisms of improving SME by Ta addition are proposed in the work: Solid solution and precipitation strengthening on the γ matrix, grain refining of γ parent phase, domain effect of precipitate particles, and increasing of stacking fault probability.

參考文獻


1. A. Sato, E. Chishima, K. Soma, and T. Mori, Shape Memory Effect in Gamma Reversible Epsilon Transformation in Fe-30mn-1si Alloy Single-Crystals. Acta Metallurgica, 1982. 30(6): p. 1177-1183.
4. L.C. Chang and T.A. Read, Plastic Deformation and Diffusionless Phase Changes in Metals - the Gold-Cadmium Beta-Phase. Transactions of the American Institute of Mining and Metallurgical Engineers, 1951. 191(1): p. 47-52.
5. L.M. Schetky, Shape-memory alloys. Scientific American, 1979. 241(Nov.): p. 74-82.
7. H.C. Lin, S.K. Wu, and M.T. Yeh, Damping Characteristics of TiNi Shape Memory Alloys. Metallurgical Transactions A, 1993. 24: p. 2189-2194.
8. T. Tadaki, K. Otsuka, and K. Shimizu, Shape memory alloys, in Annual Review of Materials Science1988. p. 25.

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