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一種新型的含鎳耐蝕高硅鐵基合金

A new type of corrosion resistance high silicon iron-base alloy with Ni

  • 摘要: 借助光學顯微鏡、掃描電鏡、能譜分析、X衍射分析和力學性能檢測設備及腐蝕性能檢測儀器等手段,結合奧氏體不銹鋼的設計思路以及Fe-Ni-Si和Fe-Mn-Si三元相圖,分析了普通高硅鐵基合金的性能和組織,設計并研究了含鎳或錳奧氏體高硅鐵基合金的組織、力學性能和耐蝕性能.結果表明:普通高硅鐵基合金的基體均為鐵素體,主要是長程有序的Fe3Si相,這種相有低溫脆性現象同時是合金產生硅脆的根本原因.在合金中加入18%的鎳,能使合金中出現奧氏體相,其沖擊韌性達到5.52J·cm-2,比普通高硅鐵基合金提高7倍以上,腐蝕率和普通高硅鐵基合金相當.

     

    Abstract: An austenitic high silicon iron-base alloy with Ni or Mn was devised based on the study on the mechanical properties and microstructure of a general high silicon iron-base alloy. The new austenitic high silicon iron-base alloy with Ni or Mn was designed by means of austenitic stainless steel and the three-element phase graph of Fe-Ni-Si or Fe-Mn-Si. The microstructure, mechanical properties and corrosion resistance of the alloy were investigated by optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD), test equipment of mechanical properties, and test instrument of corrosion. The results show that the base structure of a general high silicon iron-base alloy is high silicon ferrite, which is mainly the long-range ordered Fe3Si. Fe3Si has low-temperature brittleness and is the main reason for silicon brittleness. The addition of 18% Ni produces austenite and causes an impact toughness up to 5.52 J·cm-2, which is 7 times higher than a general high silicon iron-base alloy, while the corrosion resistance is equivalent with a general high silicon iron-base alloy.

     

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