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鈮對噴射成形M3:2型高速鋼組織和性能的影響

Effect of niobium on the microstructure and properties of spray-formed M3:2 high speed steel

  • 摘要: 采用噴射成形工藝制備了含鈮和不含鈮M3:2型高速鋼,然后進行鍛造加工.利用掃描電子顯微鏡、X射線能譜儀、X射線衍射儀等研究了鈮對噴射成形M3:2型高速鋼組織和性能的影響.鈮的加入細化了沉積態的組織,減小了M2C共晶碳化物尺寸,而對M2C的成分影響不明顯.沉積態中MC碳化物的數量隨鈮含量提高而增多,且其成分變化顯著.鈮的加入可以提高噴射成形M3:2型高速鋼的抗回火軟化性和二次硬化能力.但是,當鈮質量分數為1%時,組織中形成數量較多且難以破碎的以鈮為主的塊狀MC碳化物,導致鋼的彎曲強度和沖擊韌性下降.鈮質量分數為0.5%的噴射成形M3:2型高速鋼可以獲得最佳的硬度、彎曲強度和沖擊韌性.

     

    Abstract: AISI M3:2 high speed steels with or without niobium addition were prepared via spray forming, then subjected to forging processes. The effects of Nb on the microstructure and properties of the high speed steels were investigated by scanning electron microscopy, energy dispersive spectroscopy and X-ray diffraction. It is found that Nb addition can refine the microstructure of the as-deposited steels and decrease the size of M2C eutectic carbides. The amount of MC carbides in the as-deposited steels increases with increasing Nb content. The tempering resistance and second hardening ability of the high speed steel are improved by Nb addition. With a 1% Nb addition, lots of bulk Nb-rich primary MC carbides can form, which becomes the main cause of the reduction in bending strength and impact toughness of the high speed steel. However, the best mechanical properties can be achieved in the presence of 0.5% Nb.

     

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