低碳錳鈮鋼控制軋制及軋后快冷的組織與性能
The Microstrucure and Properties of Low Carbon Niobium steels after Controlled-Rolling and Rapid cooling
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摘要: 本文研究了06Mn Nb鋼中Mn、Nb含量,加熱溫度、軋制規程、軋后冷卻及時效處理等工藝因素與軋后組織性能和斷裂行為的關系。降低加熱溫度,采用合適的軋制規程,軋后在780—600℃之間以17℃/秒冷速冷卻,礙到細小的針狀鐵素體晶粒,細小的M/A島及少量粒狀貝氏體組織的復合組織。提高Mn、Nb含量與加快軋后冷卻有相似的作用。這樣的組織比控制軋制后空冷的鐵素體與珠光體組織,具有更高的σY和好的低溫韌性。粒狀貝氏體的數量與貝氏體束的尺寸,與加熱溫度和總形量有很大關系,貝氏體的韌性決定于貝氏體束的大小,大的M/A島能誘發裂紋。針狀鐵素體晶柱尺寸,是決定鋼的屈服強度與低溫韌性的主要因素。Abstract: The relationship between the manganese and niobium contents, the proce ssing parameters (heating temperature, rolling schedual, cooling and aging after rolling), the microstructures, the mechanical properties and the fract-uve behalior of 06MnNb steels were investigated.By employing the procedure of lower heating temperature. optimizing rolling schedual and interrupted cooling with a cooling rate of 17℃ per second between 780°-600℃ a complex microstructure containing fine acicular ferrite and small amount of fine M/A inlands and granular bainite can be obtained.This complex microstructure is superior to ferrite pearlite structure is both yield strength and low temperatare toughness. The main factor defermining streugth and toughness-of steol is the mean diameter of acicular ferrite.The toughness of bainite dependsopon its parketsije.The amount and parket sije of gaunlar banite is affected by heating temperatare and amount of deetormation.
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