Low-temperature toughness characteristics of F40 hull structure steel
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摘要: 通過OM、SEM、TEM、EBSD等手段研究了F40級船板的組織特征以及組織結構對低溫韌性的影響,并探討了低溫韌性的機理.結果表明:基體組織為針狀鐵素體+準多邊形鐵素體的復合組織,該復合組織具有較高的強度和優異的低溫韌性;兩種組織之間的界面以及針狀鐵素體條束之間的界面均為大角晶界,能夠對裂紋的擴展起到有效的阻礙作用,增加裂紋擴展功,使得F40級船板具有良好的低溫韌性,-80℃的沖擊功都可以達到138J以上.Abstract: The microstructure characteristics of F40 type hull structure steel and the effect of microstructure on its low-temperature toughness were studied by OM, SEM, TEM, and EBSD. The mechanism of low-temperature toughness was also analyzed. It is shown that the micro-alloyed steel possesses high strength and excellent low-temperature toughness due to a mixed microstructure of acicular ferrite and quasi-polygonal ferrite. The grain boundaries between the two microstructures and the grain boundaries between acicular ferrites are the large boundary, which is pronounced to inhibit cleavage crack propagation and improve the crack propagation energy. The mixed microstructure shows the capability to attain such an excellent low-temperature toughness that the Charpy-V impact energy can reach 138 J at -80℃.
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