Effect of tempering temperature on the microstructure and mechanical properties of 30MnB5 hot stamping steel after quenching
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摘要: 將30MnB5熱成形鋼進行淬火和回火處理,利用掃描電鏡、透射電鏡、能譜儀和拉伸性能檢測等方法研究了不同回火溫度后的顯微組織和力學性能變化.經200℃保溫2 min回火后熱成形鋼的綜合力學性能最佳,抗拉強度為1774 MPa,總伸長率為8%,強塑積達14 GPa·%以上,該性能滿足熱成形后作為汽車結構件的使用要求;并且隨著回火溫度的升高,力學性能呈非單調性變化.200℃低溫回火后,主要為板條馬氏體和ε碳化物,位錯密度略有降低,析出的ε碳化物粒子呈針狀分布在馬氏體板條內,長度方向大小為100 nm左右,并與位錯發生釘扎作用.隨著回火溫度的升高,板條馬氏體發生回復和再結晶,板條邊界逐漸模糊,并向等軸狀鐵素體轉變,位錯密度顯著降低,ε碳化物逐漸向低能態的近球形滲碳體轉變并粗化至200 nm左右,對位錯的釘扎作用也隨之減弱.Abstract: 30MnB5 hot stamping steel was quenched and tempered at different temperatures. The effects of tem-pering temperature on the microstructure and mechanical properties were investigated by scanning electron microscopy, transmission electron microscopy, energy dispersive spectroscopy, and tensile testing. The best mechanical properties were obtained after the steel being tempered at 200℃ for 2 min, which are the tensile strength of 1774 MPa, the total elongation of 8%, and the product of tensile strength and elongation more than 14 GPa.%. It can meet the require-ment for automotive structural parts after hot stamping. The mechanical properties non-monotonically change with tempering temperature. The microstructure of the steel tempered at 200℃ is lath martensite and ε-carbides, and the dislocation density decreases slightly. The ε-carbide particles with the size of about 100 nm in length are needle-like distributed in martensite laths and pinned with dislocations. When the tempering temperature increases, the recovery and recrystallization of lath martensite occur, the lath boundary becomes more and more obscure, and the dislocation density decreases sharply. Furthermore, some of the lath martensite transforms into equiaxed ferrite, and the ε-carbides gradually convert into low-boundary-layer-energy spheroidal cementite, which is coarsened to about 200 nm. Owing to these, the interaction between carbides and dislocations largely weakens.
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Key words:
- hot stamping steel /
- tempering /
- carbides /
- microstructure /
- mechanical properties
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