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1.
 为了实现低硅含铝热轧TRIP钢的工业应用,以低硅含铝热轧TRIP钢为研究对象,采用扫描电子显微镜、透射电子显微镜、拉伸试验和X射线衍射等试验方法,研究了不同等温时间对试验钢显微组织和力学性能的影响。结果表明,试验钢的显微组织主要由多边形铁素体、贝氏体铁素体和残余奥氏体组成,随着等温时间的增加,板条贝氏体的体积分数升高,粒状贝氏体的体积分数降低;当等温时间为20 min时,试验钢的综合力学性能最佳,抗拉强度为732.25 MPa,断后伸长率为36%,强塑积为26.36 GPa·%;残余奥氏体的体积分数和碳含量先升高后降低,等温时间为20 min时试验钢表现出较强的加工硬化行为。  相似文献   

2.
武会宾  巨彪  车英建 《工程科学学报》2016,38(12):1741-1746
通过热膨胀试验研究实验钢的等温转变动力学,采用盐浴等温淬火工艺制备超细贝氏体组织,利用扫描电镜、透射电镜和X射线衍射仪定量分析工艺参数对微观组织结构的影响.结果显示:实验钢室温组织由大量超细板条状贝氏体铁素体和板条间分布的薄膜状奥氏体的复相组织构成,210℃等温淬火得到的贝氏体板条间距细化到约60 nm,硬度约为HBW610;实验钢的最终组织特征取决于发生贝氏体转变的等温温度和等温时间,等温温度越低时贝氏体转变完成需要的等温时间越长.  相似文献   

3.
等温淬火时间对贝氏体球墨铸铁组织的影响   总被引:2,自引:0,他引:2  
本文研究了等温时间对球铁上贝氏体组织的影响,确定了等温时间和上贝氏体的关系,测定了相应组织的硬度,为进一步制定等温液火制度提供了可靠依据。  相似文献   

4.
利用金相显微镜和X射线衍射方法研究了0.11C-1.23Si-1.65Mn冷轧TRIP钢等温淬火温度对组织和力学性能的影响.结果表明,实验钢在840℃×180 s退火 420℃× 240 s等温处理后可得到6.55%的残余奥氏体,此时可获得较佳的相变诱发塑性和较好的强韧性配合,其强塑积可达到2.28×104MPa·%,提高或降低等温温度都会降低强塑积.在840℃退火,适当延长退火时间,可提高残余奥氏体体积分数及碳含量,有助于提高材料的综合性能.  相似文献   

5.
6.
试验低碳贝氏体钢(/%:0.08C,0.11~0.13Si,1.10~1.20Mn,0.008~0.009P,0.002S,0.21~0.23Ni,0.020~0.021Ti,0.003~0.004Nb,0~0.0010B,0.000 7~0.0008O,0.0031~0.0033N)由50kg真空感应炉熔炼,轧成45mm钢板,并经930℃淬火,610℃回火。研究了0.0010%硼对780 MPa低碳贝氏体钢45mm板组织和力学性能的影响。结果表明,硼可显著提高试验钢的淬透性,不含硼试验钢淬火后得到粒状贝氏体,0.0010%硼试验钢淬火后得到板条贝氏体。硼明显改善试验低碳贝氏体钢的力学性能,含0.0010%硼试验钢淬、回火后的抗拉强度834MPa和屈服强度771MPa远高于不含硼试验钢的抗拉强度702MPa和屈服强度591MPa,实际生产中应加入适量硼可使低碳贝氏体钢得到板条贝氏体。  相似文献   

7.
摘要:设计了马氏体起始相变温度(Ms)以上和以下5个不同温度等温淬火实验,研究了Ms以上和以下温度等温淬火对低碳贝氏体钢组织和相变动力学的影响。结果表明,试样在Ms以下等温淬火时,保温前生成的先马氏体(AM)显著缩短了等温贝氏体相变孕育期,加速贝氏体形核,细化贝氏体组织。然而,Ms以下等温淬火时,总的等温贝氏体相变动力学与先马氏体的体积分数(fAM)有很大关系,当fAM较低时,AM的形成缩短了贝氏体相变孕育期,加速了贝氏体相变,当fAM过高时,又阻碍贝氏体相变,延长贝氏体总的相变时间。最后,采用Austin Rickett(AR)和Johnson Mehl Avrami Kolgomorov(JMAK)动力学模型对等温贝氏体相变动力学进行分析,结果表明,与AR模型相比,JMAK模型更适用于本研究的实验结果。  相似文献   

8.
采用RPC工艺轧制三种不同成分的超低碳贝氏体钢,用光学金相显微镜对轧态组织进行观察和分析,研究轧态下的组织和力学性能,并对三种试样的组织和力学性能进行对比。对轧态试样进行扫描及能谱分析,评定钢中非金属夹杂物,目的在于开发一种综合性能良好的超低碳贝氏体钢。  相似文献   

9.
试验的700 MPa级低碳贝氏体钢由30 kg真空感应炉熔炼铸成断面100 mm×50 mm扁锭-轧成12mm板。通过CCT曲线和3~30℃/s冷却速度下组织的分析,研究0.01Ti-0.03Nb和0.06Ti-0.05Nb两种微合金化对(%)0.059~0.066C、1.41~1.67Mn、0.30~0.36Si、0.37~0.48Cu、0.21~0.24Ni、0.18~0.22Mo、0.000 8~0.002 2Bs、0.002 6N低碳贝氏体组织和力学性能的影响。结果表明,0.06Ti-0.05Nb钢的强度高于0.01Ti-0.03Nb钢,但前者Ti含量高,-40℃冲击功较后者低。700 MPa级低碳贝氏体钢合适的微合金化Ti-Nb成分为0.04%~0.05%Nb-0.015%~0.025%Ti。  相似文献   

10.
利用OM、SEM、XRD、EBSD和室温拉伸试验机等研究了CSP热轧TRIP钢中间缓冷时间及贝氏体等温时间对组织和力学性能的影响。结果表明,随着中间缓冷时间的延长,试验钢中的铁素体和残余奥氏体体积分数增加,贝氏体体积分数减少;抗拉强度基本不变,屈服强度逐渐降低,断后伸长率和强塑积变化不明显。中间缓冷时间为6 s时,可满足CSP产线的要求。对贝氏体相变时间的研究表明,当等温时间为15 min时,试验钢中的残余奥氏体主要分布于铁素体/铁素体界面、铁素体/贝氏体界面以及贝氏体中,体积分数约为7.1%,表现出良好的TRIP效应。其抗拉强度、屈服强度、断后伸长率和强塑积分别达到744.0 MPa、522.5 MPa、29.3%和21.8 GPa·%,力学性能最优。当等温时间延长至50 min时,试验钢中的贝氏体含量增加,残余奥氏体体积分数减少至2.7%,强塑积明显下降。  相似文献   

11.
After 2% predeformation,the baking treatment with different schedule was carried out for low silicon TRIP steel sheet with niobium.The effects of baking temperature and time on microstructures and mechanical properties were investigated.The results showed that with increasing the baking temperature and time,the volume fraction of retained austenite decreases,and the volume fraction of tempered martensite increases;as baking temperature ranges from 80 ℃ to 170 ℃,the bake-hardening(BH)value increases obviously,while from 170 ℃ to 230 ℃,the variation of BH value is very slight;as baking time ranges from 2 min to 20 min,the BH value increases significantly,while the BH value decreases when baking time exceeds 20 min.So that when the baking temperature is 170 ℃ and the baking time is 20 min,the low silicon TRIP steel sheet exhibits good bake-hardening behavior,and the highest BH value is above 70 MPa.  相似文献   

12.
A new type of high strength steel containing a significant amount of stable retained austenite was obtained by austempering immediately after intercritical annealing. This sort of low carbon steel only contains alloying elements of silicon and manganese rather than nickel and chromium. Its mechanical properties were enhanced considerably due to strain-induced martensite transformation and transformation-induced plasticity (TRIP) of retained austenite when it was strained at temperatures between Ms and Md, because retained austenite was moderately stabilized due to carbon enrichment by austempering. Austempering was carried out at different temperatures and 400℃ was found to be optimal. Tensile strength, total elongation and strength-ductility balance reached the maximum values and the product of tensile strength and total elongation exceeded 30 135 MPa % when the TRIP steel was held at 400℃ and strained at 350℃.  相似文献   

13.
Inthelasttwodecadesconsiderableefforthas beenputonthedevelopmentofhighstrengthsteels fortheautomotiveindustry.Themainaimistore ducecarweightbyincreasingthesteelstrength. Nowmoreandmoreattentionhasbeenpaidtohigh strengthtransformation inducedplasticity(TR…  相似文献   

14.
The dynamic tensile test of 0.11C-0.62Si-1.65Mn TRIP steel was carried out at different strain rates and test temperatures. The results show that both temperature and strain rate affect the retained austenite transformation. At high strain rates, the uniform elongation decreases, whereas the total elongation and energy absorption increase. The tensile strength is less strain rate sensitive. With raising test temperature, the tensile strength is reduced and the mechanical properties generally deteriorate, especially at 110℃,However, excellent mechanical properties were obtained at 50℃ and 75℃.  相似文献   

15.
 The microstructure characteristics and mechanical properties of a low-silicon TRIP steel containing phosphorus and vanadium at different finish rolling temperatures were studied by laboratory hot rolling experiments. Different ratios of multiphase microstructure (ferrite, granular bainite and retained austenite) are obtained. With a decrease in finish rolling temperature, the volume fractions of ferrite and retained austenite increase. EBSD analysis reveals that most of the ferrite grains are fine, and decreasing of finish rolling temperature leads to an increase in low angle boundaries. Under the joint effects of fine grain strengthening, dislocation strengthening and precipitation strengthening, higher strength is obtained. When the finish rolling temperature is decreased to 800 ℃, the steel has excellent mechanical properties: Rp02=470 MPa; Rm=960 MPa; Rp02/Rm=049; A50=197%; n=025.  相似文献   

16.
研究了1 250 MPa级Nb-V 微合金化Si-Mn-Cr-Mo系贝氏体轨钢(/%:0.25 C,0.38~1.56 Si,1.69~1.76 Mn,1.34~1.37 Cr,0.32~0.33 Mo,0.034 0.036 Nb,0.11~0.12 V)硅含量对试验钢显微组织和力学性能的影响.试验结果表明:试验钢热...  相似文献   

17.
通过实验室热轧试验,研究了不同终轧温度下低硅含磷系热轧TRIP钢的组织特征及性能特点。结果表明:终轧温度由900℃降低到790℃,铁素体体积分数增加,贝氏体体积分数降低,残余奥氏体体积分数变化不太明显;终轧温度900和820℃时,得到贝氏体为基体的室温组织;终轧温度降低到790℃时,低温变形促进了奥氏体到铁素体的相变率...  相似文献   

18.
In this work, a low‐carbon transformation‐induced‐plasticity (TRIP) seamless steel tube (Fe–0.15C–1.34Si–1.45Mn–0.029Nb–0.024Ti, in wt%), having potential in application of hydroforming process, has been successfully manufactured by using piercing, cold‐drawing, and two‐stage heat‐treatment process. The optimal heat‐treatment conditions, inter‐critical annealing (IA), and isothermal bainite treatment (IBT) were firstly obtained to maximize the volume fraction and stability of the retained austenite (RA). The effects of temperature and holding time IBT on the microstructures of the TRIP steel tube were studied via optical microscopy (OM), scanning microscopy (SEM), transmission electron microscopy (TEM), and X‐ray diffractometer (XRD). The mechanical properties in the axial direction and hydroformability were also evaluated by conventional tensile test and flaring test, respectively. Two‐stage heat‐treatment was finally performed to achieve the required mechanical properties for the hydroformed tube. The results shows that the RA volume fraction increased at first and then decreased with the increase of IBT holding time and IBT temperature for a particular set of IA temperature and IA holding time. It was also demonstrated that high tensile strength of 618 MPa, total elongation of 35.5%, n‐value of 0.23, and better hydroformability could be successfully produced in this TRIP steel tube at IA temperature of 800°C, holding for 10 min, and IBT of 410°C for 4 min holding time.  相似文献   

19.
粒状贝氏体组织对低碳钢力学性能的影响   总被引:2,自引:0,他引:2  
于庆波  段贵生  孙莹  赵贤平  王斌 《钢铁》2008,43(7):68-0
 在化学成分相同的条件下,分别研究了粒状贝氏体、铁素体 珠光体对低碳合金钢强度、塑性、冲击韧性的影响。结果表明:低碳粒状贝氏体钢比铁素体 珠光体钢具有更高的强度和冲击韧性,而且粒状贝氏体组织对钢的强化方式不仅仅是细晶强化和位错强化,弥散强化也是强化方式之一。  相似文献   

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