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1.
为了研究热轧DP600汽车用钢的微观结构特征及力学性能,使用扫描电子显微镜(SEM)、透射电子显微镜(TEM)等分析了试验钢的组织、夹杂物及位错结构等,借助万能拉伸试验机测试了试验钢的强度与塑性。结果表明,热轧DP600汽车用钢的组织是铁素体+马氏体,随着应变量的增加,位错密度增加,位错缠结更为严重,在夹杂物与基体界面处、铁素体晶界处萌生微孔,马氏体发生断裂。热轧DP600试验钢的屈服强度为394.9 MPa,抗拉强度为641.6 MPa,塑性应变指数为0.154,屈强比为0.616,力学性能超过同级别的冷轧退火双相钢板指标。  相似文献   

2.
《特殊钢》2020,(1)
对感应炉-电渣重熔冶炼的节镍型高氮奥氏体不锈钢Mn17Cr19N0.6的3mm热轧板进行变形量10%~60%的冷轧及拉伸实验。结合金相组织观察及XRD物相分析,研究高氮奥氏体不锈钢冷变形过程中微观组织变化规律,得出结论:在冷轧过程中,随着变形量的增加,实验钢中晶粒的形状由块状到压扁拉长状,滑移从单滑移为主到交滑移,孪晶最终被分割破碎。实验钢在不同冷轧变形量后的组织均为单一的奥氏体相,并没有出现其他相,实验钢在冷变形过程中没有发生马氏体转变,因此,实验钢在冷轧过程中没有通过相变强化,以形变强化为主,抗拉强度从冷轧变形量为10%时的1 045 MPa升高至变形量为60%时的1 880 MPa,因此通过冷变形可以制备出不同强度级别且组织为单一奥氏体的特种材料。  相似文献   

3.
对感应炉-电渣重熔冶炼的节镍型高氮奥氏体不锈钢Mn17Cr19N0.6的3mm热轧板进行变形量10%~60%的冷轧及拉伸实验。结合金相组织观察及XRD物相分析,研究高氮奥氏体不锈钢冷变形过程中微观组织变化规律,得出结论:在冷轧过程中,随着变形量的增加,实验钢中晶粒的形状由块状到压扁拉长状,滑移从单滑移为主到交滑移,孪晶最终被分割破碎。实验钢在不同冷轧变形量后的组织均为单一的奥氏体相,并没有出现其他相,实验钢在冷变形过程中没有发生马氏体转变,因此,实验钢在冷轧过程中没有通过相变强化,以形变强化为主,抗拉强度从冷轧变形量为10%时的1045 MPa升高至变形量为60%时的1880MPa,因此通过冷变形可以制备出不同强度级别且组织为单一奥氏体的特种材料。  相似文献   

4.
以C-Mn-Si系冷轧马氏体钢为研究对象,通过光学电镜、扫描电镜及透射电镜对不同水淬入口温度的试验钢进行组织观察,研究分析不同水淬入口温度对马氏体钢微观组织及力学性能的影响.试验发现,水淬入口温度直接影响成品带钢的马氏体生成量,随着水淬入口温度的升高,马氏体生成量增加,屈服强度及抗拉强度升高,延伸率降低.不同水淬入口温度下试验钢拉伸试样均为韧性断裂,750℃时可得到组织为全马氏体的马氏体钢,抗拉强度可达到1500 MPa以上.  相似文献   

5.
 采用真空熔炼法制备Fe-20Mn-3.0Cu-XC系高强度高塑性合金钢,通过X射线衍射(XRD)、光学显微镜(OM)和透射电子显微镜(TEM)观察方法研究了碳含量对该系列合金微观组织和力学性能的影响,分析了合金的拉伸变形微观机制。结果表明:Fe-20Mn-3.0Cu-XC系合金拉伸变形前后均为单相奥氏体组织,未发生马氏体相变。随着碳质量分数的增加,合金的屈服强度、抗拉强度和伸长率均显著提高。Fe-20Mn-3.0Cu-1.41C合金的屈服强度为501.62MPa,抗拉强度为1178.4MPa,具有优异的综合力学性能。Fe-20Mn-3.0Cu-XC系合金具有优异的应变硬化能力。随着碳质量分数增大至1.41%,最大应变硬化指数n值达到0.782。Fe-20Mn-3.0Cu-XC系合金拉伸变形过程中,TWIP效应是主要的塑性变形机制,大量位错的塞积、形变孪晶的形成以及位错与孪晶间的交互作用共同引起材料强度和塑性的提高。  相似文献   

6.
研究了锰含量(质量分数)为23.8%的低碳高锰钢的力学行为和组织演变,并对其强化机制进行了探讨.结果表明:23.8%Mn TRIP/TWIP钢的屈服强度约为300 MPa,抗拉强度可达610 MPa,断裂延伸率可达到63%.实验钢拉伸变形呈连续屈服,其应变硬化指数n值约为0.48.该钢在变形初期的强化机制以应变诱发孪生为主,变形后期出现应变诱发马氏体相变.位错与形变孪晶、马氏体之间的相互作用也对强度的增加做出贡献.  相似文献   

7.
张宇斌  张志波 《特殊钢》2016,37(3):64-66
采用拉力试验、金相检验、X-射线衍射分析(XRD)和透射电镜(TEM)研究了冷轧变形量(12.7%~38.3%)对耐磨钢Mn13(/%:0.98C,0.45Si,13.1Mn,0.024P,0.002S,0.65Cr,0.06Mo,0.05V)7.0~10.0 mm板力学性能、组织和相对导磁率的影响。结果表明,随着冷轧变形量增加,Mn13钢的强度、表面硬度及屈强比等明显增加,当变形量由0增加至38.3%时,钢的抗拉强度、表面硬度(HB)值和屈强比分别由1 030 MPa,305和0.50提高至1450 MPa,460和0.79,同时伸长率由28%降至2.5%。加工硬化过程中,没有发生马氏体转变,形变孪晶的数量和位错密度增加,大量的形变孪晶、高密度位错是Mn13钢产生加工硬化的主要原因。  相似文献   

8.
采用TEM、SEM技术和光学显微分析等方法,研究了不同变形量对热轧Si-Mn系双相钢组织与力学性能的影响。试验结果表明,组织形貌为岛状的马氏体弥散分布在细小的铁素体基体中,可以使热轧双相钢获得良好的综合机械性能。随着变形量的增加,第二相的体积分数增加,但第二相随着变形量增加严重偏析,且热轧双相钢的屈服强度和抗拉强度先增加后降低、屈强比升高、塑性降低。综合分析表明,当变形量为92.1%时,抗拉强度平均达到795.66 MPa,力学性能最佳。  相似文献   

9.
研究了22 mm厚SP700钛合金板轧制过程中的组织演变和力学性能。结果表明:SP700钛合金板的显微组织由不连续的晶界α相和晶内针状组织组成;经过热轧和冷轧后,显微组织不均匀,由等轴组织和变形组织组成,等轴组织由等轴α相和等轴β相组成,变形组织由条状α相和变形β相组成;冷轧并退火后,显微组织十分均匀,由等轴组织组成。室温拉伸试验结果表明:SP700钛合金板冷轧后,抗拉强度达1 100 MPa以上,纵横向强度差为64 MPa,伸长率为5.0%~6.5%,塑性差为0.17%。退火后,强度降低,塑性显著提高;纵横向强度差为69 MPa,塑性差为6.84%。  相似文献   

10.
将C-Si-Mn钢加热至800℃保温120 s后,分别快速冷却至350℃保温100~1 000 s以模拟贝氏体等温转变工艺。通过扫描电镜(SEM)和拉伸测试的方法研究了贝氏体等温时间对超高强冷轧相变诱导塑性钢(TRIP钢)微观组织和力学性能的影响规律。结果表明,冷轧TRIP钢的微观组织由铁素体、贝氏体、马氏体和残余奥氏体组成。贝氏体和残余奥氏体形成于等温转变阶段,而马氏体形成于等温后的终冷阶段。随着贝氏体等温时间增加,促进了过冷奥氏体向贝氏体转变,固溶C原子充分向剩余奥氏体中富集。因此,过冷奥氏体中的平均碳含量增加,使得冷轧TRIP钢残余奥氏体分数提高,马氏体体积分数下降。贝氏体等温时间由100 s延长至1 000 s时,冷轧TRIP钢屈服强度由596 MPa提高至692 MPa,抗拉强度由1 455 MPa降低至1 138 MPa,屈强比由0.41提高至0.61,伸长率(A80)由6.3%提高至18.9%。贝氏体等温时间为1 000 s时,冷轧超高强TRIP钢具有优良的综合力学性能,最大强塑积达到21 510 MPa·%。  相似文献   

11.
The evolution of the microstructure and the properties of an austenitic high-manganese steel subjected to severe deformation by cold rolling and subsequent recrystallization annealing is investigated. Cold rolling is accompanied by mechanical structural twinning and shear banding. The microhardness and microstructural analysis of annealed samples are used to study the recrystallization kinetics of the high-manganese steel. It is shown that large plastic deformation and subsequent annealing result in rapid development of recrystallization processes and the formation of an ultrafine-grained structure. A completely recrystallized structure with an average grain size of 0.64 μm forms after 30-min annealing at a temperature of 550°C. No significant structural changes are observed when the annealing time increases to 18 h, which indicates stability of the recrystallized microstructure. The steel cold rolled to 90% and annealed at 550°C for 30 min demonstrates very high strength properties: the yield strength and the tensile strength achieve 650 and 850MPa, respectively. The dependence of the strength properties of the steel on the grain size formed after rolling and recrystallization annealing is described by the Hall–Petch relation.  相似文献   

12.
Microstructural evolution and mechanical properties of cryogenic rolled Fe-36Ni steel were investigated. The annealed Fe-36Ni steel was rolled at cryogenic temperature( 123-173 K) with 20%- 90% rolling reduction in thickness.The deformation process was accompanied by twinning at cryogenic temperature,and the mean thickness of deformation twins was about 200 nm with 20% rolling reduction. When the rolling reduction was above 40%,twinning was suppressed due to the stress concentration in the tested steel. Deformation microstructure of Fe-36Ni steel consisted of both twin boundaries and dislocations by cryogenic rolling( CR),while it only contained dislocations after rolling at room temperature( RT). The tensile strength of Fe-36Ni steel was improved to 930 MPa after 90% reduction at cryogenic temperature,while the tensile strength after 90% reduction at RT was only 760 MPa. More dislocations could be produced as the nucleation sites of recrystallization during CR process.  相似文献   

13.
Twinning-induced plasticity (TWIP) steels are a highly promising group of steels for the production of complex structural components in cold forming operations for car body manufacturing. In this work, the effect of cold rolling strain on the microstructure, mechanical properties and fracture characteristics of a TWIP steel sheet used for automobile body structure was studied by means of optical microscopy, scanning electron microscopy, electron back-scattered diffraction technique, microhardness measurement, tensile test and fractography. TWIP steel sheets were cold rolled with reductions of 0, 15 and 30%. An increase of the cold rolling strain led to an increase of deformation twinning activity in certain favourably oriented grains and resulted in significant increase in ultimate tensile strength and hardness of TWIP steel. However, the ductility of TWIP steel significantly decreased with increasing degree of cold rolling strain. The increase in the ultimate tensile strength was almost linear with the increase in cold rolling strain. After cold rolling reduction of 30%, the ultimate tensile strength increased by approximately 50%, whereas the elongation decreased by approximately 85%. The size and depth of the dimples in the fracture surface decreased with the increase of the twin boundaries at 30% cold rolling strain, leading to highly limited plasticity through the tensile testing.  相似文献   

14.
采用室温拉伸及硬度测试研究了不同的冷变形量对316L不锈钢室温力学性能及硬度的影响,并通过OM、TEM对冷变形后组织结构的观察,分析讨论了不同变形后力学性能及硬度的变化机制.结果表明,冷变形使材料的强度和硬度得到大幅度提高,但塑性有所降低.冷变形量为25%时,钢的屈服强度可达到745 MPa,同时伸长率达到19.3%.随冷变形量的不同,该钢加工硬化能力不同.变形量低于2.5%时,强度、硬度增加的速度较快,而变形量高于约2.5%后,强度、硬度增加的速度却相对较小,其原因是变形机制不同.另外,冷变形后钢的屈服强度与硬度有着相似的变化规律,由此提出了由冷变形后硬度变化预测冷变形后拉伸屈服强度的方程.  相似文献   

15.
采用CCT-AY-Ⅱ型钢板连续退火机模拟分析了退火时间对中锰TRIP钢0.1C-7Mn组织性能的影响规律.利用扫描电镜、透射电镜、电子背散射衍射和X射线能量色散谱等研究了不同工艺下制备的0.1C-7Mn钢的微观组织和成分,利用X射线衍射法测量了残留奥氏体量,利用拉伸试验测试了其力学性能.0.1C-7Mn钢在650℃保温3 min退火后获得最佳的综合力学性能,其强度为1329 MPa,总延伸率为21.3%,强塑积为28 GPa·%.分析认为,0.1C-7Mn钢的高塑性是由亚稳奥氏体的TRIP效应和超细晶铁素体共同提供的,而高强度是由退火冷却过程中奥氏体转变的马氏体和拉伸变形过程中TRIP效应转变的马氏体的强化作用造成的.   相似文献   

16.
 Transformation-induced plasticity-aided steel [TRIP steel (0. 4C-1. 5Si-1. 5Mn)] was rolled at room temperature to different thickness reductions (0, 4%, 10%, 20%, 40%, and 60%). The mechanical properties, microstructure and austenite fractions of the rolled samples were measured by tensile test, electron back scattered diffraction (EBSD) and X-ray diffraction (XRD) for each rolling. The deformation behavior was studied based on the analysis of the mechanical properties and microstructure of steel after tensile deformation, aiming at understanding the effects of cold rolling reduction on the decay behavior of the austenite and the change of mechanical properties of the TRIP steels. It was found that increasing rolling reduction increases the yield stress gradually but decreases the total elongation significantly. It is very interesting that after 10% rolling reduction the yield stress is about 1000 MPa but still with 20% total elongation, which gives an excellent combination of yield strength and ductility. Based on the XRD results, it was revealed that in both rolling and tension the austenite volume fraction monotonically decayed with the increase of rolling strain, but the decaying rate is faster in tension than in rolling, which may be ascribed to the higher temperature in rolled specimens than in the tensioned ones during deformation. Experimental results and theoretical reasoning indicate that the decreasing trend of austenite volume fraction with strain can be formulated by a unique equation.  相似文献   

17.
借助物理模拟系统采用四种不同的多道次变形及控制冷却工艺,研究了成分为0.12C-0.78Si-1.42Mn-0.74Al-0.32Mo钢的显微组织和力学性能.结果显示:使用物理模拟系统进行高温区的多道次热连轧,并结合控制冷却处理,能够得到不同的复相组织(铁素体/贝氏体组织,贝氏体/马氏体组织).依贝氏体含量和形态的不同,铁素体/贝氏体复相组织钢的屈服强度为388~558 MPa,抗拉强度为681~838 MPa,总延伸率为15%~27%;贝氏体/马氏体复相组织钢的屈服强度为746 MPa,抗拉强度为960 MPa,总延伸率为19%.   相似文献   

18.
The medium-Mn steel with ferrite and austenite structure was rolled in the intercritical region down to dif- ferent rolling reduction. The microstructure and mechanical properties of the rolled steels were investigated by scan- ning electron microscopy, transmission electron microscopy, X-ray diffraction and tensile tests. It was found that the ferrite and austenite structure gradually evolved into an ultrafine structure from the random directional lath structure to lamellar structure with lath longitudinal direction parallel to the rolling direction with increasing rolling strain. It was found that the thickness of the laths was gradually refined with increasing rolling strain. The lath thickness is about 0. 15 9m stored with high density dislocations and the austenite volume fraction of the steel is about 24% after 80% rolling reduction. Furthermore, it was interesting to find that yield strength, tensile strength and total elongation of the 80% rolled medium-Mn steel are about 1000 MPa, 1250 MPa and 24%, respectively, demonstrating an excellent combination of the strength and ductility. Based on the microstructure examination, it was proposed that the grain refinement of the medium-Mn steels could be attributed to the duplex structure and the low rolling temperature. Analysis of the relationship between the microstructure and the mechanical properties indicated that the high yield strength mainly resulted from the ultrafine grain size and the high density dislocation, but the improved ductili- ty may be attributed to the large fractions of austenite retained after intercritical rolling.  相似文献   

19.
采用冷轧+两相区温轧退火(CR+WR+IA)热处理工艺,研究了两相区退火时间对超细晶铁素体与奥氏体中组织形貌演变、C和Mn元素配分行为以及力学性能的影响。结果表明,冷轧试验钢经两相区形变退火处理后,获得了由铁素体、残余奥氏体或新生马氏体组成的超细晶复相组织。在645℃随退火时间的延长,形变马氏体向逆相变奥氏体配分的C、Mn元素增多,C、Mn元素富集位置增加,同时富Mn区形变马氏体回复再结晶现象明显;伴随少量碳化物溶解,试验钢的屈服强度由741持续降低到325MPa。两相区退火10min时,试验钢力学性能最佳,此时抗拉强度达到最大值1141MPa,断后伸长率及均匀伸长率分别为236%和181%,强塑积达到26928MPa·%。  相似文献   

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