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1.
利用OM、SEM、XRD和电化学方法对X60N高氮不锈轴承钢(/%:0.63C,15.00Cr,0.61Mo,0.190N)进行组织观察、室温和高温力学性能及耐蚀性能研究.结果表明,钢中降碳加氮可显著降低粗大共晶碳化物的数量及尺寸,X60N钢加氮后的原始奥氏体晶粒尺寸及碳化物明显细化.X60N钢经1050 ℃奥氏体化淬...  相似文献   

2.
采用金相、扫描、X射线衍射和电化学等方法研究了合金元素对高氮不锈轴承钢组织性能的影响.结果表明:钢中加氮细化组织与碳化物,析出相尺寸随着氮含量的增加而降低.高氮不锈轴承钢1030、1050℃淬火后残余奥氏体体积分数达到20%~35%,而且碳氮含量越高,残余奥氏体越多.经冷处理及回火后残余奥氏体体积分数降至7%~10.3...  相似文献   

3.
 Martensitic stainless steel containing Cr of 12% to 18% (mass percent) are common utilized in quenching and tempering processes for knife and cutlery steel. The properties obtained in these materials are significantly influenced by matrix composition after heat treatment, especially as Cr and C content. Comprehensive considered the hardness and corrosion resistance, a new type martensitic stainless steel 6Cr15MoV has been developed. The effect of heat treatment processes on microstructure and mechanical properties of 6Cr15MoV martensitic stainless steel is emphatically researched. Thermo-Calc software has been carried out to thermodynamic calculation; OM, SEM and TEM have been carried out to microstructure observation; hardness and impact toughness test have been carried out to evaluate the mechanical properties. Results show that the equilibrium carbide in 6Cr15MoV steel is M23C6 carbide, and the M23C6 carbides finely distributed in annealed microstructure. 6Cr15MoV martensitic stainless steel has a wider quenching temperature range, the hardness value of steel 6Cr15MoV can reach to HRC 608 to HRC 616 when quenched at 1060 to 1100 ℃. Finely distributed carbides will exist in quenched microstructure, and effectively inhabit the growth of austenite grain. With the increasing of quenching temperature, the volume fraction of undissolved carbides will decrease. The excellent comprehensive mechanical properties can be obtained by quenched at 1060 to 1100 ℃ with tempered at 100 to 150 ℃, and it is mainly due to the high carbon martensite and fine grain size. At these temperature ranges, the hardness will retain about HRC 592 to HRC 616 and the Charpy U-notch impact toughness will retain about 173 to 20 J. A lot of M23C6 carbides precipitated from martensite matrix, at the same time along the boundaries of martensite lathes which leading to the decrease of impact toughness when tempered at 500 to 540 ℃. The M3C precipitants also existed in the martensite matrix of test steel after tempered at 500 ℃, and the mean size of M3C precipitates is bigger than that of M23C6 precipitates.  相似文献   

4.
Martensitic stainless steel containing 12%-18%Cr have high hardness due to high carbon content. These steels are common utilized in quenching and tempering processes for knife and cutlery steel.The properties obtained in these materials are significantly influenced by matrix composition after heat treatment,especially as Cr and C content.Comprehensive considered the hardness and corrosion resistance,a new type martensitic stainless steel 6Cr15MoV has been developed.This study emphatic researches the effect of heat treatment processes on microstructure and mechanical properties of 6Cr15MoV martensitic stainless steel.Thermo-Calc software has been carried out to thermodynamic calculation;optical microscope(OM),scanning electronic microscope(SEM) and transmission electron microscope(TEM) have been carried out to microstructure observation;hardness and impact toughness test have been carried out to evaluate the mechanical properties.Results show that the equilibrium carbide in 6Cr15MoV steel is M23,C6 carbide,and finely distributed of M23C6 carbides can be observed on annealed microstructure of 6Cr15MoV stainless steel.6Cr15MoV martensitic stainless steel has a wider quenching temperature range,the hardness value of steel 6Cr15MoV can reach to 60.8 -61.6 HRC when quenched at 1060 - 1100℃.Finely distributed carbides will exist in quenched microstructure,and effectively inhabit the growth of austenite grain.With the increasing of quenching temperature,the volume fraction of undissolved carbides will decrease.The excellent comprehensive mechanical properties can be obtained by quenched at 1060-1100℃with tempered at 100-150℃,and it is mainly due to the high carbon martensite and fine grain size.At these temperature ranges,the hardness will retain about 59.2-61.6 HRC and the Charpy U-notch impact toughness will retain about 17.3-20 J.The morphology of impact fracture surface of tested steel is small dimples with a small amount of cleavage planes.The area of cleavage planes increases with the increasing of tempering temperature.  相似文献   

5.
Combined with the calculation of Jmatpro software and a large number of trial production, the new type of high temperature resistant stainless bearing steel 6Cr15Mo4VN was developed. DSC analyzer, optical microscope and EPMA were used to study the microstructure and properties of 6Cr15Mo4VN nitrogen- containing bearing steel. The results show that the microstructure of quenched- tempered sample is tempered martensite + carbide + residual austenite, which primary carbide is zonal distribution with an acceptable size, fine carbide is uniformly distributed in martensite matrix. The steel gets lower hardness after annealing and becomes very hard after quenching- tempering, which shows excellent properties for bearing. In 40 mass% nitric acid solution, almost no corrosion occurs. In 10 mass% hydrochloric acid solution, the corrosion resistance property is superior to 9Cr18Mo and 7Cr14MoN.  相似文献   

6.
对比研究了两种AISI 420型钢球化组织的平均粒径和圆整度,并对两种钢材进行了不同淬火和回火处理工艺.然后通过硬度测试、扫描电子显微镜(SEM)和X射线衍射仪(XRD)来比较球化组织对淬回火特性的影响,同时借助动电位极化曲线测试和质量分数3.5% NaCl溶液浸泡腐蚀来分析耐蚀性能的差异.结果表明:细小弥散的球化组织在淬火时可以提高AISI 420型钢的C元素的固溶量,提高了其淬硬性,但是会提高残留奥氏体的含量;尺寸更小的退火态碳化物可以使AISI 420型钢的基体在奥氏体化过程中溶解更多的Cr元素,从而使得其在淬回火后基体Cr含量更高,减小贫Cr区产生几率,最终显示出更好的点蚀抗力;更少的大尺寸的未溶碳化物在腐蚀环境中降低了点蚀形核几率,提高了AISI 420型钢的耐蚀性能.所以在250℃回火时,AISI 420型钢耐蚀性好且硬度高,在480℃回火后,耐蚀性最差.   相似文献   

7.
郑善举  杨卯生  雷霆  王康 《钢铁》2012,47(12):76-80
 通过对16Cr14Co12Mo5 轴承钢经冷处理后的组织和性能进行研究,发现与淬火态相比,试验钢经两次冷处理和高温回火后,表面硬度达到50.7HRC,抗拉强度Rm达到1820MPa,屈服强度Rp0.2达到1410MPa,冲击功为75.0J,试验钢的强度和硬度得到了显著提高。经XRD检测,经过两次冷处理后残余奥氏体体积分数由26.0%下降到3.1%。研究表明,经过2次冷处理并配合高温回火后,钢中残余奥氏体88.1%转变为马氏体,残余奥氏体含量明显降低,组织变得稳定,并且在回火过程中伴随有一定量微细第二相的析出。  相似文献   

8.
高碳马氏体不锈钢因其高硬度、优异的耐磨性以及适中的耐蚀性,被广泛应用于刀剪行业。主要通过金相,扫描电镜,硬度、冲击韧性、耐磨性能、耐蚀性能以及抗菌性能检测等方法,对新型刀具用高碳马氏体不锈钢6Cr16MoVRE进行微观组织表征与性能研究,并与5Cr15MoV和9Cr18MoV钢对比。研究发现,6Cr16MoVRE的碳化物尺寸细小且分布均匀。相比于另2种材料,6Cr16MoVRE具有高硬度与最佳冲击韧性,良好的耐磨性,优异的耐蚀性。此外,Ag的添加使6Cr16MoVRE具有极好的抗菌性。新型6Cr16MoVRE性能优异,为国内生产高档刀具提供了材料保障,有利于中国刀剪行业转型升级。  相似文献   

9.
 研究了热处理工艺对渗碳轴承钢组织、力学性能的影响规律,并探讨了强韧化机制。研究表明,随着淬回火温度升高和回火次数增加以及采用深冷工艺,渗碳轴承钢的强度与硬度增加,冲击韧性值下降。采用910℃淬火和180℃二次回火,轴承钢材料性能可达到硬度HRC452,抗拉强度Rm为1450MPa,屈服强度ReL为1240MPa,AKU为105J,残余奥氏体的体积分数控制在1%以下。试验钢良好的强韧性配合主要来自于晶粒的细化、超细马氏体板条和均匀弥散的细小碳化物的析出;尺寸稳定性的效果主要是残余奥氏体量的控制。  相似文献   

10.
The microstructure, mechanical property, phase of SKD11 steel after vacuum heat treatmentor deep cryogenic heat treatment were studied by means of OM, hardness tester, impact tester and XRD.The impact wear properties of SKD11 steel under the two heat treatments were tested by MLD- 10 dynamic load- bearing wear tester. The impact wear mechanism was also analyzed. The results show that the microstructures of SKD11 steel after the two heat treatmentsare composed of tempering martensite, retained austenite and carbide. The hardness after cryogenic treatment is 1HRC higher than that of the vacuum treatment and impact toughness decreases lightly. Under impact wear conditions, the weight loss of the sample during deep cryogenic treatment is lower than that of the vacuum treatment, which shows better wear resistance. In the studied wear time, the wear mechanism of the sample after vacuum treatment is high stress surface fatigue and abrasive wear, and the wear mechanism of the sample after cryogenic treatment is slight abrasive wear.  相似文献   

11.
以钛铁粉、铬铁粉、铁粉、胶体石墨和镍粉等为原料,原位合成了TiC/Cr18Ni8、TiC/Cr19Al3和TiC/Ni40钢结硬质合金,并用扫描电镜、X射线衍射仪和洛氏硬度计、拉力试验机等对不同粘结相所制备的试样进行了组织结构分析和物理力学性能检测.结果表明:钢结硬质合金主要相组成为TiC、Fe-Cr-Ni和Fe-Cr固溶体,TiC晶粒细小,形状较为规则;粘结相对原位反应合成的钢结硬质合金的密度、硬度和所合成的TiC晶粒有较大影响,在相同烧结条件下TiC/Ni40钢结硬质合金的密度和硬度比TiC/Cr18Ni8和TiC/Cr19Al3钢结硬质合金的高,但TiC/Ni40钢结硬质合金中所合成的TiC晶粒比TiC/Cr18Ni8和TiC/Cr19Al3钢结硬质合金中合成的TiC晶粒偏聚现象严重.TiC/Ni40钢结硬质合金的硬度为60~70.5HRC,TiC/Cr18Ni8和TiC/Cr19Al3钢结硬质合金的硬度多在20~50HRC之间.三者的抗弯强度为960~1452MPa.  相似文献   

12.
16Cr14Co12Mo5耐热耐蚀轴承钢强韧化机制的研究   总被引:1,自引:1,他引:0  
王康  杨卯生  樊刚  俞峰  鲍俭  闫文凯 《钢铁》2011,46(10):75-79
 对16Cr14Co12Mo5耐热耐蚀轴承钢在1050℃高温淬火后,在490~540℃两次回火后的组织性能以及强韧化机制进行研究。结果表明:随着回火温度的升高,抗拉强度Rm逐渐增加,最大时超过了1900MPa,屈服强度Rp0.2在500℃回火后达到1400MPa,随后逐渐减小;断面收缩率和伸长率略有减小,而硬度略有增长。材料强韧化主要源于高位错板条马氏体以及其中残余奥氏体薄膜和沉淀析出的碳化物和金属间化合物。采取适宜淬回火工艺制度所导致弥散析出的碳化物和金属间化合物是试样的强度和韧性达到最佳配合的关键。  相似文献   

13.
采用激光熔覆技术在40 Cr Ni Mo基材上制备了TiC增强双相不锈钢复合熔覆层,熔覆层物相主要由奥氏体、马氏体、M7C3型碳化物和TiC组成。其中M7C3型碳化物主要包括Fe7C3、Cr7C3或者(Fe、Cr)7C3三种,TiC按尺寸可分为熔解后析出的微米级TiC以及粗大的未熔TiC颗粒。析出的TiC颗粒为方块状,随着TiC添加量增加,呈花瓣状长大。未熔TiC颗粒与基材形成了扩散界面,具有很好的界面结合性。当加入30 wt.%TiC时,熔覆层具有最好的耐磨性,硬度可达55.26 HRC,磨损体积为2.54×10-2 mm3,耐磨性是基材的3.37倍。  相似文献   

14.
王明家  王艳  孙菲菲 《特殊钢》2005,26(5):27-29
进行了Cr-W-Mo-V(%:46Cr-24W-24Mo-1.52.0V)系和Cr-W-Mo-V+N(0.05%0.10%)系半高速钢(Semi-HSS)1050℃淬火后分别在100~600℃两次回火沉淀析出行为的研究。采用透射电镜、扫描电镜及能谱仪和能量损失谱对碳化物形貌和成分进行分析,用X射线衍射法测定残余奥氏体的体积分数。结果表明,氮有增强钢的二次硬化的效果,氮促进碳氮化物在425~475℃回火析出,在550℃回火碳化物依附在氮化物表面而沉淀形成复合碳氮化物。Semi-HSS+N在淬火及400℃以下回火,残余奥氏体为15%~17%;随回火温度增加,残余奥氏体量急剧降低,在525℃回火残余奥氏体小于3%。  相似文献   

15.
The evolution law of precipitated alloy carbides and reverted austenite in a high Co-Ni secondary hardening ultra-high strength 25Co15Ni11Cr2MoE steel tempered at 300??~ 660?? after quenched has been studied by means of transmission electron microscopy (TEM) and X ray diffraction (XRD) in this paper. The results show that the precipitate order of alloy carbides with the increasing of tempering temperature from 300?? to 600?? in experimental steel is: dispersed ??-carbides?? lamellar alloy cementites?? dispersed M2C carbides?? coarse M23C6 carbides. When the experimental steel tempering at 495??, fine M2C carbides precipitated on the lath martensite matrix. Meanwhile, coarse lamellar alloy cementites that precipitated during the early tempering stage has all dissolved, and reverted austenite precipitated at the boundaries of lath martensite and grows up into thin-film sharp along the lath boundaries. When the tempering temperature rose to 530??, the content of reverted austenite continues to increase, but the morphology of reverted austenite changed from thin-film to strip or block. When the tempering temperature rose to 530??, the content of reverted austenite in the steel reaches maximum value.  相似文献   

16.
 440C等高碳马氏体轴承钢中由于存在大量粗大的共晶碳化物,降低其耐蚀性和疲劳性能,影响了其广泛应用。40Cr15Mo2VN作为一种新型高氮不锈轴承钢,通过降低碳含量,增加氮含量和微合金化来改善其性能。氮的加入一方面析出细小弥散的氮化物,强化了基体;另一方面改善了钢中析出的碳化物的形态、尺寸和分布,使其由原来的带状和网状连续分布变为近圆形颗粒,最大碳化物尺寸由原来的70μm以上减小到小于18μm,弥散分布,从而使Rm达到2000MPa以上,ReL达到1700MPa以上,有些超过1800MPa,表面硬度≥585(HRC),U型缺口冲击功保持在8J以上,并具有优异的耐蚀性和疲劳性能,满足轴承钢的服役要求。  相似文献   

17.
Two medium carbon low-alloy MnSiCrB cast steels containing different Cu contents (0.01 wt pct and 0.62 wt pct) were designed, and the effect of Cu on the mechanical properties and corrosion–abrasion wear behavior of the cast steels was studied. The results showed that the low-alloy MnSiCrB cast steels obtained excellent hardenability by a cheap alloying scheme. The microstructure of the MnSiCrB cast steels after water quenching from 1123 K (850 °C) consists of lath martensite and retained austenite. After tempering at 503 K (230 °C), carbides precipitated, and the hardness of the cast steels reached 51 to 52 HRC. The addition of Cu was detrimental to the ductility and impact toughness but was beneficial to the wear resistance in a corrosion–abrasion wear test. The MnSiCrB cast steel with Cu by the simple alloying scheme and heat treatment has the advantages of being high performance, low cost, and environmentally friendly. It is a potential, advanced wear-resistant cast steel for corrosion–abrasion wear conditions.  相似文献   

18.
M 2highspeedsteel (M 2steel)isamaterialwidelyusedintoolsanddies[1,2 ] .M 2steelischarac terizedbyalongsolidificationrangeandcomplexeu tecticreactions ,whichresultsinsegregationofalloy ingelementsandformationofseveraldifferenttypesofcarbidesduringsolidification[3,4 ] .Forconventionallyprocessedhigh speedsteels ,itisinevitablethatacoarsecarbidenetworkwillbeformedduringsolidifi cation .Coarseprimarycarbidestendtoresultinun evencarbidebandsdistributionafterasubstantialamountofhotprocessing[5] .Ma…  相似文献   

19.
程志彦  郑留伟 《中国冶金》2020,30(12):65-71
以一种自行设计的NM500级别耐磨钢为研究对象,利用冲击磨损试验,分析了深冷处理对其组织性能和磨损行为的影响。结果表明,NM500耐磨钢经深冷处理后,抗拉强度、硬度和冲击韧性均有提高,在淬火+深冷+回火处理后,最佳的综合力学性能可达抗拉强度1 910 MPa、硬度523HB、冲击韧性24.3 J/cm2,此时试验钢组织主要为马氏体,有Nb和Ti的碳化物析出。深冷处理通过残余奥氏体向马氏体转变,减少了不稳定相的含量,提升了试验钢的力学性能,从而使淬火+深冷+回火处理后的试验钢具有更高的耐磨性,此时的磨损机制以磨粒磨损为主,磨损形貌主要为犁沟、犁皱。而未经深冷处理的淬火+回火处理试验钢磨损机制以黏着磨损为主,磨损形貌主要为剥落坑和切削。  相似文献   

20.
 The microstructures and mechanical properties of Cr13 super martensitic stainless steel after different heat treatments were studied. The results show that the structures of the steel after quenching are of lath martensite mixed with a small amount of retained austenite. With the raising quenching temperature, the original austenite grain size increases and the lath martensite gradually becomes thicker. The structures of the tempered steel are mixtures of tempered martensite and reversed austenite dispersed in the martensite matrix. The amount of reversed austenite is from 754% to 2249%. After different heat treatments, the tensile strength, the elongation and the HRC hardness of the steel are in the range of 813-1070 MPa, 101%-212% and 2133-3237, respectively. The steel displays the best comprehensive mechanical properties after the sample is quenched at 1050 ℃ followed by tempering at 650 ℃.  相似文献   

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