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1.
尹泉  彭如恕  朱红梅 《表面技术》2016,45(4):99-104
目的 采用激光熔覆技术在304不锈钢表面制备含有碳铬、硼钛化合物及氧化钛等增强相的铁基熔覆层,并对涂层的微观组织及其性能进行研究分析,以期为以后工业化应用提供理论基础.方法 对钛铁(钛质量分数70%)+硼铁(硼质量分数70%)+石墨(纯度99.9%)复合粉末质量分数分别为5%、10%、20%、30%的4种熔覆层(其余熔覆材料为304不锈钢粉末)进行了实验研究,利用扫描电镜(SEM)、X射线衍射对激光熔覆层的微观组织形貌和增强粒子的成分进行研究分析,用光学显微硬度计对激光熔覆层的显微硬度进行测试,用电化学工作站对熔覆层的耐蚀性能进行测试.结果 熔覆层无明显裂纹、气孔等缺陷,与基材结合良好;加入的石墨与钛铁、硼铁在激光熔覆过程中发生了反应,原位生成了Cr23 C6、Cr3 C2、TiO2、Ti1.8 B50等硬质增强相;随着钛铁、硼铁和石墨所占的质量分数增加,熔覆层中生成的硬质增强相含量增加,熔覆层的显微硬度值也随之得到明显提高,其中质量分数为30%的复合粉末熔覆层硬度是基材的3.6倍;激光熔覆试样较基材的耐腐蚀性也随着复合粉末质量分数的增加而提高,其中质量分数为30%的复合粉末熔覆层的耐蚀性是基材的1.58倍.结论 激光熔覆制备含有碳铬、硼钛化合物及氧化钛等增强相的铁基熔覆层较基材性能有明显提高.  相似文献   

2.
目的 通过氩弧熔覆技术在TC4合金表面制备石墨烯增强钛基复合涂层,以改善其耐磨性能.方法 将钛粉和石墨烯在球磨机中充分混合.将混合后的粉末涂覆于TC4合金表面,采用氩弧熔覆技术将预涂覆粉末熔化,制备出陶瓷颗粒增强钛基熔覆层.采用X射线衍射分析仪分析涂层的物相,利用光学显微镜、扫描电子显微镜分析熔覆层中颗粒相的组成及分布.采用显微维氏硬度仪和摩擦磨损试验机,测试熔覆层的显微硬度和磨损性能.结果 熔覆层厚度可达1 mm,且表面及横截面没有气孔、裂纹等缺陷产生,物相主要包括TiC和 α-Ti.熔覆层中不同区域的组织存在差别,涂层的中上部组织主要为树枝晶,底部组织中树枝晶逐渐减少.熔覆层与基体呈冶金结合,组织致密.增强相TiC以颗粒状和花瓣状形式存在.石墨烯增强钛基复合涂层的显微硬度高达845.4HV.在相同磨损条件下,TC4合金基体与熔覆层的磨损量分别是0.153 g和0.0123 g,熔覆层的磨损量明显降低.涂层的磨损机制主要是磨粒磨损.结论 与TC4合金基体对比,熔覆层的显微硬度提高约2.5倍,耐磨性提高12倍.氩弧熔覆原位自生TiC陶瓷颗粒增强钛基熔覆层可显著提高TC4合金表面的耐磨性.  相似文献   

3.
在GH4169表面通过激光熔覆制备不同成分配比的Mo Si2-Ni Cr Si B复合涂层,利用扫描电镜对熔覆层的微观组织进行观察,测试了熔覆层的显微硬度及高温抗氧化性能。结果表明:添加不同比例的镍基合粉末制备的Mo Si2-Ni Cr Si B复合涂层试样与基体形成良好的冶金结合,无明显的裂纹、空洞,且随镍基合金粉末的添加,熔覆层组织与基体的结合越来越紧密,树枝晶状的硅钼相与合金相交错分布。添加不同比例镍基合金粉末时复合涂层的显微硬度比基体都有所提高,最高可达540 HV0.2,是基体硬度的1.2倍,随镍基合金粉末的增多,复合涂层硬度降低,最多会降低11%。添加10%的镍基合金粉末时试样的高温抗氧化性能最好。  相似文献   

4.
B4C含量对激光熔覆Fe基陶瓷复合涂层组织及性能的影响   总被引:1,自引:0,他引:1  
选用同一参数,激光熔覆了Fe基合金加不同含量B4C陶瓷(10%、15%、20%、25%和30%,质量分数)的复合涂层,分析比较了B4C含量对涂层显微组织、相组成、显微硬度以及耐磨性能的影响.结果表明,虽然熔覆粉末中B4C含量不同,复合涂层显微组织都是由平面状晶、胞状晶、树枝状晶和等轴晶组成,但含20%B4C涂层上部等轴晶区晶粒尺寸最小,当B.C含最达到25%及以上时涂层组织中分布着的B4C出现富集现象;不同B4C含量涂层物相都为α-Fe、Fe3B、B4C、Fe23(B,C)6和CrB等,且各组成相的含量差异不明显;不同B4C含量熔覆层显微硬度分布相同,较基材都明显提高,其中含20%B4C的熔覆层显微硬度最高达到1370 HV0.2;磨损试验表明,不同B4C含量熔覆层耐磨损性都明显优于基材,而含20%B4C熔覆层磨损量也最小.  相似文献   

5.
热锻模表面等离子熔覆Ni—SiC覆层的研究   总被引:3,自引:0,他引:3  
为了制备符合热锻模使用性能要求的模膛表面强化层,采用等离子熔覆技术,以W6为基体,在基体表面对不同含量SiC(质量分数)陶瓷粉末、Ni基自熔性粉末进行等离子熔覆,得到Ni基SiC合金涂层.对熔覆层横断面进行了显微硬度测量和显微组织分析,并对覆层的热物性参数进行检测.试验结果表明,添加镍基合金的涂层能够提高熔覆层的硬度,同时熔覆层能够得到很好的热物性能.  相似文献   

6.
通过氩弧熔覆技术在纯铜表面制备TiB2增强 Ni 基复合涂层,以改善其耐磨性能. 将钛粉、硼粉和镍粉在球磨机中充分混合,采用氩弧熔覆技术将纯铜表面预置粉末熔化制备出陶瓷颗粒增强镍基熔覆层. 采用X射线衍射仪、扫描电子显微镜、透射电子显微镜分析涂层的物相及涂层中陶瓷颗粒相的组成、分布及结构,利用显微硬度仪和摩擦磨损试验机测试涂层的显微硬度和耐磨性能. 结果表明,熔覆层物相主要包括γ(Ni, Cu)和TiB2;陶瓷颗粒增强相弥散分布于熔覆层中,其中颗粒相TiB2以六边形存在,熔覆层内部与基体界面处均无缺陷产生;熔覆涂层具有较高的显微硬度,当(Ti+B)质量分数为10%时,涂层显微硬度高达781.3 HV,与纯铜基体对比,熔覆层显微硬度提高约11.7倍;在相同磨损条件下,随(Ti+B)质量分数的增加,熔覆涂层的摩擦系数及磨损失重先减小后增大;氩弧熔覆原位自生TiB2陶瓷颗粒增强镍基熔覆层可显著提高纯铜表面的耐磨性能.  相似文献   

7.
为了在H13钢表面获得显微硬度呈梯度分布的铁基合金熔覆层,试验选取了三种铁基合金粉末FJ-1粉末、铁基合金粉末1号和高铬铁基合金粉末逐层进行激光熔覆,并探究了每层熔覆时的工艺参数,最终获得了由三种粉末堆积成的铁基合金梯度熔覆层,并对熔覆层的表面硬度、结合状态、组织和显微硬度等进行了分析。结果表明,三种粉末逐层熔覆后的梯度熔覆层表现出了表面平整、表面硬度较高、内部组织无明显缺陷且层间结合紧密的特征。熔覆层顶层晶粒细小,夹层和底层晶粒逐渐变大,熔覆层与H13钢结合处呈现良好的冶金结合特性。各层的显微硬度由基体逐渐向顶层升高,呈明显的梯度分布,最终得到梯度熔覆层。  相似文献   

8.
利用6 kW光纤激光器在Cr12MoV汽车模具钢表面激光熔覆含有Ti-Fe,B4C粉末的铁基合金粉,在汽车模具钢表面直接原位合成TiC+TiB2颗粒增强的铁基合金复合涂层.涂层与基体呈良好的冶金结合,涂层组织细小,结构致密,宏观质量较好. XRD分析结果表明,涂层组织由α-Fe,TiC,TiB2组成. TiC,TiB2相均匀分布于熔覆层中.由于TiC,TiB2硬质相的形成以及激光的快速凝固冷却获得的细晶组织,使得熔覆层的显微维氏硬度有了明显提高.在距离熔覆层表面1.2 mm处显微维氏硬度高达1000 HV,有利于促进熔覆层耐磨性的提高.  相似文献   

9.
纳米Y2O3-Co基合金激光熔覆复合涂层的分析   总被引:2,自引:1,他引:1       下载免费PDF全文
采用纳米Y2O3和Co基合金粉末,并利用激光表面熔覆技术和堆焊技术在Ni基合金基体上制备了纳米Y2O3-Co基合金复合涂层.运用扫描电镜(SEM)等测试方法,研究了复合涂层的显微组织和显微硬度,通过磨损试验和腐蚀试验分析了激光熔覆涂层和单一堆焊层的耐磨性和耐蚀性.结果表明,激光熔覆层显微组织由熔合区、细等轴状枝晶区及粗枝晶区构成;激光熔覆层的显微硬度由堆焊层的512.8 HV提高到868.9HV;激光熔覆层的耐磨性提高了51.2倍,40 min磨损量由堆焊层的25.6 mg降低到激光熔覆层的0.5 mg;激光熔覆层在10%HCl、10% HNO3和10% NaOH中的耐腐蚀性均比堆焊表面有明显改善.  相似文献   

10.
研究了加钒与复合添加钒、钛时激光熔覆制备的铁基原位生成颗粒增强复合涂层的组织特点。研究表明,在FeCSiB激光熔覆粉末中单独添加钒和复合添加钒、钛均能获得平均显微硬度为(900~1050)HV0.2、且成形良好的熔覆层,熔覆层中原位生成的硬质颗粒面积分数随冷却速度的降低而提高。单独添加钒的熔覆层中增强颗粒分布与熔覆层显微硬度对冷却速度更为敏感。在相同冷却条件下,复合添加钒、钛的熔覆层中的增强颗粒的尺寸和面积分数以及先共晶奥氏体的数量显著高于单独添加钒的熔覆层,而其平均显微硬度比单独加钒的熔覆层略有下降。  相似文献   

11.
NiCrBSi and NiCrBSi/WC-Ni composite coatings were produced on pure Ti substrates by the laser cladding technology. Thermal gravimetric (TG) analysis was used to evaluate the high temperature oxidation resistance of the laser cladding coatings. The friction and wear behavior was tested through sliding against the Si3N4 ball at elevated temperatures of 300 °C and 500 °C. Besides, the morphologies of the worn surfaces and wear debris were analyzed by scanning electron microscopy (SEM) and three dimensional non-contact surface mapping. The results show that the microhardness, high temperature oxidation resistance and high temperature wear resistance of the pure Ti substrates are greatly increased. For the pure Ti substrate, the wear behavior is dominated by adhesive wear, abrasive wear and severe plastic deformation, while both laser cladding coatings, involving only mild abrasive and fatigue wear, are able to prevent the substrates from severe adhesion and abrasive wear. In particular, the laser cladding NiCrBSi/WC-Ni composite coating shows better high temperature wear resistance than the NiCrBSi coating, which is due to the formation of a hard WC phase in the composite coating.  相似文献   

12.
目的 在钛合金表面制备陶瓷相增强复合耐磨涂层。方法 采用等离子弧熔覆技术,在Ti6Al4V钛合金表面制备了原位自生TiB2、TiC、CrB陶瓷相增强镍基耐磨涂层。采用X射线衍射仪、扫描电镜、能谱仪检测了涂层的物相组成、组织组织以及微区化学成分,采用显微硬度计测试了涂层的硬度。结果 涂层靠近熔合线区域由Ni-Ti树枝晶及枝晶间的共晶组成,在涂层的中上部,大量原位增强相分布于镍基固溶体基体之中。在熔覆过程中,钛合金基材中的Ti元素同熔覆粉末中的B、C元素发生原位冶金反应形成TiB2、TiC增强相,CrB增强相为Ni基熔覆粉末中Cr、B元素反应形成,增强相的形态由各自的晶体结构及熔池凝固热力学与动力学条件决定。涂层的显微硬度得到显著提高,最高达1037HV0.2。结论 采用等离子弧熔覆技术,利用熔池内Ni-Cr-Ti-B-C合金体系的原位冶金反应,可以在钛合金表面制备原位自生TiB2、TiC、CrB增强镍基复合耐磨涂层。同Ti6Al4V基材相比,由于涂层具有大量增强相分布于镍基固溶体的组织特征,其显微硬度得到了显著提高。  相似文献   

13.
In order to study the effect of TiC/B4C ceramic particles on the microstructure evolution and microhardness of Ni204-based cladding coating, TiC/B4C/Ni204-based composite coatings were fabricated by laser cladding. The results showed that the TiC ceramic particles in the 30%TiC+70%Ni204 coating do not decompose. TiC is the main reinforcing phase in the coating; however, in 30%B4C + 5%TiC+65%Ni204 composite coating, TiB2 phase was in situ synthesized, and graphite, Fe2B, Ti-Mo-Nb, (Ti, Nb, Mo)(B, C) were formed simultaneously in the coating. The addition of TiC promoted the dissolution and reaction of B4C. In the presence of 30%TiC, the average microhardness and friction coefficient of the coating were 966.4 HV0.5 and 0.198, respectively, which were 3.23 and 0.281 times of the initial Ni204 coating. In the presence of 30%B4C and 5%TiC, the average microhardness and friction coefficient of the coatings were 1308.2HV0.5 and 0.530, respectively, which were 4.38 and 0.752 times of the initial coatings. The enrichment of TiC is proportional to the hardness of the coating.  相似文献   

14.
利用氩弧熔敷技术,在TC4合金表面原位合成了TiC-TiB2增强镍基复合材料涂层,利用SEM和XRD等方法分析了涂层的显微组织并测试了涂层的显微硬度.结果表明,熔敷组织主要由TiC,TiB2和Ti(Ni,Cr)组成,TiB2主要以棒状形式存在;在所形成的TiC-TiB2/Ti复合材料层中,TiC和TiB2颗粒分布均匀且尺寸细小;熔敷涂层由表及里组织不同;熔敷层与基体呈冶金结合,无气孔、裂纹等缺陷;涂层的显微硬度达到13.8 GPa,较基体提高了4.5倍.  相似文献   

15.
采用等离子表面熔覆技术,在Q235基体钢板上熔覆无硼以及含硼(其它粉末成分不变)的铁基合金涂层。利用光学显微镜(OM)、扫描电镜(SEM)、X射线衍射仪(XRD)、电子探针(EMPA)、显微硬度计对涂层的组织、相组成和显微硬度等进行分析。结果表明,含硼粉末熔覆涂层含有(Fe,Cr)7(C,B)3等硼化物相,含量比无硼粉末涂层的(Fe,Cr)7C3等碳化物相含量明显增多;并且产生了大量的共晶硼化物FeB以及少量的Fe2B,均匀弥散的分布在涂层中;在α-Fe中也有间隙固溶的硼;且随着粉末成分含硼量的增加,(Fe,Cr)7(C,B)3硼化物相含量增多,熔覆涂层的平均和最高显微硬度值也相应增加。  相似文献   

16.
Thick TiB2-TiC0.3N0.7 based composite coatings were deposited by reactive plasma spraying (RPS) successfully in air. The influence to the coating properties (morphology, Vickers microhardness and corrosion resistant property) with Cr addition in the thermal spray powder and TiB2-TiC0.3N0.7 based coatings treated by laser were investigated. The phase composition, structure and properties of composite coatings were studied using XRD, SEM, EDS, Vickers microhardness and electrochemical testers. The results show that the Vickers microhardness values and the density of laser surface treated coatings are improved significantly. The Cr addition in the thermal spray powder can increase the density, improve the wettability of ceramic phases, uniform the phase distribution and enhance the corrosion-resistant property of coatings. However, due to lower microhardness of metal Cr than ceramic phases in coatings, the Vickers microhardness values of plasma sprayed coatings and plasma sprayed coatings with laser surface treatment are a little lower than that of each coating without Cr addition in the thermal spray powder.  相似文献   

17.
NiCrBSi coatings with different Nb additions have been prepared by laser cladding. The microstructure, phase composition, hardness, and wear resistance of the coatings were studied by scanning electron microscopy (SEM), electron probe microanalyser (EPMA), X-ray diffraction (XRD), microhardness tester and M-200 wear tester. The results show that the phases in the NiCrBSi coating without Nb addition include γ-Ni, Cr23C6, Cr7C3, Ni3B, Ni3Si2 and CrB. The NbC phase appears in coatings after the addition of Nb element. When the addition of Nb is 2?wt-%, the NbC particles with a size of about 1.2?μm were found in the coating, and the amount of NbC is about 1.8?vol.-%. With the increase of Nb addition, the size and amount of NbC in the coatings also increased. When the addition of Nb is 6?wt-%, the size of NbC is about 2.3–6.1?μm and the morphology of NbC changed from particle to quadrangular and petaloid shaped. In addition, when the addition of Nb is 2?wt-%, the hardness and wear resistance of the coating are the best, and the wear resistance of the coating is 104% higher than that without Nb addition.  相似文献   

18.
钛合金表面激光熔覆AlBxCoCrNiTi高熵合金涂层的组织与性能   总被引:2,自引:2,他引:0  
目的研究AlB_xCoCrNiTi(x=0、0.5、1)高熵合金涂层的组织及性能,提高钛合金表面硬度及耐磨性。方法采用激光熔覆技术在TC4钛合金表面制备出AlB_xCoCrNiTi高熵合金涂层,运用扫描电子显微镜(SEM)、X射线衍射仪(XRD)、电子探针(EPMA)等材料分析手段,研究了B含量对高熵合金涂层形貌、组织结构、成分的影响,并采用维氏硬度计以及摩擦磨损试验检测了熔覆涂层的硬度和耐磨性能。结果高熵合金涂层与基体的整体结合形貌良好。未添加B的高熵合金涂层主要由BCC相和晶体结构类似(Co,Ni)Ti_2相组成。随着B的加入,高熵合金涂层的晶粒得到细化,BCC相含量增加,(Co,Ni)Ti_2相含量有所减少,且熔覆层原位生成了TiB_2硬质相,TiB_2硬质相含量随B含量的增加而增加。熔覆涂层的硬度和耐磨性与B含量呈正相关关系,AlB_1CoCrNiTi高熵合金涂层的平均显微硬度最大,为814HV,且AlB_1CoCrNiTi高熵合金涂层的磨损量最小,其耐磨性约为未添加B的高熵合金涂层的7倍。结论 B含量的增加,有助于改善AlB_xCoCrNiTi高熵合金涂层的摩擦学性能,AlB_xCoCrNiTi高熵合金涂层有效提高了钛合金表面的硬度及耐磨性能。  相似文献   

19.
(Ni0.6Fe0.4)65B18Si10Nb4C3 amorphous composite coating was successfully fabricated on AISI 1045 steel substrate by using laser cladding process with coaxial powder feeding equipment. The microstructure and phase distribution of the coating were investigated by using x-ray diffraction, scanning electron microscopy and transmission electron microscope. The mechanical properties of the coating were examined by using microhardness testing and nanoindentation. The experimental results indicated that the volume fraction of amorphous phase increased with the decrease in laser cladding heat input, leading to an improvement of mean microhardness and nanohardness. NbC particles in a size ranging between 150 and 1650 nm were found embedding in the amorphous composite coatings in all situations. The presence of the NbC particles can contribute to an improvement of 96.7 HV in hardness on the basis of experimental results, while theoretical prediction suggests an improvement of 92.5 HV by using Orowan-Ashby equation.  相似文献   

20.
目的利用电磁复合场(EMCF)辅助激光熔覆制备TiB_w/Ti网状结构复合涂层,探索电磁场对涂层组织结构的影响。方法以TiB_2∶Ti=1∶1(摩尔比)的混合粉末为熔覆材料,TC4作为基板材料,通过外加电磁复合场进行激光熔覆试验。通过扫描电子显微镜(SEM)观察洛伦兹力方向对熔覆层组织结构的影响,利用X射线衍射仪(XRD)和维氏显微硬度计分析施加电磁复合场前后熔覆层的相组成和硬度分布。结果未施加电磁复合场的熔覆层组织主要为细针状、粗棒状和颗粒状组织。而施加电磁复合场后,熔覆层出现了网状结构,而且方向向下的洛伦兹力可使涂层内部形成空间间距更大的网状结构。此外,单独施加稳态磁场后,熔覆层只出现细针状和粗棒状组织。电磁复合场施加前后熔覆层硬度与基体相比,均有很大的提高。但未施加电磁复合场的熔覆层硬度变化幅度较大;施加电磁复合场后,随着距熔覆层表面距离的增加,硬度的变化幅度比较平缓。结论在洛伦兹力作用下,可得到TiB_w/Ti网状结构的复合涂层,电磁复合场使TiB_w/Ti网状结构强化相均匀分布,同时提高涂层的显微硬度。  相似文献   

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