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1.
为了修复45钢磨损装备零件,采用激光熔覆工艺在45钢表面制备了Ni35合金涂层。利用扫描电镜(SEM)、能谱分析仪(EDS)、X射线衍射仪、显微硬度计和磨损试验机分析了熔覆层的显微组织,测试了涂层的硬度和耐磨性能。结果表明:熔覆层由γ-Ni和Ni3B两相组成;熔覆层中存在平面晶、胞状晶、枝晶等多种形态;Ni35熔覆层的硬度为450HV,熔覆层的耐磨性是基体的2.86倍。  相似文献   

2.
试验以直接超声方式,在喷射电沉积装置的基础上加载超声设备,分别在20℃和50℃两种镀液温度下在A3钢基体上制备了加载超声和不加载超声Ni镀层,研究了超声波及温度对Ni镀层表面形貌和硬度的影响。试验结果分析表明:在20℃条件下,超声可避免镀层裂纹的产生,提高镀层的硬度;在50℃条件下,超声可细化镀层的组织,且可显著提高镀层硬度;超声波对喷射电沉积层组织和性能的影响机理主要在于超声空化引起的析氢减少、细晶强化和加工硬度。  相似文献   

3.
《防务技术》2014,10(1):22-27
Ni–Al alloy coatings with different Y additions are prepared on 45# medium steel by laser cladding. The influence of Y contents on the microstructure and properties of Ni–Al alloy coatings is investigated using X-ray diffraction, scanning electron microscopy, electron probe microanalyzer, Vickers hardness tester, friction wear testing machine, and thermal analyzer. The results show that the cladding layers are mainly composed of NiAl dendrites, and the dendrites are gradually refined with the increase in Y additions. The purification effect of Y can effectively prevent Al2O3 oxide from forming. However, when the atomic percent of Y addition exceeds 1.5%, the extra Y addition will react with O to form Y2O3 oxide, even to form Al5Y3O12 oxide, depending on the amount of Y added. The Y addition in a range of 1.5–3.5 at.% reduces the hardness and anti-attrition of cladding layer, but improves obviously its wear and oxidation resistances.  相似文献   

4.
《防务技术》2014,10(4):360-370
An attempt is made to develop the tools that are capable enough to withstand the shear, impact and thermal forces that occur during friction stir welding of stainless steels. The atmospheric plasma spray and plasma transferred arc hardfacing processes are employed to deposit refractory ceramic based composite coatings on the Inconel 738 alloy. Five different combinations of self-fluxing alloy powder and 60% ceramic reinforcement particulate mixtures are used for coating. The best friction stir welding tool selected based on tool wear analysis is used to fabricate the austenitic stainless steel joints.  相似文献   

5.
采用闭合场非平衡磁控溅射技术在不锈钢基体上制备了不同质量分数Mo的CrMoN复合涂层。采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、能谱仪(EDX)和光电子能谱仪(XPS),系统分析了CrMoN复合涂层的相结构、表面形貌、成分、原子化合价价态等,结果表明:添加Mo后,CrMoN涂层的择优取向由CrN涂层的(220)转变为(200),CrMoN涂层中的Mo原子取代了CrN晶格中的Cr原子,形成(Cr,Mo)N置换固溶体。采用Nano Test 600硬度测试仪测定了CrMoN复合涂层的纳米硬度,结果表明:由于CrN相和MoN两种硬相的协同作用,使得CrMoN复合涂层的纳米硬度值增大。采用多功能摩擦磨损试验机测定了CrN涂层及CrMoN复合涂层的摩擦因数,结果表明:CrMoN复合涂层的摩擦因数低于CrN涂层,磨损过程中由于摩擦热反应生成大量MoO3,使得复合膜的摩擦因数降低,起到了一定的润滑效果,降低了磨损量。  相似文献   

6.
采用多弧离子镀在304不锈钢基体表面沉积ZrN涂层。利用X射线衍射仪、扫描电子显微镜、纳米压入仪、电化学分析仪等,比较了基片方向对涂层结构、形貌、成分、沉积速率、硬度以及耐腐蚀性的影响。结果表明:基片方向不同会引起晶体择优取向的改变;垂直于靶材的样品表面大颗粒相对较少,但沉积速率只有平行样品的40%-50%;在负偏压条件下,平行于靶材的样品涂层硬度更高,而垂直样品获得更好的耐腐蚀性。  相似文献   

7.
研究了电刷镀Ni镀层在海水中腐蚀磨损的失重情况。应用扫描电镜(SEM)和能谱仪(EDS)分别观测了Ni镀层在海水中腐蚀磨损后的形貌,并进行了成分分析,结果表明:Ni镀层腐蚀磨损后表面新增加了C、lO、Fe等元素,镀层表面除了有犁削沟槽,局部还出现了被海水腐蚀溶解的形貌。通过腐蚀磨损协同率计算得出:Ni镀层在海水中腐蚀磨损时,腐蚀与磨损发生了正协同作用,但磨损是材料流失的主要形式。  相似文献   

8.
为了改善发动机活塞环的摩擦学性能和提高其使用寿命,采用多弧离子镀技术在活塞环表面制备了不同N2含量和弧电流的CrNx硬膜,采用X射线衍射技术、扫描电子显微镜、纳米硬度仪和发动机台架试验装置,分别测试了薄膜相结构、表面形貌、纳米硬度和抗高温摩擦磨损性能。研究结果表明:当N2质量分数为45%时,薄膜纳米硬度相对较高,CrNx薄膜中主要以CrN(220)相为主;随着弧电流的增加,薄膜的表面颗粒尺寸增加,当弧电流为60A时,薄膜纳米硬度相对较高。与Cr电镀层活塞环相比,CrNx涂层活塞环具有较强的抗高温粘着磨损性能。  相似文献   

9.
铁基非晶纳米晶涂层的耐磨性研究   总被引:4,自引:0,他引:4  
采用基于机器人的自动化高速电弧喷涂技术在45钢基体上制备了FeCrBSiMnNbY非晶纳米晶涂层。研究了非晶纳米晶涂层在油润滑条件下,不同磨损时间、速度、载荷对涂层的磨损行为。采用扫描电镜(SEM)、能谱分析仪(EDAX)和X射线衍射仪(XRD)对涂层的组织结构进行了表征,利用纳米压痕仪对涂层的力学性能进行了分析,摩擦磨损试验在MM200滑块磨损试验机上进行。结果表明:涂层组织均匀,结构致密,主要由非晶相和α-Fe相纳米晶组成;在相同磨损试验条件下,非晶纳米晶涂层的相对耐磨性为3Cr13涂层的4.6倍,磨损机制主要为脆性疲劳剥落。  相似文献   

10.
采用多弧离子镀技术,利用Cr靶和TiAl靶,在活塞环材料65 Mn钢基体上制备了CrTiAlN复合涂层,并对电镀Cr、CrN和CrTiAlN复合涂层在800℃下的抗高温腐蚀性能进行了比较分析,用扫描电镜、能谱仪和X射线衍射仪观察分析了样品表面高温腐蚀氧化膜。结果表明:CrTiAlN复合涂层具有优异的抗高温腐蚀性能,在800℃时仍具有良好的抗高温腐蚀性能,其氧化机理是O向涂层内部扩散氧化,在高温腐蚀过程中,CrTiAlN涂层中的Cr发生了选择性氧化,优先形成了Cr2O3,CrTiAlN涂层氧化层区域的结构由外至里组成顺序为Cr2O3、Al2O3+TiO2、(Cr,Ti,Al)N。涂层外层的Cr2O3氧化物有利于阻碍氧元素向涂层内部扩散,能够降低涂层的高温腐蚀速度。  相似文献   

11.
采用激光离散预处理钢基体再电镀铬层技术得到了一种新型复合结构,研究了这种新型复合结构在拉伸载荷作用下的开裂行为特征,并与无激光处理钢基体的试样在同样试验条件下的开裂特征进行了对比分析。结果表明:有激光离散预处理钢基体试样的承载能力要高于无激光预处理钢基体试样的承载能力,且有激光处理的试样开裂区域在两个激光带之间(无激光处理区),主裂纹呈现明显的周期性特征。本研究结果可归结为激光预处理钢基体不仅改善了基体表层的应力状态和力学性能,而且还改善了后续铬镀层的力学性能。  相似文献   

12.
高速电弧喷涂耐磨涂层性能研究   总被引:2,自引:0,他引:2  
将低碳马氏体和3Cr13+AlRE伪合金高速电弧喷涂层进行了性能和组织结构的对比分析。实验结果表明,与伪合金涂层相比,低碳马氏体涂层呈现出更优异的力学性能、耐磨性能和机械加工性能。该涂层可用于发动机曲轴等零件的再制造。  相似文献   

13.
采用多弧离子镀技术,利用Cr靶和TiAl靶,在活塞环材料65Mn钢基体上了制备CrTiAlN复合涂层,并对电镀Cr、CrN和CrTiAlN复合涂层在900℃下的高温氧化性能进行了比较,利用扫描电镜、能谱和X射线衍射观察和分析了样品表面氧化膜的性能,得到了CrTiAlN复合涂层的氧化机理。试验结果表明:CrTiAlN复合涂层在900℃时具有良好的抗高温氧化性能。  相似文献   

14.
《防务技术》2015,11(3)
Surface modification is essential for improving the service properties of components. Cladding is one of the most widely employed methods of surface modification. Friction surfacing is a candidate process for depositing the corrosion resistant coatings. Being a solid state process, it offers several advantages over conventional fusion based surfacing process. The aim of this work is to identify the relationship between the input variables and the process response and develop the predictive models that can be used in the design of new friction surfacing applications. In the current work, austenitic stainless steel AISI 304 was friction surfaced on high strength low alloy steel substrate. Friction surfacing parameters,such as mechtrode rotational speed, feed rate of substrate and axial force on mechtrode, play a major role in determining the pitting corrosion resistance and bond strength of friction surfaced coatings. Friction surfaced coating and base metal were tested for pitting corrosion by potentiodynamic polarization technique. Coating microstructure was characterized using optical microscopy, scanning electron microscopy and X-ray diffraction. Coatings in the as deposited condition exhibited strain-induced martensite in austenitic matrix. Pitting resistance of surfaced coatings was found to be much lower than that of mechtrode material and superior to that of substrate. A central composite design with three factors(mechtrode rotational speed, substrate traverse speed, axial load on mechtrode) and five levels was chosen to minimize the number of experimental conditions. Response surface methodology was used to develop the model. In the present work, an attempt has been made to develop a mathematical model to predict the pitting corrosion resistance and bond strength by incorporating the friction surfacing process parameters.  相似文献   

15.
离子镀TiN涂层工艺参数优化及工作距离对表面质量的影响   总被引:1,自引:0,他引:1  
采用多弧离子镀(multi-arc deposition)沉积TiN涂层,分析工艺参数对涂层表面质量的影响。首先以硬度为考核指标,设计了Ti弧流、N2流量、Ar流量、烘烤温度和偏压的5因素、4水平L16(45)正交试验,优化工艺参数。然后分析了优化工艺参数条件下,工件到靶材的距离(工作距离)对涂层表面质量的影响。采用SEM分析了表面形貌,通过截面形貌确定了涂层厚度;采用Nano-indentation测定了涂层硬度。结果发现:5个因素对涂层硬度的影响程度不同,影响硬度的因素主次顺序为Ti弧流—Ar流量—偏压—烘烤温度—N2流量;试验条件下,5因素的最优水平依次为70 A,10 sccm,40 V,350℃,44 sccm;存在最佳工作距离(约30 cm),使涂层表面质量最佳。  相似文献   

16.
《防务技术》2014,10(3):316-320
An electromagnetic coupling mathematical model is established by finite element method and is verified by the contrastive experiments of copper matrix Ni–TiN cylindrical coating electrode, copper electrode and Cu50W electrode. The wear mechanism of Ni–TiN/Cu composite electrode in the case of high-frequency pulse current is studied, and the influence of the fluctuation frequency of discharge current on electrode wear in micro-EDM is found out. Compared with the electrode made from homogeneous material, the high frequency electromagnetic properties of Ni–TiN composite layer can be used effectively to inhibit the effect of high frequency pulse on the electrode and improve the distribution trend of current density.  相似文献   

17.
对10、38CrSi、20Cr2Ni4A等坦克用钢的氮离子注入强化进行了试验。结果表明:注入后的试样,硬度和相对耐磨性都有不同程度的提高。硬度的测试结果与试验载荷有关。  相似文献   

18.
采用化学气相沉积(CVD, Chemical Vapor Deposition)工艺在KD-I型SiC纤维表面制备了SiC涂层,选择2h、4h、6h和8h四个时间点研究了沉积时间对纤维性能的影响.结果表明:具有CVD SiC涂层的SiC纤维较无涂层的纤维来说强度有所下降;在所研究的沉积时间范围内,随着沉积时间的增加,涂层的厚度有所增加,涂层由不连续的岛状转变为连续层状,纤维的单丝强度出现了先升后降的趋势.  相似文献   

19.
The Cr-plated coating inside a gun barrel can effectively improve the barrel's erosion resistance and thus increase the service life.However,due to the cyclic thermal load caused by high-temperature gun-powder,micro-element damage tends to occur within the Cr coating/steel substrate interface,leading to a gradual deterioration in macro-mechanical properties for the material in the related region.In order to mimic this cyclic thermal load and,thereby,study the thermal erosion behavior of the Cr coating on the barrel's inner wall,a laser emitter is utilized in the current study.With the help of in-situ tensile test and finite element simulation results,a shear stress distribution law of the Cr coating/steel substrate and a change law of the interface ultimate shear strength are identified.Studies have shown that the Cr coating/steel substrate interface's ultimate shear strength has a significant weakening effect due to increasing temperature.In this study,the interfacial ultimate shear strength decreases from 2.57 GPa(no erosion)to 1.02 GPa(laser power is 160 W).The data from this experiment is employed to establish a Cr coating/steel substrate interface shear damage model.And this model is used to predict the flaking process of Cr coating by finite element method.The simulation results show that the increase of coating crack spacing and coating thickness will increase the service life of gun barrel.  相似文献   

20.
《防务技术》2015,11(3)
An attempt is made in the present study to obtain the relationships among process parameters and physical dimensions of AA6063 aluminium alloy coating on IS2062 mild steel obtained through friction surfacing and their impact on strength and ductility of the coating. Factorial experimental design technique was used to investigate and select the parameter combination to achieve a coating with adequate strength and ductility. Spindle speed, axial force and table traverse speed were observed to be the most significant factors on physical dimensions. It was observed that the thickness of the coating decreased as the coating width increased. In addition, the width and thickness of the coatings are higher at low and high torques. At intermediate torque values, when the force is high, the width of the coating is high, and its thickness is thin; and when the force is low, the width and thickness are low. The interaction effect between axial force(F)-table traverse speed(Vx) and spindle speed(N)-table traverse speed(Vx) produced an increasing effect on coating width and thickness, but other interactions exhibited decreasing influence. It has also been observed that sound coatings could be obtained in a narrow set of parameter range as the substrate-coating materials are metallurgically incompatible and have a propensity to form brittle intermetallics.  相似文献   

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