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1.
树脂基复合材料用陶瓷涂层防护性能分析   总被引:2,自引:0,他引:2       下载免费PDF全文
采用等离子喷涂铝粉作为打底材料在碳纤维增强聚酰亚胺复合材料(PMC)基体上制备了Al2O3和ZrO2轻质陶瓷防护涂层,测试了涂层的剪切结合强度、耐热循环性能、抗冲蚀性能、隔热性能。结果表明,等离子喷涂铝粉作打底层的涂层系统,性能优于电弧喷铝或电弧喷锌作打底层的涂层系统。带有Al2O3涂层的试样失重不到基体材料失重的1/3,Al2O3和ZrO2陶瓷涂层都可以为聚酰亚胺复合材料基体提供有效的冲蚀防护。Al2O3和ZrO2陶瓷涂层都可以为聚酰亚胺复合材料基体提供有效的隔热防护,ZrO2涂层隔热性能优于Al2O3涂层。  相似文献   

2.
AZ91D热化学反应热喷涂陶瓷涂层热震性研究   总被引:4,自引:3,他引:1  
为拓宽镁合金的应用领域,提高其使用性能,在镁合金AZ91D表面使用火焰喷涂技术制备Al2O3 TiO2 SiO2 ZnO Al陶瓷涂层,通过制备涂层使其成为既有金属的强度和韧性,又有陶瓷耐高温、耐腐蚀等优点的复合材料.陶瓷涂层X射线衍射分析发现,涂层内有Mg2SiO4、MgAl2O4等新相生成,这说明在喷涂制备涂层过程中,陶瓷粉末与基体、陶瓷粉末相互之间有热化学反应进行,热化学反应的发生为涂层与基体在传统的机械嵌合和物理结合方式的基础上增添了化学结合.经热冲击试验测试,陶瓷涂层具有良好的抗热震性能.  相似文献   

3.
超音速电弧喷涂不锈钢涂层结合强度研究   总被引:7,自引:1,他引:6  
本文研究了采用超音速电弧喷涂在 45~#钢以无底层和铝青铜打底时喷涂 3Cr13不锈钢涂层的结合强度测量结果表明,在无底层的条件下,涂层与基体结合强度与普通电弧喷涂相比有较大幅度的提高,而利用铝青铜打底时,涂层与基体结合强度较低,井分析了结合强度提高的原因。  相似文献   

4.
火焰喷涂热障陶瓷梯度涂层的制备工艺及性能   总被引:1,自引:0,他引:1       下载免费PDF全文
陈文华  顾冬冬  秦展琰 《焊接学报》2005,26(12):104-107
在优化热障梯度涂层和过渡层的成分设计及氧乙炔火焰法制备工艺的基础上,获得了组织致密,有良好冶金结合的Al2O3/Fe热障梯度涂层。结果表明,涂层中的Al2O3分布基本均匀,且在整个涂层中,从钢基体到涂层表面的化学成分呈梯度分布,涂层与钢基体及各涂层之间存在明显的冶金结合;所获得的Al2O3热障梯度涂层与普通纯Al2O3热障涂层和带底层(Ni)和过渡层(Cu)的热障涂层相比,与基体间的结合力显著提高,弯曲强度、耐热冲击性能大为增强,涂层热障效果随涂层的数量和Al2O3含量的增加也获得明显提高。  相似文献   

5.
采用大气等离子喷涂在不锈钢表面制备镍基Al2O3梯度陶瓷涂层和双层陶瓷涂层,研究涂层的显微组织和结合性能.结果表明:梯度涂层结构紧凑,层状结构明显,孔隙率低,稀土氧化物对梯度涂层微观结构和结合强度改善起到一定作用.梯度涂层比双层结合强度高,双层涂层在打底层与基体间断开,而梯度涂层断层在第4层,梯度涂层拉断层层面凹凸不平,由原来等离子喷涂粒子相互交叉堆叠部分、陶瓷相脆性断裂和少数金属相塑性变形组成.  相似文献   

6.
Al2O3-TiB2复合陶瓷涂层制备及耐液锌腐蚀性能   总被引:1,自引:0,他引:1  
针对连续热镀锌生产线中浸锌零部件表面的腐蚀磨损问题,应用高能高速等离子喷涂设备制备了Al2O3-TiB2复合陶瓷涂层.测试了涂层的显微组织、显微硬度、结合强度及耐熔融锌液腐蚀性能.结果表明涂层显微组织中不存在相互贯通的孔隙、微裂纹和未熔化颗粒,孔隙分布均匀且孔径较小,孔隙率<3%.涂层与基体结合状态良好,结合强度达到56 MPa.经过30天的熔融锌液浸泡,涂层表面未见有点蚀、裂纹或剥落现象.Al2O3-TiB2复合陶瓷涂层高的致密性和较好的抗热震性能对涂层力学性能和耐熔融锌液腐蚀性能提高起到了重要作用.  相似文献   

7.
在AZ91D表面SHS反应热喷涂Al-CuO系Al2O3基复相陶瓷涂层   总被引:1,自引:0,他引:1  
采用SHS反应火焰喷涂技术,把Al-CuO系铝热剂引入到喷涂材料中,在AZ91D表面制备了Al2O3基复相陶瓷涂层.结果表明:SHS反应热喷涂层综合性能明显优于传统热喷涂层,传统热喷涂层的热震次数、开气孔率、耐蚀性和耐磨性分别为14次、17.4%、基体的24倍和8.5倍;而反应热喷涂层则分别为40次、15.2%、基体的37倍和10.6倍.若辅以Ni-Al合金打底,喷后重熔工艺可使反应喷涂层的综合性能进一步提高.  相似文献   

8.
针对连续热镀锌生产线中浸锌零部件表面的腐蚀磨损问题,应用高能高速等离子喷涂设备制备了Al2O3-TiB2复合陶瓷涂层。测试了涂层的显微组织、显微硬度、结合强度及耐熔融锌液腐蚀性能。结果表明涂层显微组织中不存在相互贯通的孔隙、微裂纹和未熔化颗粒,孔隙分布均匀且孔径较小,孔隙率<3%。涂层与基体结合状态良好,结合强度达到56 MPa。经过30天的熔融锌液浸泡,涂层表面未见有点蚀、裂纹或剥落现象。Al2O3-TiB2复合陶瓷涂层高的致密性和较好的抗热震性能对涂层力学性能和耐熔融锌液腐蚀性能提高起到了重要作用。  相似文献   

9.
过渡材料对等离子喷涂Al2O3梯度陶瓷涂层性能影响   总被引:1,自引:0,他引:1       下载免费PDF全文
针对Al2O3陶瓷涂层结合强度低、孔隙率高的实际,选择NiAl金属间化合物和金属铜粉作为过渡材料,利用等离子喷涂制备Al2O3梯度陶瓷涂层,并对梯度涂层进行组织形貌观察,测试结合强度和孔隙率.结果表明,梯度涂层的组织表现出宏观的不均匀性和微观连续性的分布特征,NiAl和Cu是金属基体与Al2O3涂层之间过渡层的理想材料,可以有效地提高涂层的结合强度,而Cu-Al2O3梯度涂层又比NiAl-Al2O3梯度涂层结合强度高;梯度涂层的孔隙率远低于双涂层的孔隙率,在Cu-Al2O3梯度涂层中随Al2O3含量的增加,涂层的孔隙率降低,而且孔隙率低于NiAl-Al2O3梯度涂层.  相似文献   

10.
将微纳米材料应用于热喷涂制备高耐磨、耐蚀的涂层是近年来的研究热点.作者测量了微纳米陶瓷粉末对电弧喷涂中飞行粒子熔化程度、飞行速度及雾化粒子尺寸的影响,观察了喷涂铁基TiB2/Cr3C2/Al2O3粒子的变形过程,分析微纳米陶瓷粉末对粒子行为的影响规律,并对涂层性能进行了测试,发现微纳米粒子增加了金属陶瓷复合涂层的结合强度,改善涂层的韧性,对涂层的耐磨粒磨损性能影响不大,但明显提高涂层的耐冲蚀性能.最后对微纳米陶瓷粉末在喷涂过程中的作用、对粒子行为及涂层性能的影响机理进行了探讨.  相似文献   

11.
肖勇  程钊  周建军  张建  罗丹  李明雨 《焊接学报》2022,43(12):27-34
在波导器件中,铝合金壳体较差的润湿性制约了其与微带电路板之间大面积、可靠低温钎焊连接. 通过电弧喷涂技术在5A06铝合金表面制备了厚度约为80 μm的Ag-15%Ni(质量分数)单一涂层和Ni-5%Al/Ag-15%Ni(质量分数)复合涂层,以提升Sn-Pb钎料在其表面的润湿性. 对比研究了两种涂层的显微结构、涂层界面结合性能、低温钎焊行为及钎焊接头剪切失效机制. 结果表明,涂层与铝合金基板间形成了良好的界面结合,并且两种涂层均具有较好的低温焊接性. 其中,Ag-15%Ni单一涂层与铝合金基板的结合强度为40 MPa,喷涂后铝合金基板与T2紫铜形成的钎焊接头抗剪强度为26 MPa. 相较而言,Ni-5%Al /Ag-15%Ni复合涂层展现出更佳的涂层结合强度(42 MPa)和钎焊接头抗剪强度(31 MPa).  相似文献   

12.
目的研究Al2O3含量对Al2O3-Ni复合涂层摩擦磨损性能的影响。方法采用大气等离子喷涂技术,在6082-T6铝合金基体表面分别制备Al2O3含量为30%、50%和70%的30%Al2O3-70%Ni、50%Al2O3-50%Ni、70%Al2O3-30%Ni复合涂层。对三种涂层的显微硬度和摩擦磨损性能进行对比研究,并分析原始粉末和涂层的相组成、涂层组织结构、磨损形貌和磨损机制。结果原始粉末中的部分α-Al2O3相在急冷条件下转变成γ-Al2O3新相,涂层中各衍射峰出现明显的宽化现象,有Al2O3非晶相生成。三种试样均由基体、打底层、涂层组成,基体与打底层之间有明显的分界面,打底层因与涂层化学成分相似使分界面不明显,层与层之间结合良好。涂层的显微硬度明显高于基体,约为基体硬度的4~5倍,且其随着Al2O3含量的增加而增加。在试验条件下,涂层的摩擦系数、磨痕宽度、磨损率均随着Al2O3含量的增加而减小,相较于30%Al2O3-70%Ni涂层,70%Al2O3-30%Ni涂层的摩擦系数降低了13%,磨损率降低了66.7%。30%Al2O3-70%Ni涂层磨损最严重,磨痕表面剥落明显,而50%Al2O3-50%Ni涂层与70%Al2O3-30%Ni涂层磨损后,磨痕表面产生大量即将剥落的"橘皮状"氧化物,磨损机制均为氧化磨损与粘着磨损的混合。结论 Al2O3-Ni复合涂层中增加Al2O3含量可以提高复合涂层的耐磨性。  相似文献   

13.
采用电热爆炸喷涂和等离子喷涂联合制备热障涂层,以电热爆炸喷涂法在DZ125合金表面制备NiCoCrAlY粘结层,以等离子喷涂技术制备陶瓷顶层。利用扫描电镜(SEM)和X射线衍射(XRD)仪对所制备的粘结层进行分析,结果表明:电热爆炸喷涂的粘结层与基体结合良好,喷涂态的粘结层的相主要由Ni3Al组成。采用联合法制备的热障涂层,在喷涂态的陶瓷层、粘结层、基体3者结合良好,界面清晰。在高温热循环过程中,粘结层/陶瓷层界面间生成了连续、致密的Al2O3膜,阻碍粘结层的氧化。粘结层/TGO界面产生平行于界面的裂纹,是导致热障涂层失效的主要原因。  相似文献   

14.
李文生  王裕熙 《表面技术》2019,48(8):263-271
目的 提高热障涂层粘结层的抗高温氧化性能。方法 分别采用爆炸喷涂和等离子喷涂工艺制备了不同结构的NiCoCrAlY粘结层,之后通过等离子喷涂制备8YSZ陶瓷层,分析了两种粘结层结构的热障涂层的抗高温氧化性能。利用XRD、SEM和EDS对涂层物相、微观结构和成分进行分析,并对其与基体结合状态、抗高温氧化性能进行研究。结果 爆炸喷涂粘结层内部组织致密,缺陷较少,与基体结合处孔隙少;而等离子喷涂粘结层内部的层状特征明显,孔隙较多,表面粗糙度较低。爆炸喷涂粘结层氧化5 h后,表面生成了一层富Al2O3的致密氧化物膜;而等离子喷涂粘结层表面形成了富NiO、CoO、Cr2O3和Ni(Cr,Al)2O4的氧化物层,并出现了许多微裂纹和片层状氧化物。爆炸喷涂制备的热障涂层试样在前5 h氧化增重速率高于等离子喷涂试样,随后变平缓,而等离子喷涂试样氧化速率依然较高。爆炸喷涂热障涂层的热生长氧化物层(Thermally grown oxide, TGO)经50 h氧化后,仍呈连续状,厚度均匀,粘结层内氧化物缺陷较少。结论 爆炸喷涂粘结层组织均匀、致密,喷涂时涂层的氧化以及热处理的内氧化较少,使得足够的Al较快速地在粘结层表面形成致密的氧化铝,表面一定厚度的氧化铝层抑制了氧和其他金属原子的相向扩散反应,提高了涂层的抗高温氧化性能。  相似文献   

15.
A new method of preparation of biomaterial composite coating by the technique of subsonic thermal spraying was discussed in this paper. Ti6Al4V and pure Ti were chosen as substrate and sublayer material respectively and the working layer was sprayed with biomaterial hydroxyapatite (HAP), forming the composite coating. The experiments of heat shock and tensile strength showed that the bonding strength between coating and substrate is almost as same as that of specimen in which Ni/Al powder was adopted as sublayer. The phases of TiN, TiO2, and Ti2O3 were formed in the sublayer, which are free of toxic and have no side effects. The powder of working layer HAP was decomposed partly during spraying, but it can be solved by later treatment.  相似文献   

16.
Corrosion fatigue behavior of a steel with sprayed coatings   总被引:1,自引:0,他引:1  
This paper describes the corrosion fatigue behavior and fracture mechanisms of a steel with different sprayed coatings. Rotating bending fatigue tests were conducted in 3% NaCl solution using specimens of a medium carbon steel with sprayed coatings of a ceramic (Cr2O3), a cermet (WC-12%Co) and two metals (Ni-11 % P and Al-2% Zn). The corrosion fatigue process was basically the same for ceramic, cermet, and Ni-11 % P sprayed specimens. That is, the corrosive media could be supplied from the specimen surface to the substrate through cracks initiated during fatigue cycling and/or pores in the coatings, and thus corrosion pits were generated followed by subsequent crack initiation and growth in the substrate. The corrosion fatigue strength of ceramic sprayed specimens was slightly improved compared to that of the substrate steel because the under-coating (Ni-5%A1) could impede the penetration of the corrosive media although the ceramic coating had a poor resistance to cracking under cyclic loading. Cermet sprayed specimens also exhibited improved corrosion fatigue strength because of the high resistance to cracking and the low volume fraction of pores of the coating. In Ni-11 % Psprayed specimens, cracks were initiated in the coating even at low stress levels; thus the corrosion fatigue strength was the same as that of the substrate. Anodic dissolution took place in Al-2 % Zn coating because the coating was electrochemically poor, and thus the substrate was cathodically protected. Therefore, the corrosion fatigue strength of Al-2 % Zn sprayed specimens was enhanced to as high as the fatigue strength of the substrate in room air. Based on the experimental results, a dual-layer coating consisting of WC-12%Co and Al-2%Zn was fatigue tested. The coating was effective at low stress levels and exhibited long life under conditions where corrosion fatigue strength was critical.  相似文献   

17.
EB-PVD热障涂层热循环过程中粘结层的氧化和相结构   总被引:7,自引:0,他引:7  
采用磁控溅射方法在镍基单晶高温合金基体上沉积Ni-30Cr-12Al-0.3Y(质量分数,%)粘结层,采用电子束物理气相沉积方法(EB-VPD)沉积7%Y2O3(质量分数)-ZrO2陶瓷顶层,结果表明,在热循环过程中,非平衡相t′-ZrO2中的Y2O3含量逐渐减少,t′-ZrO2相逐渐分解成平衡相t-ZrO2(冷却时变转变成斜相)和立方组ZrO2,1050℃循环200次,粘结层氧化物(Al2O3)厚度约为3μm,表明Ni-Cr-Al-Y达宜作粘结层,继续热循环,陶瓷层中出现单斜阳,粘结层中Al贫化,氧化层中出现NiO及尖晶石等,引起应力集中,导致涂层失效。  相似文献   

18.
Arc-sprayed Al, Zn, and plasma-sprayed Al, Zn, Ni3Al and Cu were deposited on carbon fiber reinforced polyimide substrate as bond coats for erosion and thermal resistant coating. Shear adhesion strength of different materials was tested, and microstructures of bond coats were analyzed with scanning electron microscope. The results showed that the substrate was thermally damaged when Ni3Al or Cu was deposited as bond coat, and the bond coat was delaminated from the substrate. Arc-sprayed and plasma-sprayed Al and Zn could be used as bond coat materials. For Zn as bond coat material, depositing method had little influence on shear adhesion strength. While for Al as bond coat material, plasma spray was superior to arc spray. Preheating could improve shear adhesion strength with plasma sprayed Al as bond coat. The maximum shear adhesion strength obtained in this paper was 14.15 MPa, with plasma-sprayed Al as bond coat, and the preheating temperature was 250 °C.  相似文献   

19.
Sprayed Al or diffused Mg-Al layer was designed as interlayer between the thermal barrier coatings (TBCs) and Mg alloy substrate. The effects of the interlayer on the bond properties of the coats were investigated. Al layers were prepared by arc spraying and atmospheric plasma spraying (APS), respectively. Mg-Al diffused layer was obtained after the heat treatment of the sprayed sample (Mg alloy with APS Al coat) at 400 °C. The results show that sprayed Al interlayer does not improve the bond stability of TBCs. The failure of the TBCs on Mg alloy with Al interlayer occurs mainly due to the low strength of Al layer. Mg-Al diffused layer improves corrosion resistance of substrate and the bond interface. The TBCs on Mg alloy with Mg-Al diffused interlayer shows better bond stability than the sample of which the TBCs is directly sprayed on Mg alloy substrate by APS.  相似文献   

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