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1.
以碳纤维针刺毡为整体骨架,采用CVI工艺制备出不同密度的C/C复合材料,然后用挤压铸造成型方法制备了C/C-Cu复合材料。并对不同组分的C/C-Cu以及C/C复合材料的弯曲性能进行了研究,结果表明:密度为4.59 g/cm3的C/C-Cu复合材料的xy向弯曲强度高于密度为1.85 g/cm3的C/C复合材料,并且具有一定的塑性,铜基体发挥了增韧增强的作用;密度为2.04 g/cm3的C/C-Cu复合材料的xy向弯曲强度低于密度为1.85 g/cm3的C/C复合材料,且没有塑性出现,铜基体分散未发挥增强作用。  相似文献   

2.
Graphene nanosheets(GNSs) strengthened AgCuTi composite filler(AgCuTi_G) was used to braze C/C composite and Ti-6Al-4V. The effects of GNSs on the wettability of AgCuTi_G filler on the C/C composite surface and the interfacial microstructure and mechanical properties of brazed joints were investigated. The results indicate that the addition of GNSs reduced the wettability of AgCuTi_G. The interfacial microstructure of brazed joints evolved with the addition of GNSs, where Ti_3Cu_4 and TiCu_4 were converted to TiCu and the thickness of the reaction layer adjacent to the base material decreased. The maximum shear strength of joints brazed at 0.3 wt% GNSs was 23.3 MPa(880℃/10 min). Further adding GNSs deteriorated the shear strength of the joints. Fracture of the joints occurred in the C/C composite substrate and the TiC layer adjacent to C/C composite.  相似文献   

3.
以PAN预氧化纤维整体毡为增强体,经碳化、等温CVI致密化后制备多孔的C/C复合材料预制体,利用气体压力浸渗法将Cu引入C/C预制体中制备C/C-Cu复合材料。采用氢氧(H2-O2)焰考核C/C-Cu复合材料的烧蚀性能,经扫描电镜和电子能谱对不同烧蚀区域的微观结构和成分进行分析,结果表明:预制体密度为0.96 g/cm3的C/C-Cu复合材料的线烧蚀率和质量烧蚀率分别为4.75μm/s、0.223 mg/s,烧蚀性能优良;其烧蚀表面具有不同的宏观形貌,在烧蚀中心区产生了明显的凹坑,主要烧蚀机制为C/C预制体的氧化和铜基体的机械冲刷;烧蚀过渡区聚集了大量的铜基体,其烧蚀机制为Cu的热氧化和机械冲刷;烧蚀边缘区材料表面变黑,主要因为C/C的氧化。为了提高C/C-Cu的烧蚀性能,需要发挥C/C预制体的"钉扎"作用,阻止Cu在高温下被气流冲刷而发生流动。  相似文献   

4.
采用脉冲放电等离子烧结(SPS)制备了添加镍粉中间层的铜/304不锈钢接头,研究了焊接温度对接头组织及力学性能的影响。结果表明,以镍粉为中间层,可以实现铜与304不锈钢的扩散焊接。铜/镍界面处铜、镍互扩散形成铜/镍界面扩散层,镍/304不锈钢界面处镍、铁互扩散形成镍/铁界面扩散层,铜/镍扩散层厚度大于镍/铁扩散层厚度。在焊接压力为10 MPa、焊接温度为900℃时,铜/304不锈钢接头剪切强度最佳,为98 MPa。铜/304不锈钢接头断口形貌呈韧窝状,断裂均在镍中间层处,接头连接强度受制于镍中间层本身的强度。  相似文献   

5.
《中国航空学报》2021,34(6):67-78
The brazing of diamond is a promising way to fabricate grinding wheels for efficient machining and precision grinding. This work investigated the feasibility of bonding diamond grits onto Aluminium Alloy 7075 (AA7075) substrate with a Ag–Cu–Ti filler alloy via laser fusion brazing. The interfacial microstructures and the strength of the brazed diamond joints were studied. The cross-section of the brazed diamond joint consists of a molten filler alloy layer, a molten pool, a heat effect zone, a columnar crystal zone and an equiaxed crystal zone. Within the interface of the filler alloy/substrate metal, microstructures observed possibly were Ag(s.s), Al(s.s), TixAl, Al2Cu and Mg intermetallic compounds. A layer of TiC with a thickness of about 30–50 nm was found at the bonding interface of the diamond/filler alloy. The averaged peak shear force of the brazed joints was found to be approximately 39.8 N. The abrasion grinding test indicated that the diamond/AA7075 brazed joint was adequate for grinding. However, the pulled-off of grit was found to be the primary failure of this type of brazed joint. This work broadened the brazing diamond technique and the range of applications of brazed diamond wheels for efficient grinding.  相似文献   

6.
本文利用AgCuTi-W复合钎料作中间层,在适当的工艺参数下真空钎焊Cf/SiC复合材料与Ti合金,利用SEM,EDS,XRD分析接头微观组织结构,利用剪切试验检测接头力学性能。研究结果表明:钎焊时,复合钎料中的Ti借助Cu-Ti液相与Cf/SiC复合材料反应,在Cf/SiC复合材料与连接层界面形成Ti3SiC2,Ti3Si和少量TiC化合物的混合反应层。复合钎料中的Cu与Ti合金中的Ti发生互扩散,在连接层与Ti合金界面形成不同成分的Cu—Ti化合物过渡层。钎焊后,形成W颗粒强化的致密复合连接层,W颗粒主要分布在Cu-Ti相中。W的加入缓解了接头的残余热应力,Cf/SiC/AgCuTi—W/TC4接头剪切强度明显高于CF/SiC/AgCuTi/TC4接头。  相似文献   

7.
胡胜鹏  李文强  付伟  宋晓国  龙伟民  曹健 《航空学报》2021,42(3):423846-423846
采用非晶态BNi-2钎料成功实现了高铌TiAl合金与GH3536合金的连接,获得良好的钎焊接头。钎焊接头的典型界面组织为TAN/B2+τ3/τ4+(Ni-Ti)-B/γ+(Ni-Ti)-B+CrB+G相/GH3536。通过分析钎焊温度对接头界面微观组织的影响,表明BNi-2钎料中B元素的扩散以及GH3536合金向液态钎料中的溶解对界面组织结构演变起着至关重要的作用。而随着钎焊温度的升高,扩散IV区逐渐消失,接头由4个区域变为3个区域,τ3/τ4化合物层及钎缝区域均逐渐增厚,黑色CrB相发生粗化,细小点状(Ni,Ti)-B含量减少。1 160℃保温10 min时,所获得的钎焊接头最大室温及高温(700℃)抗剪强度分别为~106.8 MPa和~76.2 MPa,其剪切强度降低约28.6%,接头均呈现脆性断裂模式。接头形成过程可以划分为固相扩散、液相生成、等温扩散凝固和残余液相析出4个阶段。  相似文献   

8.
在自制的XMH-160型线性摩擦焊机上,利用先期试验优化的规范参数进行了Ti-17焊接试验,检测了焊接过程摩擦功率及界面温度的变化曲线,并根据功率曲线计算获得了摩擦界面金属剪切强度的变化曲线.分析了上述三条曲线的变化特点及相互对应关系,并结合线性摩擦焊过程摩擦界面金属的热物理性能变化及热力耦合过程,初步探讨了Ti-17线性摩擦焊焊接接头的形成机理.  相似文献   

9.
高性能铝基复合材料的颗粒分布及界面结合   总被引:7,自引:0,他引:7       下载免费PDF全文
采用常规粉末冶金和高能球磨粉末冶金法制备了B4Cp/Al复合材料,研究了B4C颗粒分布与界面结合特点、形成机制以及对材料性能的影响。结果表明,17%(体积分数)B4Cp/6061Al复合材料的屈服和抗拉强度分别为415MPa和470MPa,比常规粉末冶金复合材料分别提高了69%和70%。微观分析表明,高能球磨粉末冶金复合材料中B4C颗粒均匀分布、颗粒与基体之间存在近百纳米厚度的界面层,界面层由呈带状且有序分布的微细铝晶粒和弥散分布的纳米颗粒组成。高能球磨过程中,铝粉末在钢球表面形成冷焊层,B4C不断被挤入而均匀化是实现颗粒均匀分布的主要机制;球磨过程中铝粉末表面氧化层破碎暴露出新鲜铝表面且与镶嵌与铝粉末中的B4C颗粒形成界面结合是获得良好界面结合复合材料的重要条件  相似文献   

10.
对带(B4C C)涂层的SiC纤维增强Ti-153复合材料的界面反应进行热力学分析,并对界面反应层做能谱成分分析及X-射线衍射结构分析.结果表明,界面反应层为TiC,TiB2和TiB相的组合物.采用不同的热压工艺制备复合材料并分别进行拉伸实验及扫面电镜观察,从而得出不同界面结合状态与拉伸性能之间的关系.对经不同时间的热处理具有不同界面反应层厚度的复合材料进行拉伸实验,结果表明,随着反应层厚度的增加复合材料性能下降.  相似文献   

11.
3D针刺C/SiC复合材料螺栓的低成本制备及力学性能   总被引:2,自引:1,他引:2  
刘杰  李海滨  刘小瀛 《航空学报》2013,34(7):1724-1730
以三维针刺碳毡作为预制体,通过化学气相渗透(CVI)工艺,制备了密度约为1.50~1.60 g/cm3的半成品C/SiC复合材料板材,然后采用专用磨具在半成品复合材料板上按照指定的取样方式切割出螺杆与头部毛坯,并分别对螺杆和头部攻丝,将两者装配在一起形成半成品螺栓,对半成品螺栓CVI致密化并在其表面制备SiC抗氧化涂层,制备出低成本的3D针刺C/SiC复合材料螺栓.提出了C/SiC复合材料螺栓力学性能的测试方法,通过自行设计的夹具,对所制备螺栓的力学性能进行了测试表征,并利用扫描电子显微镜(SEM),对C/SiC复合材料螺栓的拉伸断口形貌进行了观测.结果表明,所制备的螺栓具有较好的抗拉和抗剪能力,室温下螺栓的抗拉强度和剪切强度分别为151.7 MPa和85.6 MPa.  相似文献   

12.
采用碳纤维复合网胎针刺预制体,通过溶液浸渍工艺制备了碳纤维增强C/C-SiC和C/C-SiC-ZrB2陶瓷基复合材料,并对材料的力学、热物理和烧蚀性能进行了分析对比。结果表明:针刺C/C-SiC-ZrB2复合材料的面内弯曲强度、厚度方向的压缩强度、层间剪切强度分别为199、274和19.3 MPa,各性能均低于对应的针刺C/C-SiC复合材料。针刺C/C-SiC-ZrB2材料与针刺C/C-SiC材料相比,热导率得到大幅度提高,而线胀系数略微有所降低。2 500 K、600 s风洞试验后,针刺C/C-SiC-ZrB2复合材料表现出良好的抗氧化烧蚀性能,质量烧蚀率约0.4×10-4g/s。  相似文献   

13.
《中国航空学报》2023,36(8):454-471
A novel friction stir double-riveting welding (FSDRW) technology was proposed in order to realize the high-quality joining of upper aluminum (Al) and lower copper (Cu) plates, and this technology employed a Cu column as a rivet and a specially designed welding tool with a large concave-angle shoulder. The formations, interfacial characteristics, mechanical properties and fracture features of Al/Cu FSDRW joints under different rotational velocities and dwell times were investigated. The results showed that the well-formed FSDRW joint was successfully obtained. The cylindrical Cu column was transformed into a double riveting heads structure with a Cu anchor at the top and an Al anchor at the bottom, thereby providing an excellent mechanical interlocking. The defect-free Cu/Cu interface was formed at the lap interface due to the sufficient metallurgical bonding between the Cu column and the Cu plate, thereby effectively inhibiting the propagation of crack from the intermetallic compound layer at the lap interface between the Al and Cu plates. The tensile shear load of joint was increased first and then decreased when the rotational velocity and dwell time of welding tool increased, and the maximum value was 5.52 kN. The FSDRW joint presented a mixed mode of ductile and brittle fractures.  相似文献   

14.
采用热 力学模拟试验机Gleeble1500D作加热设备,用Ti片和Ti箔 Ni片 Ti箔复合中间层扩散连接钨与铜及铜合金CuCrZr。结果表明,当用Ti片连接钨与铜,连接温度下Ti与Cu反应但未转化成液相时,则反应层由具有一定脆性的多层化合物组成,接头强度偏低;当Ti片通过共晶反应转化成液相且大部分液相被挤出连接区时,接头强度显著提高,最高达220MPa。用Ti Ni Ti复合中间层连接钨与CuCrZr时,结合界面是通过Ti分别与Ni、W及Cu相互扩散并反应生成多层化合物和固溶体而形成的;与Ti片连接钨与铜的接头形成相似,连接过程中Ti箔未转化成液相时接头强度偏低,Ti箔转化成液相时接头强度明显提高。  相似文献   

15.
采用熔铝无压浸渗复合工艺在高体份SiCp/Al复合材料制备过程中同步复合Ti合金零部件(圆柱体),研究了这种跨宏-微观尺度、超混杂铝基复合材料的微观组织及性能,特别是SiCp/Al复合材料与Ti合金零部件之间的相容性。结果表明,复合材料性能优异、组织致密,SiC颗粒分布均匀、无偏聚现象。SiCp/Al复合材料与Ti合金之间的界面结合非常紧密,Ti元素向铝合金基体一侧有一定距离的扩散,并且出现了可增强界面结合的连续、无缺陷的界面反应物薄层,SEM和XRD分析表明界面反应产物为Al2Ti,界面剪切强度超过200MPa,完全可以满足在复合材料中的Ti合金零部件处加工装配孔的要求。  相似文献   

16.
碳纤维由混编,软编制成预制体,后经致密化制成C/C销钉复合材料,讨论了编织方法,复合工艺,界面,加工性等影响C/C销钉的因素,高压碳化沥青碳基体与碳纤维界面结合强;纤维体积分数对碳销钉的强度起决定性作用,软编C/C销钉可机加性好,带轴纱4向软编C/C销钉的纤维含量高,剪切强度高达63.7MPa。  相似文献   

17.
《中国航空学报》2021,34(12):205-213
The effect of Carbon Nanotubes (CNTs) content on the wettability of AgCu-4.5Ti + x CNTs (wt%) composite filler alloys on C/C composite was investigated. The results show that the added CNTs reacted with element Ti in the filler and produced the dispersed fine in situ synthesized TiC particles, which increased the consumption of element Ti and provided the nucleus for the growth of Ti-Cu compounds simultaneously. The above effects of introducing CNTs, inhibited the formation of Ti-Cu compounds, also changed the distribution of compounds, which dramatically influenced the interfacial microstructure and characteristics of wetting behavior. The increase of CNTs content refined and dispersed coarse Ti-Cu compounds, decreased the initial spreading temperature, and improved the wettability, but high content of CNTs (more than 0.3wt%) decreased the wettability of the filler alloy. The wetting interfacial microstructure of corresponding composite filler alloys were analyzed by Scanning Electron Microscope (SEM), Energy Dispersive X-ray Spectrometer (EDS) and Transmission Electron Microscope (TEM), which consisted of TiC, TiCu, TiCu2 and TiCu4 compound. The typical wetting behavior of AgCu-4.5Ti + 0.3wt% CNTs composite filler on C/C composite was divided into four stages. The effect mechanism of CNTs content on the wetting behavior was proposed.  相似文献   

18.
对三维编织C/SiC复合材料进行剪切试验和压缩试验,得到两组试验的载荷位移曲线以及剪切强度和压缩强度.实验发现,相同宽度的剪切试件,剪切厚度小的试件剪切强度比剪切厚度大的试件高;相同剪切截面的剪切试件,XY剪切强度高于YX剪切强度;横截面积相同,高度不同的压缩试件在X方向的压缩强度相差不大.对三维编织C/SiC复合材料热端构件进行分析,结果表明,构件的压缩强度和剪切强度都能满足强度要求.  相似文献   

19.
采用"化学气相渗透+先驱体浸渍裂解"(CVI+PIP)混合工艺制备固体冲压发动机用C/C-SiC复合材料喷管内层,综合考查复合材料的微观结构、弯曲性能和抗烧蚀性能以及固冲发动机C/C-SiC喷管内层水压和点火实验。结果表明:复合材料的弯曲强度达到197 MPa,且断裂破坏行为呈现典型的韧性模式;复合材料具有优异的抗氧化烧蚀性能,氧化烧蚀200 s后线烧蚀率仅为0.0063 mm·s-1;研制的C/C-SiC复合材料构件的水压爆破压强为6.5 MPa,表明构件具有良好的整体承载能力;C/C-SiC复合材料喷管内层高温综合性能通过了固体冲压发动机点火实验考核。  相似文献   

20.
采用座滴法研究了PdCo合金及PdCo-V合金对SiC陶瓷的润湿性.设计的PdCo-(4~20)V-(2~4)Ni-Si-B钎料可用于SiC的连接,在1463 K,1493 K两个温度,保温时间均为10 min的连接条件下得到的接头室温三点弯曲强度分别为52.0 MPa和56.8 MPa.微观分析表明,接头中在紧靠SiC的界面交叉分布着Pd2Si相与CoSi (或Co2Si) 石墨的混合相,而元素V只在接头的中央富集,形成了弥散分布的V2C相.  相似文献   

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