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1.
不同钎料对Ti3Al基合金钎焊接头强度及界面微观组织的影响 总被引:5,自引:1,他引:5
研究了Ti3Al基合金真空钎焊及接头组织性能;分析了不同钎料对接头界面组织和剪切强度的影响,初步优选了钎料,优化了钎焊连接规范参数;利用电子探针、扫描电镜和X射线衍射等方法对接头进行了定性和定量分析.结果表明:采用NiCrSiB钎料连接时,在界面处有金属间化合物TiAl3、AlNi2Ti和Ni基固溶体生成,TiAl3和AlNi2Ti的生成降低了接头的剪切强度;采用TiZrNiCu钎料连接时,在界面处有金属间化合物Ti2Ni、Ti(Cu,Al)2和Ti基固溶体生成,Ti2Ni和Ti(Cu,Al)2的形成降低了接头的剪切强度;采用AgCuZn钎料连接时,在界面处生成TiCu、Ti(Cu,Al)2和Ag基固溶体,TiCu和Ti(Cu,Al)2的生成是降低接头剪切强度的主要原因;采用CuP钎料连接时,在界面处生成了Cu3P、TiCu和Cu基固溶体,CuaP和TiCu使接头的剪切强度降低;对于NiCrSiB钎料,当连接温度为1 373 K,连接时间为5 min时,接头的剪切强度最高为219.6 MPa对于TiZr-NiCu钎料,当连接温度为1 323 K,连接时间为5 min时,接头的最高剪切强度为259.6 MPa;对于AgCuZn钎料,当连接温度为1 173 K,连接时间为5 min时,接头的最高剪切强度为125.4 MPa;对于CuP钎料,当连接温度为1 223 K,连接时间为5 min时,接头的最高剪切强度为98.6 MPa;采用TiZrNiCu钎料连接Ti3Al可获得最大接头强度. 相似文献
2.
采用Ag-Cu-Ti和Ag-Cu-In-Ti两种活性钎料箔带,分别在860℃/10 min和760℃/10 min两种规范下对AlN与可伐合金(4J29)进行了真空钎焊连接,获得了冶金质量良好的接头. 对接头室温抗剪强度进行了测试,AlN/Ag-Cu-Ti/4J29和AlN/Ag-Cu-In-Ti/4J29两种接头强度分别为126和113 MPa. 微观分析结果表明,两种接头中靠近陶瓷母材附近生成了连续的扩散反应层,结合XRD结果,该层主要由TiN相组成,反应层的厚度对接头强度有影响;钎缝基体区由铜基固溶体、银基固溶体和复杂的Ni(Fe,Co)-Ti化合物组成. 相似文献
3.
A commercially available Ti47 Zr28 Cu14 Ni11 (at. pct) amorphous filler foil was used to join ZrO2 ceramic and Ti-6Al-4V alloy. According to experimental observations, the interface microstructure accounts for the mechanical properties of the joints. The effects of brazing conditions and parameters on the joint properties were investigated. The joint shear strength showed the highest value of about 108 MPa and did not monotonously increase with the brazing time increasing. It was shown that decreasing of brazing cooling rate and appropriate filler foil thickness gave higher joint strength. 相似文献
4.
采用Al70Si7.5Cu20Zn2.5和Al65Si10Cu20Zn5两种急冷钎料钎焊L2纯铝和6063铝合金,研究钎焊接头的界面微观结构和力学性能.结果表明,急冷钎料钎焊接头由母材、界面区和钎缝中心组成.界面区为αAl固溶体,钎缝中心组织为αAl固溶体 θ(Al2Cu)相 Si相.采用Al65Si10Cu20Zn5急冷钎料钎焊的接头抗剪强度均高于Al70Si-7.5Cu20Zn2.5急冷钎料钎焊的接头强度;匹配氯化物钎剂钎焊的接头强度均高于氟化物钎剂.在相同的工艺条件下,采用急冷钎料钎焊的L2纯铝接头,其抗剪强度都明显高于相应的常规钎料,其增加值在40%左右. 相似文献
5.
采用自行设计的Co-Nb-Pd-Ni-V高温活性钎料对碳纤维增强碳化硅(Cf/SiC)复合材料进行钎焊连接,钎焊温度为1 200 ~ 1 320 ℃,钎焊时间固定为10 min. 结果表明,钎料中的V和Nb元素同时发挥反应活性,与Cf/SiC复合材料发生界面反应,在陶瓷界面形成了VC和NbC双层界面反应层. 当钎焊参数为1 280 ℃/10 min,典型的接头组织为(VC/NbC)双界面反应层/(Co,Ni)2Si + CoSi + NbC + Pd2Si/(NbC/VC)双界面反应层. 在此参数下获得的接头性能最佳,其中室温三点弯曲强度为61.0 MPa,在900和1 000 ℃下测得的强度均高于其室温强度,分别为83.2和87.7 MPa. 接头中的NbC和Pd2Si高熔点物相弥散分布在钎缝内部,大大提高了接头的高温性能. 相似文献
6.
采用Ni-Cr-Si-B高温钎料对Super-Ni/NiCr叠层复合材料和Cr18-Ni8不锈钢进行真空钎焊,并分析钎焊接头的显微组织及物相组成、显微硬度、抗剪强度及断口形貌.结果表明,钎缝主要由γ-Ni固溶体、Ni3B、CrB和Ni3Si组成;钎缝的显微硬度波动较大,γ-Ni基体显微硬度为450 MPa,Ni3B的显微硬度最高650 MPa.钎焊温度升高至1120℃时,接头的抗剪强度最高可达158 MPa,NiCr基层钎缝区呈脆性断裂,出现撕裂韧窝.钎缝区与Super-Ni复层之间形成Ni3B界面,Super-Ni复层钎缝区断裂于Ni3B界面. 相似文献
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8.
This study investigates the influences of brazing temperature,brazing time and brazing clearance on microstructures and high temperature strength of Inconel superalloy.Bonding is performed in a high vacuum furnace using BNi-2 as filler metal.Brazing temperatures employed in this study are 1080 ℃,1110 ℃ and 1140 ℃.Holding times at the brazing temperature are 5 min,15 min and 45 min.At the same time,the investigated brazing clearances are 30 μm,60 μm and 100 μm.Microstructure of the brazed joints is analyzed ... 相似文献
9.
点焊后焊接残余应力叠加工作载荷后,内部应力会重新分配.文中选用B1500HS超高强度钢薄板,制备焊接构件,并通过X射线衍射法测量焊核区、热影响区及母材区的表面残余应力.在施加拉剪载荷的情况下,分别从电极端面直径、焊接电流两方面考察点焊构件在施加拉剪载荷前后残余应力的分布情况.结果表明,点焊时电流变化对试件的残余应力有一定影响;电极端面直径增加使得焊核区的残余应力增大.施加拉剪载荷后,残余应力在焊核与热影响区有所释放,远离焊核区的释放较小. 相似文献
10.
T. Ramjaun H. J. Stone L. Karlsson J. Kelleher R. J. Moat J. R. Kornmeier 《Science & Technology of Welding & Joining》2014,19(1):44-51
Weld filler alloys that exploit transformation plasticity through low austenite to martensite transformation temperatures offer an effective method of reducing residual stresses in strong steel welds. However, in multipass welds, the heat input from later weld passes may be insufficient to retransform prior welding passes, leading to the accumulation of thermally induced strains and elevated residual stresses. In this work, the residual stress distributions produced around arc welds fabricated with a martensitic weld filler alloy that transforms at a low temperature have been studied as a function of the number of passes deposited and the interpass temperature. It is found that when the interpass temperature is above the transformation temperature of the weld metal, the entire multipass weld transforms as a single entity, thus permitting the optimum exploitation of the transformation plasticity. In contrast, the deposition of new metal with a relatively low interpass temperature leads to increased residual stresses in the underlying layers, reducing or eliminating the beneficial stress states previously created. 相似文献
11.
On the thermo-mechanical loads and the resultant residual stresses in friction stir processing operations 总被引:1,自引:0,他引:1
In friction stir welding and processing both a thermal flux and a mechanical action are exerted on the material determining metallurgical evolutions, changes in the mechanical behaviour and a complex residual stress state. In the paper, the metallurgical changes are examined through numerical simulation and experiments to highlight and distinguish the effects of thermal and mechanical loadings. A particular focus is made on the residual stresses generated during the stir processing of AA7075-T6 aluminium blanks. The predictions of FE model are validated by experimental measurements. Lastly, this paper presents an in-process quenching of the processed blanks for improved mechanical properties and microstructure. 相似文献
12.
以Al-Mg-Zn钎料对变形镁合金AZ31B进行了高频感应钎焊,分析了变形镁合金AZ31B钎焊接头的显微组织、钎缝物相和力学性能.采用扫描电镜(SEM)、X射线衍射仪(XRD)、X射线能谱分析仪(EDS)等仪器分析了钎焊接头的界面组织及钎缝生成相,测试了接头的强度及形成相的显微硬度.结果表明,在钎焊接头的钎缝中钎料与母材Az31B发生反应生成离异共晶组织α-Mg+β-Mg_(17)(Al,Zn)_(12),母材AZ31B的显微硬度最低,钎缝中的β-Mg_(17)(Al,Zn)_(12)相显微硬度最高.对接和搭接接头断口的断裂形式为沿晶脆性断裂,断裂产生在离异共晶组织α-Mg+β-Mg_(17)(Al,Zn)_(12)中的β-Mg_(17)(Al,Zn)_(12)硬脆相处.Abstract: High-frequency induction brazing of wrought magnesium alloy AZ31B with Al-Mg-Zn fdler metal was investigated. Microscopic structure, the phases and the mechanical properties of brazed joint were studied. The microstructure and formation phases at the interface in the brazed joint were investigated by scanning electron microscopy(SEM), X-ray diffraction instrument(XRD) and energy dispersive spectrometer (EDS). The strength of the brazed joint and the microhardness of the formation phases were also tested. The results show that, Al-Mg-Zn filler metal reacting with the base metal AZ31B, and a-Mg+β-Mg_(17) (Al,Zn)_(12) divorced eutectic structure is formed in the brazed joint. Microhardness of the base metal AZ31B is the smallest and β-Mg_(17) (Al, Zn)_(12) phase of the brazed joint is the hardest. Both the butt joint and the overlap joint exhibit intergranular fracture mode, the fracture comes from hard brittle phase β-Mg_(17) (Al,Zn)_(12) of α-Mg+β-Mg_(17)(Al,Zn)_(12) divorced eutectic structure. 相似文献
13.
采用Ti-28Ni(wt.%)共晶钎料在1100℃实现了高铌TiAl合金(Ti-45Al-8.5Nb-(W, B, Y) (at.%), 简称TAN)的真空钎焊连接。钎焊接头的典型界面结构为TAN/τ3-Al3Ti2Ni + B2/α2-Ti3Al layer/α2-Ti3Al + δ-Ti2Ni/α2-Ti3Al layer/τ3-Al3Ti2Ni + B2/TAN。深入研究了保温时间对钎焊接头界面组织和连接性能的影响。结果表明:Ni元素从熔融钎料向TAN母材的扩散决定了界面组织的演化,随着保温时间的延长促进了扩散层的增厚,同时导致钎缝宽度逐渐减小。接头剪切强度测试结果显示当保温时间为15分钟时,获得的最大接头室温剪切强度和高温(600℃)剪切强度分别是248.6MPa和166.4MPa。接头断口分析表明在剪切实验中裂纹主要沿着连续的金属间化合物层产生和扩展。 相似文献
14.
利用Cu-Pd-V钎料对新型四元陶瓷基复合材料Cf/SiBCN进行了真空钎焊连接.利用座滴法研究了Cu-Pd-V钎料对Cf/SiBCN复合材料的动态润湿性.利用SEM和XRD对钎焊接头微观组织及断口物相进行了分析表征.结果表明,经1 170℃保温30 min后钎料在复合材料上的润湿角为57°.在1 170℃-10 min钎焊规范下,Cu-Pd-V钎料在Cf/SiBCN复合材料表面形成厚度约为1 μm的V (C,N)反应层,主要包括VC和VN化合物,钎缝中央为Cu3Pd和CuPd两种固溶体相.接头的室温三点弯曲强度为58.1 MPa,当测试温度提高至600℃时接头强度上升至90.2 MPa,在700和800℃测试温度下钎焊接头强度呈下降趋势,但仍然可以维持在室温强度水平,分别为66.9和64.6 MPa. 相似文献
15.
Microstructure evolution of the Si3N4/Si3N4 joints brazed using Au-Ni-V filler alloys with different V content 总被引:1,自引:0,他引:1
Au-Ni-V filler alloys with different vanadium contents were designed to braze Si3N4 ceramic at 1373 K for 30 min, and the microstructures of brazing seams were investigated by SEM and TEM. When the Au-Ni-V filler alloy contains 5 at.% V, round-like Ni[Si, V, Au] precipitates form in the Au[Ni] solid solution matrix and a VN reaction layer with 0.5 μm thickness appears on Si3N4 interface. When the V content increases to 10 at.%, a new polygonal Ni2SiV3 phase occurs in the seam, and the Ni[Si, V, Au] precipitate coarsens and VN layer thickens. With increase of V contents to 15 and 20 at.%, laminar Ni[Au] and polygonal Ni3V precipitates form. With 25 at.% V content in the filler alloy, the Ni2SiV3 and Ni3V precipitates distribute homogenously in the brazing seam. These microstructure evolutions were attributed to the reaction between Si3N4 and vanadium, which forms VN reaction layer and releases Si into the molten alloy. 相似文献
16.
《Science & Technology of Welding & Joining》2013,18(3):216-221
AbstractTwo types of rapidly solidified filler alloys of nominal composition Cu–40Mn–10Ni (C50) and Ni–7Cr–3·2B–4·5Si–3Fe (N82) were used for stainless steel (SS304) brazing joints. The C50 foil is crystalline in nature, whereas N82 foil shows amorphous structure. The SS304/C50/SS304 joint shows solid solution phases at interfacial area, with maximum bond strength of 500 MPa, which qualifies to 80% of base metal strength. Conversely, the SS304/N82/SS304 joint develops brittle CrxBy intermetallic phases, which lowers bond strength to 330 MPa. 相似文献
17.
《中国有色金属学会会刊》2022,32(3):927-934
The novel Ni-based brazing filler was used to join C/C composites. When brazing temperature increased from 1080 to 1100 °C, the wetting angle decreased from 23° to 14°, and the brazing filler had good wettability on the surface of C/C composites. The brazing seam of the brazed joint consisted of Ni(s,s) and Cr3C2 phases. As brazing temperature increased, lots of Cr3C2 phases were generated at the bonding interface, and the thick reaction layer was formed. When brazing temperature was 1120 °C, the shear strength of C/C joint reached the maximum value of 31.5 MPa. The fracture path extended in the C/C matrix close to the bonding interface. 相似文献
18.
AgCu基钎料钎焊Ti_3Al基合金的接头组织与性能 总被引:2,自引:0,他引:2
在880℃/10 min规范下,采用Ag-28Cu、Ag-35.2Cu-1.8Ti和Ag-27.4Cu-4.4Ti 3种AgCu基钎料进行了针对TD3合金的润湿性试验。试验结果表明,3种AgCu基钎料在TD3合金上表现出了良好的润湿性,并且能成功实现对TD3的连接,接头中未出现熔蚀和裂纹等缺陷。3种接头的钎缝基体主要由Ag基固溶体组成,其中分布着灰黑色的Ti-Cu相;Cu向TD3基体中扩散,与Ti相互作用生成Ti-Cu相的同时,也增加了钎缝的宽度。随着钎料自身含Ti量的提高,接头平均剪切强度逐渐增大,且接头强度受Ti含量影响较为明显。采用Ag-27.4Cu-4.4Ti钎料的接头获得了最大剪切强度,其平均值为163.8 MPa。 相似文献
19.
Hui-Hui Zhang Zhen-Duo Cui Sheng-Li Zhu Shi-Wei Guo Xian-Jin Yang Akihisa Inoue 《稀有金属(英文版)》2021,(7):1881-1889
The Ti51.44Zr16.26Cu30Sn2.3(at%)amorphous filler alloy in a ribbon form was prepared by melt spinning.The Ti-6Al-4V alloy was brazed in vacuum furnace by using ... 相似文献
20.
《Science & Technology of Welding & Joining》2013,18(2):193-198
AbstractC/SiC composites and Nb were vacuum brazed with the Ti39·4Ni39·4Nb21·2 alloy being the active filler metal. The mechanical properties of the filler material, the microstructure and the strength of brazing joints were investigated. The results showed that the filler TiNiNb alloy has a tensile strength of 860?MPa, an elongation of 51% and an elastic modulus of 78?GPa. Both Ti and Nb elements in the filler reacted with C/SiC during the brazing process, and a well bonded C/SiC–Nb joint was obtained. The ductile filler metal released the thermal stress in the joint. When the brazing was performed at 1220°C for 20?min, the shear strength of brazed joints reached 149, 120 and 73?MPa at 20, 600 and 800°C respectively. 相似文献