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1)  high temperature brazing
高温钎焊
1.
Joining of recrystallized SiC ceramic to itself has been realized by high temperature brazing process using Ni-51Cr (containing 51wt%Cr) as filler.
采用Ni-51Cr(含质量分数为51%Cr)焊料高温钎焊再结晶SiC陶瓷,研究了连接温度、保温时间以及焊料量等对接头三点抗弯强度的影响,并对连接界面区域的微观结构及焊料反应产物进行了SEM,EDS及XRD分析。
2)  brazing [英][breiz]  [美][brez]
高温钎焊
1.
By the physics simulation when the solder of Ni-Cu-Mn-Co transferred heat in high-brazing the aeroplane pipes,the factors were attained to control the brazing gap.
通过飞机导管高温钎焊时Ni-Cu-Mn-Co钎料传热特征的物理模拟,得到了钎焊间隙的控制要素。
3)  high temperature welding
高温钎焊
1.
Joining of high strength graphite has been realized by high temperature welding with Ti+Ni solder.
采用Ti基活性钎料对高强石墨进行了高温钎焊试验。
4)  high temperature brazing gas cooling furnace
高温钎焊气冷炉
5)  soldering [英]['sɔldə]  [美]['sɑdɚ]
低温钎焊
1.
The low temperature bonding between 95%Al2O3 ceramics and 45 steel was realized through first electroless Ni-P plating on Al2O3ceramic blocks and then soldering them to steel blocks with a low melting point filler metal of 63Sn-34Pb-2Ag-1Bi alloy.
采用化学镀Ni-P膜法金属化Al2O3陶瓷,并用63Sn-34Pb-2Ag-1Bi钎料膏实现了95%Al2O3陶瓷与45钢之间的低温钎焊。
2.
Process of electroless copper plating on Al_2O_3 ceramics and its soldering at low temperature;
进行了镀铜后Al2O3陶瓷低温钎焊工艺试验,研究了不同化学镀工艺条件对接头组织及力学的影响。
6)  brazing temperature
钎焊温度
1.
Electron beam brazing temperature field PID control system;
电子束钎焊温度场PID控制系统
2.
Effect of processing parameters including brazing temperature and holding time on the joint mechanical property was also discussed by optical microscope,SEM and EDS.
研究表明,钎焊温度为900℃,保温时间为5 min时,接头抗剪强度最高,达144 MPa。
3.
The effects of brazing temperature and time on the structure and property of the brazed joint between graphite and TZM alloys with Ti-based filler in vacuum were presented.
研究了钛合金真空钎焊石墨与TZM合金过程中,钎焊温度和时间对钎焊接头组织和性能的影响。
补充资料:大型(φ1200×1350)真空钎焊炉


大型(φ1200×1350)真空钎焊炉


  *型(,12::::::爆
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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