Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Microstructural Analysis of Porous Nickel Brazed to Copper and Stainless Steel using Different Brazing Filler Metals

View through CrossRef
The microstructures of brazing porous Nickel (Ni) to copper and stainless steel (Cu/Porous Ni/SS304) was investigated. A porous Ni with pore densities of 15 PPI (pores per inch) and filler with compositions of 72Ag-28Cu and 77.4Cu-9.3Sn-7P-6.3Ni (Ag: Silver; Cu: Copper; Sn: Tin; P: Phosphorus; Ni: Nickel) were employed. The brazing process was conducted at different brazing temperatures: 830˚C, 870˚C and 910˚C for 15 minutes brazing time with heating and cooling rate of 10˚C/min, respectively. The aim of this research is to analyse and compare the microstructure of using different types of filler metal in order for joint porous Ni to copper and stainless steel. According to the initial observations from an optical microscope (OM) after cross-section, the used of filler metal BAg-8 and VZ2250 acquired a bonding joining than the used of filler metal BAg-8 solely. Thus, Field Emission Scanning Electron Microscope (FESEM) equipped with Energy Dispersive X-Ray Spectroscopy (EDS) was used to characterise the bonding of microstructure of filler metal BAg-8 and VZ2250. Besides, the joint strength of Cu/Porous Ni/SS304 with filler metal BAg-8 and VZ2250 was evaluated with shear strength at different brazing parameters. Consequently, it can be concluded that used of filler metal BAg-8 and VZ2250 performed a better joint microstructure as compared to the used solely of filler metal BAg-8.
Title: Microstructural Analysis of Porous Nickel Brazed to Copper and Stainless Steel using Different Brazing Filler Metals
Description:
The microstructures of brazing porous Nickel (Ni) to copper and stainless steel (Cu/Porous Ni/SS304) was investigated.
A porous Ni with pore densities of 15 PPI (pores per inch) and filler with compositions of 72Ag-28Cu and 77.
4Cu-9.
3Sn-7P-6.
3Ni (Ag: Silver; Cu: Copper; Sn: Tin; P: Phosphorus; Ni: Nickel) were employed.
The brazing process was conducted at different brazing temperatures: 830˚C, 870˚C and 910˚C for 15 minutes brazing time with heating and cooling rate of 10˚C/min, respectively.
The aim of this research is to analyse and compare the microstructure of using different types of filler metal in order for joint porous Ni to copper and stainless steel.
According to the initial observations from an optical microscope (OM) after cross-section, the used of filler metal BAg-8 and VZ2250 acquired a bonding joining than the used of filler metal BAg-8 solely.
Thus, Field Emission Scanning Electron Microscope (FESEM) equipped with Energy Dispersive X-Ray Spectroscopy (EDS) was used to characterise the bonding of microstructure of filler metal BAg-8 and VZ2250.
Besides, the joint strength of Cu/Porous Ni/SS304 with filler metal BAg-8 and VZ2250 was evaluated with shear strength at different brazing parameters.
Consequently, it can be concluded that used of filler metal BAg-8 and VZ2250 performed a better joint microstructure as compared to the used solely of filler metal BAg-8.

Related Results

Brazing of Porous Nickel to Copper and Stainless Steel: Microstructure and Mechanical Properties
Brazing of Porous Nickel to Copper and Stainless Steel: Microstructure and Mechanical Properties
A porous nickel (Ni) was brazed to copper (Cu) and stainless steel 304 (SS304) using VZ2250 and MBF67 brazing filler metal with a composition of 77.4Cu-9.3Sn-7.0Ni-6.3P and 64.5Ni-...
Investigation on Strength and Microstructural Evolution of Porous Cu/Cu Brazed Joints Using Cu-Ni-Sn-P Filler
Investigation on Strength and Microstructural Evolution of Porous Cu/Cu Brazed Joints Using Cu-Ni-Sn-P Filler
Porous Copper (Cu) was brazed to Cu plates using Cu-9.7Sn-5.7Ni-7P amorphous filler metal. The effects of brazing parameters on the porous Cu and brazed joints were investigated. T...
Vacuum Brazing of Dissimilar Joints Mo-SS with Cu-Mn-Ni Brazing Filler Metal
Vacuum Brazing of Dissimilar Joints Mo-SS with Cu-Mn-Ni Brazing Filler Metal
The complexity of joining dissimilar materials, such as molybdenum-stainless steel, is due to the difference in thermal coefficients of linear expansion and low oxidation resistanc...
Brazing stainless steel with high chromium nickel alloy
Brazing stainless steel with high chromium nickel alloy
Abstract High-temperature brazing of dissimilar joints is an important task today for many industries, including aviation and energy, in the manufacture of critical compone...
Brazing
Brazing
Abstract This article provides information about the selection of brazing processes and filler metals and describes the brazing (heating) methods, including manual t...
Microstructure Evolution and Brazing Mechanism of AgCuTi Alloy Vacuum Brazed Corundum–Mullite Ceramic and Mo Joint
Microstructure Evolution and Brazing Mechanism of AgCuTi Alloy Vacuum Brazed Corundum–Mullite Ceramic and Mo Joint
The corundum–mullite ceramic and Mo are successfully joined using AgCuTi filler metal via vacuum brazing. This article investigates the effects of brazing temperature and holding t...
Aportaciones al estudio del comportamiento a flexión de estructuras de acero inoxidable
Aportaciones al estudio del comportamiento a flexión de estructuras de acero inoxidable
L'acer inoxidable està essent utilitzat de manera creixent en els últims anys als sectors de la indústria i de l'arquitectura gràcies a la seva resistència a la corrosió, facilitat...
Structure formation of seams using high-entropic brazing filler metal MnCoNiCuGe5
Structure formation of seams using high-entropic brazing filler metal MnCoNiCuGe5
Abstract This study presents the results of investigations on the use of the high-entropy alloy MnCoNiCuGe₅ as a promising brazing filler metal for vacuum brazing of dissim...

Back to Top