High strength, hermetic braze joints between ceramic components have been produced using high energy electron beams. With a penetration depth into a typical ceramic of {approximately}1 cm for a 10 MeV electron beam, this method provides the capability for rapid, transient brazing operations where temperature control of critical components is essential. The method deposits energy directly into a buried joint, allowing otherwise inaccessible interfaces to be brazed. Because of transient heating, higher thermal conductivity, lower heat capacity, and lower melting temperature of braze metals relative to the ceramic materials, a pulsed high power beam can melt a braze metal without producing excessive ceramic temperatures. We have demonstrated t...
The rapid technological development of the nuclear and space industries has placed a great demand on...
In vacuum technology, and especially in UHV, we often encounter the necessity of joining\nparts of v...
In the framework of the SPL R&D; effort at CERN, development design efforts study the joining of dis...
The purpose of this project is to develop and extend the electron beam joining process to applicatio...
Ceramics are being used increasingly in applications where high temperatures are encountered such as...
In this work, high-energy electron beam brazing of a ceramic part is modeled numerically. The part c...
Alumina was joined with alumina using microwave-assisted and conventional brazing methods at 960 (a ...
Both fundamental and practical aspects of ceramic joining are understood well enough for many, if no...
A rather broad investigation was carried on in the materials and methods which are considered possib...
Brazing is a process to join metallic and non-metallic materials, without any melting or plastic sta...
The NO?A Experiment will construct a detector optimized for electron neutrino detection in the exist...
Microwave-assisted reactive brazing technique was utilized for joining of alumina ceramics at 950 de...
Ceramic beam tubes are utilized in numerous kicker magnets in different accelerator rings at Fermi N...
Ceramic materials are widely used for extreme temperature conditions. The sucessful integration of c...
An extended presence of humans in space requires an in-situ capability to construct various permanen...
The rapid technological development of the nuclear and space industries has placed a great demand on...
In vacuum technology, and especially in UHV, we often encounter the necessity of joining\nparts of v...
In the framework of the SPL R&D; effort at CERN, development design efforts study the joining of dis...
The purpose of this project is to develop and extend the electron beam joining process to applicatio...
Ceramics are being used increasingly in applications where high temperatures are encountered such as...
In this work, high-energy electron beam brazing of a ceramic part is modeled numerically. The part c...
Alumina was joined with alumina using microwave-assisted and conventional brazing methods at 960 (a ...
Both fundamental and practical aspects of ceramic joining are understood well enough for many, if no...
A rather broad investigation was carried on in the materials and methods which are considered possib...
Brazing is a process to join metallic and non-metallic materials, without any melting or plastic sta...
The NO?A Experiment will construct a detector optimized for electron neutrino detection in the exist...
Microwave-assisted reactive brazing technique was utilized for joining of alumina ceramics at 950 de...
Ceramic beam tubes are utilized in numerous kicker magnets in different accelerator rings at Fermi N...
Ceramic materials are widely used for extreme temperature conditions. The sucessful integration of c...
An extended presence of humans in space requires an in-situ capability to construct various permanen...
The rapid technological development of the nuclear and space industries has placed a great demand on...
In vacuum technology, and especially in UHV, we often encounter the necessity of joining\nparts of v...
In the framework of the SPL R&D; effort at CERN, development design efforts study the joining of dis...