Reactive bonding is a still new low-temperature joining process that is based on reactive nanoscale multilayer systems. The heat required for the bonding process is generated by a self-propagating exothermic reaction within the multilayer system while the adhesive interconnect is supported by solder films. For microsystem applications, the approach is particularly useful if temperature-sensitive components and materials with high differences in coefficient of thermal expansion have to be joined. In this paper, this is successfully demonstrated for bonding a quartz strain gauge onto a stainless steel membrane and an IR-emitter onto a covar socket by using commercially available nickel/aluminum NanoFoils(C). The quality of the bond interface ...
Microsystems that are used for medical application mostly consist of temperature sensible components...
Highly reactive integrated material systems have recently gained attention, as they promise a feasib...
Reactive nano-multilayers (RNMLs), which are able to undergo a self-heating exothermal reaction, can...
The setting up of bonded structures, e.g. micromechanical sensors and actuators, using wafer bonding...
A new joining process that is based on reactive nano scale multilayer foils can form a metallic bond...
In this work, the process technology for fabricating reactive multilayer systems (RMS) has been deve...
Considering the demand for low temperature bonding processes in 3D integration and packaging of micr...
It is described the analysis of commercially available Nickel/Aluminium multilayer foils, which are ...
This paper focuses on room-temperature reactive bonding by using nano scale multilayer systems. The ...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
This paper is presenting a metallic wafer bond process at room-temperature by using nano scale and i...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
Reaction-Assisted Diffusion Bonding (RADB) of NiTi to Ti6Al4V using either magnetron sputtered Ni/Ti...
Microsystems that are used for medical application mostly consist of temperature sensible components...
Highly reactive integrated material systems have recently gained attention, as they promise a feasib...
Reactive nano-multilayers (RNMLs), which are able to undergo a self-heating exothermal reaction, can...
The setting up of bonded structures, e.g. micromechanical sensors and actuators, using wafer bonding...
A new joining process that is based on reactive nano scale multilayer foils can form a metallic bond...
In this work, the process technology for fabricating reactive multilayer systems (RMS) has been deve...
Considering the demand for low temperature bonding processes in 3D integration and packaging of micr...
It is described the analysis of commercially available Nickel/Aluminium multilayer foils, which are ...
This paper focuses on room-temperature reactive bonding by using nano scale multilayer systems. The ...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
This paper is presenting a metallic wafer bond process at room-temperature by using nano scale and i...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
Established joining techniques like welding, soldering or brazing typically are characterized by a l...
Reaction-Assisted Diffusion Bonding (RADB) of NiTi to Ti6Al4V using either magnetron sputtered Ni/Ti...
Microsystems that are used for medical application mostly consist of temperature sensible components...
Highly reactive integrated material systems have recently gained attention, as they promise a feasib...
Reactive nano-multilayers (RNMLs), which are able to undergo a self-heating exothermal reaction, can...