Examples of using Diffusion bonding in English and their translations into German
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Advantages of diffusion bonding crystals.
Diffusion bonding in a vacuum: the practical difficulties.
How vacuum furnaces work for diffusion bonding of titanium.
Why diffusion bonding is adopted for Titanium.
A highly functional system for heat treatments, as well as for brazing and diffusion bonding.
By diffusion bonding process the chemical heterogeneities can be minimized.
In addition, I will give you a few examples of diffusion bonding applications.
Metal diffusion bonding is based on Cu-Cu, Al-Al, Au-Au and other metallic bonds. .
Joints produced through TIG-bondingdo not provide the same guarantees as those in diffusion bonding.
Sheet metal forming and diffusion bonding are high temperature processes.
FormTech is specialist for the production of sheet metal and diffusion bonding parts.
Specialists in diffusion bonding, reactive alloy brazing, vacuum and controlled atmosphere brazing and heat treating.
FORGE NxT addresses regular superplastic forming butalso superplastic forming with diffusion bonding.
The seamless container design(YDB, Yamato Diffusion Bonding) has no adhesive surface for dust and bacteria deposits.
More than twenty yearsago, TAV formalized the first order of a vacuum furnace for the Titanium heat exchangers diffusion bonding.
YDB(Yamato Diffusion Bonding) buckets have no space for dust and bacteria propagation on the bonding plane.
This has provided us with a lead in knowledge,technique and methodology which we have used to create a complete range of diffusion bonding vacuum furnaces.
Worlds largest diffusion bonding service with high vacuum hot presses designed to diffusion bond your production parts.
Joining of dissimilar materials with different thermo-physical characteristics, which is not possible by other processes,may be achieved by diffusion bonding.
Explanations about adhesion and diffusion bonding, pretreatment of the parts to be bonded and about the bondability of SIMONA® materials.
In this article I will particularly focus on titanium,as it is the easiest of all common engineering materials to join by diffusion bonding, due to its ability to dissolve its own oxide at bonding temperatures.
In furnaces for the diffusion bonding of titanium, the temperatures involved reach around 1000 C with pressures of tens of bars, meaning it still possible to use a graphite board to isolate the hot zone.
A very tough challenge: at that time the diffusion bonding in a vacuum was the first application of an innovative technology.
Diffusion bonding is a very attractive process for the strongbonding of dissimilar engineering materials in order to form engineering devices and structures.
The article provides competent information on diffusion bonding vacuum furnace, coming both from experts and other sources, along with their direct experience concerning the problem they face.
Nowadays diffusion bonding can be used to produce turbine blades by welding the two lateral elements of the blade with another titanium shape in the middle.
So, let's see in detail how diffusion bonding works, why it is a preferred joining method for Titanium(Ti) and Titanium alloys, and which heat cycle is required for the diffusion bonding of titanium in vacuum furnaces.
Such chips are diffusion bonded Nd:YAG(laseractive) with Cr4+:YAG absorber crystals.
Diffusion bonded crystal are crystals consisting of two, three or more parts with different doping, usually one laser crysta and one or two undoped crystals combined by optical contact and further bonded under high temperature.
Diffusion bonded crystal are crystals consisting of two, three or more parts with different doping, usually one laser crysta and one or two undoped crystals combined by optical contact and further bonded under high temperature.