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Welding processes are performed at room temperature, welding preheated plate samples at 50 and 80 °C with metal molding.
The fatigue threshold and high growth rate region properties of conventional welded joints were improved by using newly developed low transformation temperature welding wire.
Once two elements (e.g., magnesium aluminum, aluminum steel) are mixed in a high temperature welding pool, brittle intermetallic phases (IMP) can be easily formed.
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It further suggests that the thin PVP layer and long Ag NWs are efficient to allow low-temperature welding of Ag NWs network.
We believe that the ability to synthesize Ag NWs with different aspect ratios and fabricate high-performance NTEs with low-temperature welding are very valuable to the development of flexible electronic devices.
Lee et al. [59] reported that the repeated solvent washing can reduce the PVP layer from ca. 4 nm to 0.5 nm and allows for room-temperature welding of the overlapping Ag NWs.
This work describes a new method to improve the conductivity and durability of modified polyethylene terephthalate (PET) fabrics via low-temperature welding of silver nanoparticles (AgNPs) and reduced graphene oxide (rGO) on the PET fiber surfaces.
At all the temperatures, weld joints failed in the base metal region.
Moreover, the study of Bisadi, et al. (2013) on the friction-stir welding process shows that joints with a significant difference in base metal melting temperatures welded with a high welding temperature have cavities in the transition zone of Al and Cu.
Important varieties of kimberlite pipe infill are dark coherent rocks, which have been described as hypabyssal, but more recently have been interpreted as high-temperature welded clastogenic rocks (Brown et al. 2008a).
The effects of low climatic temperatures during welding on the low temperature impact fracture energy of structural steel welded joints were explored based on the absorbed energies and the microstructures, from which the feasibility of welding in cold weather was assessed.
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