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In this paper, the microstructure and pitting corrosion resistance of S32101 duplex stainless steel keyhole tungsten inert gas welded joints with different heat inputs were studied.
The purpose of this study is to investigate two new heat-treatment processes on the mechanical properties of TC10 titanium alloy. By changing the annealing temperature, the variation in microstructure and mechanical properties of TC10 titanium alloy were investigated.
Titanium-based alloys are constantly improved to obtain properties suitable for their use. Improving titanium alloys is very important for performing alloys without side effects.
In order to obtain steel with high tensile strength and elongation and good pitting resistance, the economical duplex stainless steel with and without the addition of tungsten was prepared in this paper.
Reverse engineering is conducted based on the analysis of an already existing product. The results of such an analysis can be used to improve the functioning of the product or develop new organizational, economic, information technology and other solutions that increase the efficiency of the 3D-printed products.
The steel industry is responsible for one-third of all global industrial CO2 emissions, putting pressure on the industry to shift forward toward more environmentally friendly production methods. This review focuses on the current developments over the last 10 years in the steelmaking industry.
This paper discusses the effect of different heat-treatment procedures on the microstructural characteristics, damping capacities and mechanical properties of CuAlNi shape memory alloys (SMA).
In this paper, the microstructures and rolling contact fatigue behaviors of laser cladding Inconel 625 coatings with or without post-heat treatments were analyzed.
The recovery and reuse of waste printed circuit boards (PCBs) has attracted more and more attention from global researchers. This white paper puts forward a clean and economical method in which enhanced gravity separation and wet high-gradient magnetic separation were combined to recover waste PCBs with heat treatment at a temperature of 464°F (240°C). The heat treatment could improve the metal liberation effect of the PCBs.