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For the improvement of the joint strength a TiZrCuNiCo filler metal was designed.
In this paper, a new filler metal was designed that had large solidification temperature range between 517.7 and 179.2 °C.
In order to join the similar magnesium alloy, a novel Zn-Mg-Al filler metal was designed and applied to braze AZ31B plates by using high-frequency induction brazing technique.
A model of an open-and-closed-type cellular metal was designed with 3D software, and samples with the expected structures were fabricated from stainless steel using machining and electric resistance welding techniques.
Hydroxyapatite (HA)–Ti asymmetrical functionally graded biomaterial (FGM) combining the excellent biocompatible properties of HA ceramic and the good mechanical properties of titanium metal was designed optimally and fabricated in this paper.
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The light, slender slivers of metal are designed to fit neatly into the hand at one end and the mouth at the other, with wide, flat surfaces for the fingertips to hold on to.
The weld metal is designed to mainly consist of acicular ferrite.
The die and device for experiments of solid granule medium forming (SGMF) on sheet metal were designed and manufactured.
A pulsed electromagnetic sensor (PEMS) utilising the difference in electrical and magnetic properties of metals was designed for automatic sorting of scrap stainless steel (SS).
Bioremediation of heavy metals is designed to concentrate metals in living organisms, including plant tissues, thus, minimizing the amount of solid or liquid hazardous wastes, which need to be treated and deposited at hazardous waste sites, with the ultimate goal of developing an economical method of reclaiming metals from plant residue.
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