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Much effort is being devoted to improving current mechanical cutters, including technical advances based upon space metallurgy, geometry of cutter shape and arrangement, mechanics of cutting action, and research in presoftening rock.
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Open cell Titanium-foam (Ti-foam) with varying porosities (65 80%) was prepared using sodium chloride (NaCl) particles as space holder through powder metallurgy route.
Highly porous Mg-Ca-Zn-Co alloy scaffolds for tissue engineering applications were produced by powder metallurgy based space holder-water leaching method.
In the present study, Co Cr Mo/58S porous nano-composites were successfully fabricated by the use of space-holder and powder metallurgy techniques.
This work reports the introduction of a new finite elements model, for the estimation of the Young's modulus (E) of metallic foams obtained by means of powder metallurgy using a Space Holder Phase (SHP).
In this work, Ti-30Nb-13Ta-2Mn at.% porous alloy, also referred to as foam, was obtained by the powder metallurgy approach using (NH4 2 CO3) as space-holder.
Stainless steel (316) foams of varying porosities have been made through powder metallurgy route using NH4HCO3 as a space holder.
In the present work, a novel approach has been successfully developed to fabricate the open cell Mg structures with pore interconnectivity using powder metallurgy route and Ti-woven wire mesh as a space holding material.
In this article we show that this powder metallurgy processing technique, employing the novel sugar pellets as space-holders, can generate porous titanium foams with well-controlled graded porosities and pore sizes.
A new and highly biocompatible space holder material is proposed for manufacturing of porous titanium with open and interconnected pore morphologies through powder metallurgy techniques.
Metallurgy was also known.
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