Y. Zhao: ‘Elastic modulus of 316 stainless-steel lattice structure fabricated via binder jetting process', Mater. Sci. Technol. , 2016 .Y. Tang, Y. Zhou, T. Hoff, M. Garon, Y.F. Zhao, Elastic modulus of 316 stainless steel lattice structure fabricated via binder jetting process, Mater...
Figure1.7[29,30] shows the Young’s moduli of the Ti–(13–18)Mo alloys subjected to solution treatment and CR. Except Ti–13Mo alloy, all the alloys subjected to ST exhibit low Young’s moduli of <80 GPa, which is much lower than those of SUS 316 L stainless steel (SUS 316 L),...
Note! You can use the pressure unit converter to switch between units of Modulus of Elasticity.Related Topics Material Properties Properties of gases, fluids and solids. Densities, specific heats, viscosities and more. Related Documents ASME/ANSI B36.10/19 - Carbon, Alloy and Stainless Steel ...
The elastic modulus of titanium alloy (annealed state) is 1.078 × 10-1.176 × 10MPa, which is about half of steel and stainless steel. 4. Excellent high and low temperature performance. At high temperatures, titanium alloys can still maintain good mechanical pr...
Here, the study mentioned the fracture callus for a Ti-29Nb-13Ta-4.6Zr specimen contained little to no signs of fracture after just 10 weeks of healing, which was slightly quicker than the Ti-6Al-4V specimen, and much quicker than the 316 L specimen which continued to show healing ...
Irradiation induces the formation of stacking fault tetrahedra (SFTs) in a number of fcc metals, such as stainless steel and pure copper. In order to under... Schä,R Ublin,Z Yao,... - 《Philosophical Magazine》 被引量: 75发表: 2005年 The amorphization of silicates by ion-beam irradia...
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When compared with other commonly available implant materials (e.g., 316L stainless steel), the Young's moduli of most Ti materials are low. However, the values (110 GPa for Ti and 120 GPa for Ti-6Al-4V) still exceed those of human bones (e.g., 10–30 GPa for cortical bone) [4...
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These alloys were later thought to be suitable for use as implant materials because they possess mechanical strength and appeared to have acceptable levels of biocompatibility. However, these metals typically have elastic moduli much higher than that of bone, for example, 316 stainless steel has an...