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"Lubrication Performance and Mechanism of Water-Based TiO2 Nanolubrican" by Muyuan Zhou, Fanghui Jia et al. - Vimarsana News

"Lubrication Performance and Mechanism of Water-Based TiO2 Nanolubrican" by Muyuan Zhou, Fanghui Jia et al.

Micro deep drawing (MDD) is a fundamental process in microforming which has wide applications in micro electromechanical system (MEMS) and biological engineering. Titanium possesses excellent mechanical properties and biocompatibility, which makes it a preferred material in micromanufacturing. In this study, eco-friendly and low-cost water-based TiO2 nanolubricants were developed and applied in the MDD with 40 μm-thick pure titanium foils. The lubricants consisting of TiO2 nanoparticles (NPs), 10 wt% glycerol, 0.1 wt% sodium dodecyl-benzene sulfonate (SDBS) and balanced water were synthesised...

Source: uow.edu.au
What is Young's Modulus and How Does it Fit into Nanotechnology? - Vimarsana News

What is Young's Modulus and How Does it Fit into Nanotechnology?

Young's modulus is a mechanical property that measures the stiffness of the materials when force or compression is applied. Read about it's role in nanotechnology here.

"Influence of blank holder-die gap on micro-deep drawing of SUS304 cups" by Liang Luo, Dongbin Wei et al. - Vimarsana News

"Influence of blank holder-die gap on micro-deep drawing of SUS304 cups" by Liang Luo, Dongbin Wei et al.

Abstract Micro-deep drawing (MDD) is a promising micro-manufacturing technology. Size effects complicate and signify the influence of the blank holder-die gap on MDD, which was investigated in this study. Annealing of SUS304 foils of 50 µm thick was conducted to obtain various grain sizes. Micro-tensile testing was carried out to acquire the stress-strain curves of the foils, followed by MDD experiments. Advanced FE models were developed to simulate the MDD process taking into account material inhomogeneity and surface morphology of the foils at micro-scale. Bending dominates the early stage...

Source: uow.edu.au
"A study of influence of hydraulic pressure on micro-hydromechanical de" by Liang Luo, Zhengyi Jiang et al. - Vimarsana News

"A study of influence of hydraulic pressure on micro-hydromechanical de" by Liang Luo, Zhengyi Jiang et al.

Abstract Micro-hydromechanical deep drawing (MHDD) is a promising micro-manufacturing technology to fabricate micro-metallic products in batch scale. Size effects significantly affect MHDD regarding both material properties and friction. Hydraulic pressure on the blank and its development differ from that in conventional hydromechanical deep drawing. Combined influence of fluid pressure, surface roughness and material inhomogeneity of the blank was investigated in this study via MHDD experiments and advanced FE simulation considering strong fluid-solid interaction (FSI) and size effects. The ...

Source: uow.edu.au