Exact(2)
Hydroforming constitutes a subgroup of sheet metal forming processes utilizing a pressurized forming medium.
The mechanisms of the tool are described to be inclusive of virtual reality construction components coupled with construction processes utilizing a design-for-safety-process database (Hadikusumo and Rowlinson 2002).
Similar(58)
Most of the processes utilize a one-step reaction, involving only one reaction vessel and a solid phase cartridge enrichment after HPLC purification.
Emulsions were generated in a two-step process utilizing a microfluidic device with a flow focusing geometry.
A novel multistep process utilizing a weak anion exchanger with polyamine functionality is proposed and its performance was investigated experimentally.
The proposed test is a cold extrusion process utilizing a selected trapped-forward extrusion die, where load versus stroke data is collected.
This paper focuses on steady state performance predictions and optimization of the reverse osmosis (RO) based desalination process utilizing a given spiral wound type membrane modules.
The assessment of the feasibility of the extraction process utilizing a near critical solvent would be speeded up if it is possible to predict solubility data.
Here we use low cost BSG as the raw material for the production of a novel growth media, through a bioconversion process utilizing a food grade fungi to hydrolyze BSG.
This paper focuses on steady state performance predictions and optimization of the Reverse Osmosis (RO) process utilizing a set of implicit mathematical equations which are generated by combining solution-diffusion model with film theory approach.
However, previously reported PS tunable microelectromechanical system (MEMS) devices for gas sensors [6], biological sensors [7] and optical filters [8, 9] have mainly been fabricated through a predefined patterning process utilizing a defined pattern or mask on Si prior to anodization, resulting in unwanted under-mask etching and very low lateral uniformity in PS films.
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