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A brief insight on the effect of chip pulling to the turning process is discussed by inspecting fundamental process parameters.
Fundamental process parameters for the control of both the micro-product and the process are the temperature of the melt, the temperature of the mold, the injection speed, and the cavity injection pressure.
Various fundamental process parameters i.e., pH, contact time, temperature and initial uranium ions concentration were optimized and maximum uranium removal (230 mg/g) was achieved at pH 4, biosorbent dose 0.05 g, contact time 60 min contact time and temperature 40 °C using 400 mg/L uranium ions concentration.
The influence of fundamental process parameters, i.e. emulsion formulation (oil mass fraction and oil-to-emulsifier mass ratio), stress conditions (grinding bead size and stirrer tip speed), process time and especially temperature on the emulsion droplet size and size distribution has been studied for this approach.
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A characteristic Sherwood Number is introduced as a fundamental process parameter.
Meltdown makes this fundamental process fundamentally unreliable.
Observing texture and microstructure growth in coating layers during oblique deposition provides the most fundamental information to optimize the process parameters of the deposition process.
Fundamental understanding and application of process parameters in numerical simulation that leads to optimized gravity drainage oil recovery at field scale is still a major challenge.
This paper reviews process parameters and their fundamental modes of action for promising pretreatment methods.
The objectives in this study were to develop fundamental knowledge of the effects of process parameters on the final hem quality (defects including roll-in/out, recoil and warp without wrinkling and hem-out) and to develop improved process and tool design rules for flanging and hemming based on experimental findings.
Multiple regression modeling was used to develop two models for the granule size: an empirical model, based on the four process parameters, and a fundamental model, based on the balance between the granule growth affected by the theoretical powder bed moisture content and the droplet size and the breakage effect of the airflow rate.
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