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Anoire Ben Jdidia Alain Bellacicco Taissir Hentati Maher Barkallah Mohamed Taoufik Khabou Alain Rivier 《中国工程学刊》2019,42(5):377-384
The accurate evaluation of electrical energy demanded by a CNC toolpath during a machining process is essential to determine its efficiency. Actually, the dynamic behavior of cutting forces seems to be neglected by investigators despite its influence on the consumed cutting energy during a face milling operation. This paper aims to investigate the effect of dynamic behavior of the machining system in order to take into account the dynamic response of the cutting forces on the axis feed power prediction. A dynamic cutting power model is developed in order to predict the consumed cutting energy. A parametric study is performed in order to show the impact of cutting conditions on the consumed energy values. The numerical results are compared to experimental ones. 相似文献
67.
MR Koller MA Palsson I Manchel RJ Maher BO Palsson 《Canadian Metallurgical Quarterly》1998,19(21):1963-1972
Human cell therapy applications in tissue engineering, such as the ex vivo production of hematopoietic cells for transplantation, have recently entered the clinic. Although considerable effort has been focused on the development of biological processes to generate therapeutic cells, little has been published on the design and manufacture of devices for implementation of these processes in a robust and reproducible fashion at a clinical scale. In this study, the effect of tissue culture surface chemistry and texture was assessed in human bone marrow (BM) mononuclear cell (MNC) and CD34-enriched cell cultures. Growth and differentiation was assessed by total, progenitor (CFU-GM), stromal (CFU-F), and primitive (LTC-IC) cell output. Tissue culture treated (TCT) plastic significantly increased MNC culture output as compared with non-TCT plastic, whereas CD34-enriched cell cultures gave lower output (than MNC cultures) that was unaffected by TCT plastic. Interestingly, the level of MNC culture output was significantly different on four commercial TCT surfaces, with the best performing surface giving output that was 1.6- to 2.8-fold greater than the worst one. The surface giving the highest output was the best at supporting development of a distinct morphological feature in the adherent layer (i.e. cobblestone area) indicative of primitive cells, and X-ray photoelectron spectroscopy (XPS) was used to characterize this surface. For custom injection molding of culture devices, the use of three different resins resulted in MNC culture output that was equivalent to commercial cultureware controls, whereas CD34-enriched cell cultures were highly sensitive to resins containing additives. When the texture of molded parts was roughened by sandblasting of the tool, MNC culture output was significantly reduced and higher spikes of IL-6 and G-CSF production were observed, presumably due to macrophage activation. In conclusion, the manufacture of BM MNC culture devices for clinical applications was optimized by consideration of plastic resin, surface treatment, and texture of the culture substratum. Although CD34-enriched cells were insensitive to surface treatment, they were considerably more sensitive to biocompatibility issues related to resin selection. The development of robust systems for BM MNC expansion will enable clinical trials designed to test the safety and efficacy of cells produced in this novel tissue engineering application. 相似文献
68.
VM Petrov 《Canadian Metallurgical Quarterly》1998,32(5):46-51
The concept of acceptable risk is considered in the context of the system of medical support to space missions. Risk is defined as probability of cosmonaut's health and life deterioration as a result of spaceflight impacts on the human body. Mathematical formulas giving the general characteristic of the relations among risk components, total risk, and human survivability in flight and after its end. The earlier published quantitative recommendations for these parameters are inserted as illustration. 相似文献
69.
It is important to accurately estimate instantaneous voltage flicker magnitudes and frequencies in order to correctly evaluate voltage fluctuations. Voltage flicker is a problem in electric power quality. Different approaches used to determine the magnitude of the voltage flicker have been presented: measurement methods generally use a flickermeter device. Simulation methods require a computer model of the disturbing load and the flickermeter. Calculation methods necessitate a simplified empirical formula. Estimation algorithms are based on the estimation of the voltage flicker components. In this paper, two models of voltage flicker are discussed: Lp estimation algorithms utilizing L1, L2 and L∞ norms are used to estimate the voltage magnitudes of the flicker signals as well as the fundamental voltage magnitude. The main result is that it is possible to design an Lp estimator to identify flicker frequency and amplitude from time series measurements. 相似文献
70.
Magda Borhan El‐Arnaouty Ashraf Maher Abdel Ghaffar Ashraf Abdel Kareem Abdel Baky Sayed Ahmed Shama 《乙烯基与添加剂工艺杂志》2019,25(Z1):E35-E43
Synthesis of carboxymethyl cellulose‐g‐methacrylic acid/acrylamide Poly(CMC/MAAc:AAm) hydrogel was carried out using direct radiation copolymerization technique at ambient temperature. The gel (%) increased with increasing the content of AAm till level off at Poly(CMC/MAAc:AAm) (1/50:50 wt%) hydrogel and the swelling behavior found to be increased with increasing MAAc content in the hydrogel composition up to Poly(CMC/MAAc:AAm) (1/60:40 wt%). The grafting yield, grafting ratio, swelling behavior, and the thermal stability of Poly(CMC/MAAc:AAm) binary system are higher than those reported in our previous study by the same author which described the individual grafting of acrylamide (AAm) and methacrylic acid (MAAc) with different concentration onto carboxymethyl cellulose (CMC) using direct radiation grafting technique. The swelling kinetics and diffusion mechanism indicate that the water penetration obey non‐Fickian transport mechanism. The characterization of the prepared hydrogel was evaluated using Fourier transform infrared, X‐ray diffraction, thermogravimetric analysis, and scanning electron microscopy. The analyses by different analytical tools confirmed the successful grafting of both MAAc and AAm onto CMC. The adsorption capacity of Poly(CMC/MAAc:AAm) (1/60:40 wt%) hydrogel toward metal ions such as Cu+2 and Co+2, dyes such as acid blue dye and methyl green have been investigated. J. VINYL ADDIT. TECHNOL., 25:E35–E43, 2019. © 2017 Society of Plastics Engineers 相似文献