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1.
Energetics of an ohmically heated deuterium-tritium high densityZ-pinch has been computed taking into account the energy deposited by the alpha particles produced by fusion. As a result,
at higher plasma densities (>1027/m3) and temperatures (>4keV), the pinch current can cross Pease limit and the plasma can get ignited, yielding higher energy
gain and neutron yield in a shorter confinement time. 相似文献
2.
In this paper, we have analyzed the signal processing methods both in digital and optical domain to enhance the transmission performance of downstream signalling in long reach passive optical networks (LR-PONs). The impact of non-linear (NL) equalization through signal processing, i.e. Volterra Equalization (VE), Digital Backpropagation (BP) and Optical Phase Conjugation with Non-linearity Module (OPC-NM) is investigated, in 10 Gbit/s (XG) DP-QPSK long-reach wavelength division multiplexed (WDM) PONs without midspan repeaters over 120 km standard single mode fibre (SMF) link for down-stream signals. Due to the compensation of optical Kerr effects, the sensitivity penalty is reduced to 2 dB by BP algorithm, 1.5 dB by VE algorithm and 2.69 dB by OPC-NM. Moreover, with the implementation of NL equalization technique we are able to get the transmission distance of 126.6 km SMF for the 1:1024 split-ratio at 5 GHz channel spacing in the non-linear region. Furthermore, the concept of super passive optical network (S-PON) is also evaluated, which involves a repeater stage consisting of optical amplifiers, to study the feasibility for receiver side signal processing and simplification. 相似文献
3.
A new method to remove water adsorbed on flouride glass preforms is reported. This method, using NF3 plasma, can remove surface water on fluoride glasses 相似文献
4.
5.
《International Journal of Polymer Analysis and Characterization》2012,17(2):109-126
Abstract In order to show the importance of plastic recycling, a study of the mechanical, thermal and thermodegradative properties of low-density polyethylene (LDPE) blends with virgin and recycled high-density polyethylene (HDPE) was made to assess the possibility of using recycled polymers, and consequently, reducing environmental pollution brought about by those materials. The formation of an additional phase was determined through thermal analysis of LDPE blends with virgin and recycled HDPE. In the study of mechanical behavior of these blends, this intermediate phase was observed to increase tensile strength and flexibility of samples, thus acting as an interfacial agent. Regarding activation energy obtained in thermogravimetric studies, it was concluded that a phenomenon occurs which delays decomposition process at 30% and 40% recycled HDPE. because at higher compositions, properties completely deteriorate. It is possible to use recycled HDPE in blends with LDPE. since raw materials cost is reduced and properties of the finished product are enhanced. 相似文献
6.
Fast and efficient determination of the optimal mechanical property of a polymer/CNT nanocomposite is crucial to develop polymer conductive nanocomposites. This work establishes a rheological approach to evaluate the super-toughness point of compatibilized high density polyethylene (HDPE)/multi-walled carbon nanotube (MWCNT) nanocomposites. Results illustrate that three types of HDPE/MWCNT nanocomposites exhibit obvious gel plateaus in the dynamic rheological curves and the gel points of nanocomposites with compatibilizer shift to the low MWCNTs loading. The super-toughness points of HDPE/MWCNT nanocomposites with compatibilizers show the correspondence with the gel points acquired from the rheological data, indicating that dynamic rheology is an effective way to determine the super-toughness points of HDPE/MWCNT nanocomposites with compatibilizers. Furthermore, unique network structure at the gel points is directly observed and the new mechanism of toughness is proposed. This study provides new insights for effective control of the structures and properties of polymer/CNT nanocomposites. 相似文献
7.
Flax-PP based thermally bonded roving (TBR) has a unique structure where the flax fibres remain twist-free and fully aligned along the roving axis. The present study describes an experimental investigation on the low velocity impact (LVI) behaviour of the TBR based woven fabric composites and compares the same with plain woven glass fabric reinforced PP composites (GRPC). Two different fabric architectures namely plain woven (PW) and unidirectional (UD) are fabricated using flax/PP based TBR. These TBR based woven fabrics and the glass fabric/PP sheets are consolidated in a compression moulding machine and the resultant composite-laminates are tested for their LVI behaviour. The impact test results revealed that the glass/PP composites absorb more energy and exhibit a higher peak load than both TBR based PW and UD fabric composites. However, the specific load and energy of all flax/PP composites are higher than the glass/PP composite. The damage tolerance of all composite laminates are evaluated by comparing their flexural strength before and after the impact. It is observed that the proportionate loss in flexural strength due to impact thrust is larger in case of glass/PP composites than all flax-PP composites. 相似文献
8.
WADOOD Y. HAMAD 《Cellulose (London, England)》1997,4(1):51-56
Wood-pulp fibres are recognized as concentrically-layered, laminated composite tubes of structural reinforcing material, the
cellulose microfibrils, embedded in a cementing matrix of hemicellulose and lignin. When the single fibres are subjected to
cyclic mechanical action, their morphological behaviour is characterized by the fatigue growth of micro-voids and surface
damage which individually and collectively give rise to stress concentrations, and eventually crack development. The progressive
damage phenomena, evinced by the surface imaging and optical sectioning techniques through utilizing confocal laser scanning
microscopy, are understood to be consequences of the cumulative material micromechanical degradation and subsequent microstructural
breakdown of the cellulose microfibrillar framework. This structural breakdown is believed to effect the fibrillation and
flexibilization of the fibres
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
9.
In a previous paper we discussed co-crystallization in a LDPE/HDPE blend using TREF and DSC. As part of that study it was observed that pure HDPE showed an unexpected fractionation behavior when quench crystallized in TREF. The overall peak broadened and two peaks appeared instead of the previously observed single peak for slow cooled HDPE.The development of two peaks was observed for all commercial HDPEs investigated, independent of their melting indices and densities. TREF and GPC were used in an attempt to evaluate the origin of the two HDPE components.The authors appreciate support from CAPES-BRAZIL (C.A.F.). Additional thanks go to Dr. G. W. Knight in Dow Chemical Company for kindly providing the polymer samples and performing the GPC analysis. 相似文献
10.