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41.
ATH在无卤阻燃聚乙烯电缆料中的应用研究 总被引:12,自引:0,他引:12
何云南 《高分子材料科学与工程》1992,8(6):126-130
以EVA改性LDPE,以偶联剂改性ATH,通过一系列配方的研究和性能测定,认为可以设计出适合于电缆料用的无卤阻燃聚乙烯的配方。 相似文献
42.
求解电缆自感系数的一个佯谬 总被引:1,自引:0,他引:1
何贤美 《安徽工业大学学报》2002,19(1):79-81
用求自感系数的两个常用公式求解实心电缆自感系数时,如果不注意对公式中Φm及I的正确理解,将会得到不一致的“佯谬”结果。本文通过将实心电缆等效为许多细线圈的方法,用2种公式求解得到了一致的结果。 相似文献
43.
Naoki Takinami Takashi Chino Shotaro Yoshida Isao Miura Kazuo Watanabe Kazuo Amano 《Electrical Engineering in Japan》1994,114(6):1-12
When ground-fault problems occur on a cable line, immediate fault location and restoration are required. Therefore, various new methods to locate the fault point instantaneously have been investigated to replace such conventional methods as the Murray loop method and the pulse radar method [1]. These methods require a long time to locate the fault point. One possible fault location method is to sense the temperature rise following a ground fault using a fiber optic distributed temperature sensor. Application of this method was found feasible through sensing the temperature rise at a ground-fault test using a thermocouple as a temperature sensor with test cables [4]. A power/optical composite cable was prepared experimentally and after verifying its thermal mechanical performance, the temperature rise at an incidence of a fault was determined and the anticipated performance was demonstrated in a ground-fault test. This article describes the outline of the test. 相似文献
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Sumathy Arumuganathar Scott Irvine Jean R. McEwan Suwan N. Jayasinghe 《应用聚合物科学杂志》2008,107(2):1215-1225
In a recent discovery, coaxial electrospinning was explored to encapsulate living organisms within a continuous bio‐polymeric microthread from which active biological scaffolds were fabricated (Townsend‐Nicholson and Jayasinghe, Biomacromolecules 2006, 7, 3364). The cells were demonstrated to have gone through all expected cellular activity without their viability being compromised. These biologically active threads and scaffolds have direct and tremendous applicability from regenerative to therapeutic medicine. Currently these post‐processed cells as composite threads and scaffolds are being investigated in‐depth at a cellular level to establish if the processing methodology has any affect on the cellular make‐up. We now demonstrate a competing non‐electric field driven approach for fabricating composite threads and scaffolds influenced only by a differential pressure. We refer to this novel composite thread to scaffold fabrication methodology as coaxial aerodynamically assisted bio‐threading (CAABT). Our investigations firstly, demonstrate that this technique can process handle living organisms without biologically perturbing them in anyway. Secondly the process is elucidated as possessing the ability to form composite active threads from which biologically viable scaffolds are formed. Finally our study employs florescent activated cell sorting (FACScan), a method by which the cellular dynamics and viability are quantified on control and threaded cellular samples at two prescribed time points. In parallel with FACScan, optical comparison of cellular morphology at three time points within a period of three weeks is carried out to photographically observe any changes in the post‐processed cellular phenotype. Our developmental investigations into this novel aerodynamically assisted threading methodology has unearthed a unique biomicrofabrication approach, which joins cell electrospinning in the cell threading to scaffold fabrication endeavor. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci, 2008 相似文献
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采用倒链葫芦、卷扬机或软牵引装置对斜拉索进行牵引安装 ,使牵引力达到 5 0 0余kN ,解决了斜拉索安装拉力大这一施工难题。 相似文献
49.
The paper gives a method of model XLPE medium voltage cable insulation testing for partial discharges and electrical treeing
with a point to plane test geometry. Based on this method, a comparative estimate of insulation resistance to treeing and
partial discharges have been made. XLPE crosslinked by different methods (steam medium and hot nitrogen medium) and with varying
contents of inorganic filler kaolin were tested. The characteristics of partial discharges were measured by means of a pulse
height analyser characterized with a microscope. The data have been analysed statistically. 相似文献
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