新澳门免费资料大全最新版本更新内容-新澳门免费资料大全历史记录开马-新澳门免费资料大全历史记录开奖-新澳门免费资料大全精准版下-新澳门免费资料大全精准版-新澳门免费资料大全

阻燃防火材料-網(wǎng)上貿(mào)易平臺 | | WAP瀏覽
服務(wù)熱線:4006555305

ASTM D2413用液體介質(zhì)浸漬的絕緣紙和紙板的制備與電試驗(yàn)的試驗(yàn)方法

放大字體  縮小字體 發(fā)布日期:2012-02-10   瀏覽次數(shù):187  分享到: 分享到騰訊微博
ASTM D2413用液體介質(zhì)浸漬的絕緣紙和紙板的制備與電試驗(yàn)的試驗(yàn)方法
ASTM D2413 Standard Practice for Preparation of Insulating Paper and Board Impregnated with a Liquid Dielectric
ASTM D2413用液體介質(zhì)浸漬的絕緣紙和紙板的制備與電試驗(yàn)的試驗(yàn)方法
Dissipation Factor and Relative Permittivity—Knowledge of these properties is important in the design of electrical equipment such as cables, transformers, insulators, etc. The numerical product of these two properties of a dielectric system is proportional to the energy loss converted to heat, and is called its loss index (see Terminology D1711). The energy loss reduces the efficiency of electrical equipment. The heat produced tends to chemically degrade the dielectric material and may even lead to thermal runaway. Test results of impregnated specimens can disclose significant differences between combinations of papers and oils that appear similar when the papers and the oils are tested separately. Dissipation factor, particularly at elevated temperatures, is often changed significantly by the presence of a small quantity of impurities in either the liquid or the paper. This practice is useful in the comparison of materials and in evaluating the effects of different papers on a given liquid. Judicious analysis of results with respect to time, temperature, and field strength should be useful in predicting the performance and capabilities of systems using the paper and the liquid. For additional information on the significance of dissipation factor and relative permittivity, see Test Methods D150.
Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Solid Electrical Insulating Materials at Commercial Power Frequencies:
A comprehensive discussion of the significance of the dielectric strength test as applied to solid, semi-solid, and liquid materials is given in Appendix X1 of Test Method D149. Other factors peculiar to high-quality composite insulations, such as oil-impregnated papers, are considered in the following:
In tests involving high electrical stresses, immersion of critical parts of a test circuit in oil is a widely used technique for inhibiting corona. However, it has limitations that must be recognized when using the submerged electrode option of this practice (Note 1). Attack on the paper by corona generated in the surrounding fluid at electrode edges can occur whether the fluid is air or oil. Corona occurs at considerably higher voltages in oil than in air. Thick and dense papers are more likely to cause discharge-initiated breakdowns. For interpretation of breakdown measurements the number of edge breakdowns, implying discharge-initiated breakdowns, should be considered.
Note 1—Two techniques are in use in the industry for testing specimens for dielectric breakdown voltage. In one, the test is made with the electrodes and test specimen submerged in the impregnating liquid while in the other the electrodes are not submerged, that is, the specimen is tested in air. Much data has been accumulated using the latter technique. These techniques yield different values of breakdown voltage. Test Method D149 states preference for testing materials in the medium in which they are used. The use of submerged electrodes follows this preference. When testing thick insulating boards, the use of submerged electrodes is greatly preferred.
The results of power frequency tests on oil impregnated papers are useful for screening, research, and quality control, provided that considerable judgment is exercised in interpreting the results. The application of the test results to equipment design and service requires particular caution and skill (see Appendix X1 of Test Method D149).
Dielectric Breakdown Voltage and Dielectric Strength Under Impulse Conditions—Testing impregnated paper or board under impulse conditions can yield useful data for the designer of electrical equipment. The test results are useful in the comparison of materials and for research studies. For a more general treatise on the significance of impulse testing see Test Method D3426.
1. Scope
1.1 This practice covers the preparation of insulating paper and board impregnated with a liquid dielectric. Where this practice states only “paper,” the same procedure shall apply to board.
1.2 This practice has been found practicable for papers having nominal thickness of 0.05 mm (2 mil) and above. It has been used successfully for insulating board as thick as 6 mm (¼ in.) when care is taken to ensure the specimen geometry necessary for valid measurement of dielectric properties. Suitable geometry depends on the electrode system used. Rigid solid opposing electrodes require flat specimens that have essentially parallel surfaces.
1.3 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

2. Referenced Documents (purchase separately)
ASTM Standards
D117 Guide for Sampling, Test Methods, and Specifications for Electrical Insulating Oils of Petroleum Origin
D149 Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Solid Electrical Insulating Materials at Commercial Power Frequencies
D150 Test Methods for AC Loss Characteristics and Permittivity (Dielectric Constant) of Solid Electrical Insulation
D202 Test Methods for Sampling and Testing Untreated Paper Used for Electrical Insulation
D257 Test Methods for DC Resistance or Conductance of Insulating Materials
D924 Test Method for Dissipation Factor (or Power Factor) and Relative Permittivity (Dielectric Constant) of Electrical Insulating Liquids
D1711 Terminology Relating to Electrical Insulation
D1816 Test Method for Dielectric Breakdown Voltage of Insulating Oils of Petroleum Origin Using VDE Electrodes
D1933 Specification for Nitrogen Gas as an Electrical Insulating Material
D3394 Test Methods for Sampling and Testing Electrical Insulating Board
D3426 Test Method for Dielectric Breakdown Voltage and Dielectric Strength of Solid Electrical Insulating Materials Using Impulse Waves
Index Terms
board; dielectric strength; dissipation factor; drying; impulse strength; oil impregnation; paper permittivity; pressboard; vacuum drying; Dielectric breakdown voltage; Electrical insulating paper/paperboard; Electrical properties; Impregnated dielectric materials; Liquid dielectric; Oil impregnation; Permittivity (dielectric constant)--electrical insulating materials; Power factor; Pressboard (electrical insulating); Specimen preparation (for testing)--electrical insulation; Vacuum drying; Board;
 

  詳情請咨詢
  防火資源網(wǎng)-阻燃防火測試中心
  電話:(+86)0592-5056213
  傳真:(+86)0592-5105807
  郵件:firetest@firetc.com

凡注明"防火資源網(wǎng)"的所有作品,由<防火資源網(wǎng)>整理編輯,任何組織未經(jīng)<防火資源網(wǎng)>及其擁有者授權(quán),不得復(fù)制、轉(zhuǎn)載、摘編或利用其它方式應(yīng)用于任何商業(yè)行為。

 
 
[ 防火測試中心搜索 ]  [ ]  [ 告訴好友 ]  [ 打印本文 ]  [ 關(guān)閉窗口 ]  [ 返回頂部 ]

 

 
 
推薦防火測試
推薦圖文
點(diǎn)擊排行
 
 
網(wǎng)站首頁 | 廣告服務(wù) | 關(guān)于我們 | 聯(lián)系方式 | 服務(wù)協(xié)議 | 版權(quán)聲明 | 網(wǎng)站地圖 | 友情鏈接 | 網(wǎng)站留言 | 舊版本 | 閩ICP備09009213號
?2019-2021 FIRETC.COM All Rights Reserved ? 備案號:閩ICP備09009213號-1在線客服 點(diǎn)擊QQ交談/留言 點(diǎn)擊QQ交談/留言
主站蜘蛛池模板: 一码一肖100准你好 一码一肖100准免费资料 | 新澳门免费资料大全精准版下 | 澳门今晚精准特马四不像图 | 2025新澳精准资料免费大全 | 2025年澳门今天晚上开什么号码 | 马会传真图2025今晚 | 2025全年澳彩资料免费资料大全 | 2025年澳门正版资料免费大 | 彩库宝典旧版是哪个版本 | 2025正版澳门全年免费手机看资料 | 今晚澳门必中一肖一码专家 | 澳门免费资料网站网址 | 香港澳门资料大全是一家为客户提供澳门正版资料免费大全公开和全网最全最准资料图库大全 | 白小姐的一码一肖中特 | 管家婆新澳门六合v5.20.16 | 香港最准100话肖中特官方版下载 | 123696澳门资料2025年 | 新澳门一肖一码精准资料公开 | 4949澳门免费资料大全揭秘 | 2025今晚澳门开特马. | 246天天好釆免费大全 | 澳门今天晚上开什么特一码中 | 六盒宝典资料大全香 | 小鱼儿玄机2站30码期期准 | 2025澳门资料大全正新版 | 澳门精准正版资料免费大全官方版下载 | 澳门正版资料大全精准搜索 | 2025年澳门正版资料大全下载 | 2025新奥精选免费资料 | 聚宝盆丽萍数据1183 | 香港全套资料(带图片) | 今期四柱预测彩图图库 | 49图库安卓版本大全下载 | 香港挂牌正版挂牌网站 | 香港免费资料大全官方版下载 | 手机版大全资料彩图_最火手机站 | 澳门今晚必开一肖 | 旧版六宝典下载安装 | 马会传真内部绝密信封资料 | 四肖八码免费资料期期准免费下 | 今日奥门预测开码 |