一、環氧樹脂板生產廠家簡介 環氧樹脂是泛指分子中含有兩個或兩個以上環氧基團的****高分子化合物,除個別外,它們的相對分子質量都不高。環氧樹脂的分子結構是以分子鏈中含有活潑的環氧基團為其特征,環氧基團可以位于分子鏈的末端、中間或成環狀結構。由于分子結構中含有活潑的環氧基團,使它們可與多種類型的固化劑發生交聯反應而形成不溶、不熔的具有三向網狀結構的高聚物。

二、環氧樹脂板生產廠家應用特性 1、 形式多樣。各種樹脂、固化劑、改性劑體系幾乎可以適應各種應用對形式提出的要求,其范圍可以從極低的粘度到高熔點固體。 2、 固化方便。選用各種不同的固化劑,環氧樹脂體系幾乎可以在0~180℃溫度范圍內固化。 3、 粘附力強。環氧樹脂分子鏈中固有的極性羥基和醚鍵的存在,使其對各種物質具有很高的粘附力。環氧樹脂固化時的收縮性低,產生的內應力小,這也有助于提高粘附強度。 4、 收縮性低。環氧樹脂和所用的固化劑的反應是通過直接加成反應或樹脂分子中環氧基的開環聚合反應來進行的,沒有水或其它揮發性副產物放出。它們和不飽和聚酯樹脂、酚醛樹脂相比,在固化過程中顯示出很低的收縮性(小于2%)。 5、 力學性能。固化后的環氧樹脂體系具有優良的力學性能。 6、 電性能。固化后的環氧樹脂體系是一種具有高介電性能、耐表面漏電、耐電弧的優良絕緣材料。 7、 化學穩定性。通常,固化后的環氧樹脂體系具有優良的耐堿性、耐酸性和耐溶劑性。像固化環氧體系的其它性能一樣,化學穩定性也取決于所選用的樹脂和固化劑。適當地選用環氧樹脂和固化劑,可以使其具有特殊的化學穩定性能。 8、 尺寸穩定性。上述的許多性能的綜合,使環氧樹脂體系具有突出的尺寸穩定性和耐久性。 9、 耐霉菌。固化的環氧樹脂體系耐大多數霉菌,可以在苛刻的熱帶條件下使用。
三、環氧樹脂板生產廠家技術參數
1、外觀 表面應平滑,無氣泡、皺紋和裂紋。 2、標稱厚度及允許偏差見表1。 表1 mm <**** border="1" cellpadding="0" cellspacing="0" ****="border-spacing:0px;color:#000000;font-family:宋體, helvetica, arial, sans-serif;font-size:12px;line-height:28px;width:715px;"><****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:#cccccc;">標稱厚度****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:#cccccc;">偏差****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:#cccccc;">標準厚度****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:#cccccc;">偏差****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">0.4****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.10****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">8.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±0.72****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">0.5****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.12****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">10.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±0.82****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">0.6****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.13****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">12.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±0.94****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">0.8****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.16****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">14.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±1.02****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">1.0****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.18****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">16.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±1.12****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">1.2****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.20****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">20.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±1.30****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">1.6****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.24****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">25.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±1.50****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">2.0****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.28****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">30.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±1.70****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:90.1pt;background-color:****ansparent;">2.5****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.33****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">35.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±1.95****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:88.95pt;background-color:****ansparent;">3.0****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.37****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">40.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±2.10****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:88.95pt;background-color:****ansparent;">4.0****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.45****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">45.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±2.30****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:88.95pt;background-color:****ansparent;">5.0****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.52****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">50.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±2.45****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:88.95pt;background-color:****ansparent;">6.0****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">±0.60****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">60.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±2.50****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:88.95pt;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:108.4pt;background-color:****ansparent;">80.0****><**** ****="margin:0px;padding:0px;width:101.55pt;background-color:****ansparent;">±2.80****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** colspan="4" ****="margin:0px;padding:0px;width:407.3pt;background-color:****ansparent;">注: 1 其他允許偏差可由供需雙方協商。 2 對于標稱厚度不在所列的優選厚度之一者,其允許偏差應采用下一個較大的優選厚度的偏差。****>****>****>****> 3、平直度見表2。表2 層壓板表面距直尺的****大允許偏差mm <**** border="1" cellpadding="0" cellspacing="0" ****="border-spacing:0px;color:#000000;font-family:宋體, helvetica, arial, sans-serif;font-size:12px;line-height:28px;width:715px;"><****><****><**** rowspan="2" ****="margin:0px;padding:0px;width:124.5pt;background-color:#cccccc;">厚度 (d)****><**** colspan="2" ****="margin:0px;padding:0px;width:277.5pt;background-color:#cccccc;">直尺長度****>****><****><**** ****="margin:0px;padding:0px;width:5cm;background-color:#cccccc;">1000****><**** ****="margin:0px;padding:0px;width:135pt;background-color:#cccccc;">500****>****><****><**** ****="margin:0px;padding:0px;width:124.5pt;background-color:****ansparent;">1.6≤d≤3 3<> 6<> 8< d****><**** ****="margin:0px;padding:0px;width:5cm;background-color:****ansparent;">見注 10 8 6****><**** ****="margin:0px;padding:0px;width:135pt;background-color:****ansparent;">見注 2.5 2.0 1.5****>****><****><**** colspan="3" ****="margin:0px;padding:0px;width:401.25pt;background-color:****ansparent;">>注:對標稱厚度在1.6 mm≤d≤3 mm的允許偏差正在考慮之中****>****>****>****> 4、性能要求見表4。表4性能要求 <**** border="1" cellpadding="0" cellspacing="0" ****="border-spacing:0px;color:#000000;font-family:宋體, helvetica, arial, sans-serif;font-size:12px;line-height:28px;width:715px;"><****><****><**** colspan="2" ****="margin:0px;padding:0px;width:37.6pt;background-color:#cccccc;">序 號****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:#cccccc;">指 標 名 稱****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:#cccccc;">單 位****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:#cccccc;">指 標 值****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:#cccccc;">說明****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:37.6pt;background-color:****ansparent;">1****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">垂直層向彎曲強度****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">MPa****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥340****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">-****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:37.6pt;background-color:****ansparent;">2****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">平行層向沖擊強度 (簡支梁法)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">KJ/****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥33****><**** rowspan="2" ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">兩者之一滿足本標準要求即可****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:37.6pt;background-color:****ansparent;">3****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">平行層向沖擊強度 (懸臂梁法)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">kJ/****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥34****>****><****><**** colspan="2" ****="margin:0px;padding:0px;width:37.6pt;background-color:****ansparent;">4****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">垂直層向電氣強度 (90℃±2℃油中)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">MV/m****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">見表5****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">-****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">5****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">平行層向擊穿電壓 (90℃±2℃油中)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">kV****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥35****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">-****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">6a****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">介電常數 (48Hz-62Hz以下)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">-****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≤5.5****><**** rowspan="2" ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">兩者之一滿足本標準要求即可****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">6b****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">介電常數 (1MHz以下)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">-****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≤5.5****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">7****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">馬丁溫度縱向****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">℃****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥200****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">8****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">熱穩定性****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">℃****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">200****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">9****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">耐油性變壓器油中4h****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">℃****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">130****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">10****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">拉伸強度縱向 橫向****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">MPa****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥314 ≥216****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">11****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">粘合強度****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">N****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥5600****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">12****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">表面電阻率常態時 浸水后****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">MΩ****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥1× ≥1×****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">13****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">體積電阻率常態時 浸水后****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">MΩ·m****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥1× ≥1×****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">14****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">平行層向絕緣電阻常態時 浸水后****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">MΩ****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥1× ≥1×****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;"> ****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">15a****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">介質損耗因數 (48Hz-62Hz以下)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">-****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≤0.04****><**** rowspan="2" ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">兩者之一滿足本標準要求即可****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">15b****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">介質損耗因數 (1MHz以下)****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">-****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≤0.04****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">16****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">浸水后絕緣電阻****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">Ω****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">≥5.0×****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">-****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">17****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">密度****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">g/****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">(1.7-1.9)****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">-****>****><****><**** ****="margin:0px;padding:0px;background-color:****ansparent;"> ****><**** ****="margin:0px;padding:0px;width:36.45pt;background-color:****ansparent;">18****><**** ****="margin:0px;padding:0px;width:149.7pt;background-color:****ansparent;">吸水性****><**** ****="margin:0px;padding:0px;width:63.2pt;background-color:****ansparent;">mg****><**** ****="margin:0px;padding:0px;width:73.7pt;background-color:****ansparent;">見表6****><**** ****="margin:0px;padding:0px;width:84.25pt;background-color:****ansparent;">-****>****>****>****> 表5垂直層向電氣強度 <**** border="1" cellpadding="0" cellspacing="0" ****="border-spacing:0px;color:#000000;font-family:宋體, helvetica, arial, sans-serif;font-size:12px;line-height:28px;width:715px;"><****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">平均厚度 mm****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">電氣強度 MV/m****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">厚度 mm****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">電氣強度 MV/m****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">0.4****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥16.9****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">1.6****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥12.7****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">0.5****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥16.1****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">1.8****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥12.2****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">0.6****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥15.6****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">2.0****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥11.8****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">0.7****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥15.2****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">2.2****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥11.4****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">0.8****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥14.8****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">2.4****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥11.1****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">0.9****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥14.5****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">2.5****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥10.9****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">1.0****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥14.2****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">2.6****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥10.8****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">1.2****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥13.7****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">2.8****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥10.5****>****><****><**** ****="margin:0px;padding:0px;width:64.05pt;background-color:#cccccc;">1.4****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥13.2****><**** ****="margin:0px;padding:0px;width:64pt;background-color:#cccccc;">3.0****><**** ****="margin:0px;padding:0px;width:140.2pt;background-color:#cccccc;">≥10.2****>****>****>****> 注:1 對90℃±2℃油中垂直層向電氣強度,可任選20s逐級升壓和1min耐壓試驗要求中的一種。對符合二者之一要求的材料,應視其90℃±2℃油中垂直層向電氣強度是符合本標準要求的。 2 如果測得的試樣厚度算術平均值是介于表中兩厚度之間,則其指標值應從內插法求取。如果測得的厚度算術平均值小于0.4mm,則其電氣強度指標值取≥16.9MV/m。如果標稱厚度為3mm,并且測得的厚度算術平均值大于3mm時,則其電氣強度的指標值取≥10.2MV/m表6吸水性 <**** border="1" cellpadding="0" cellspacing="0" ****="border-spacing:0px;color:#000000;font-family:宋體, helvetica, arial, sans-serif;font-size:12px;line-height:28px;margin:auto auto auto 1.15pt;width:656px;"><****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:#cccccc;">試樣厚度平均值 mm****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:#cccccc;">吸水性 mg****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:#cccccc;">試樣厚度平均值 mm****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:#cccccc;">吸水性 mg****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">0.4****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤17****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">5****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤25****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">0.5****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤17****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">6****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤27****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">0.6****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤17****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">8****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤31****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">0.8****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤18****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">10****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤34****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">1.0****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤18****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">12****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤38****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">1.2****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤18****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">14****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤41****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">1.6****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤19****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">16****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤46****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">2.0****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤20****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">20****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤52****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">2.5****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤21****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">25****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤61****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">3****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤22****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">單面加工至22.5****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤73****>****><****><**** ****="margin:0px;padding:0px;width:161.85pt;background-color:****ansparent;">4****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;">≤23****><**** ****="margin:0px;padding:0px;width:73.9pt;background-color:****ansparent;"> ****>****>****>****>注:1如果測得的試樣厚度算術平均值是介于表中兩厚度之間,則其指標值應從內插法求得。2如果測得的厚度算術平均值小于0.4mm,則其指標值取≤17mg。如果標稱厚度為25mm并測得的厚度算術平均值大于25mm時,則其指標值取≤61mg。標稱厚度大于25mm的板材,則應從單面加工至22.5mm且加工面應是比較光滑的。 環氧樹脂板是由電工用無堿玻璃纖維布浸以環氧酚醛樹脂,經烘焙、熱壓而成。 環氧樹脂板具有較高的機械和介電性能,較好的耐熱性和耐潮性,并有良好的機械加工性,耐熱等級為B級。 環氧樹脂板適用于電機、電器設備中作為絕緣結構零部件,并可在潮溫環境和變壓器油中使用。 環氧樹脂板以較高的機械性能和電氣性能,廣泛應用在發電機、馬達、電子器具上作為絕緣材料和構件。在變壓器油壓環境和濕度環境中也非常適用。
7、環氧樹脂和所用的固化劑的反應是通過直接加成反應或樹脂分子中環氧基的開環聚合反應來進行的,沒有水或其它揮發性副產物放出。它們和不飽和聚酯樹脂、酚醛樹脂相比,在固化過程中顯示出很低的收縮性(小于2%)。 |