CN113604169A - 抗静电胶带 - Google Patents
抗静电胶带 Download PDFInfo
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- CN113604169A CN113604169A CN202111081281.4A CN202111081281A CN113604169A CN 113604169 A CN113604169 A CN 113604169A CN 202111081281 A CN202111081281 A CN 202111081281A CN 113604169 A CN113604169 A CN 113604169A
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- antistatic
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- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 claims description 11
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- SMZOUWXMTYCWNB-UHFFFAOYSA-N 2-(2-methoxy-5-methylphenyl)ethanamine Chemical compound COC1=CC=C(C)C=C1CCN SMZOUWXMTYCWNB-UHFFFAOYSA-N 0.000 claims description 9
- NIXOWILDQLNWCW-UHFFFAOYSA-N 2-Propenoic acid Natural products OC(=O)C=C NIXOWILDQLNWCW-UHFFFAOYSA-N 0.000 claims description 9
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- UPMLOUAZCHDJJD-UHFFFAOYSA-N 4,4'-Diphenylmethane Diisocyanate Chemical compound C1=CC(N=C=O)=CC=C1CC1=CC=C(N=C=O)C=C1 UPMLOUAZCHDJJD-UHFFFAOYSA-N 0.000 claims description 8
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- DGAQECJNVWCQMB-PUAWFVPOSA-M Ilexoside XXIX Chemical compound C[C@@H]1CC[C@@]2(CC[C@@]3(C(=CC[C@H]4[C@]3(CC[C@@H]5[C@@]4(CC[C@@H](C5(C)C)OS(=O)(=O)[O-])C)C)[C@@H]2[C@]1(C)O)C)C(=O)O[C@H]6[C@@H]([C@H]([C@@H]([C@H](O6)CO)O)O)O.[Na+] DGAQECJNVWCQMB-PUAWFVPOSA-M 0.000 description 1
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- NQXPWHDPIJFXOU-UHFFFAOYSA-N imino-bis(trifluoromethyl)-$l^{4}-sulfane Chemical compound FC(F)(F)S(=N)C(F)(F)F NQXPWHDPIJFXOU-UHFFFAOYSA-N 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 239000005543 nano-size silicon particle Substances 0.000 description 1
- 238000011056 performance test Methods 0.000 description 1
- NBIIXXVUZAFLBC-UHFFFAOYSA-K phosphate Chemical compound [O-]P([O-])([O-])=O NBIIXXVUZAFLBC-UHFFFAOYSA-K 0.000 description 1
- 229910052814 silicon oxide Inorganic materials 0.000 description 1
- BDHFUVZGWQCTTF-UHFFFAOYSA-M sulfonate Chemical compound [O-]S(=O)=O BDHFUVZGWQCTTF-UHFFFAOYSA-M 0.000 description 1
- 238000012360 testing method Methods 0.000 description 1
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- Chemical & Material Sciences (AREA)
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- Adhesives Or Adhesive Processes (AREA)
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Abstract
本发明公开了一种抗静电胶带,包括抗静电离型纸和导电胶层,所述抗静电离型纸包括抗静电涂层以及金属层,所述导电胶层包括导电粒子,其中,所述金属层与所述导电粒子能够形成导电通路,用于将所述抗静电胶带内产生的静电导除,本发明具有不会造成静电聚集、释放,破坏离型,造成解卷不良的优点。
Description
技术领域
本发明是关于胶带,特别是关于一种抗静电胶带。
背景技术
随着电子行业的快速发展,各种各样的胶带被应用于电脑、手机等电子产品中,导电胶带作为电子行业中,一类重要的胶粒剂产品,更被广泛应用于电子产品中,之前的无基材胶带在生产、复卷加工过程中,很容易受到静电的破坏,造成解卷不良,胶带报废,且静电易吸附灰尘或其它粒子,最终影响电子元器件的使用寿命。因此在生产、复卷加工过程中使用大量的消除静电的装置(静电绳、静电刷、去离子静电消除棒等),多个位置监测静电值大小并管控,但依然有部分产品在最终应用时由于静电破坏不能使用,导致材料报废。
因此,有必要提供一种抗静电胶带,来解决上述问题。
公开于该背景技术部分的信息仅仅旨在增加对本发明的总体背景的理解,而不应当被视为承认或以任何形式暗示该信息构成已为本领域一般技术人员所公知的现有技术。
发明内容
本发明的目的在于提供一种抗静电胶带,其能够转移并消除胶带中的静电。
为实现上述目的,本发明的实施例提供了一种抗静电胶带,包括抗静电离型纸和导电胶层,所述抗静电离型纸包括抗静电涂层以及金属层,所述导电胶层包括导电粒子,其中,所述金属层与所述导电粒子能够形成导电通路,用于将所述抗静电胶带内产生的静电导除。
在本发明的一个或多个实施方式中,所述抗静电离型纸从上至下依次包括有轻离型力层、抗静电层、格拉辛原纸层、胶粘剂层、金属层以及重离型力层,所述重离型力层与所述导电胶层相接触。
在本发明的一个或多个实施方式中,所述抗静电层按照质量份数包括以下原料组分:抗静电物为30~60质量份,纳米级金属氧化物为10~30质量份,溶剂为50~100质量份。
在本发明的一个或多个实施方式中,所述抗静电物双三氟甲基硫酰亚胺、聚乙炔、乙氧基化烷基胺、聚噻吩、聚吡咯、聚苯胺、聚苯撑、聚苯撑乙烯、聚苯咪唑、烷基磺酸钠中的一种或多种。
在本发明的一个或多个实施方式中,所述导电胶层厚度为0.01~0.1mm。
在本发明的一个或多个实施方式中,所述导电胶层按质量份数包括以下原料组分:丙烯酸胶水为50~80质量份;异氰酸酯类交联剂为1~5质量份;偶联剂为0.1~1质量份;导电粒子为2~15质量份,抗静电剂为2~10质量份。
在本发明的一个或多个实施方式中,所述抗静电剂包括纳米氧化物、季铵盐、硫酸酯、磷酸酯、聚乙二醇、聚噻吩以及烷基磺酸钠中的一种或者多种。
在本发明的一个或多个实施方式中,所述异氰酸酯类交联剂包括二苯甲烷二异氰酸酯。
在本发明的一个或多个实施方式中,所述偶联剂为硅烷偶联剂。
在本发明的一个或多个实施方式中,所述导电粒子为镍粉、银粉、铜粉、镍包石墨导电粉、银包铝导电粉、银包铜导电粉、银包镍导电粉中的一种或多种。
与现有技术相比,根据本发明实施方式的抗静电胶带,在通过在导电胶层内加入抗静电剂以及在抗静电离型纸内添加抗静电物,大大降低了抗静电胶带在生产、加工、使用过程中静电的产生;同时在导电胶层中导电粒子和抗静电离型纸中的金属层可以形成导电通路,通路接地就可将产生的静电导除,不会造成静电聚集、释放,破坏离型,造成解卷不良的情况。
附图说明
图1是根据本发明一实施方式的抗静电胶带的结构示意图。
主要附图标记说明:
1、抗静电离型纸;11、轻离型力层;12、抗静电层;13、格拉辛原纸层;14、胶粘剂层;15、金属层;16、重离型力层;2、导电胶层。
具体实施方式
下面结合附图,对本发明的具体实施方式进行详细描述,但应当理解本发明的保护范围并不受具体实施方式的限制。
除非另有其它明确表示,否则在整个说明书和权利要求书中,术语“包括”或其变换如“包含”或“包括有”等等将被理解为包括所陈述的元件或组成部分,而并未排除其它元件或其它组成部分。
如图1所示,根据本发明优选实施方式的抗静电胶带,包括抗静电离型纸1和导电胶层2。
一具体实施方式中,抗静电离型纸1从上至下依次为轻离型力层11、抗静电层12、格拉辛原纸层13、胶粘剂层14、金属层15以及重离型力层16,其中,重离型力层16的下方是导电胶层2。抗静电离型纸1中包括有抗静电层12,起到在生产抗静电离型纸1时,就避免静电的产生和留存在抗静电离型纸1内。而金属层15则是与导电胶层2形成导电通路,将该通路接地,即可将抗静电胶带中的静电转移至大地内,达到消除抗静电胶带内静电的作用。
其中,胶粘剂层14可以由丙烯酸胶构成,起到固定连接金属层15和格拉辛原纸层13的作用。
其中,格拉辛原纸层13由格拉辛原纸构成。
其中,轻离型力层11、重离型力层16分别由轻/重面离型剂构成。
一具体实施方式中,金属层15中的金属可以使用铝箔,利用铝具有质量轻、导电性能优异以及造价低的优点,既可以降低抗静电胶带的造价成本,又可以降低抗静电胶带的重量。
一具体实施方式中,抗静电层12按照质量份数包括以下原料:抗静电物为30~60质量份,纳米级金属氧化物为10~30质量份,溶剂为50~100质量份。其中,抗静电层12的制作工艺为:将抗静电物加入至溶剂内,并与纳米级金属氧化物混合,然后均匀涂布到电晕后的格拉辛原纸层13表面,即为抗静电层12。
其中,纳米级金属氧化物为纳米级氧化锡、纳米级氧化锌或纳米级氧化钴中的一种或多种。
其中,溶剂为乙醇、乙酸乙酯或者甲苯中的一种或者多种。
其中,抗静电物为双三氟甲基硫酰亚胺、聚乙炔、乙氧基化烷基胺、聚噻吩、聚吡咯、聚苯胺、聚苯撑、聚苯撑乙烯、聚苯咪唑、烷基磺酸钠中的一种或多种。
一具体实施方式中,轻离型力层11和重离型力层16分别由轻面离型剂和重面离型剂组成。其中,轻离型力剂按质量分数包括以下原料组分:硅油(乙烯基硅氧烷)为100质量份,交联剂(含氢硅油)为1~4质量份,重剥离添加剂(MQ硅树脂)为0~50质量份,锚固剂(有机硅烷)为0.1~1质量份;铂金催化剂(铂化合物+聚二甲基硅氧烷)为1~2质量份,有机硅消泡剂(聚醚改性有机硅消泡剂)为0.5~2质量份。
重离型力剂按质量分数包括以下原料组分:硅油(乙烯基硅氧烷)为100质量份,交联剂(含氢硅油)为1~4质量份,重剥离添加剂(MQ硅树脂)为20~100质量份,锚固剂(有机硅烷)为0.1~1质量份,铂金催化剂(铂化合物+聚二甲基硅氧烷)为1~2质量份,有机硅消泡剂(聚醚改性有机硅消泡剂)为0.5~2质量份。
需要说明的是,轻面离型剂和重面离型剂由于交联剂的存在,需要现用现制,同时上述实施方式中的括号内的物质可以为对应的组分一种具体实施时采用的物质。
一具体实施方式中,导电胶层2的0.01~0.1mm,使导电胶层2的表面电阻值可控制102~105Ω范围内,而目前行业内的抗静电的胶带,其表面电阻值普遍只能维持在106~1010Ω,降低了本发明抗静电胶带的电阻值,从而达到增加本发明抗静电胶带的静电导除的能力。
一具体实施方式中,所述导电胶层2按质量份数包括以下原料组分:丙烯酸胶水为50~80质量份;异氰酸酯类交联剂为1~5质量份;偶联剂为0.1~1质量份;导电粒子为2~15质量份,抗静电剂为2~10质量份。
其中,导电粒子在导电胶层2中起到与金属层15相导通的作用。
一具体实施方式中,导电粒子可以为镍粉、银粉、铜粉、镍包石墨导电粉、银包铝导电粉、银包铜导电粉、银包镍导电粉中的一种或多种。
一具体实施方式中,异氰酸酯类交联剂包括二苯甲烷二异氰酸酯。
一具体实施方式中,偶联剂为硅烷偶联剂。
一具体实施方式中,抗静电剂包括纳米氧化物、季铵盐、硫酸酯、磷酸酯、聚乙二醇、聚噻吩以及烷基磺酸钠中的一种或者多种。
下面将详细介绍本发明抗静电胶带的制备过程:
1)将格拉辛原纸进行电晕处理,在其粗糙面涂丙烯酸胶,在70~110℃温度干燥1~3分钟,涂布量:5~15g/m2,过烤箱干燥后,在格拉辛原纸上涂有丙烯酸胶一面复合一层金属层15,然后收卷;
2)将抗静电物、纳米级金属氧化物和溶剂进行乳化、搅拌均匀后涂布到步骤1)中电晕过的格拉辛原纸层13的另一面过烤箱干燥后收卷,在温度为70~110℃条件下干燥1~2分钟,其中,涂布量:1~5g/m2;
3)制得轻/重面离型剂;优先将轻面离型剂涂布到抗静电层12上;然后在将重面离型剂涂布到金属层15上。涂布速度为50~150m/min;在70~160℃的温度下进行干燥,干燥时间为1~2分钟左右,涂布量1~4g/m2,即得到抗静电离型纸1。
4)将丙烯酸胶水,异氰酸酯类交联剂,偶联剂,导电粒子、抗静电剂按照配比称量后搅拌均匀,得到抗静电胶水;
5)用刮刀将制备好的抗静电胶水涂布于3)中制备的抗静电离型纸1的重离型力层16上;在70~120℃的温度下进行干燥,涂布量10~100g/m2;干燥后收卷,抗静电离型纸1卷在外,导电胶层2卷在内。即得到抗静电胶带。
实施例1,
1)将10m2格拉辛原纸进行电晕处理,在其粗糙面涂丙烯酸胶,在70℃温度干燥3分钟,涂布量:5g/m2,过烤箱干燥后得到格拉辛原纸层13,在格拉辛原纸层13的一面复合一层铝箔,然后收卷;
2)将1.5g聚噻吩、1.5g聚吡咯、1g纳米级氧化钴以及5g乙醇进行乳化、搅拌均匀后涂布到步骤1)中电晕过的格拉辛原纸层13的另一面过烤箱干燥后收卷,在温度为70℃条件下干燥2分钟,其中,涂布量:1g/m2;
3)称取10g轻面离型剂和20g重面离型剂;优先将轻面离型剂涂布到抗静电层12上;然后在将重面离型剂涂布到金属层15上。涂布速度为50m/min;在70℃的温度下进行干燥,干燥时间为2分钟,涂布量1g/m2,即得到抗静电离型纸1。
4)将50g丙烯酸胶水、1g二苯甲烷二异氰酸酯、0.1g硅烷偶联剂、2g镍粉、2g纳米氧化硅搅拌均匀,得到抗静电胶水;
5)用刮刀将制备好的抗静电胶水涂布于3)中制备的抗静电离型纸1的重离型力层16上;在70℃的温度下进行干燥,涂布量10g/m2;干燥后收卷,抗静电离型纸1卷在外,导电胶层2卷在内。即得到抗静电胶带。
实施例2,
1)将10m2格拉辛原纸进行电晕处理,在其粗糙面涂丙烯酸胶,在110℃温度干燥1分钟,涂布量:15g/m2,过烤箱干燥后得到格拉辛原纸层13,在格拉辛原纸层13的一面复合一层铝箔,然后收卷;
2)将20g双三氟甲基硫酰亚胺、20g聚乙炔、20g乙氧基化烷基胺、15g纳米级氧化锡、15g纳米级氧化锌、50g乙酸乙酯以及50g甲苯进行乳化、搅拌均匀后涂布到步骤1)中电晕过的格拉辛原纸层13的另一面过烤箱干燥后收卷,在温度为110℃条件下干燥1分钟,其中,涂布量:5g/m2;
3)称取10g轻面离型剂和20g重面离型剂;优先将轻面离型剂涂布到抗静电层12上;然后在将重面离型剂涂布到金属层15上。涂布速度为150m/min;在160℃的温度下进行干燥,干燥时间为1分钟,涂布量4g/m2,即得到抗静电离型纸1。
4)将80g丙烯酸胶水、5g二苯甲烷二异氰酸酯、1g硅烷偶联剂、5g银粉、5g铜粉、5g银包铜导电粉、2g季铵盐、2g硫酸酯、3g磷酸酯以及3g聚乙二醇搅拌均匀,得到抗静电胶水;
5)用刮刀将制备好的抗静电胶水涂布于3)中制备的抗静电离型纸1的重离型力层16上;在120℃的温度下进行干燥,涂布量100g/m2;干燥后收卷,抗静电离型纸1卷在外,导电胶层2卷在内。即得到抗静电胶带。
实施例3,
1)将10m2格拉辛原纸进行电晕处理,在其粗糙面涂丙烯酸胶,在80℃温度干燥2分钟,涂布量:10g/m2,过烤箱干燥后得到格拉辛原纸层13,在格拉辛原纸层13的一面复合一层铝箔,然后收卷;
2)将1.5g聚苯撑乙烯、1.5g聚苯咪唑、1.5g烷基磺酸钠、1g纳米级氧化锡、1g纳米级氧化锌以及8g乙酸乙酯进行乳化、搅拌均匀后涂布到步骤1)中电晕过的格拉辛原纸层13的另一面过烤箱干燥后收卷,在温度为80℃条件下干燥2分钟,其中,涂布量:2g/m2;
3)称取10g轻面离型剂和20g重面离型剂;优先将轻面离型剂涂布到抗静电层12上;然后在将重面离型剂涂布到金属层15上。涂布速度为70m/min;在90℃的温度下进行干燥,干燥时间为2分钟,涂布量1g/m2,即得到抗静电离型纸1。
4)将65g丙烯酸胶水、2g二苯甲烷二异氰酸酯、0.3g硅烷偶联剂、4g镍粉、4g镍包石墨导电粉、4g聚乙二醇、3g聚噻吩以及4g烷基磺酸钠搅拌均匀,得到抗静电胶水;
5)用刮刀将制备好的抗静电胶水涂布于3)中制备的抗静电离型纸1的重离型力层16上;在80℃的温度下进行干燥,涂布量30g/m2;干燥后收卷,抗静电离型纸1卷在外,导电胶层2卷在内。即得到抗静电胶带。
实施例4,
1)将10m2格拉辛原纸进行电晕处理,在其粗糙面涂丙烯酸胶,在90℃温度干燥2分钟,涂布量:13g/m2,过烤箱干燥后得到格拉辛原纸层13,在格拉辛原纸层13的一面复合一层铝箔,然后收卷;
2)将1g聚苯胺、1g聚苯撑、1g聚苯撑乙烯、1g聚苯咪唑、1g纳米级氧化锡、1g纳米级氧化锌、1g纳米级氧化钴、3g乙醇、3g乙酸乙酯以及3g甲苯进行乳化、搅拌均匀后涂布到步骤1)中电晕过的格拉辛原纸层13的另一面过烤箱干燥后收卷,在温度为90℃条件下干燥1.5分钟,其中,涂布量:3g/m2;
3)称取10g轻面离型剂和20g重面离型剂;优先将轻面离型剂涂布到抗静电层12上;然后在将重面离型剂涂布到金属层15上。涂布速度为50/min;在110℃的温度下进行干燥,干燥时间为1.5分钟,涂布量3g/m2,即得到抗静电离型纸1。
4)将70g丙烯酸胶水、4g二苯甲烷二异氰酸酯、0.8g硅烷偶联剂、3g镍粉、3g银粉、2g银包铝导电粉、3g银包镍导电粉、4g季铵盐、4g硫酸酯以及4g磷酸酯混合搅拌均匀,得到抗静电胶水;
5)用刮刀将制备好的抗静电胶水涂布于3)中制备的抗静电离型纸1的重离型力层16上;在110℃的温度下进行干燥,涂布量50g/m2;干燥后收卷,抗静电离型纸1卷在外,导电胶层2卷在内。即得到抗静电胶带。
实施例5,
1)将10m2格拉辛原纸进行电晕处理,在其粗糙面涂丙烯酸胶,在100℃温度干燥1.5分钟,涂布量:8g/m2,过烤箱干燥后得到格拉辛原纸层13,在格拉辛原纸层13的一面复合一层铝箔,然后收卷;
2)将1.5g聚吡咯、1.5g聚苯胺、1g聚苯撑、2.5g纳米级氧化锌以及7g乙酸乙酯进行乳化、搅拌均匀后涂布到步骤1)中电晕过的格拉辛原纸层13的另一面过烤箱干燥后收卷,在温度为100℃条件下干燥1.2分钟,其中,涂布量:4g/m2;
3)称取10g轻面离型剂和20g重面离型剂;优先将轻面离型剂涂布到抗静电层12上;然后在将重面离型剂涂布到金属层15上。涂布速度为140/min;在150℃的温度下进行干燥,干燥时间为1分钟,涂布量3.5g/m2,即得到抗静电离型纸1。
4)将70g丙烯酸胶水、4g二苯甲烷二异氰酸酯、0.8g硅烷偶联剂、2g镍粉、3g银粉、3g铜粉、6g聚乙二醇以及6g聚噻吩混合搅拌均匀,得到抗静电胶水;
5)用刮刀将制备好的抗静电胶水涂布于3)中制备的抗静电离型纸1的重离型力层16上;在110℃的温度下进行干燥,涂布量85g/m2;干燥后收卷,抗静电离型纸1卷在外,导电胶层2卷在内。即得到抗静电胶带。
对比例1,
市面上常用的抗静电胶带(胶层厚度50um)。
对上述实施例1~6中制得的抗静电胶带以及对比例1中的抗静电胶带进行以下的性能测试:
1)表面电阻值:直接使用表面电阻测试仪测得
2)剥离力:按照胶带剥离力测试标准PSTC-101;
3)常温保持力:按照胶带保持力测试标准PSTC-107。
得到如下表数据:
表面电阻值(Ω) | 剥离力(kg/25mm) | 保持力(h) | |
实施例1 | 10<sup>3</sup> | 0.5 | >72 |
实施例2 | 10<sup>3</sup> | 2.5 | >72 |
实施例3 | 10<sup>4</sup> | 1.2 | >72 |
实施例4 | 10<sup>3</sup> | 1.5 | >72 |
实施例5 | 10<sup>3</sup> | 2.1 | >72 |
对比例1 | 10<sup>8</sup> | 1.4 | >72 |
表1
从上表1中实施例1~5以及对比例1的胶带的表面电阻值可知,由于表面电阻值与静电产生的多少成正比,与静电导除能力成反比;实施例1~5的胶带表面电阻值明显小于对比例1的胶带的表面电阻值,因此本发明抗静电胶带在生产过程中静电产生的少,且具有优异的静电导除的能力。
从表1中实施例1~5的胶带与对比例1的胶带在剥离力和保持力的数值基本相差不大,因此本发明的抗静电胶带本身具有良好的剥离力和保持力。
综上所述,本发明的抗静电胶带能够实现在生产、加工、使用过程中,产品的电阻值低,以及尽可能的避免静电的产生;以及抗静电胶带还具有不会造成静电聚集、释放,破坏离型,造成解卷不良的优点。
前述对本发明的具体示例性实施方案的描述是为了说明和例证的目的。这些描述并非想将本发明限定为所公开的精确形式,并且很显然,根据上述教导,可以进行很多改变和变化。对示例性实施例进行选择和描述的目的在于解释本发明的特定原理及其实际应用,从而使得本领域的技术人员能够实现并利用本发明的各种不同的示例性实施方案以及各种不同的选择和改变。本发明的范围意在由权利要求书及其等同形式所限定。
Claims (10)
1.一种抗静电胶带,其特征在于,包括抗静电离型纸和导电胶层,所述抗静电离型纸包括抗静电涂层以及金属层,所述导电胶层包括导电粒子,
其中,所述金属层与所述导电粒子能够形成导电通路,用于将所述抗静电胶带内产生的静电导除。
2.如权利要求1所述的抗静电胶带,其特征在于,所述抗静电离型纸从上至下依次包括有轻离型力层、抗静电层、格拉辛原纸层、胶粘剂层、金属层以及重离型力层,所述重离型力层与所述导电胶层相接触。
3.如权利要求2所述的抗静电胶带,其特征在于,所述抗静电层按照质量份数包括以下原料组分:抗静电物为30~60质量份,纳米级金属氧化物为10~30质量份,溶剂为50~100质量份。
4.如权利要求3所述的抗静电胶带,其特征在于,所述抗静电剂双三氟甲基硫酰亚胺、聚乙炔、乙氧基化烷基胺、聚噻吩、聚吡咯、聚苯胺、聚苯撑、聚苯撑乙烯、聚苯咪唑、烷基磺酸钠中的一种或多种。
5.如权利要求1所述的抗静电胶带,其特征在于,所述导电胶层厚度为0.01~0.1mm。
6.如权利要求1所述的抗静电胶带,其特征在于,所述导电胶层按质量份数包括以下原料组分:丙烯酸胶水为50~80质量份;异氰酸酯类交联剂为1~5质量份;偶联剂为0.1~1质量份;导电粒子为2~15质量份,抗静电剂为2~10质量份。
7.如权利要求6所述的抗静电胶带,其特征在于,所述抗静电剂包括纳米氧化物、季铵盐、硫酸酯、磷酸酯、聚乙二醇、聚噻吩以及烷基磺酸钠中的一种或者多种。
8.如权利要求6所述的抗静电胶带,其特征在于,所述异氰酸酯类交联剂包括二苯甲烷二异氰酸酯。
9.如权利要求6所述的抗静电胶带,其特征在于,所述偶联剂为硅烷偶联剂。
10.如权利要求6所述的抗静电胶带,其特征在于,所述导电粒子为镍粉、银粉、铜粉、镍包石墨导电粉、银包铝导电粉、银包铜导电粉、银包镍导电粉中的一种或多种。
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