CN113161975B - 一种用于电缆中间接头的柔性防火防爆毯 - Google Patents

一种用于电缆中间接头的柔性防火防爆毯 Download PDF

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CN113161975B
CN113161975B CN202110500235.7A CN202110500235A CN113161975B CN 113161975 B CN113161975 B CN 113161975B CN 202110500235 A CN202110500235 A CN 202110500235A CN 113161975 B CN113161975 B CN 113161975B
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explosion
fireproof
expandable graphite
graphite
blanket
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CN113161975A (zh
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张国锋
李付磊
李建鑫
吕坤阳
张明磊
陈瑞斌
陈四甫
务孔永
胡松江
陈明喜
陈晓朋
陈见甫
邢远
周媛
郑伟
李景丽
王森
谭波
吕亮
丁卫东
郭洁
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Four Of Henan Electric Power Equipment Co ltd
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Abstract

本发明涉及一种用于电缆中间接头的柔性防火防爆毯,包括防火隔热外皮、防火隔热内皮以及夹设在防火隔热内、外皮之间且依次层叠设置的防火棉层、可膨胀石墨颗粒层、石墨基柔性毯、防爆纤维层以及防水纤维层,防火隔热外皮和防火隔热内皮的四周边缘缝合在一起,防火隔热外皮并排缝制有多根捆扎带,通过捆扎带将防火防爆毯包裹在电缆中间接头处。本发明的柔性防火防爆毯具备优异的综合防护性能,特别是防火及防爆性能,在使用过程中通过扎捆带包裹在电缆中间接头处,使用安装方便,且可以重复利用。

Description

一种用于电缆中间接头的柔性防火防爆毯
技术领域
本发明涉及电缆防护材料技术领域,具体涉及一种用于电缆中间接头的柔性防火防爆毯。
背景技术
电线电缆是电力输送的载体,随着社会发展与生活品质提升,一方面大量传统地上的电缆、管道、公用设施建筑地下,作为电力系统中相对薄弱环节,由于电缆热胀冷缩,长期泡在水(污水)里运行,受潮气影响。电缆中间接头在超负荷工作状态下极易发生故障,故障点处瞬间会释放巨大能量,严重时将会产生火灾或爆炸,伴随着静电辐射、电磁辐射、热力辐射、压力辐射的物理过程,并涉及同敷设沟内其他电缆,对电力系统稳定运行与人们生活造成较大不便,甚至威胁人们生命安全。在空间狭小的条件下,相关人员若同时对多根电缆同时抢修,不仅工作强度大,且由于中间接头工艺复杂,将极大延长抢修作业时间,不利于用电快速恢复。因此,设计一种在满足电线电缆绝缘的前提下,可大幅度降低电缆防火、防爆成本,有效降低火灾和爆炸带来的电网损失的综合防护装置,解决爆炸产生的物体飞溅伤害,大幅降低喷出的气体温度,阻挡了高温电弧对人身和其他设备的伤害,彻底隔绝电弧、高温、高速物品的伤害,保证保护送检人员安全。
发明内容
本发明的目的是为解决上述技术问题的不足,提供一种用于电缆中间接头的柔性防火防爆毯。
本发明为解决上述技术问题的不足,所采用的技术方案是:一种用于电缆中间接头的柔性防火防爆毯,包括防火隔热外皮、防火隔热内皮以及夹设在防火隔热内、外皮之间且依次层叠设置的防火棉层、可膨胀石墨颗粒层、石墨基柔性毯、防爆纤维层以及防水纤维层,防火隔热外皮和防火隔热内皮的四周边缘缝合在一起,防火隔热外皮并排缝制有多根捆扎带,通过捆扎带将防火防爆毯包裹在电缆中间接头处。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述防爆纤维层由凯夫拉芳纶纤维编制而成。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述防水纤维层通过聚酯长丝和纺丝针刺编织而成,其纤维排列成三维结构。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述可膨胀石墨颗粒层由包括掺和在一起的可膨胀石墨颗粒与改性可膨胀石墨颗粒,可膨胀石墨颗粒与改性可膨胀石墨颗粒的质量比为1-3:3-5。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述石墨基柔性毯由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨颗粒压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述纤维层为玻璃纤维与玄武岩纤维编织而成的复合层,且编织基本单元为两根玻璃纤维缠绕一根玄武岩纤维。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述固体胶内掺和有偶联剂和渗透剂,偶联剂加入量为固体胶重量的1-1.5%,渗透剂加入量为固体胶重量的0.5-1%。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述改性可膨胀石墨由可膨胀石墨进行预膨胀后,再用碱式碳酸铜进行改性处理后得到。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:改性可膨胀石墨的制备方法具体包括以下步骤:
1)、设定膨化炉温度为350-450℃,将可膨胀石墨送入膨化炉,在膨化炉内膨化3-6s,得到预膨胀石墨蠕虫;
2)、将预膨胀石墨蠕虫与水混合,然后加入分散剂进行超声分散,得到预膨胀石墨蠕虫分散液;
3)、在预膨胀石墨蠕虫分散液中加入碱式碳酸铜,继续超声分散,得到目标分散液;
4)、取目标分散液进行离心分离,将分离得到的沉淀进行干燥后得到改性可膨胀石墨。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述步骤1)得到的预膨胀石墨蠕虫的膨胀体积为180-230ml/g。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述步骤2)中预膨胀石墨蠕虫与水的质量比为1:50-70,分散剂的加入量为预膨胀石墨蠕虫重量的0.5-2%。
作为本发明一种用于电缆中间接头的柔性防火防爆毯的进一步优化:所述步骤3)中碱式碳酸铜的加入量为预膨胀石墨蠕虫重量的10-60%。
有益效果
一、本发明的柔性防火防爆毯具有优良的防火性能,防火防爆毯内设置有普通可膨胀石墨以及改性可膨胀石墨,当发生燃烧时,在高温环境下,一方面,可膨胀石墨的结构特征决定其在膨胀过程中会吸收大量的热量,并分解产生C02,遏制燃烧,并且膨胀石墨结构疏松多孔,有较大的比表面积,一般可达50-200m2/g,易于吸附非极性有机大分子物质,特别是油类,避免燃烧的蔓延;另一方面,改性可膨胀石墨在高温下继续膨胀,石墨表面以及包裹在石墨层间的碱式碳酸铜暴露,在高温下,碱式碳酸铜分解产生CO2、H2O和氧化铜,CO2和H2O有助于遏制燃烧的蔓延,碱式碳酸铜分解的氧化铜与石墨在高温下可以进一步发生反应并生成有CO2,通过上述三层次的二氧化碳释放,能有效遏制燃烧的蔓延,具有较好的防火性能;
二、本发明的柔性防火防爆毯具有好的防爆性能,防火防爆毯内设置有石墨基柔性毯,石墨基柔性毯的骨架结构为玻璃纤维与玄武岩纤维复合材料,玻璃纤维与玄武岩纤维复合层具有一定的高强度柔性,在发生爆炸时可以将电缆将内部的高强压力释放,并能够承受爆炸冲击力;
三、本发明的柔性防火防爆毯设置有防爆纤维层,防爆纤维层具有超高强度、高模量和耐高温、耐酸耐碱、重量轻等优良性能,其强度是钢丝的5-6倍,模量为钢丝或玻璃纤维的2-3倍,韧性是钢丝的2倍,而重量仅为钢丝的1/5左右,在560℃的温度下,不分解,不融化,同时能够与石墨基柔性防爆毯一起承受爆炸的非定向冲击力;
四、本发明的柔性防火防爆毯设置有防水纤维层,防水纤维层具有高度透水透气的高分子纤维布,它是通过聚酯长丝和纺丝针刺编织而成,其纤维排列成三维结构,具有优良的力学性能和延伸性能,同时耐生物、耐酸碱、耐老化等化学性能优异。
附图说明
图1为本发明柔性防火防爆毯的外部结构示意图;
图2为本发明柔性防火防爆毯的内部结构示意图;
图3为本发明柔性防火防爆毯的使用状态示意图;
图中标记:1、防火隔热外皮,2、防火隔热内皮,3、防火棉层,4、可膨胀石墨颗粒层,5、石墨基柔性毯,6、防爆纤维层,7、防水纤维层,8、捆扎带,9、日字扣。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述。
实施例1
一种用于电缆中间接头的柔性防火防爆毯,包括防火隔热外皮1、防火隔热内皮2以及夹设在防火隔热内、外皮之间且依次层叠设置的防火棉层3、可膨胀石墨颗粒层4、石墨基柔性毯5、防爆纤维层6以及防水纤维层7,防火隔热外皮1和防火隔热内皮2的四周边缘缝合在一起,防火隔热外皮1并排缝制有多根捆扎带8,通过捆扎带8将防火防爆毯包裹在电缆中间接头处。
捆扎带8上设置有魔术贴,魔术贴包括毛面和钩面,捆扎带8的头端设置有日字扣,在使用时,将柔性防火防爆毯包裹在电缆接头处,捆扎带8的尾端穿过日字扣并通过魔术贴进行固定,使柔性防火防爆毯紧紧包裹在电缆中间接头上。
日字扣型紧松装置,可调节装置的紧松度,实现快速拉紧防爆装置的目的,并带有锯齿状结构,避免装置自行松脱。
防爆纤维层6由凯夫拉芳纶纤维编制而成。
防水纤维层7通过聚酯长丝和纺丝针刺编织而成,其纤维排列成三维结构。
可膨胀石墨颗粒层4包括掺和在一起的可膨胀石墨颗粒与改性可膨胀石墨颗粒,可膨胀石墨颗粒与改性可膨胀石墨颗粒的质量比为1:3。
石墨基柔性毯由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨颗粒压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。
由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。纤维层为玻璃纤维与玄武岩纤维编织而成的复合层,且编织基本单元为两根玻璃纤维缠绕一根玄武岩纤维。
改性可膨胀石墨的制备方法,具体包括以下步骤:
1)、设定膨化炉温度为350℃,将可膨胀石墨送入膨化炉,在膨化炉内膨化6s,得到预膨胀石墨蠕虫;
可膨胀石墨由天然鳞片石墨为原料,经氧化插层反应制备得到,为常规化学原料,可自行购买使用,或以现有技术的方法自行制备使用。
可膨胀石墨中含有的插层物,在高温的条件下汽化产生的推动力可将石墨片层打开,因此膨胀温度是影响膨胀石墨结构的一个重要参数.从300-900℃,膨胀石墨的膨胀体积会随着膨胀温度的升高逐渐增大.这说明随着膨胀温度的升高,可膨胀石墨中含有的插层物受热产生的推动力逐渐增强,对石墨片层的破坏作用越大。
发明人将膨化温度设定为350-450℃,在该温度下膨化3-6s,可膨胀石墨能够得到初步膨化,变成预膨胀石墨蠕虫,需要说明的是,为了使该可膨胀石墨在后续使用过程中,在高温下仍具有较高的膨胀性能,要对膨化温度和膨化时间进行合理配比,最终使得制备得到的预膨胀石墨蠕虫的膨胀体积在180-230ml/g之间。
2)、将预膨胀石墨蠕虫与水混合,然后加入分散剂进行超声分散,得到预膨胀石墨蠕虫分散液;
预膨胀石墨蠕虫与水的质量比为1:50,分散剂的加入量为预膨胀石墨蠕虫重量的0.5%。分散剂可选用常规的分散剂,例如活性磷酸钙以及聚丙烯酸钠等。
3)、在预膨胀石墨蠕虫分散液中加入碱式碳酸铜,继续超声分散,得到目标分散液;
碱式碳酸铜的加入量为预膨胀石墨蠕虫重量的30%,碱式碳酸铜的加入量会影响最终改性可膨胀石墨的防火性能,但只会使影响防火性能的高低,不会导致其失去防火性能。可以根据不同的碱式碳酸铜添加比例生产不同规格、标准的改性可膨胀石墨产品。
4)、取目标分散液进行离心分离,将分离得到的沉淀进行干燥后得到改性可膨胀石墨;离心分离和干燥为化学领域常规的处理方法,不再进行详述,需要说明的是,干燥温度控制在100℃以内,优选85℃。
石墨基柔性毯的制备方法,包括以下步骤:
S1、取玻璃纤维和玄武岩纤维,以两根玻璃纤维缠绕一根玄武岩纤维作为一个基本单元将选取的玻璃纤维和玄武岩纤维编织在一起,制得玻璃纤维与玄武岩纤维复合层,备用。
用于进行编制的纤维复合层的基本单元线体为两根玻璃纤维缠绕一根玄武岩纤维后形成的线体。将玄武岩纤维和玻璃纤维缠形成复合线,可以克服单一纤维的性能缺点,再利用复合线编制纤维复合层,可以使得复合层具有一定的厚度、尺寸稳定性和机械强度,同时具备一定的柔曲性能。
S2、取改性可膨胀石墨送入预压装置压制得到改性膨胀石墨层,备用;
预压的条件为:辊间压力为16MPa,线速度为6.5m/min,产出改性膨胀石墨层厚度为0.3mm,密度为0.3g/cm3
S3、取S1中制得的玻璃纤维与玄武岩纤维复合层,通过上胶辊使其表面附着固体胶;
S4、取附着固体胶的玻璃纤维与玄武岩纤维复合层的双面复合改性膨胀石墨层,并通过挤压辊粘合在一起,然后传动到烘干设备,使固体胶充分渗透到玻璃纤维与玄武岩纤维复合层和膨胀石墨层内让其粘合,制得石墨基柔性毯。
实施例2
一种用于电缆中间接头的柔性防火防爆毯,包括防火隔热外皮1、防火隔热内皮2以及夹设在防火隔热内、外皮之间且依次层叠设置的防火棉层3、可膨胀石墨颗粒层4、石墨基柔性毯5、防爆纤维层6以及防水纤维层7,防火隔热外皮1和防火隔热内皮2的四周边缘缝合在一起,防火隔热外皮1并排缝制有多根捆扎带8,通过捆扎带8将防火防爆毯包裹在电缆中间接头处。
防爆纤维层6由凯夫拉芳纶纤维编制而成。
防水纤维层7通过聚酯长丝和纺丝针刺编织而成,其纤维排列成三维结构。
可膨胀石墨颗粒层4包括掺和在一起的可膨胀石墨颗粒与改性可膨胀石墨颗粒,可膨胀石墨颗粒与改性可膨胀石墨颗粒的质量比为1:1。
石墨基柔性毯由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨颗粒压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。
由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。纤维层为玻璃纤维与玄武岩纤维编织而成的复合层,且编织基本单元为两根玻璃纤维缠绕一根玄武岩纤维。
改性可膨胀石墨的制备方法,具体包括以下步骤:
1)、设定膨化炉温度为450℃,将可膨胀石墨送入膨化炉,在膨化炉内膨化3s,得到预膨胀石墨蠕虫;
2)、将预膨胀石墨蠕虫与水混合,然后加入分散剂进行超声分散,得到预膨胀石墨蠕虫分散液;
预膨胀石墨蠕虫与水的质量比为1:70,分散剂的加入量为预膨胀石墨蠕虫重量的2%。分散剂可选用常规的分散剂,例如活性磷酸钙以及聚丙烯酸钠等。
3)、在预膨胀石墨蠕虫分散液中加入碱式碳酸铜,继续超声分散,得到目标分散液;
碱式碳酸铜的加入量为预膨胀石墨蠕虫重量的10%。
4)、取目标分散液进行离心分离,将分离得到的沉淀进行干燥后得到改性可膨胀石墨;离心分离和干燥为化学领域常规的处理方法,不再进行详述,需要说明的是,干燥温度控制在100℃以内,优选80℃。
石墨基柔性毯的制备方法,包括以下步骤:
S1、取玻璃纤维和玄武岩纤维,以两根玻璃纤维缠绕一根玄武岩纤维作为一个基本单元将选取的玻璃纤维和玄武岩纤维编织在一起,制得玻璃纤维与玄武岩纤维复合层,备用;
S2、取改性可膨胀石墨送入预压装置压制得到改性膨胀石墨层,备用;
预压的条件为:辊间压力为18MPa,线速度为5.5m/min,产出改性膨胀石墨层厚度为0.5mm,密度为0.2g/cm3
S3、取S1中制得的玻璃纤维与玄武岩纤维复合层,通过上胶辊使其表面附着固体胶;
S4、取附着固体胶的玻璃纤维与玄武岩纤维复合层的双面复合改性膨胀石墨层,并通过挤压辊粘合在一起,然后传动到烘干设备,使固体胶充分渗透到玻璃纤维与玄武岩纤维复合层和膨胀石墨层内让其粘合,制得石墨基柔性毯。
实施例3
一种用于电缆中间接头的柔性防火防爆毯,包括防火隔热外皮1、防火隔热内皮2以及夹设在防火隔热内、外皮之间且依次层叠设置的防火棉层3、可膨胀石墨颗粒层4、石墨基柔性毯5、防爆纤维层6以及防水纤维层7,防火隔热外皮1和防火隔热内皮2的四周边缘缝合在一起,防火隔热外皮1并排缝制有多根捆扎带8,通过捆扎带8将防火防爆毯包裹在电缆中间接头处。
防爆纤维层6由凯夫拉芳纶纤维编制而成。
防水纤维层7通过聚酯长丝和纺丝针刺编织而成,其纤维排列成三维结构。
可膨胀石墨颗粒层4包括掺和在一起的可膨胀石墨颗粒与改性可膨胀石墨颗粒,可膨胀石墨颗粒与改性可膨胀石墨颗粒的质量比为1:2。
石墨基柔性毯由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨颗粒压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。
由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起。纤维层为玻璃纤维与玄武岩纤维编织而成的复合层,且编织基本单元为两根玻璃纤维缠绕一根玄武岩纤维。
改性可膨胀石墨的制备方法,具体包括以下步骤:
1)、设定膨化炉温度为400℃,将可膨胀石墨送入膨化炉,在膨化炉内膨化5s,得到预膨胀石墨蠕虫;
2)、将预膨胀石墨蠕虫与水混合,然后加入分散剂进行超声分散,得到预膨胀石墨蠕虫分散液;
预膨胀石墨蠕虫与水的质量比为1:60,分散剂的加入量为预膨胀石墨蠕虫重量的1%。分散剂可选用常规的分散剂,例如活性磷酸钙以及聚丙烯酸钠等。
3)、在预膨胀石墨蠕虫分散液中加入碱式碳酸铜,继续超声分散,得到目标分散液;
碱式碳酸铜的加入量为预膨胀石墨蠕虫重量的60%。
4)、取目标分散液进行离心分离,将分离得到的沉淀进行干燥后得到改性可膨胀石墨;离心分离和干燥为化学领域常规的处理方法,不再进行详述,需要说明的是,干燥温度控制在100℃以内,优选90℃。
石墨基柔性毯的制备方法,包括以下步骤:
S1、取玻璃纤维和玄武岩纤维,以两根玻璃纤维缠绕一根玄武岩纤维作为一个基本单元将选取的玻璃纤维和玄武岩纤维编织在一起,制得玻璃纤维与玄武岩纤维复合层,备用;
S2、取改性可膨胀石墨送入预压装置压制得到改性膨胀石墨层,备用;
预压的条件为:辊间压力为17MPa,线速度为6m/min,产出改性膨胀石墨层厚度为0.4mm,密度为0.25g/cm3
S3、取S1中制得的玻璃纤维与玄武岩纤维复合层,通过上胶辊使其表面附着固体胶;
S4、取附着固体胶的玻璃纤维与玄武岩纤维复合层的双面复合改性膨胀石墨层,并通过挤压辊粘合在一起,然后传动到烘干设备,使固体胶充分渗透到玻璃纤维与玄武岩纤维复合层和膨胀石墨层内让其粘合,制得石墨基柔性毯。
以上对本发明的具体实施例进行了描述。需要理解的是,本发明并不局限于上述特定实施方式,本领域技术人员可以在权利要求的范围内做出各种变形或修改,这并不影响本发明的实质内容。

Claims (9)

1.一种用于电缆中间接头的柔性防火防爆毯,其特征在于:包括防火隔热外皮(1)、防火隔热内皮(2)以及夹设在防火隔热内、外皮之间且依次层叠设置的防火棉层(3)、可膨胀石墨颗粒层(4)、石墨基柔性毯(5)、防爆纤维层(6)以及防水纤维层(7),防火隔热外皮(1)和防火隔热内皮(2)的四周边缘缝合在一起,防火隔热外皮(1)并排缝制有多根捆扎带(8),通过捆扎带(8)将防火防爆毯包裹在电缆中间接头处;
所述可膨胀石墨颗粒层(4)包括掺和在一起的可膨胀石墨颗粒与改性可膨胀石墨颗粒,可膨胀石墨颗粒与改性可膨胀石墨颗粒的质量比为1-3:3-5;
所述石墨基柔性毯(5)由纤维层以及包覆在纤维层两面的改性膨胀石墨层构成,改性膨胀石墨层由改性可膨胀石墨颗粒压制得到,改性膨胀石墨层通过固体胶与纤维层粘合在一起;
所述改性可膨胀石墨由可膨胀石墨进行预膨胀后,再用碱式碳酸铜进行改性处理后得到。
2.如权利要求1所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述防爆纤维层(6)由凯夫拉芳纶纤维编制而成。
3.如权利要求1所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述防水纤维层(7)由聚酯长丝经纺丝针刺编织而成,其纤维排列成三维结构。
4.如权利要求1所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述纤维层为玻璃纤维与玄武岩纤维编织而成的复合层,且编织基本单元为两根玻璃纤维缠绕一根玄武岩纤维。
5.如权利要求1所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述固体胶内掺和有偶联剂和渗透剂,偶联剂加入量为固体胶重量的1-1.5%,渗透剂加入量为固体胶重量的0.5-1%。
6.如权利要求1所述用于电缆中间接头的柔性防火防爆毯,其特征在于:改性可膨胀石墨的制备方法具体包括以下步骤:
1)、设定膨化炉温度为350-450℃,将可膨胀石墨送入膨化炉,在膨化炉内膨化3-6s,得到预膨胀石墨蠕虫;
2)、将预膨胀石墨蠕虫与水混合,然后加入分散剂进行超声分散,得到预膨胀石墨蠕虫分散液;
3)、在预膨胀石墨蠕虫分散液中加入碱式碳酸铜,继续超声分散,得到目标分散液;
4)、取目标分散液进行离心分离,将分离得到的沉淀进行干燥后得到改性可膨胀石墨。
7.如权利要求6所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述步骤1)得到的预膨胀石墨蠕虫的膨胀体积为180-230ml/g。
8.如权利要求6所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述步骤2)中预膨胀石墨蠕虫与水的质量比为1:50-70,分散剂的加入量为预膨胀石墨蠕虫重量的0.5-2%。
9.如权利要求6所述用于电缆中间接头的柔性防火防爆毯,其特征在于:所述步骤3)中碱式碳酸铜的加入量为预膨胀石墨蠕虫重量的10-60%。
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