CN107301890B - Wmf高韧性低应力承荷探测电缆 - Google Patents
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Abstract
本发明涉及电缆领域,具体的说是涉及WMF高韧性低应力承荷探测电缆。该WMF高韧性低应力承荷探测电缆,包括铜绞线、绝缘层、铠装层,其特征在于,所述铜绞线中间充填阻水沙,外围包裹内绝缘层,所述内绝缘层外侧套装阻水管,所述阻水管的外侧套装高强度皱纹复合合金管,所述高强度皱纹复合合金管外侧充填外绝缘层,所述外绝缘层的外侧环套有铠装层,所述开铠装层分为内铠装层和外铠装层,内铠装层外环套外铠装层,所述内铠装层、外铠装层由多根细钢丝合股后铠装而成,且内铠装层与外铠装层的铠装方向相反。
Description
技术领域
本发明涉及电缆领域,具体的说是涉及WMF高韧性低应力承荷探测电缆。
背景技术
承荷探测电缆作为下井仪器测量用连接线,在传递信号的同时,还具有承载设备的作用。现有承荷探测电缆,内、外铠装层均为圆钢丝铠装而成,且内、外铠装层合股方向相反,下井时承荷探测电缆会随仪器旋转,过度的旋转不可避免的会使电缆产生鼓包、跳丝,降低电缆的使用寿命,影响电缆的正常使用。综上所述,有必要设计一种新的电缆,来解决上述问题。
发明内容
本发明为了弥补现有技术的缺陷,提供了一种具有新的铠装结构的WMF高韧性低应力承荷探测电缆。
本发明是通过如下技术方案实现的:
WMF高韧性低应力承荷探测电缆,包括铜绞线、绝缘层、铠装层,其特征在于,所述铜绞线中间充填阻水沙,外围包裹内绝缘层,所述内绝缘层外侧套装阻水管,所述阻水管的外侧套装高强度皱纹复合合金管,所述高强度皱纹复合合金管外侧充填外绝缘层,所述外绝缘层的外侧环套有铠装层,所述开铠装层分为内铠装层和外铠装层,内铠装层外环套外铠装层,所述内铠装层、外铠装层由多根细钢丝合股后铠装而成,且内铠装层与外铠装层的铠装方向相反。
进一步的,所述铜绞线为铜丝、镀锡铜丝或镀银铜丝。
所述内绝缘层为XLPE绝缘材料或聚醚醚酮,在较高温度时依然保持较好的绝缘性能。
所述内绝缘层的厚度为0.10-0.65mm。
所述外绝缘层材质为改性聚丙烯或氟塑料。
所述外绝缘层2的厚度为0.45-1.2mm。
所述阻水沙、阻水管为高速膨胀阻水材质,每秒膨胀2-5mm高度,当电缆首端进水时,阻水沙能瞬间阻止水沿纵向延伸,将水阻止在电缆的首部,保证其电气性能。
所述铜绞线为单芯或多芯结构,当铜绞线为多芯结构时,每一芯的铜绞线外围均包裹有内绝缘层,相邻的内绝缘层绞合后套装阻水管。
所述内铠装层、外铠装层由多根钢丝合股成钢丝绳,多根钢丝绳铠装而成,铠装方向相反,这样的合股方式可以极大地减小钢丝的应力集中,使电缆更加柔软,应力极低,在使用过程中降低了电缆的旋转幅度,杜绝了电缆鼓包、跳丝的现象。
所述内铠装层和外铠装层之间充填密封胶,使得内铠装层和外铠装层之间无间隙存在,防止电缆内部被腐蚀和污染。
本发明的有益效果是:本发明的WMF高韧性低应力承荷探测电缆,改变了铠装结构,由传统的单根圆钢丝,变为合股钢丝绳,降低电缆内部扭力,提高韧性,是电缆在使用时旋转幅度降低,解决电缆鼓包、跳丝的问题,同时本发明的电缆具有纵向阻水功能,防止电缆内部被腐蚀和污染。
附图说明
下面结合附图对本发明作进一步的说明。
附图1为本发明WMF高韧性低应力承荷探测电缆的结构示意图;
图中,1、铜绞线,2、外绝缘层,3、内铠装层,4、外铠装层,5、阻水沙,6、高强度皱纹复合合金管,7阻水管,8内绝缘层,9密封胶。
具体实施方式
附图为本发明的一种具体实施例。如附图1所示,该WMF高韧性低应力承荷探测电缆,包括铜绞线1、绝缘层、铠装层,铜绞线1为铜丝、镀锡铜丝或镀银铜丝,铜绞线1中间充填阻水沙5,外围包裹厚度为0.10-0.65mm内绝缘层3,内绝缘层8为XLPE绝缘材料或聚醚醚酮,在较高温度时依然保持较好的绝缘性能。所述内绝缘层8外侧套装阻水管7,所述阻水管7的外侧套装高强度皱纹复合合金管6,所述高强度皱纹复合合金管6外侧充填外绝缘层2,外绝缘层2材质为改性聚丙烯或氟塑料,厚度为0.45-1.2mm;所述外绝缘层2的外侧环套有铠装层,所述开铠装层分为内铠装层3和外铠装层4,内铠装层3外环套外铠装层4,所述内铠装层3、外铠装层4由多根细钢丝合股后铠装而成,且内铠装层3与外铠装层4的铠装方向相反,内铠装层3和外铠装层4之间充填密封胶9,使得内铠装层3和外铠装层4之间无间隙存在,防止电缆内部被腐蚀和污染。
所述阻水沙5、阻水管7为高速膨胀阻水材质,每秒膨胀2-5mm高度,当电缆首端进水时,阻水沙能瞬间阻止水沿纵向延伸,将水阻止在电缆的首部,保证其电气性能。
铜绞线1为单芯或多芯结构,当铜绞线1为多芯结构时,每一芯的铜绞线1外围均包裹有内绝缘层8,相邻的内绝缘层8绞合后套装阻水管7。
所述内铠装层3、外铠装层4由多根钢丝合股成钢丝绳,多根钢丝绳铠装而成,铠装方向相反,例如多根钢丝合股成钢丝绳时,合股方向为左向,内铠装层3的铠装方向为右向,则外铠装层4的铠装方向为左向,或内铠装层3的铠装方向为左向,则外铠装层4的铠装方向为右向,这样的合股方式可以极大地减小钢丝的应力集中,使电缆更加柔软,应力极低,在使用过程中降低了电缆的旋转幅度,杜绝了电缆鼓包、跳丝的现象。
本发明的WMF高韧性低应力承荷探测电缆,改变了铠装结构,由传统的单根圆钢丝,变为合股钢丝绳,降低电缆内部扭力,提高韧性,是电缆在使用时旋转幅度降低,解决电缆鼓包、跳丝的问题,同时本发明的电缆具有纵向阻水功能,防止电缆内部被腐蚀和污染
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。
Claims (8)
1.WMF高韧性低应力承荷探测电缆,包括铜绞线(1)、绝缘层、铠装层,其特征在于:所述铜绞线(1)中间充填阻水沙(5),外围包裹内绝缘层(8),所述内绝缘层(8)外侧套装阻水管(7),所述阻水管(7)的外侧套装高强度皱纹复合合金管(6),所述高强度皱纹复合合金管(6)外侧充填外绝缘层(2),所述外绝缘层(2)的外侧环套有铠装层,所述铠装层分为内铠装层(3)和外铠装层(4),内铠装层(3)外环套外铠装层(4),所述内铠装层(3)、外铠装层(4)由多根细钢丝合股后铠装而成,且内铠装层(3)与外铠装层(4)的铠装方向相反;所述内铠装层(3)和外铠装层(4)之间充填密封胶(9),使得内铠装层(3)和外铠装层(4)之间无间隙存在;所述铜绞线(1)为单芯或多芯结构,当铜绞线(1)为多芯结构时,每一芯的铜绞线(1)外围均包裹有内绝缘层(8),相邻的内绝缘层(8)绞合后套装阻水管(7)。
2.根据权利要求1所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述铜绞线(1)为铜丝、镀锡铜丝或镀银铜丝。
3.根据权利要求1所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述内绝缘层(8)为XLPE绝缘材料或聚醚醚酮。
4.根据权利要求1或3所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述内绝缘层(8)的厚度为0.10-0.65mm。
5.根据权利要求1所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述外绝缘层(2)材质为改性聚丙烯或氟塑料。
6.根据权利要求1或5所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述外绝缘层(2)的厚度为0.45-1.2mm。
7.根据权利要求1所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述阻水沙(5)、阻水管(7)为高速膨胀阻水材质,每秒膨胀2-5mm高度。
8.根据权利要求1所述的WMF高韧性低应力承荷探测电缆,其特征在于:所述内铠装层(3)、外铠装层(4)由多根钢丝合股成钢丝绳,多根钢丝绳铠装而成,铠装方向相反。
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| CN2603995Y (zh) * | 2003-03-06 | 2004-02-18 | 郭传庆 | 密封测井电缆 |
| RU2285965C2 (ru) * | 2004-06-21 | 2006-10-20 | Общество с ограниченной ответственностью "Научно-производственный центр "Гальва" | Геофизический бронированный кабель для исследования газовых, нефтяных скважин и водных просторов с повышенной устойчивостью к кручению |
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| CN106057310B (zh) * | 2016-07-29 | 2018-08-14 | 山东希尔电缆有限公司 | 一种wmf系列密封型耐磨承荷探测电缆 |
| CN206148158U (zh) * | 2016-11-03 | 2017-05-03 | 上海玖开电线电缆有限公司 | 一种石油工业用承荷探测电缆 |
| CN207352981U (zh) * | 2017-08-07 | 2018-05-11 | 山东希尔电缆有限公司 | Wmf高韧性低应力承荷探测电缆 |
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