CN111964138A - 一种新型防潮安全型电地暖 - Google Patents
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Abstract
本发明公开了一种新型防潮安全型电地暖,包括地层和控制盒,所述地层的上表面设置有衔接层,所述衔接层远离地层的一侧固定粘结有第一防水层,所述第一防水层远离衔接层的一侧固定粘结有高强度绝热保温层,所述高强度绝热保温层远离第一防水层的一侧固定安装有热反射层,所述热反射层远离高强度绝热保温层的一侧固定安装有高强度绝缘层,所述高强度绝缘层远离热反射层的一侧固定安装有玻璃纤维网层。该新型防潮安全型电地暖,通过设置第一防水层和第二防水层,使该电地暖在潮湿天气或者地板表面沾染水渍时,第一防水层和第二防水层能够有效的将地层的潮湿空气和水渍与电地暖隔绝,提高了电地暖的使用寿命。
Description
技术领域
本发明涉及电地暖技术领域,具体为一种新型防潮安全型电地暖。
背景技术
电地暖是将外表允许工作温度上限65℃发热电缆埋设地板中,以发热电缆为热源加热地板或瓷砖,以温控器控制室温或地面温度,实现地面辐射供暖的供暖方式,有舒适、节能、环保、灵活、不需要维护等优点,电地暖以发热电缆为发热体,用以铺设在各种地板、瓷砖、大理石等地面材料下,再配上智能温控器系统,使其形成舒适环保、高效节能、不需要维护、各房间独立使用、寿命特长,隐蔽式的地面供暖系统。
目前现有的电地暖在潮湿的天气中使用时,没有相应的除潮防潮措施,其地层的潮湿空气会向上传递至电地暖的内部,同时在日常生活中不注意将水打翻在地板表面,其部分水分也会渗透到电地暖的内部,最终影响电地暖的使用寿命。
因此,我们需要一种新型防潮安全型电地暖
发明内容
本发明的目的在于提供一种新型防潮安全型电地暖,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种新型防潮安全型电地暖,包括地层和控制盒,所述地层的上表面设置有衔接层,所述衔接层远离地层的一侧固定粘结有第一防水层,所述第一防水层远离衔接层的一侧固定粘结有高强度绝热保温层,所述高强度绝热保温层远离第一防水层的一侧固定安装有热反射层,所述热反射层远离高强度绝热保温层的一侧固定安装有高强度绝缘层,所述高强度绝缘层远离热反射层的一侧固定安装有玻璃纤维网层,所述玻璃纤维网层远离高强度绝缘层的一侧设置有发热电缆,所述发热电缆远离玻璃纤维网层的一侧设置有高强度导热层,所述高强度导热层远离发热电缆的一侧固定安装有第二防水层,所述第二防水层远离高强度导热层的一侧设置有混凝土砂浆蓄热层,所述混凝土砂浆蓄热层远离第二防水层的一侧固定安装有高强度耐磨防腐地板。
优选的,所述衔接层包括固定复合材料板和固定安装在固定复合材料板下表面的用于对地层进行弹性挤压的弹性硅胶层,所述弹性硅胶层远离固定复合材料板下表面的一侧与地层的上表面搭接。
优选的,所述固定复合材料板的上表面开设有第一螺纹孔,所述第一螺纹孔的数量为若干个,若干个所述第一螺纹孔分别等距设置在固定复合材料板上表面的边缘处,所述弹性硅胶层的上表面开设有与第一螺纹孔相对应的若干个通孔,所述地层的上表面开设有若干个与第一螺纹孔相对应的第一螺纹槽,所述第一螺纹孔和第一螺纹槽的内壁螺纹连接有锁紧螺栓,若干个所述锁紧螺栓的表面均涂有一层螺纹锁固胶。
优选的,所述第一防水层和第二防水层的材料均为三元乙丙橡胶,所述高强度绝热保温层的材料为耐高温酚醛树脂,所述热反射层的材料为铝箔复合材料,所述高强度绝缘层的材料为高强度绝缘硅胶。
优选的,所述玻璃纤维网层的上表面开设有若干个安装槽,若干个所述安装槽呈蛇形设置在玻璃纤维网层的上表面,所述安装槽的内壁固定安装有绝热固定框,所述绝热固定框的左侧内壁固定安装有第一弧形板,所述第一弧形板的内壁固定连接有第一绝热硅胶缓冲层,所述绝热固定框的内底壁固定安装有两个绝热固定块。
优选的,两个所述绝热固定块的中间固定安装有转轴,所述转轴的表面转动连接有第二弧形板,所述第二弧形板的内壁固定连接有第二绝热硅胶缓冲层,所述转轴的表面套设有扭簧,所述扭簧的数量为两个,两个所述扭簧的一端与分别与两个绝热固定块的背面和正面固定连接,两个所述扭簧的另一端分别与第二弧形板的正面和背面固定连接,所述第一弧形板和第二弧形板的内壁均与发热电缆的表面搭接。
优选的,所述高强度导热层的上表面开设有若干个第二螺纹孔,若干个所述第二螺纹孔分别等距设置在高强度导热层上表面的边缘处,所述玻璃纤维网层的上表面开会有与若干个第二螺纹孔相对应的第二螺纹槽,所述第二螺纹孔和第二螺纹槽的内壁螺纹连接有固定螺栓,若干个所述固定螺栓的表面均涂有螺纹锁固胶。
优选的,所述玻璃纤维网层的上表面固定安装有温度传感器,所述控制盒的表面分别设置有温控器和PLC控制器,所述温度传感器和温控器均与PLC控制器电性连接,所述温控器与发热电缆电性连接。
有益效果
本发明提供了一种新型防潮安全型电地暖,具备以下有益效果:
1.该新型防潮安全型电地暖,通过设置第一防水层和第二防水层,使该电地暖在潮湿天气或者地板表面沾染水渍时,第一防水层和第二防水层能够有效的将地层的潮湿空气和水渍与电地暖隔绝,提高了电地暖的使用寿命。
2.该新型防潮安全型电地暖,通过设置高强度绝热保温层、热反射层、玻璃纤维网层、发热电缆和高强度导热层,使该电地暖在使用的过程中能够对发热电缆发出的热量进行贮存,能够有效防止热量的流失。
附图说明
图1为本发明正剖结构示意图;
图2为本发明绝热固定框俯视结构示意图;
图3为图1中A处放大结构示意图;
图4为图1中B处放大结构示意图;
图5为本发明控制盒侧视结构示意图。
图中:1地层、2控制盒、3第一防水层、4高强度绝热保温层、5热反射层、6高强度绝缘层、7玻璃纤维网层、8发热电缆、9高强度导热层、10第二防水层、11混凝土砂浆蓄热层、12高强度耐磨防腐地板、13固定复合材料板、14弹性硅胶层、15锁紧螺栓、16绝热固定框、17第一弧形板、18第一绝热硅胶缓冲层、19绝热固定块、20转轴、21第二弧形板、22第二绝热硅胶缓冲层、23扭簧、24固定螺栓、25温度传感器、26温控器、27PLC控制器。
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,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-5,本发明提供一种技术方案:一种新型防潮安全型电地暖,包括地层1和控制盒2,地层1的上表面设置有衔接层,衔接层包括固定复合材料板13和固定安装在固定复合材料板13下表面的用于对地层1进行弹性挤压的弹性硅胶层14,弹性硅胶层14远离固定复合材料板13下表面的一侧与地层1的上表面搭接,固定复合材料板13的上表面开设有第一螺纹孔,第一螺纹孔的数量为若干个,若干个第一螺纹孔分别等距设置在固定复合材料板13上表面的边缘处,弹性硅胶层14的上表面开设有与第一螺纹孔相对应的若干个通孔,地层1的上表面开设有若干个与第一螺纹孔相对应的第一螺纹槽,第一螺纹孔和第一螺纹槽的内壁螺纹连接有锁紧螺栓15,若干个锁紧螺栓15的表面均涂有一层螺纹锁固胶。
衔接层远离地层1的一侧固定粘结有第一防水层3,第一防水层3远离衔接层的一侧固定粘结有高强度绝热保温层4,高强度绝热保温层4远离第一防水层3的一侧固定安装有热反射层5,热反射层5远离高强度绝热保温层4的一侧固定安装有高强度绝缘层6,高强度绝缘层6远离热反射层5的一侧固定安装有玻璃纤维网层7。
玻璃纤维网层7的上表面开设有若干个安装槽,若干个安装槽呈蛇形设置在玻璃纤维网层7的上表面,安装槽的内壁固定安装有绝热固定框16,绝热固定框16的左侧内壁固定安装有第一弧形板17,第一弧形板17的内壁固定连接有第一绝热硅胶缓冲层18,绝热固定框16的内底壁固定安装有两个绝热固定块19,两个绝热固定块19的中间固定安装有转轴20,转轴20的表面转动连接有第二弧形板21,第二弧形板21的内壁固定连接有第二绝热硅胶缓冲层22,转轴20的表面套设有扭簧23,扭簧23的数量为两个,两个扭簧23的一端与分别与两个绝热固定块19的背面和正面固定连接,两个扭簧23的另一端分别与第二弧形板21的正面和背面固定连接,第一弧形板17和第二弧形板21的内壁均与发热电缆8的表面搭接。
玻璃纤维网层7的上表面固定安装有温度传感器25,控制盒2的表面分别设置有温控器26和PLC控制器27,温度传感器25和温控器26均与PLC控制器27电性连接,温控器26与发热电缆8电性连接。
玻璃纤维网层7远离高强度绝缘层6的一侧设置有发热电缆8,发热电缆8远离玻璃纤维网层7的一侧设置有高强度导热层9,高强度导热层9的上表面开设有若干个第二螺纹孔,若干个第二螺纹孔分别等距设置在高强度导热层9上表面的边缘处,玻璃纤维网层7的上表面开会有与若干个第二螺纹孔相对应的第二螺纹槽,第二螺纹孔和第二螺纹槽的内壁螺纹连接有固定螺栓24,若干个固定螺栓24的表面均涂有螺纹锁固胶,通过设置高强度绝热保温层4、热反射层5、玻璃纤维网层7、发热电缆8和高强度导热层9,使该电地暖在使用的过程中能够对发热电缆8发出的热量进行贮存,能够有效防止热量的流失。
高强度导热层9远离发热电缆8的一侧固定安装有第二防水层10,第一防水层3和第二防水层10的材料均为三元乙丙橡胶,高强度绝热保温层4的材料为耐高温酚醛树脂,热反射层5的材料为铝箔复合材料,高强度绝缘层6的材料为高强度绝缘硅胶,通过设置第一防水层3和第二防水层10,使该电地暖在潮湿天气或者地板表面沾染水渍时,第一防水层3和第二防水层10能够有效的将地层1的潮湿空气和水渍与电地暖隔绝,提高了电地暖的使用寿命。
第二防水层10远离高强度导热层9的一侧设置有混凝土砂浆蓄热层11,混凝土砂浆蓄热层11远离第二防水层10的一侧固定安装有高强度耐磨防腐地板12。
工作原理:该防潮安全性电地暖在使用的过程中能够通过温度传感器25感应电地暖的温度,当温度过低时,温度传感器25将信号传递给PLC控制器27,PLC控制器27控制发热电缆8发热,当温度到达合适的温度时,温控器26控制发热电缆8停止发热,实现自动控温的效果,通过设置第一防水层3和第二防水层10,使该电地暖在潮湿天气或者地板表面沾染水渍时,第一防水层3和第二防水层10能够有效的将地层1的潮湿空气和水渍与电地暖隔绝,提高了电地暖的使用寿命。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。
Claims (8)
1.一种新型防潮安全型电地暖,包括地层(1)和控制盒(2),其特征在于:所述地层(1)的上表面设置有衔接层,所述衔接层远离地层(1)的一侧固定粘结有第一防水层(3),所述第一防水层(3)远离衔接层的一侧固定粘结有高强度绝热保温层(4),所述高强度绝热保温层(4)远离第一防水层(3)的一侧固定安装有热反射层(5),所述热反射层(5)远离高强度绝热保温层(4)的一侧固定安装有高强度绝缘层(6),所述高强度绝缘层(6)远离热反射层(5)的一侧固定安装有玻璃纤维网层(7),所述玻璃纤维网层(7)远离高强度绝缘层(6)的一侧设置有发热电缆(8),所述发热电缆(8)远离玻璃纤维网层(7)的一侧设置有高强度导热层(9),所述高强度导热层(9)远离发热电缆(8)的一侧固定安装有第二防水层(10),所述第二防水层(10)远离高强度导热层(9)的一侧设置有混凝土砂浆蓄热层(11),所述混凝土砂浆蓄热层(11)远离第二防水层(10)的一侧固定安装有高强度耐磨防腐地板(12)。
2.根据权利要求1所述的一种新型防潮安全型电地暖,其特征在于:所述衔接层包括固定复合材料板(13)和固定安装在固定复合材料板(13)下表面的用于对地层(1)进行弹性挤压的弹性硅胶层(14),所述弹性硅胶层(14)远离固定复合材料板(13)下表面的一侧与地层(1)的上表面搭接。
3.根据权利要求2所述的一种新型防潮安全型电地暖,其特征在于:所述固定复合材料板(13)的上表面开设有第一螺纹孔,所述第一螺纹孔的数量为若干个,若干个所述第一螺纹孔分别等距设置在固定复合材料板(13)上表面的边缘处,所述弹性硅胶层(14)的上表面开设有与第一螺纹孔相对应的若干个通孔,所述地层(1)的上表面开设有若干个与第一螺纹孔相对应的第一螺纹槽,所述第一螺纹孔和第一螺纹槽的内壁螺纹连接有锁紧螺栓(15),若干个所述锁紧螺栓(15)的表面均涂有一层螺纹锁固胶。
4.根据权利要求1所述的一种新型防潮安全型电地暖,其特征在于:所述第一防水层(3)和第二防水层(10)的材料均为三元乙丙橡胶,所述高强度绝热保温层(4)的材料为耐高温酚醛树脂,所述热反射层(5)的材料为铝箔复合材料,所述高强度绝缘层(6)的材料为高强度绝缘硅胶。
5.根据权利要求1所述的一种新型防潮安全型电地暖,其特征在于:所述玻璃纤维网层(7)的上表面开设有若干个安装槽,若干个所述安装槽呈蛇形设置在玻璃纤维网层(7)的上表面,所述安装槽的内壁固定安装有绝热固定框(16),所述绝热固定框(16)的左侧内壁固定安装有第一弧形板(17),所述第一弧形板(17)的内壁固定连接有第一绝热硅胶缓冲层(18),所述绝热固定框(16)的内底壁固定安装有两个绝热固定块(19)。
6.根据权利要求5所述的一种新型防潮安全型电地暖,其特征在于:两个所述绝热固定块(19)的中间固定安装有转轴(20),所述转轴(20)的表面转动连接有第二弧形板(21),所述第二弧形板(21)的内壁固定连接有第二绝热硅胶缓冲层(22),所述转轴(20)的表面套设有扭簧(23),所述扭簧(23)的数量为两个,两个所述扭簧(23)的一端与分别与两个绝热固定块(19)的背面和正面固定连接,两个所述扭簧(23)的另一端分别与第二弧形板(21)的正面和背面固定连接,所述第一弧形板(17)和第二弧形板(21)的内壁均与发热电缆(8)的表面搭接。
7.根据权利要求1所述的一种新型防潮安全型电地暖,其特征在于:所述高强度导热层(9)的上表面开设有若干个第二螺纹孔,若干个所述第二螺纹孔分别等距设置在高强度导热层(9)上表面的边缘处,所述玻璃纤维网层(7)的上表面开会有与若干个第二螺纹孔相对应的第二螺纹槽,所述第二螺纹孔和第二螺纹槽的内壁螺纹连接有固定螺栓(24),若干个所述固定螺栓(24)的表面均涂有螺纹锁固胶。
8.根据权利要求1所述的一种新型防潮安全型电地暖,其特征在于:所述玻璃纤维网层(7)的上表面固定安装有温度传感器(25),所述控制盒(2)的表面分别设置有温控器(26)和PLC控制器(27),所述温度传感器(25)和温控器(26)均与PLC控制器(27)电性连接,所述温控器(26)与发热电缆(8)电性连接。
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