CN106836716A - 一种隔音地热地板 - Google Patents
一种隔音地热地板 Download PDFInfo
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Abstract
本发明涉及一种隔音地热地板,包括由上至下依次设置的耐磨装饰层、木地板层、金属导热层、发热层、绝热隔音层、反射防潮层;所述发热层的发热材料为PTC恒温碳晶发热板、远红外面状发热板、加热电缆中的任意一种;所述发热层与所述反射防潮层之间设置所述绝热隔音层,所述绝热隔音层由金属支架和轻质发泡材料构成,在所述金属支架内填充有所述轻质发泡材料,所述轻质发泡材料上均匀分布有上下贯通的隔热吸音孔;所述反射防潮层为防潮板,上表面设置有反射铝箔,所述防潮板内添加有杀菌剂,本发明的隔音地热地板,隔音效果良好,不会对楼下用户造成噪音污染,能够有效抑制地板下细菌向室内的蔓延,改善用户的生活环境。
Description
技术领域
本发明涉及建筑领域,特别涉及一种隔音地热地板。
背景技术
随着社会的发展,科学技术的进步,人们的生活水平以及品质要求也在不断提高。传统的通过暖气片来进行采暖的方式由于存在影响室内美观、污染严重、占地面积大等缺点,已经被越来越多的人所舍弃。通过地热地板来进行采暖由于不占用室内空间、安全系数较高等优点,已经被越来越多的人所接受。
然而,现有技术中的地热地板仍然存在各种各样的问题。现有技术中的地热地板往往结构比较简单,功能比较单一,在对室内进行供暖的同时,忽略了用户其他方面的体验需求。例如,一般的地热地板通常都不具有隔音的功能,即使有的采用了隔音层,隔音效果也不好,如果有金属类物品掉落在地板上时会发出较大的撞击声,这种撞击声会通过墙体传至楼下的住户内,对楼下住户造成噪音污染。此外,一般的地热地板防潮效果较差,即使能够进行防潮,但是也不能抑制地板下细菌向室内的蔓延。此外,现有技术中的地热地板还存在散热不均、热损失较大等热传导的问题。
发明内容
本发明的目的就是为了解决上述技术问题,而提供一种隔音地热地板。
本发明包括由上至下依次设置的耐磨装饰层、木地板层、金属导热层、发热层、绝热隔音层、反射防潮层;其特征在于:所述发热层的发热材料为PTC恒温碳晶发热板、远红外面状发热板、加热电缆中的任意一种,在所述金属导热层的作用下,将热量均匀的向上传递给所述木地板层;所述发热层与所述反射防潮层之间设置所述绝热隔音层,所述绝热隔音层由金属支架和轻质发泡材料构成,在所述金属支架内填充有所述轻质发泡材料,所述轻质发泡材料上均匀分布有上下贯通的隔热吸音孔;所述反射防潮层为防潮板,上表面设置有反射铝箔,所述防潮板内添加有杀菌剂。
进一步地,所述防潮板由聚酯材料制成,所述杀菌剂为纳米银离子杀菌剂。
进一步地,所述隔热吸音孔的直径为3至5毫米。
进一步地,所述木地板层为纳米微晶木地板层。
进一步地,所述由上至下依次设置的耐磨装饰层、木地板层、金属导热层、发热层、绝热隔音层、反射防潮层通过黏胶层进行连接。
进一步地,所述发热层通过带温度传感器的温控开关与电源相连接。
进一步地,所述轻质发泡材料为EPS、XPS、PU或酚醛发泡材料中的一种。
本发明具有以下优点:本发明提供的隔音地热地板,同传统的地热地板相比,由于本发明所具备的绝热隔音层结构新颖独特,不仅绝热保温效果好,更重要的是有效抑制了噪音向楼下用户的传输,不会对楼下用户造成噪音污染。此外,本发明的防潮层内添加有杀菌剂,有效抑制了地板下细菌向室内的蔓延,改善了用户的生活环境。最后,本发明的木地板层与发热层之间设置金属导热层,使热量更加均匀的向室内传输,提高了用户的使用体验。
附图说明
图1是本发明的结构示意图。
图2是图1中绝热隔音层的主视图。
图中:(1)、耐磨装饰层;(2)、木地板层;(3)、金属导热层;(4)、发热层;(5)、绝热隔音层;(6)、反射防潮层;(7)、金属支架;(8)、轻质发泡材料;(9)、隔热吸音孔。
具体实施方式
下面结合附图对本发明做进一步说明。
如图1、2所示,一种隔音地热地板,包括由上至下依次设置的耐磨装饰层(1)、木地板层(2)、金属导热层(3)、发热层(4)、绝热隔音层(5)、反射防潮层(6);所述发热层(4)的发热材料为PTC恒温碳晶发热板、远红外面状发热板、加热电缆中的任意一种,在所述金属导热层(3)的作用下,将热量均匀的向上传递给所述木地板层(2)。所述发热层(4)与所述反射防潮层(6)之间设置所述绝热隔音层(5),所述绝热隔音层(5)由金属支架(7)和轻质发泡材料(8)构成,在所述金属支架(7)内填充有所述轻质发泡材料(8),所述轻质发泡材料(8)上均匀分布有上下贯通的隔热吸音孔(9);隔热吸音孔(9)不仅能够吸收噪音,抑制噪音向楼下用户的传输,同时,由于隔热吸音孔(9)内的空气处于静态,空气的导热率十分低,有效的抑制了热量向下进行传导,提高了热效率。所述反射防潮层(6)为防潮板,上表面设置有反射铝箔,所述防潮板内添加有杀菌剂。反射铝箔将热量向上进行反射,进一步抑制了热量的扩散,提高了热效率,而由于防潮板内杀菌剂的存在,有效的去除了地板下的细菌,抑制细菌向室内进行扩散。耐磨装饰层(1)不仅能够美化室内环境,由于其采用耐磨材料制成,使用寿命长,减少用户的更换次数,提高使用体验。金属导热层(3)采用性价比较高、热传导效率高的金属制成,例如铜、铝。
图2示出了绝热隔音层的主视图。轻质发泡材料(8)材质较软,当地热地板承载压力时,容易变形,而金属支架(7)主要起支撑作用,金属支架(7)内填充有轻质发泡材料(8),这样当地热地板承载压力时不会变形,由于轻质发泡材料(8)绝热、吸音性能十分良好,尤其是在所述轻质发泡材料(8)上均匀分布有上下贯通的隔热吸音孔(9)时,能够有效提高热效率,并且抑制噪音向楼下用户进行传输。
进一步地,所述防潮板由聚酯材料制成,所述杀菌剂为纳米银离子杀菌剂。由于防潮板内添加有纳米银离子等高效的杀菌剂,能够有效抑制地板下细菌向室内的蔓延,改善用户的生活环境。
进一步地,所述隔热吸音孔(9)的直径为3至5毫米。此时,绝热隔音层(5)的绝热、隔音效果均十分良好。
进一步地,所述木地板层(2)为纳米微晶木地板层。纳米微晶木地板层导热性能适中,而且蓄热性能良好,用于地热地板可以使房间升温速度快,保温时间较长,达到了节能的目的。
进一步地,所述由上至下依次设置的耐磨装饰层(1)、木地板层(2)、金属导热层(3)、发热层(4)、绝热隔音层(5)、反射防潮层(6)通过黏胶层进行连接。通过黏胶层进行各部件的装配,装配效率高,且各部件的连接牢固。
进一步地,所述发热层(4)通过带温度传感器的温控开关与电源相连接。当温度传感器感测到地热地板的工作异常,比如某一部分温度高于安全温度时,温控开关能够自动切断电源,避免安全事故的发生。
进一步地,所述轻质发泡材料(8)为EPS、XPS、PU或酚醛发泡材料中的一种。
以上实施方式仅用于说明本发明,而并非对本发明的限制,有关技术领域的普通技术人员,在不脱离本发明的精神和范围的情况下,还可以做出各种变化和变型,因此所有等同的技术方案也属于本发明的范畴,本发明的专利保护范围应由权利要求限定。
Claims (7)
1.一种隔音地热地板,包括由上至下依次设置的耐磨装饰层(1)、木地板层(2)、金属导热层(3)、发热层(4)、绝热隔音层(5)、反射防潮层(6);其特征在于:所述发热层(4)的发热材料为PTC恒温碳晶发热板、远红外面状发热板、加热电缆中的任意一种,在所述金属导热层(3)的作用下,将热量均匀的向上传递给所述木地板层(2);所述发热层(4)与所述反射防潮层(6)之间设置所述绝热隔音层(5),所述绝热隔音层(5)由金属支架(7)和轻质发泡材料(8)构成,在所述金属支架(7)内填充有所述轻质发泡材料(8),所述轻质发泡材料(8)上均匀分布有上下贯通的隔热吸音孔(9);所述反射防潮层(6)为防潮板,上表面设置有反射铝箔,所述防潮板内添加有杀菌剂。
2.根据权利要求1所述的隔音地热地板,其特征在于:所述防潮板由聚酯材料制成,所述杀菌剂为纳米银离子杀菌剂。
3.根据权利要求1所述的隔音地热地板,其特征在于:所述隔热吸音孔(9)的直径为3至5毫米。
4.根据权利要求1所述的隔音地热地板,其特征在于:所述木地板层(2)为纳米微晶木地板层。
5.根据权利要求1所述的隔音地热地板,其特征在于:所述由上至下依次设置的耐磨装饰层(1)、木地板层(2)、金属导热层(3)、发热层(4)、绝热隔音层(5)、反射防潮层(6)通过黏胶层进行连接。
6.根据权利要求1所述的隔音地热地板,其特征在于:所述发热层(4)通过带温度传感器的温控开关与电源相连接。
7.根据权利要求1所述的隔音地热地板,其特征在于:所述轻质发泡材料(8)为EPS、XPS、PU或酚醛发泡材料中的一种。
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