CN107893485A - 一种高效节能保温板 - Google Patents
一种高效节能保温板 Download PDFInfo
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- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 claims abstract description 14
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- RYGMFSIKBFXOCR-UHFFFAOYSA-N Copper Chemical compound [Cu] RYGMFSIKBFXOCR-UHFFFAOYSA-N 0.000 claims description 5
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Abstract
本发明所涉及的一种高效节能保温板,包括基座,所述基座底部粘接有蜂窝网,所述蜂窝网内部均匀设置有防火孔,所述防火孔内部设有纳米泡,所述蜂窝网底部表面通过高效防火胶粘接有软质层,所述软质层底部通过压敏胶粘接有石墨烯保温层,所述石墨烯保温层底部表面涂有耐水石膏层,所述耐水石膏层底部均匀设有防滑波纹,所述基座顶部表面粘接有硬质层,所述硬质层顶部设有压力层,所述压力层顶部粘接有天然橡胶层,该种高效节能保温板,不仅保温效果好,并且强度高,质量轻便,防水、阻燃、防腐效果好,由于设有的石墨烯保温层,根据其特性,能够长时间的达到保温效果,节能环保,加强了保温板的结构强度,使用方便。
Description
技术领域
本发明涉及一种高效节能保温板,属于保温板技术领域。
背景技术
保温材料一般是指导热系数小于等于0.2的材料, 在建筑和工业中采用良好的保温技术与材料,往往能起到事半功倍的效果,统计表明,建筑中每使用一吨矿物棉绝热制品,一年可节约一吨石油,工业设备与管道的保温,采用良好的绝热措施与材料,可显著降低生产能耗和成本,改善环境,同时有较好的经济效益,比如在工业设备和管道工程中,具有良好的保温条件,可使热量损失降低95%左右,通常用于保温材料的投资一年左右可以通过节约的能量收回,具体的保温材料如高效节能保温板,其导热系数极低,几乎达到完美隔热的效果,从而达到高效节能的保温目的,具有防火、防水、防磨损、防腐蚀、绝缘等优质特点,并且微纳超级隔热保温材料无毒无污染,绿色环保,节能减排,有效的提高产能,提高生产效益,减少排放与热能浪费、降低企业成本,短期内回报节能保温投资,而现有的保温板,一般结构不够合理,保温层吸附性较差,长时间使用容易出现脱落斑点,影响整体的保温性能,不利于长期发展使用,长时间的使用会出现内部结构腐蚀,结构脱落等情况,影响使用,当发生一些意外情况的时候,保温板会燃烧,不能起到保护措施,因此,需要进一步改进。
发明内容
本发明要解决的技术问题克服现有的缺陷,提供一种高效节能保温板,通过设有的蜂窝网、纳米泡以及惰性气体,能够使在意外情况发生时,起到阻燃的效果,安全性更佳,通过设有的软质层,能够对石墨烯保温层以及蜂窝网进行保护,减震,通过设有的石墨烯保温层,由于石墨的特性,能够长时间的保温,节能,环保,由于石墨烯保温层与软质层通过压敏胶粘接,保证了结构的稳定性,通过设有的耐水石膏层,能够对石墨烯保温层底部进行防水保护,延长使用寿命,由于设有的压力层,能够对下部分的结构进行保护,不会变形,扭曲,通过设有的天然橡胶,能够保证不会出现腐蚀状况,通过设有的镀铜层,能够防腐蚀以及减少温度对流。
为了解决上述技术问题,本发明提供了如下的技术方案:
本发明所涉及的一种高效节能保温板,包括基座,所述基座底部粘接有蜂窝网,所述蜂窝网内部均匀设置有防火孔,所述防火孔内部设有纳米泡,所述蜂窝网底部表面通过高效防火胶粘接有软质层,所述软质层底部通过压敏胶粘接有石墨烯保温层,所述石墨烯保温层底部表面涂有耐水石膏层,所述耐水石膏层底部均匀设有防滑波纹,所述基座顶部表面粘接有硬质层,所述硬质层顶部设有压力层,所述压力层顶部粘接有天然橡胶层,所述天然橡胶层顶部表面一层设有镀层。
进一步而言,所述基座为多孔隙结构的泡沫塑料材质。
进一步而言,所述硬质层厚度为3mm,且硬质层为陶瓷纤维材质。
进一步而言,所述纳米泡内腔中充满惰性气体。
进一步而言,所述石墨烯保温层的厚度为1-2mm。
进一步而言,所述镀层的厚度为0.3mm,且镀层表面为光滑的铜质。
进一步而言,所述防火孔的孔径为1mm,且防火孔的数量为十六个。
进一步而言,所述软质层厚度为3mm,且所述软质层为细孔硅胶材质。
本发明有益效果:本发明所涉及的一种高效节能保温板,通过设有的蜂窝网、
纳米泡以及惰性气体,能够使在意外情况发生时,起到阻燃的效果,安全性更佳,通过设有的软质层,能够对石墨烯保温层以及蜂窝网进行保护,减震,通过设有的石墨烯保温层,由于石墨的特性,能够长时间的保温,节能,环保,由于石墨烯保温层与软质层通过压敏胶粘接,保证了结构的稳定性,通过设有的耐水石膏层,能够对石墨烯保温层底部进行防水保护,延长使用寿命,由于设有的压力层,能够对下部分的结构进行保护,不会变形,扭曲,通过设有的天然橡胶,能够保证不会出现腐蚀状况,通过设有的镀铜层,能够防腐蚀以及减少温度对流。
附图说明
附图用来提供对本发明的进一步理解,并且构成说明书的一部分,与本发明的实施例一起用于解释本发明,并不构成对本发明的限制。
图1是本发明一种高效节能保温板剖面图。
图2是本发明一种高效节能保温板蜂窝网剖面图。
图中标号:1、镀层;2、天然橡胶层;3、压力层;4、硬质层;5、基座;6、防滑波纹;7、耐水石膏层;8、石墨烯保温层;9、软质层;10、蜂窝网;11、防火孔;12、纳米泡。
具体实施方式
以下结合附图对本发明的优选实施例进行说明,应当理解,此处所描述的优选实施例仅用于说明和解释本发明,并不用于限定本发明。
如图1-图2所示,一种高效节能保温板,包括基座5,所述基座5底部粘接有蜂窝网10,所述蜂窝网10内部均匀设置有防火孔11,所述防火孔11内部设有纳米泡12,所述蜂窝网10底部表面通过高效防火胶粘接有软质层9,所述软质层9底部通过压敏胶粘接有石墨烯保温层8,所述石墨烯保温层8底部表面涂有耐水石膏层7,所述耐水石膏层7底部均匀设有防滑波纹6,所述基座5顶部表面粘接有硬质层4,所述硬质层4顶部设有压力层3,所述压力层3顶部粘接有天然橡胶层2,所述天然橡胶层2顶部表面一层设有镀层1。
更具体而言,所述基座5为多孔隙结构的泡沫塑料材质,结构更加稳定,所述硬质层4厚度为3mm,且硬质层4为陶瓷纤维材质,能够对蜂窝网10进行更好的保护,不会使其受到外力作用导致损坏,所述纳米泡12内腔中充满惰性气体,当遇到意外情况时,惰性气体能够阻燃,安全性能更佳,所述石墨烯保温层8的厚度为1-2mm,根据其特性,能够更好的保温,节能实用,所述镀层1的厚度为0.3mm,且镀层1表面为光滑的铜质,能够防腐蚀阻止温度对流,所述防火孔11的孔径为1mm,且防火孔11的数量为十六个,对防火有更好的效果,所述软质层9厚度为3mm,且所述软质层9为细孔硅胶材质,能够吸湿防滑,防止石墨烯保温层7受潮污染,起到防护作用。
本发明工作原理:该种高效节能保温板,首先基层5为多孔隙结构的泡沫塑料材质,结构稳定,然后在基层5的底部设有的蜂窝网10、防火孔11以及纳米泡12,能够防火阻燃,保证了产品的使用寿命,底部设有的软质层9,对石墨烯保温层8进行吸湿防滑,防止石墨烯保温层7受潮污染,起到防护作用,而石墨烯保温层8能够进行长时间的保温作用,节能环保,耐水石膏层7,能够对石墨烯保温层8进行进一步的保护,设有的防滑波纹6,此产品使用在任意的地方,防滑措施对人们使用时进行安全保障,而压力层3能够对下方的结构进行保护,不会受力变形,天然橡胶层2贴在地面或者墙面的时候,能够长时间的使用而不会腐蚀,镀层1,能够进一步进行保护不会放生腐蚀情况,且能够阻止温度的对流。
以上为本发明较佳的实施方式,本发明所属领域的技术人员还能够对上述实施方式进行变更和修改,因此,本发明并不局限于上述的具体实施方式,凡是本领域技术人员在本发明的基础上所作的任何显而易见的改进、替换或变型均属于本发明的保护范围。
Claims (8)
1.一种高效节能保温板,包括基座(5),其特征在于,所述基座(5)底部粘接有蜂窝网(10),所述蜂窝网(10)内部均匀设置有防火孔(11),所述防火孔(11)内部设有纳米泡(12),所述蜂窝网(10)底部表面通过高效防火胶粘接有软质层(9),所述软质层(9)底部通过压敏胶粘接有石墨烯保温层(8),所述石墨烯保温层(8)底部表面涂有耐水石膏层(7),所述耐水石膏层(7)底部均匀设有防滑波纹(6),所述基座(5)顶部表面粘接有硬质层(4),所述硬质层(4)顶部设有压力层(3),所述压力层(3)顶部粘接有天然橡胶层(2),所述天然橡胶层(2)顶部表面一层设有镀层(1)。
2.根据权利要求1所述一种高效节能保温板,其特征在于,所述基座(5)为多孔隙结构的泡沫塑料材质。
3.根据权利要求1所述一种高效节能保温板,其特征在于,所述硬质层(4)厚度为3mm,且硬质层(4)为陶瓷纤维材质。
4.根据权利要求1所述一种高效节能保温板,其特征在于,所述纳米泡(12)内腔中充满惰性气体。
5.根据权利要求1所述一种高效节能保温板,其特征在于,所述石墨烯保温层(8)的厚度为1-2mm。
6.根据权利要求1所述一种高效节能保温板,其特征在于,所述镀层(1)的厚度为0.3mm,且镀层(1)表面为光滑的铜质。
7.根据权利要求1所述一种高效节能保温板,其特征在于,所述防火孔(11)的孔径为1mm,且防火孔(11)的数量为十六个。
8.根据权利要求1所述一种高效节能保温板,其特征在于,所述软质层(9)厚度为3mm,且所述软质层(9)为细孔硅胶材质。
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