CN109135448A - 复合节能门窗的可抗菌涂料 - Google Patents
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Abstract
本发明公开了一种复合节能门窗的可抗菌涂料,按照质量百分比,包括:钛白粉20%‑30%、灰石粉15%‑20%、佩利多1%‑3%、皂土2%‑4%、苯乙烯‑丙烯酸酯乳液5%‑10%、硅溶胶15%‑20%、羟乙基纤维素0.1%‑0.5%、填料10%‑15%、胶原纤维1%‑3%、无机颜料5%‑10%、碧玺粉0.5%‑1%、汉麻纤维粉0.2%‑0.6%、水5%‑20%、分散剂2%‑4%、消泡剂0.2%‑0.5%、增稠剂1%‑2%。本发明的优点在于,具有较好的成膜特性以及使用效果。
Description
技术领域
本发明涉及一种涂料,尤其是复合节能门窗的可抗菌涂料。
背景技术
节能门窗是为了增大采光通风面积或表现现代建筑的性格特征的一种门窗。节能门窗会提高材料的光学性能、热工性能和密封性,改善门窗的构造来达到预计效果。
节能门窗应该从以下几个方面进行考量:一、门窗材质;二、玻璃;三、门窗节能是整体的节能。总而言之,门窗的节能不仅取决于材质,还取决于玻璃,更取决于门窗的工艺。
从门窗材料来看,目前有铝合金断热型材、铝木复合型材、钢塑整体挤出型材以及UPVC塑料型材等一些技术含量较高的节能产品,其中使用较广的是UPVC塑料型材,它所使用的原料是高分子材料--硬质聚氯乙烯。
为了解决大面积玻璃造成能量损失过大的问题,将普通玻璃加工成中空玻璃、镀膜玻璃、高强度LOW-E防火玻璃、采用磁控真空溅射放射方法镀制含金属层的玻璃以及最特别的智能玻璃。
(1)建筑门窗和建筑幕墙全周边高性能密封技术。降低空气渗透热损失,提高气密、水密、隔声、保温、隔热等主要物理性能。
(2)高性能中空玻璃和经济型双玻系列产品工艺技术和产品性能上要有较大突破。重点解决热反射和低辐射中空玻璃、高性能安全中空玻璃以及经济型双玻的结露温度及耐冲击性能和安装技术,实现隔热与有效利用太阳能的科学结合。
(3)铝合金专用型材及镀锌彩板专用异型材断热技术。重点解决断热材料国产化和耐火、防有害窒息气体安全问题,降低材料成本,扩大推广面。
(4)复合型门窗专用材料开发和推广应用技术。重点开发铝塑、钢塑、木塑复合型门窗专用材料和复合型配套附件及密封材料。
(5)门窗窗型及幕墙保温隔热技术。要以建筑节能技术为动力,对我国住宅窗型结构、开启形式和窗体构造进行技术改造和创新。改变单一的推拉窗型,发展平开,特别是复合内开窗及多功能窗。改善高密封窗的换气功能和安全性能,发展断热高效节能豪华型铝合金窗和豪华型多功能门类产品。
(6)门窗和幕墙成套技术。开发多功能系列化,各具地域特色的成套产品;要在提高配套附件质量、品种、性能上有较大突破;要树立名牌产品、精品市场优势;发展多元化、多层次节能产品产业化生产体系。
(7)太阳能开发及利用技术。建筑门窗和建筑幕墙要改变消极保温隔热单一节能的技术观念。要把节能和合理利用太阳能、地下热(水)能、风能结合起来,开发节能和用能(利用太阳能、冷能、风能、地热能)相结合的门窗及幕墙产品。
(8)改进门窗及幕墙安装技术。提高门窗及幕墙结构与围护结构的一体化节能技术水平,改善墙体总体节能效果。重点解决门窗、幕墙锚固及填充技术和利用太阳能、空气动力节能技术。
因此,对复合节能门窗涂料的研发是十分有必要的。
发明内容
本发明要解决的技术问题是提供一种复合节能门窗的可抗菌涂料,具有较好的成膜特性以及使用效果。
本发明是通过以下技术方案来实现的。
一种复合节能门窗的可抗菌涂料,按照质量百分比,包括:
钛白粉20%-30%、灰石粉15%-20%、佩利多1%-3%、皂土2%-4%、苯乙烯-丙烯酸酯乳液5%-10%、硅溶胶15%-20%、羟乙基纤维素0.1%-0.5%、填料10%-15%、胶原纤维1%-3%、无机颜料5%-10%、碧玺粉0.5%-1%、汉麻纤维粉0.2%-0.6%、水5%-20%、分散剂2%-4%、消泡剂0.2%-0.5%、增稠剂1%-2%。
进一步地,上述分散剂为分散剂5040。
进一步地,上述消泡剂为有机硅消泡剂。
进一步地,上述增稠剂为碱溶胀增稠剂。
本发明的有益效果:
钛白粉与灰石粉提高了涂料成膜后的不透明性,并且能长时间保持表面色泽,硅溶胶可以降低表面开裂的现象,苯乙烯-丙烯酸酯乳液能够使得涂料具有较好的粘结度,佩利多与皂土的作用可以进一步强化粘结度,提高成膜后的强度,碧玺粉、汉麻纤维粉能有较佳的抗菌性能,分散剂、消泡剂、增稠剂的选择也使得该涂料具有更好的特性。
具体实施方式
下面根据实施例对本发明作进一步详细说明。
本发明,复合节能门窗的可抗菌涂料,按照质量百分比,包括:
钛白粉20%-30%、灰石粉15%-20%、佩利多1%-3%、皂土2%-4%、苯乙烯-丙烯酸酯乳液5%-10%、硅溶胶15%-20%、羟乙基纤维素0.1%-0.5%、填料10%-15%、胶原纤维1%-3%、无机颜料5%-10%、碧玺粉0.5%-1%、汉麻纤维粉0.2%-0.6%、水5%-20%、分散剂2%-4%、消泡剂0.2%-0.5%、增稠剂1%-2%。
进一步地,上述分散剂为分散剂5040。
进一步地,上述消泡剂为有机硅消泡剂。
进一步地,上述增稠剂为碱溶胀增稠剂。
制备时:
先将基础原料加入混合罐中;
打开搅拌设备,对其进行充分的搅拌;
将搅拌后的混合物进行研磨;
加入消泡剂、增稠剂进行高速分散;
继续搅拌过滤后得到产品。
本发明,复合节能门窗的可抗菌涂料,钛白粉与灰石粉提高了涂料成膜后的不透明性,并且能长时间保持表面色泽,硅溶胶可以降低表面开裂的现象,苯乙烯-丙烯酸酯乳液能够使得涂料具有较好的粘结度,佩利多与皂土的作用可以进一步强化粘结度,提高成膜后的强度,碧玺粉、汉麻纤维粉能有较佳的抗菌性能,分散剂、消泡剂、增稠剂的选择也使得该涂料具有更好的特性。
上述实施例只为说明本发明的技术构思及特点,其目的在于让熟悉此领域技术的人士能够了解本发明内容并加以实施,并不能以此限制本发明的保护范围。凡根据本发明精神实质所作的等效变化或修饰,都应涵盖在本发明的保护范围内。
Claims (4)
1.一种复合节能门窗的可抗菌涂料,其特征在于,按照质量百分比,包括:
钛白粉20%-30%、灰石粉15%-20%、佩利多1%-3%、皂土2%-4%、苯乙烯-丙烯酸酯乳液5%-10%、硅溶胶15%-20%、羟乙基纤维素0.1%-0.5%、填料10%-15%、胶原纤维1%-3%、无机颜料5%-10%、碧玺粉0.5%-1%、汉麻纤维粉0.2%-0.6%、水5%-20%、分散剂2%-4%、消泡剂0.2%-0.5%、增稠剂1%-2%。
2.根据权利要求1所述的复合节能门窗的可抗菌涂料,其特征在于,所述分散剂为分散剂5040。
3.根据权利要求1所述的复合节能门窗的可抗菌涂料,其特征在于,所述消泡剂为有机硅消泡剂。
4.根据权利要求1所述的复合节能门窗的可抗菌涂料,其特征在于,所述增稠剂为碱溶胀增稠剂。
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Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101423691A (zh) * | 2008-12-23 | 2009-05-06 | 王诗榕 | 一种水性天然抗菌内墙涂料及其生产方法 |
CN105017892A (zh) * | 2015-07-13 | 2015-11-04 | 安徽万兴实业有限公司 | 一种内墙抗菌防霉功能涂料 |
CN106118293A (zh) * | 2016-07-01 | 2016-11-16 | 上海展辰涂料有限公司 | 一种门窗用免底漆水性面漆 |
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Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101423691A (zh) * | 2008-12-23 | 2009-05-06 | 王诗榕 | 一种水性天然抗菌内墙涂料及其生产方法 |
CN105017892A (zh) * | 2015-07-13 | 2015-11-04 | 安徽万兴实业有限公司 | 一种内墙抗菌防霉功能涂料 |
CN106118293A (zh) * | 2016-07-01 | 2016-11-16 | 上海展辰涂料有限公司 | 一种门窗用免底漆水性面漆 |
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