CN108822697A - 一种建筑外墙用隔热保温阻燃涂料及其制备方法 - Google Patents
一种建筑外墙用隔热保温阻燃涂料及其制备方法 Download PDFInfo
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Abstract
本发明公开了一种建筑外墙用隔热保温阻燃涂料及其制备方法,包括如下原料:环氧丙烯酸酯树脂、氨基树脂、膨胀蛭石、空心玻璃微珠、金红石型钛白粉、六偏磷酸钠、阻燃成炭剂、聚磷酸铵、防腐剂、消泡剂、分散剂、流平剂、增稠剂、成膜剂、丙三醇、去离子水。该涂料具有良好的隔热保温阻燃效果,并且附着力良好、防腐性能良好,而且不易老化、不易脱落,涂膜周期长等特点。
Description
技术领域
本发明属于涂料技术领域,具体涉及一种建筑外墙用隔热保温阻燃涂料及其制备方法。
背景技术
保温涂料是通过低导热系数和高热阻来实现隔热保温的一种涂料,集成了微孔结构和网状纤维结构,具有较好的耐受性、隔热性能、隔冷性能,被广泛应用于冶金、化工、交通等领域,
目前我国采用外墙外保温隔热材料的建筑还处于发展阶段,重点是北方寒冷地区的保温及南方地区的隔热。但是目前使用的隔热外墙外保温建筑材料在各种性能上均不够理想,尤其是在保温、耐候性、耐酸碱性等方面不能满足人们的需要。现有技术中的外墙外保温材料普遍存在价格贵,导热系数大、比重大、易脱落、防潮性及防火性差等隐患,而且传统保温料在加工中添加的有机成份及刺激性气味易对人体健康及环境产生不利影响。
发明内容
本发明的目的在于提供一种建筑外墙用隔热保温阻燃涂料及其制备方法。该涂料具有良好的隔热保温阻燃效果,并且附着力良好、防腐性能良好,而且不易老化、不易脱落,涂膜周期长等特点。
本发明采取的技术方案为:
一种建筑外墙用隔热保温阻燃涂料,包括如下重量份的原料:
进一步地,优选为包括如下重量份的原料:
所述阻燃成炭剂为含三嗪环结构的多元醇聚合物。
所述阻燃成炭剂的型号为TF100、CA-30或CA-40,购买自扬州三得利化工有限公司。
所述空心玻璃微珠的粒径为400~500目。所述膨胀蛭石的粒径为400~500目。空心玻璃微珠和膨胀蛭石都具有空腔的结构,将两者控制在相同的粒径范围内,有助于涂料在涂刷之后在涂层间形成均匀的网络结构,进而有效阻隔涂层的吸热。
所述防腐剂为诺德C15,其为高效、广谱、低毒、环保型杀菌防腐剂,可强力杀菌,不含甲醛及甲醛释放物,是水基型产品,与涂料、乳液等水性体系相容性好。
所述消泡剂为有机硅类消泡剂或聚醚类消泡剂;所述分散剂为BYK-154分散剂;所述流平剂为埃夫卡EFKA-3580流平剂;所述增稠剂的牌号为BYK-420;所述成膜剂为三丙二醇丁醚或醇酯十二。
本发明还提供了所述建筑外墙用隔热保温涂料的制备方法,包括以下步骤:
(1)在低速搅拌下,依次加入配方量的去离子水、丙三醇、六偏磷酸钠、阻燃成炭剂、聚磷酸铵、金红石型钛白粉,然后转至高速搅拌继续搅拌10~20min;
(2)然后加入膨胀蛭石、空心玻璃微珠、环氧丙烯酸酯树脂、氨基树脂,继续搅拌20~30min;
(3)最后加入成膜剂、分散剂、流平剂、增稠剂、润湿剂、消泡剂,继续搅拌10~20min,即可得到所述建筑外墙用隔热保温涂料。
所述低速搅拌的转速为800~1500r/min;所述高速搅拌的转速为8000~10000r/min。
本发明提供的建筑外墙用隔热保温阻燃涂料以环氧丙烯酸酯树脂和氨基树脂为成膜剂,保证了涂料具有较高的附着力,以膨胀蛭石和空心玻璃微珠为骨架填料,膨胀蛭石具有多孔的空腔结构,空心玻璃微珠具有纳米级的孔径,涂料涂刷后能在物体表面形成由膨胀蛭石和空心玻璃微珠相互搭接的三维网络空心结构,也就是隔热保温单元,可以有效阻止热量传导,隔热保温极佳,配合配方中的金红石型钛白粉可以大量的反射红外线,防止红外线对物体进行加热,能有效抑制太阳和红外线的辐射热和热量传导,隔热保温抑制效率可达90%左右,金红石型钛白粉作为颜料同时也是良好的光催化材料,其对太阳光中的近红外具有高反射、低吸收的特点;以六偏磷酸钠、阻燃成炭剂、聚磷酸铵为膨胀阻燃体系,本发明配方中的六偏磷酸钠为脱水剂、聚磷酸铵为发泡剂,且氨基树脂也有一定的发泡功能,在涂层遇热时,膨胀阻燃体系可释放出不燃性气体,如氨、二氧化碳、水蒸汽、卤化氢等,使涂层膨胀,并在涂层内形成蜂窝状泡沫结构,具有良好的阻燃效果;且本发明通过添加助剂防腐剂、消泡剂、分散剂、流平剂、增稠剂及成膜剂保证了涂料基体的均匀性,且在防止的过程中物沉淀,涂刷之后的成膜性良好,且可提高涂层附着力、防老化性和防腐性。
与现有技术相比,本发明具有以下有益效果:
1.本发明以环氧丙烯酸酯树脂和氨基树脂作为基体树脂,增加了涂料涂层的交联密度,从而使使得涂层在常温下具有较强的粘接强度、附着力增强;
2.加入膨胀蛭石、空心玻璃微珠、金红石型钛白粉、能够提高涂料的隔热保温性能,使制成的涂料具有隔热保温作用;
3.加入防腐剂诺德C15,不仅能防止涂料的腐败变质,提高涂料的防腐性能,还可以使涂膜具有抵御霉菌侵袭的能力,提高涂料的抗老化性能;
4.加入六偏磷酸钠、阻燃成炭剂、聚磷酸铵作为膨胀阻燃体系;提高了涂料的阻燃效果。
5.本发明的防腐隔热保温涂料产品干固后在被敷物上形成封闭微孔和网状结构,具有良好的抗腐蚀性能,粘结性强,有较高的抗压强度,有效地解决了阻隔保温涂料耐冲击性较差、对墙体的粘结强度偏低等问题,而且施工方便,敷涂、刷涂均可,可塑性强。
具体实施方式
下面结合实施例对本发明进行详细说明。
实施例1
一种建筑外墙用隔热保温阻燃涂料,包括如下重量份的原料:
所述建筑外墙用隔热保温阻燃涂料的制备方法包括以下步骤:
(1)在1200r/min低速搅拌下,依次加入配方量的去离子水、丙三醇、六偏磷酸钠、阻燃成炭剂、聚磷酸铵、金红石型钛白粉,然后转至9000r/min高速搅拌继续搅拌12min;
(2)然后加入膨胀蛭石、空心玻璃微珠、环氧丙烯酸酯树脂、氨基树脂,继续搅拌20min;
(3)最后加入成膜剂、分散剂、流平剂、增稠剂、润湿剂、消泡剂,继续搅拌10min,即可得到所述建筑外墙用隔热保温涂料。
实施例2
一种建筑外墙用隔热保温阻燃涂料,包括如下重量份的原料:
所述建筑外墙用隔热保温阻燃涂料的制备方法包括以下步骤:
(1)在800/min低速搅拌下,依次加入配方量的去离子水、丙三醇、六偏磷酸钠、阻燃成炭剂、聚磷酸铵、金红石型钛白粉,然后转至8000r/min高速搅拌继续搅拌20min;
(2)然后加入膨胀蛭石、空心玻璃微珠、环氧丙烯酸酯树脂、氨基树脂,继续搅拌30min;
(3)最后加入成膜剂、分散剂、流平剂、增稠剂、润湿剂、消泡剂,继续搅拌20min,即可得到所述建筑外墙用隔热保温涂料。
实施例3
一种建筑外墙用隔热保温阻燃涂料,包括如下重量份的原料:
所述建筑外墙用隔热保温阻燃涂料的制备方法包括以下步骤:
(1)在1500r/min低速搅拌下,依次加入配方量的去离子水、丙三醇、六偏磷酸钠、阻燃成炭剂、聚磷酸铵、金红石型钛白粉,然后转至10000r/min高速搅拌继续搅拌10min;
(2)然后加入膨胀蛭石、空心玻璃微珠、环氧丙烯酸酯树脂、氨基树脂,继续搅拌20min;
(3)最后加入成膜剂、分散剂、流平剂、增稠剂、润湿剂、消泡剂,继续搅拌10min,即可得到所述建筑外墙用隔热保温涂料。
以上各实施例中的涂料性能测试结果如表1所示。
表1
上述参照实施例对一种建筑外墙用隔热保温阻燃涂料及其制备方法进行的详细描述,是说明性的而不是限定性的,可按照所限定范围列举出若干个实施例,因此在不脱离本发明总体构思下的变化和修改,应属本发明的保护范围之内。
Claims (10)
1.一种建筑外墙用隔热保温阻燃涂料,其特征在于,包括如下重量份的原料:
2.根据权利要求1所述的建筑外墙用隔热保温阻燃涂料,其特征在于,包括如下重量份的原料:
3.根据权利要求1或2所述的建筑外墙用隔热保温阻燃涂料,其特征在于,所述阻燃成炭剂为含三嗪环结构的多元醇聚合物。
4.根据权利要求1或2所述的建筑外墙用隔热保温阻燃涂料,其特征在于,所述阻燃成炭剂的型号为TF100、CA-30或CA-40,购买自扬州三得利化工有限公司。
5.根据权利要求1或2所述的建筑外墙用隔热保温阻燃涂料,其特征在于,所述空心玻璃微珠的粒径为400~500目。
6.根据权利要求1或2所述的建筑外墙用隔热保温阻燃涂料,其特征在于,所述膨胀蛭石的粒径为400~500目。
7.根据权利要求1或2所述的建筑外墙用隔热保温阻燃涂料,其特征在于,所述防腐剂为诺德C15;所述消泡剂为有机硅类消泡剂或聚醚类消泡剂;所述分散剂为BYK-154分散剂。
8.根据权利要求1或2所述的建筑外墙用隔热保温阻燃涂料,其特征在于,所述流平剂为埃夫卡EFKA-3580流平剂;所述增稠剂的牌号为BYK-420;所述成膜剂为三丙二醇丁醚或醇酯十二。
9.根据权利要求1-8任意一项所述的建筑外墙用隔热保温阻燃涂料的制备方法,其特征在于,包括以下步骤:
(1)在低速搅拌下,依次加入配方量的去离子水、丙三醇、六偏磷酸钠、阻燃成炭剂、聚磷酸铵、金红石型钛白粉,然后转至高速搅拌继续搅拌10~20min;
(2)然后加入膨胀蛭石、空心玻璃微珠、环氧丙烯酸酯树脂、氨基树脂,继续搅拌20~30min;
(3)最后加入成膜剂、分散剂、流平剂、增稠剂、润湿剂、消泡剂,继续搅拌10~20min,即可得到所述建筑外墙用隔热保温涂料。
10.根据权利要求9所述的制备方法,其特征在于,所述低速搅拌的转速为800~1500r/min;所述高速搅拌的转速为8000~10000r/min。
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