CN107236394A - 一种复合保温隔热涂料及其制备方法 - Google Patents

一种复合保温隔热涂料及其制备方法 Download PDF

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CN107236394A
CN107236394A CN201710341010.5A CN201710341010A CN107236394A CN 107236394 A CN107236394 A CN 107236394A CN 201710341010 A CN201710341010 A CN 201710341010A CN 107236394 A CN107236394 A CN 107236394A
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Abstract

本发明属于保温隔热领域,尤其涉及一种复合保温隔热涂料及其制备方法。克服现有技术的不足,提供了由打底、保温隔热和表层三个组份构成分别依次使用的一种复合保温隔热涂料。涂层具有稳定的保温隔热效果和高强度,适应基材范围广,施工方便简,寿命长易大范围推广。

Description

一种复合保温隔热涂料及其制备方法
技术领域:本发明属于保温隔热涂料领域,特别涉及一种复合保温涂料及其制备方法。
背景技术:节能减排实现低碳发展是生态文明建设的重要内容。由于近年的能源供给与需求日益矛盾,在能源消耗较大的建筑和工业领域,采用保温隔热措施是节能减排的一种有效措施。
近年来,市场出现一些新型保温隔热涂料,综合性能明显优于传统的保温隔热产品,但也存在涂料与基体结合力差出现涂层开翘脱落和涂层表面耐复杂工作环境不好出现涂层开裂、气泡和粉化等问题,造成隔热高温涂层强度差,保温隔热效果不稳定和寿命短缺点,制约大范围推广应用。
造成上述问题的原因是涂料没有针对性的打底和表面专用组分,一种涂料既要与多种材料的基体都能形成良好结合,表层又要适应在潮湿、蒸汽、油雾化学介质条件下稳定工作是很难做到平衡的,因此顾此失彼。
发明内容:本发明克服以上技术的不足,提供了由打底、保温隔热和表层三个组份构成的一种复合保温隔热涂料。涂层具有稳定的保温隔热效果和高强度,适应基材范围广,施工方便简,寿命长易大范围推广。
本发明解决上述问题的技术方案如下:
本发明一种复合保温隔热涂料,由A、B、C三组份构成,A组份主要作为打底层,与多种基体材料都能形成很好的结合,与基材配伍性广泛。B组份主要是保温隔热,大幅度降低导热系数与反射热能,达到很好的保温隔热作用。C主要是表层保护,表层具有双疏性,即疏水又疏油,同时达到良好耐水、油及化学介质,涂层表面耐复杂工作环境和耐候性好。
本发明一种复合保温隔热涂料A组份,由以下重量份数原料组成:纯丙烯酸乳液40-50份,二氧化锆粉10-20份,去离子水10-15份,分散剂0.1-0.3份,成膜助剂0.3-0.5份。
本发明一种复合保温隔热涂料B组份,由以下重量份数原料组成:苯丙烯酸乳液40-50份,二氧化锆粉15-25份,空心玻璃微粉20-30份,去离子水30-35份,分散剂0.3-0.5份,成膜助剂1.3-1.7份,流变控制剂0.4-0.8份。
本发明一种复合保温隔热涂料C组份,由以下重量份数原料组成:硅丙烯酸乳液3045份,二氧化锆粉5-10份,空心玻璃微粉15-20份,石墨烯0.4-0.8份,金红石型钛白粉20-30份,去离子水30-35份,消泡剂0.2-0.4份,分散剂0.4-0.7份,成膜助剂0.6-0.9份,杀菌剂0.1-03份,流变控制剂0.3-0.7份。
本发明的优化技术方案是,一种复合保温隔热涂料,A组份,由以下重量份数原料组成:纯丙烯酸乳液45份,二氧化锆粉15份,去离子水12份,分散剂0.2份,成膜助剂0.4份。
本发明一种复合保温隔热涂料B组份,由以下重量份数原料组成:苯丙烯酸乳液40份,二氧化锆粉20份,空心玻璃微粉25份,去离子水30份,分散剂0.4份,成膜助剂1.5份,流变控制剂0.6份。
本发明一种复合保温隔热涂料C组份,由以下重量份数原料组成:硅丙烯酸乳液35份,二氧化锆粉8份,空心玻璃微粉17份,石墨烯0.6份,金红石型钛白粉25份,去离子水33份,消泡剂0.3份,分散剂0.5份,成膜助剂0.7份,杀菌剂0.2份,流变控制剂0.4份。
本发明的有益效果是:
1、本发明一种复合保温隔热涂料同时与多种基材均能形成高质量高强度的结合,不脱落、开翘。本发明的A组份主要作用是同时与多种基材能够形成良好的配伍并具有一定的耐热和保温隔热作用,为下一层本发明B组份提供了良好的基础。
2、本发明一种复合保温隔热涂料表层具有很好的耐水、潮湿、油和化学介质,涂层表面不会开裂、起泡和疏松,涂层强度高。本发明的C组份引入了石墨烯材材料,石墨烯具有二维结构,一是具有疏油疏水双疏性,表层耐各种介质腐蚀和防水;二是引入石墨烯表层的强度增加2-3倍。
3、本发明一种复合保温隔热涂层,是由三种不同功能作用组份构成,涂层具有稳定的保温隔热效果和高强度,适应基材范围广,寿命长易大范围推广。
本发明还提供了一种复合保温隔热涂料的制备方法,包括以下步骤:本发明A组份制备方法。称取纯丙烯酸乳液40份,二氧化锆粉10份,去离子水10份,分散剂0.1份,成膜助剂0.3份放入均质器中,以每分钟800转的转速均质20分钟。
本发明B组份制备方法。称取苯丙烯酸乳液40份,二氧化锆粉15份,空心玻璃微粉20份,去离子水30份,分散剂0.3份,成膜助剂1.3份,流变控制剂0.4份放入均质器中,以每分钟300转的转速均质30分钟。
本发明C组份制备方法。称取硅丙烯酸乳液30份,二氧化锆粉5份,空心玻璃微粉15份,石墨烯0.4份,金红石型钛白粉20份,去离子水30份,消泡剂0.2份,分散剂0.4份,成膜助剂0.6份,杀菌剂0.1份,流变控制剂0.3份放入均质器中,以每分钟500转的转速均质20分钟。
具体实施方式:
实施例一:
1、一种复合保温隔热涂料,由以下组份构成:
A组份由以下重量份数原料组成:纯丙烯酸乳液42份,二氧化锆粉12份,去离子水11份,分散剂0.2份,成膜助剂0.3份。
B组份由以下重量份数原料组成:苯丙烯酸乳液42份,二氧化锆粉18份,空心玻璃微粉23份,去离子水33份,分散剂0.4份,成膜助剂1.4份,流变控制剂0.5份。
C组份由以下重量份数原料组成:硅丙烯酸乳液33份,二氧化锆粉8份,空心玻璃微粉17份,石墨烯0.5份,金红石型钛白粉22份,去离子水33份,消泡剂0.3份,分散剂0.5份,成膜助剂0.7份,杀菌剂0.2份,流变控制剂0.4份。
2、一种复合保温隔热涂料,制备方法如下:
A组份的制备方法。称取纯丙烯酸乳液42份,二氧化锆粉12份,去离子水11份,分散剂0.2份,成膜助剂0.3份放入均质器中,以每分钟800转的转速均质20分钟。
B组份的制备方法。称取苯丙烯酸乳液42份,二氧化锆粉18份,空心玻璃微粉23份,去离子水33份,分散剂0.4份,成膜助剂1.4份,流变控制剂0.5份放入均质器中,以每分钟300转的转速均质30分钟。
C组份的制备方法。称取硅丙烯酸乳液33份,二氧化锆粉8份,空心玻璃微粉17份,石墨烯0.5份,金红石型钛白粉22份,去离子水33份,消泡剂0.3份,分散剂0.5份,成膜助剂0.7份,杀菌剂0.2份,流变控制剂0.4份放入均质器中,以每分钟500转的转速均质20分钟。
实施例二:
1、一种复合保温隔热涂料,由以下组份构成:
A组份由以下重量份数原料组成:纯丙烯酸乳液50份,二氧化锆粉20份,去离子水15份,分散剂0.3份,成膜助剂0.5份。
B组份由以下重量份数原料组成:苯丙烯酸乳液50份,二氧化锆粉25份,空心玻璃微粉30份,去离子水35份,分散剂0.5份,成膜助剂1.7份,流变控制剂0.8份。
C组份由以下重量份数原料组成:硅丙烯酸乳液45份,二氧化锆粉10份,空心玻璃微粉20份,石墨烯0.8份,金红石型钛白粉30份,去离子水35份,消泡剂0.4份,分散剂0.7份,成膜助剂0.9份,杀菌剂03份,流变控制剂0.7份。
2、一种复合保温隔热涂料,制备方法如下:
A组份的制备方法。称取纯丙烯酸乳液50份,二氧化锆粉20份,去离子水15份,分散剂0.3份,成膜助剂0.5份放入均质器中,以每分钟800转的转速均质20分钟。
B组份的制备方法。称取苯丙烯酸乳液50份,二氧化锆粉25份,空心玻璃微粉30份,去离子水35份,分散剂0.5份,成膜助剂1.7份,流变控制剂0.8份放入均质器中,以每分钟800转的转速均质20分钟。
C组份的制备方法。称取硅丙烯酸乳液45份,二氧化锆粉10份,空心玻璃微粉20份,石墨烯0.8份,金红石型钛白粉30份,去离子水35份,消泡剂0.4份,分散剂0.7份,成膜助剂0.9份,杀菌剂03份,流变控制剂0.7份放入均质器中,以每分钟800转的转速均质20分钟。

Claims (4)

1.一种复合保温隔热涂料,其特征在于,由A、B、C三组份构成,如下:
本发明一种复合保温隔热涂料A组份,由以下重量份数原料组成:纯丙烯酸乳液40-50份,二氧化锆粉10-20份,去离子水10-15份,分散剂0.1-0.3份,成膜助剂0.3-0.5份。
本发明一种复合保温隔热涂料B组份,由以下重量份数原料组成:苯丙烯酸乳液40-50份,二氧化锆粉15-25份,空心玻璃微粉20-30份,去离子水30-35份,分散剂0.3-0.5份,成膜助剂1.3-1.7份,流变控制剂0.4-0.8份。
本发明一种复合保温隔热涂料C组份,由以下重量份数原料组成:硅丙烯酸乳液30-45份,二氧化锆粉5-10份,空心玻璃微粉15-20份,石墨烯0.4-0.8份,金红石型钛白粉20-30份,去离子水30-35份,消泡剂0.2-0.4份,分散剂0.4-0.7份,成膜助剂0.6-0.9份,杀菌剂0.1-03份,流变控制剂0.3-0.7份。
2.根据权利要求1所述的保温隔热涂料,其特征在于由A、B、C三组份构成,如下:
本发明一种复合保温隔热涂料A组份,由以下重量份数原料组成:纯丙烯酸乳液45份,二氧化锆粉15份,去离子水12份,分散剂0.2份,成膜助剂0.4份。
本发明一种复合保温隔热涂料B组份,由以下重量份数原料组成:苯丙烯酸乳液40份,二氧化锆粉20份,空心玻璃微粉25份,去离子水30份,分散剂0.4份,成膜助剂1.5份,流变控制剂0.6份。
本发明一种复合隔热保温涂料C组份,由以下重量份数原料组成:硅丙烯酸乳液35份,二氧化锆粉8份,空心玻璃微粉17份,石墨烯0.6份,金红石型钛白粉25份,去离子水33份,消泡剂0.3份,分散剂0.5份,成膜助剂0.7份,杀菌剂0.2份,流变控制剂0.4份。
3.根据权利要求1所述的复合保温隔热涂料,其特征在于C组份中所含的石墨烯为小于等于三个分子层结构的石墨烯。
4.一种复合保温隔热涂料的制备方法,其特征在于包括以下步骤:
一种复合保温隔热涂料A组份的制备方法:称取纯丙烯酸乳液40份,二氧化锆粉10份,去离子水10份,分散剂0.1份,成膜助剂0.3份放入均质器中,以每分钟800转的转速均质20分钟。
一种复合保温隔热涂料B组份的制备方法:称取苯丙烯酸乳液40份,二氧化锆粉15份,空心玻璃微粉20份,去离子水30份,分散剂0.3份,成膜助剂1.3份,流变控制剂0.4份放入均质器中,以每分钟300转的转速均质30分钟。
一种复合保温隔热涂料C组份的制备方法:称取硅丙烯酸乳液30份,二氧化锆粉5份,空心玻璃微粉15份,石墨烯0.4份,金红石型钛白粉20份,去离子水30份,消泡剂0.2份,分散剂0.4份,成膜助剂0.6份,杀菌剂0.1份,流变控制剂0.3份放入均质器中,以每分钟500转的转速均质20分钟。
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