CN113462236A - 仿石涂层幕墙用涂料及其施工方法 - Google Patents
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Abstract
本发明属于建筑外墙涂料技术领域,具体为仿石涂层幕墙用涂料及其施工方法;本发明旨在解决外墙仿石漆由于长期需要经受风吹日晒甚至外力打击,极容易导致漆面崩裂脱落的问题;本发明涂料包括仿石层、金属层和罩面漆;仿石层堇青石颗粒10‑30份、氧化铝细粉10‑35份、氧化锆细粉20‑40份、高氯化聚乙烯树脂20‑30份、聚乙烯吡咯烷酮15‑30份和硬脂酸粉末0.5‑5份,金属层是通过火焰喷涂法喷涂至仿石层表面的非晶态金属涂料,非晶态金属涂料包括以下重量份数的原料:镍粉10‑15份、铝粉10‑15份和氧化铝粉10‑15份;本发明制备的采用较大粒径的堇青石颗粒,在使用火焰喷涂法喷涂金属层后,可起到加强仿石层的作用,避免因风吹日晒等原因造成仿石层剥离的问题。
Description
技术领域
本发明涉及建筑外墙涂料技术领域,具体为仿石涂层幕墙用涂料及其施工方法。
背景技术
仿石漆是一种装饰效果酷似大理石、花岗石的厚质外墙装饰涂料。主要采用各种颜色的天然石粉配制而成,多用于制造建筑外墙的仿石效果,因此又称液态石。仿石漆装修后的建筑物,具有天然真实的自然色泽,给人以高雅、和谐、庄重之美感。适合于各类建筑物的室内外装修。特别是在曲面建筑物上装饰,可以收到生动逼真,回归自然的功效。
然而,现有的外墙仿石漆由于长期需要经受风吹日晒甚至外力打击,极容易导致漆面崩裂脱落的问题。
发明内容
本发明提出一种仿石涂层幕墙用涂料,解决了外墙仿石漆由于长期需要经受风吹日晒甚至外力打击,极容易导致漆面崩裂脱落的问题。
本发明的技术方案是这样实现的:一种仿石涂层幕墙用涂料,所述涂料包括仿石层、金属层和罩面漆;
所述仿石层包括以下重量份数的原料:堇青石颗粒10-30份、氧化铝细粉10-35份、氧化锆细粉20-40份、高氯化聚乙烯树脂20-30份、聚乙烯吡咯烷酮15-30份和硬脂酸粉末0.5-5份;
所述金属层是通过火焰喷涂法喷涂至仿石层表面的非晶态金属涂料,所述非晶态金属涂料包括以下重量份数的原料:镍粉10-15份、铝粉10-15份和氧化铝粉10-15份。
进一步地,所述堇青石颗粒粒径为0.5-2.5mm,氧化铝细粉和氧化锆细粉的粒径为0.1-0.25mm。
进一步地,所述镍粉、铝粉和氧化铝粉的粒径为15-50μm。
进一步地,所述罩面漆为广东顺德嘉立斯涂料有限公司生产的嘉美斯罩面漆。
本发明还公开了一种仿石涂层幕墙用涂料的施工方法,包括以下步骤:
S1.预处理:将仿石层各组分称重混合均匀后,喷涂于待洁净的幕墙表面,静置12-36h得到仿石层;
S2.金属层喷涂:将金属层各组分装入火焰粉末喷涂枪中,并使用火焰粉末喷涂枪对仿石层进行喷涂,自然冷却后得到金属层;
S3.涂层打磨:对步骤2得到的幕墙进行打磨,打磨深度为堇青石颗粒粒径的25-60%。
进一步地,所述步骤1预处理后,对幕墙进行表面处理:使用火焰喷枪对覆盖步骤1处理的幕墙表面循环喷扫1-5min,保持仿石层表面温度为220-240℃。
进一步地,所述步骤2中喷涂的金属层厚度为0.1-0.2mm。
进一步地,步骤3打磨结束后,去除金属层表面浮尘并对幕墙喷涂罩面漆,干燥后得到仿石涂层幕墙。
与现有技术相比,本发明具有以下有益效果:
本发明公开的仿石涂料,采用较大粒径的堇青石颗粒,在使用火焰喷涂法喷涂金属层后,可起到加强仿石层的作用,避免因风吹日晒等原因造成仿石层剥离的问题。
本发明的仿石层采用的硬脂酸粉末,会在表面处理过程中,被火焰喷枪带来的高温分解,从而在仿石层表面留下大量空腔,可以有效提高火焰喷涂法喷涂的金属层与仿石层的结合效果。
本发明在完成火焰喷涂后,通过打磨可去除堇青石头部和部分的金属层,从而将堇青石由金属层中露出,使仿石涂料呈现石材的效果。
附图说明
图1为本发明进行金属层喷涂后的仿石涂料剖面示意图;
图2为本发明进行涂层打磨的仿石涂料剖面示意图;
附图标记:1幕墙、2仿石层、3金属层、4罩面漆。
具体实施方式
为了进一步理解本发明,下面结合实施例对本发明提供的一种仿石涂层幕墙用涂料进行具体描述,但本发明并不限于这些实施例。该领域熟练技术人员根据上述发明内容对本发明核心思想指导下做出的非本质改进和调整,仍然属于本发明的保护范围。
实施例
以下各实施例及对比例采用罩面漆为广东顺德嘉立斯涂料有限公司生产的嘉美斯罩面漆。
各实施例仿石层及金属层组分表:
组分 | 实施例1 | 实施例2 | 实施例3 | 实施例4 |
堇青石(重量份数) | 10 | 30 | 20 | 25 |
氧化铝细粉(重量份数) | 35 | 10 | 25 | 20 |
氧化锆细粉(重量份数) | 20 | 40 | 30 | 25 |
高氯化聚乙烯树脂(重量份数) | 30 | 20 | 25 | 30 |
聚乙烯吡咯烷酮(重量份数) | 15 | 30 | 20 | 25 |
硬脂酸粉末(重量份数) | 5 | 0.5 | 3 | 2.5 |
镍粉(重量份数) | 10 | 15 | 12 | 10 |
铝粉(重量份数) | 15 | 10 | 13 | 10 |
氧化铝粉(重量份数) | 10 | 15 | 12 | 15 |
仿石层及金属层组分粒径表:
组分 | 实施例1 | 实施例2 | 实施例3 | 实施例4 |
堇青石(mm) | 0.5 | 2.5 | 1.5 | 1 |
氧化铝细粉(mm) | 0.25 | 0.1 | 0.15 | 0.2 |
氧化锆细粉(mm) | 0.1 | 0.25 | 0.2 | 0.15 |
镍粉(μm) | 50 | 15 | 35 | 20 |
铝粉(μm) | 15 | 50 | 20 | 35 |
氧化铝(μm) | 50 | 15 | 35 | 20 |
各实施例通过以下步骤制得:
S1.预处理:将仿石层各组分称重混合均匀后,喷涂于待洁净的幕墙表面,静置12-36h得到仿石层;
S2.金属层喷涂:将金属层各组分装入火焰粉末喷涂枪中,并使用火焰粉末喷涂枪对仿石层进行喷涂,自然冷却后得到金属层;
S3.涂层打磨:如图1所示对步骤2得到的幕墙进行打磨,虚线,打磨深度为堇青石颗粒粒径的25-60%。
其中实施例2和实施例4在步骤3打磨结束后,去除金属层表面浮尘并对幕墙喷涂罩面漆,干燥后得到仿石涂层幕墙。
参数 | 实施例1 | 实施例2 | 实施例3 | 实施例4 |
静置时长(h) | 12 | 36 | 24 | 20 |
打磨深度(%) | 60 | 25 | 40 | 30 |
火焰喷扫时长(min) | - | - | 3 | 4 |
表面温度(℃) | - | - | 230 | 225 |
对比例
组分 | 对比例1 | 对比例2 |
石英砂(wt%) | 25 | 30 |
丙烯酸酯乳液(wt%) | 40 | 35 |
乙二醇一丁醚(wt%) | 33 | 32 |
氨水(wt%) | 2 | 3 |
性能检测及结果
其中冲击检测项目采用GB/T 1732-1993(50kg/cm)漆膜耐冲击测定法进行检测。
耐盐雾性能检测项目采用GB/T 1771-2007(1000h)耐中性盐雾性能的测定。
耐水性性能检测项目采用60天浸没检样后观察检样的起泡、脱落情况。
附着力性能检测项目采用GB/T 9286-1998进行检测。
由检测结果可知,本发明提供的仿石涂层幕墙用涂料具有较优质的抗冲击性能和良好的附着力。
以上仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (8)
1.一种仿石涂层幕墙用涂料,其特征在于:所述涂料包括仿石层、金属层和罩面漆;
所述仿石层包括以下重量份数的原料:堇青石颗粒10-30份、氧化铝细粉10-35份、氧化锆细粉20-40份、高氯化聚乙烯树脂20-30份、聚乙烯吡咯烷酮15-30份和硬脂酸粉末0.5-5份;
所述金属层是通过火焰喷涂法喷涂至仿石层表面的非晶态金属涂料,所述非晶态金属涂料包括以下重量份数的原料:镍粉10-15份、铝粉10-15份和氧化铝粉10-15份。
2.根据权利要求1所述的仿石涂层幕墙用涂料,其特征在于:所述堇青石颗粒粒径为0.5-2.5mm,氧化铝细粉和氧化锆细粉的粒径为0.1-0.25mm。
3.根据权利要求1所述的仿石涂层幕墙用涂料,其特征在于:所述镍粉、铝粉和氧化铝粉的粒径为15-50μm。
4.根据权利要求1所述的仿石涂层幕墙用涂料,其特征在于:所述罩面漆为广东顺德嘉立斯涂料有限公司生产的嘉美斯罩面漆。
5.一种仿石涂层幕墙用涂料的施工方法,其特征在于:包括以下步骤:
S1.预处理:将仿石层各组分称重混合均匀后,喷涂于待洁净的幕墙表面,静置12-36h得到仿石层;
S2.金属层喷涂:将金属层各组分装入火焰粉末喷涂枪中,并使用火焰粉末喷涂枪对仿石层进行喷涂,自然冷却后得到金属层;
S3.涂层打磨:对步骤2得到的幕墙进行打磨,打磨深度为堇青石颗粒粒径的25-60%。
6.根据权利要求5所述的仿石涂层幕墙用涂料的施工方法,其特征在于,所述步骤1预处理后,对幕墙进行表面处理:使用火焰喷枪对覆盖步骤1处理的幕墙表面循环喷扫1-5min,保持仿石层表面温度为220-240℃。
7.根据权利要求5所述的仿石涂层幕墙用涂料的施工方法,其特征在于,所述步骤2中喷涂的金属层厚度为0.1-0.2mm。
8.根据权利要求5所述的仿石涂层幕墙用涂料的施工方法,其特征在于,步骤3打磨结束后,去除金属层表面浮尘并对幕墙喷涂罩面漆,干燥后得到仿石涂层幕墙。
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