CN108162513A - 一种窗户保温台板的底板的制造方法 - Google Patents
一种窗户保温台板的底板的制造方法 Download PDFInfo
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Abstract
本发明公开一种窗户保温台板的底板的制造方法,涉及一种窗户保温台板,包括以下步骤:1)将碳纤维预浸布按60‑90°相互交错叠加覆盖在L型的模具上,保持碳纤维预浸布叠加厚度为5‑8mm;2)将步骤1)中的碳纤维预浸布放入到加热箱中,保持温度为150‑200℃恒温加热30‑60分钟,得到碳纤维板;3)将步骤2)所得碳纤维板自然冷却,然后进行镀镍工序,使得碳纤维板表面覆盖厚度为0.6‑0.8mm厚的镀镍层,即可。设置的底板采用碳纤维预浸布制成保持结构强度高,重量轻,采用镀镍工艺,保持结构耐磨耐腐蚀。
Description
本发明专利申请是针对申请号为:2016106490037的分案申请,原申请的申请日为:2016-08-10,发明创造名称为:一种窗户保温台板。
技术领域
本发明涉及一种窗户保温台板。
背景技术
窗户在建筑学上是指墙或屋顶上建造的洞口,用以使光线或空气进入室内。事实上窗和户的本意分别指窗和门,在现代汉语中窗户则单指窗。“窗”本作“囱”(“囱”为俗字),即在墙上留个洞,框内的是窗棂,可以透光,也可以出烟,后加“穴”字头构成形声字。《说文》说:“在墙曰牅,在屋曰囱。窗,或从穴。”窗框负责支撑窗体的主结构,可以是木材、金属、陶瓷或塑料材料,透明部分依附在窗框上,可以是纸、布、丝绸或玻璃材料。
现代的窗户的窗由窗框、玻璃和活动构件(铰链、执手、滑轮等)三部分组成。窗框负责支撑窗体的主结构,可以是木材、金属、陶瓷或塑料材料,透明部分依附在窗框上,可以是纸、布、丝绸或玻璃材料。活动构件主要以金属材料为主,在人手触及的地方也可能包裹以塑料等绝热材料。
随着建筑技术的发展以及人类生活水平的提高,窗的构造也日趋复杂以满足更高的热工要求。高级的建筑会采用双层甚至三层真空玻璃,双道橡胶密封条,以保证其最佳的保温隔热性能。水平天窗可以做成无框的单元,也被称为采光罩。玻璃幕墙可以被认为是一种特殊的窗,即整个建筑外墙都变成了可透光的窗。
铝合金门窗因为是金属材质,所以不会存在老化问题,而且坚固,耐撞击,强度大。但铝合金窗最容易被攻击的一个弱点就是隔热性能,因为金属是热的良导体,外界与室内的温度会随着窗的框架传递。
窗台板可以是木工用夹板、饰面板做成木饰面的形式,也可以是用水泥、石材做的窗台石窗台的款式主要是从材质上来分类的,常见的材质有大理石、花岗石、人造石、装饰面板和装饰木线。
目前现有的窗台板保温效果不好,不具有加热功能,结构强度不高,安装不方便。
发明内容
本发明要解决的技术问题是提供一种保温效果好,具有加热功能,结构强度高,安装方便的窗户保温台板。
为解决上述问题,本发明采用如下技术方案:
一种窗户保温台板的底板的制造方法,包括以下步骤:
1)将碳纤维预浸布按60-90°相互交错叠加覆盖在L型的模具上,保持碳纤维预浸布叠加厚度为5-8mm;
2)将步骤1)中的碳纤维预浸布放入到加热箱中,保持温度为150-200℃恒温加热30-60分钟,得到碳纤维板;
3)将步骤2)所得碳纤维板自然冷却,然后进行镀镍工序,使得碳纤维板表面覆盖厚度为0.6-0.8mm厚的镀镍层,即可。
本发明的有益效果为:设置的活性炭层和酚醛泡沫板使得保温效果好;设置的电热线具有加热功能;设置的底板剖面呈L型,底板一侧设置有锚钉保持安装方便;设置的底板采用碳纤维预浸布制成保持结构强度高,重量轻,采用镀镍工艺,保持结构耐磨耐腐蚀。
附图说明
图1为本发明中窗户保温台板的结构图。
具体实施方式
实施例1
如图1所示,一种窗户保温台板,包括底板1、活性炭层2、酚醛泡沫板3和大理石板4,所述底板1剖面呈L型设置,所述底板1、活性炭层2、酚醛泡沫板3和大理石板4依次从下至上密封连接,所述活性炭层2内安装有电热线5,所述电热线5呈波纹状,所述电热线5一侧设置电源接头6,所述电源接头6与电热线5电性连接,所述酚醛泡沫板3内设置有多个圆孔7,所述圆孔7呈等距分布,所述底板1一侧设置有锚钉8,所述锚钉8末端设置有金属头9,所述金属头9呈半球体设置,所述金属头9与锚钉8一体成型,所述大理石板4左侧呈倾角设置,所述大理石板4左侧设置有密封板10,所述密封板10分别与底板1、活性炭层2、酚醛泡沫板3和大理石板4胶合连接。
所述底板1由碳纤维预浸布制成。
一种窗户保温台板的底板的制造方法,包括以下步骤:
1)将碳纤维预浸布按60°相互交错叠加覆盖在L型的模具上,保持碳纤维预浸布叠加厚度为5mm;
2)将步骤1)中的碳纤维预浸布放入到加热箱中,保持温度为150℃恒温加热30分钟,得到碳纤维板;
3)将步骤2)所得碳纤维板自然冷却,然后进行镀镍工序,使得碳纤维板表面覆盖厚度为0.6mm厚的镀镍层,即可。
实施例2
如图1所示,一种窗户保温台板,包括底板1、活性炭层2、酚醛泡沫板3和大理石板4,所述底板1剖面呈L型设置,所述底板1、活性炭层2、酚醛泡沫板3和大理石板4依次从下至上密封连接,所述活性炭层2内安装有电热线5,所述电热线5呈波纹状,所述电热线5一侧设置电源接头6,所述电源接头6与电热线5电性连接,所述酚醛泡沫板3内设置有多个圆孔7,所述圆孔7呈等距分布,所述底板1一侧设置有锚钉8,所述锚钉8末端设置有金属头9,所述金属头9呈半球体设置,所述金属头9与锚钉8一体成型,所述大理石板4左侧呈倾角设置,所述大理石板4左侧设置有密封板10,所述密封板10分别与底板1、活性炭层2、酚醛泡沫板3和大理石板4胶合连接。
所述底板1由碳纤维预浸布制成。
一种窗户保温台板的底板的制造方法,包括以下步骤:
1)将碳纤维预浸布按75°相互交错叠加覆盖在L型的模具上,保持碳纤维预浸布叠加厚度为6.5mm;
2)将步骤1)中的碳纤维预浸布放入到加热箱中,保持温度为175℃恒温加热45分钟,得到碳纤维板;
3)将步骤2)所得碳纤维板自然冷却,然后进行镀镍工序,使得碳纤维板表面覆盖厚度为0.7mm厚的镀镍层,即可。
实施例3
如图1所示,一种窗户保温台板,包括底板1、活性炭层2、酚醛泡沫板3和大理石板4,所述底板1剖面呈L型设置,所述底板1、活性炭层2、酚醛泡沫板3和大理石板4依次从下至上密封连接,所述活性炭层2内安装有电热线5,所述电热线5呈波纹状,所述电热线5一侧设置电源接头6,所述电源接头6与电热线5电性连接,所述酚醛泡沫板3内设置有多个圆孔7,所述圆孔7呈等距分布,所述底板1一侧设置有锚钉8,所述锚钉8末端设置有金属头9,所述金属头9呈半球体设置,所述金属头9与锚钉8一体成型,所述大理石板4左侧呈倾角设置,所述大理石板4左侧设置有密封板10,所述密封板10分别与底板1、活性炭层2、酚醛泡沫板3和大理石板4胶合连接。
所述底板1由碳纤维预浸布制成。
一种窗户保温台板的底板的制造方法,包括以下步骤:
1)将碳纤维预浸布按90°相互交错叠加覆盖在L型的模具上,保持碳纤维预浸布叠加厚度为8mm;
2)将步骤1)中的碳纤维预浸布放入到加热箱中,保持温度为200℃恒温加热60分钟,得到碳纤维板;
3)将步骤2)所得碳纤维板自然冷却,然后进行镀镍工序,使得碳纤维板表面覆盖厚度为0.8mm厚的镀镍层,即可。
本发明的有益效果为:设置的活性炭层和酚醛泡沫板使得保温效果好;设置的电热线具有加热功能;设置的底板剖面呈L型,底板一侧设置有锚钉保持安装方便;设置的底板采用碳纤维预浸布制成保持结构强度高,重量轻,采用镀镍工艺,保持结构耐磨耐腐蚀。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何不经过创造性劳动想到的变化或替换,都应涵盖在本发明的保护范围之内。
Claims (1)
1.一种窗户保温台板的底板的制造方法,其特征在于:包括以下步骤:
1)将碳纤维预浸布按60-90°相互交错叠加覆盖在L型的模具上,保持碳纤维预浸布叠加厚度为5-8mm;
2)将步骤1)中的碳纤维预浸布放入到加热箱中,保持温度为150-200℃恒温加热30-60分钟,得到碳纤维板;
3)将步骤2)所得碳纤维板自然冷却,然后进行镀镍工序,使得碳纤维板表面覆盖厚度为0.6-0.8mm厚的镀镍层,即可。
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