CN106531494A - 一种开关按键亚克力材料板 - Google Patents
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Abstract
本发明公开了一种开关按键亚克力材料板,包括面板和按键板,按键板镶嵌在面板上,面板由亚克力材料制成,按键板上设有按键图标和反光条,反光条平行设置在按键图标上下端,按键图标和反光条表面均喷涂有夜光材料,本发明结构原理简单,采用在按键图标和反光条上喷涂夜光材料,夜光材料能够吸收光,夜晚时,按键图标和反光条能够自然发光,便于使用者能够立即找到按键,解决了现有技术中在面板内内嵌LED灯照明的弊端,极大的节省了电能。
Description
技术领域
本发明涉及开关按键板技术领域,具体为一种开关按键亚克力材料板。
背景技术
现有的开关按键板表面只具有一条夜光条,虽然在夜晚能够起到指示作用,但是长期使用后,其夜光效果会减弱;另外,还有一种在面板内镶嵌LED照明来照明指示,虽然能起到很好的指示作用,但是其耗电,不具备节能功效;而且现有的开关按键板功能单一,家庭使用时,无法满足多样性的需求。
发明内容
本发明的目的在于提供一种开关按键亚克力材料板,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种开关按键亚克力材料板, 包括面板和按键板,所述按键板镶嵌在面板上,所述面板由亚克力材料制成,所述按键板上设有按键图标,所述按键图标表面喷涂有夜光材料。
优选的,还包括反光条,所述反光条平行设置在按键图标上下端,所述反光条表面喷涂有夜光材料。
优选的,所述夜光材料组份按重量份数包括线性高密度聚乙烯15-25份、荧光粉8-15份、四氧化三铁10-15份、石墨烯3-8份、硝酸锶3-6份、气相纳米二氧化硅8-15份、银离子抗菌剂4-10份、钛酸酯偶联剂3-6份、苯乙烯抗冲击改性剂5-12份、抗氧剂1-4份以及氯菊酯1-3份。
优选的,所述荧光粉由30%氟化钙、30%硫化锌、40%硫化钙组成。
优选的,所述夜光材料的制备方法包括以下步骤:
A、将线性高密度聚乙烯、荧光粉、四氧化三铁混合加入反应釜中在常温下搅拌,搅拌速率为1000-1500转/分,搅拌时间为15min-20min,得到混合物A;
B、在混合物A中依次加入石墨烯、硝酸锶、气相纳米二氧化硅、银离子抗菌剂、钛酸酯偶联剂、苯乙烯抗冲击改性剂,充分混合后,将反应釜升温至65℃-75℃,升温过程中不断搅拌,之后恒温10min后加入氯菊酯,搅拌至常温后静置,得到混合物B;
C、最后在混合物B中加入抗氧剂,静置4h,即得到夜光材料。
与现有技术相比,本发明的有益效果是:
(1)本发明结构原理简单,采用在按键图标和反光条上喷涂夜光材料,夜光材料能够吸收光,夜晚时,按键图标和反光条能够自然发光,便于使用者能够立即找到按键,解决了现有技术中在面板内内嵌LED灯照明的弊端,极大的节省了电能。
(2)本发明中的夜光材料制备方法简单,制备过程环保无污染,制得的夜光材料还具有防蚊、抗菌功效,适合于喷涂在家庭开关表面。
附图说明
图1为本发明的主视图;
图中:1、面板;2、按键板;3、按键图标。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,本发明提供一种技术方案:一种开关按键亚克力材料板, 包括面板1和按键板2,按键板2镶嵌在面板1上,面板1由亚克力材料制成,按键板2上设有按键图标3和反光条,反光条平行设置在按键图标3上下端,按键图标3和反光条表面均喷涂有夜光材料;夜光材料组份按重量份数包括线性高密度聚乙烯15-25份、荧光粉8-15份、四氧化三铁10-15份、石墨烯3-8份、硝酸锶3-6份、气相纳米二氧化硅8-15份、银离子抗菌剂4-10份、钛酸酯偶联剂3-6份、苯乙烯抗冲击改性剂5-12份、抗氧剂1-4份以及氯菊酯1-3份。
实施例一:
夜光材料组份按重量份数包括线性高密度聚乙烯15份、荧光粉8份、四氧化三铁10份、石墨烯3份、硝酸锶3份、气相纳米二氧化硅8份、银离子抗菌剂4份、钛酸酯偶联剂3份、苯乙烯抗冲击改性剂5份、抗氧剂1份以及氯菊酯1份。
本实施例中,荧光粉由30%氟化钙、30%硫化锌、40%硫化钙组成。
本实施例的夜光材料的制备方法包括以下步骤:
A、将线性高密度聚乙烯、荧光粉、四氧化三铁混合加入反应釜中在常温下搅拌,搅拌速率为1000转/分,搅拌时间为15min,得到混合物A;
B、在混合物A中依次加入石墨烯、硝酸锶、气相纳米二氧化硅、银离子抗菌剂、钛酸酯偶联剂、苯乙烯抗冲击改性剂,充分混合后,将反应釜升温至65℃,升温过程中不断搅拌,之后恒温10min后加入氯菊酯,搅拌至常温后静置,得到混合物B;
C、最后在混合物B中加入抗氧剂,静置4h,即得到夜光材料。
实施例二:
夜光材料组份按重量份数包括线性高密度聚乙烯25份、荧光粉15份、四氧化三铁15份、石墨烯8份、硝酸锶6份、气相纳米二氧化硅15份、银离子抗菌剂10份、钛酸酯偶联剂6份、苯乙烯抗冲击改性剂12份、抗氧剂4份以及氯菊酯3份。
本实施例中,荧光粉由30%氟化钙、30%硫化锌、40%硫化钙组成。
本实施例的夜光材料的制备方法包括以下步骤:
A、将线性高密度聚乙烯、荧光粉、四氧化三铁混合加入反应釜中在常温下搅拌,搅拌速率为1500转/分,搅拌时间为20min,得到混合物A;
B、在混合物A中依次加入石墨烯、硝酸锶、气相纳米二氧化硅、银离子抗菌剂、钛酸酯偶联剂、苯乙烯抗冲击改性剂,充分混合后,将反应釜升温至75℃,升温过程中不断搅拌,之后恒温10min后加入氯菊酯,搅拌至常温后静置,得到混合物B;
C、最后在混合物B中加入抗氧剂,静置4h,即得到夜光材料。
实施例三:
夜光材料组份按重量份数包括线性高密度聚乙烯20份、荧光粉12份、四氧化三铁12份、石墨烯5份、硝酸锶5份、气相纳米二氧化硅12份、银离子抗菌剂7份、钛酸酯偶联剂5份、苯乙烯抗冲击改性剂8份、抗氧剂3份以及氯菊酯2份。
本实施例中,荧光粉由30%氟化钙、30%硫化锌、40%硫化钙组成。
本实施例的夜光材料的制备方法包括以下步骤:
A、将线性高密度聚乙烯、荧光粉、四氧化三铁混合加入反应釜中在常温下搅拌,搅拌速率为1250转/分,搅拌时间为17min,得到混合物A;
B、在混合物A中依次加入石墨烯、硝酸锶、气相纳米二氧化硅、银离子抗菌剂、钛酸酯偶联剂、苯乙烯抗冲击改性剂,充分混合后,将反应釜升温至70℃,升温过程中不断搅拌,之后恒温10min后加入氯菊酯,搅拌至常温后静置,得到混合物B;
C、最后在混合物B中加入抗氧剂,静置4h,即得到夜光材料。
本发明中的夜光材料制备方法简单,制备过程环保无污染,制得的夜光材料还具有防蚊、抗菌功效,适合于喷涂在家庭开关表面。
本发明结构原理简单,采用在按键图标和反光条上喷涂夜光材料,夜光材料能够吸收光,夜晚时,按键图标和反光条能够自然发光,便于使用者能够立即找到按键,解决了现有技术中在面板内内嵌LED灯照明的弊端,极大的节省了电能。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。
Claims (5)
1.一种开关按键亚克力材料板, 包括面板(1)和按键板(2),其特征在于:所述按键板(2)镶嵌在面板(1)上,所述面板(1)由亚克力材料制成,所述按键板(2)上设有按键图标(3),所述按键图标(3)表面喷涂有夜光材料。
2.根据权利要求1所述的一种开关按键亚克力材料板,其特征在于:还包括反光条,所述反光条平行设置在按键图标(3)上下端,所述反光条表面喷涂有夜光材料。
3.根据权利要求1所述的一种开关按键亚克力材料板,其特征在于:所述夜光材料组份按重量份数包括线性高密度聚乙烯15-25份、荧光粉8-15份、四氧化三铁10-15份、石墨烯3-8份、硝酸锶3-6份、气相纳米二氧化硅8-15份、银离子抗菌剂4-10份、钛酸酯偶联剂3-6份、苯乙烯抗冲击改性剂5-12份、抗氧剂1-4份以及氯菊酯1-3份。
4.根据权利要求3所述的一种开关按键亚克力材料板,其特征在于:所述荧光粉由30%氟化钙、30%硫化锌、40%硫化钙组成。
5.根据权利要求1所述的一种开关按键亚克力材料板,其特征在于:所述夜光材料的制备方法包括以下步骤:
A、将线性高密度聚乙烯、荧光粉、四氧化三铁混合加入反应釜中在常温下搅拌,搅拌速率为1000-1500转/分,搅拌时间为15min-20min,得到混合物A;
B、在混合物A中依次加入石墨烯、硝酸锶、气相纳米二氧化硅、银离子抗菌剂、钛酸酯偶联剂、苯乙烯抗冲击改性剂,充分混合后,将反应釜升温至65℃-75℃,升温过程中不断搅拌,之后恒温10min后加入氯菊酯,搅拌至常温后静置,得到混合物B;
C、最后在混合物B中加入抗氧剂,静置4h,即得到夜光材料。
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