CN107327793A - 一种便携式高中生用台灯 - Google Patents
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Abstract
本发明公开了一种便携式高中生用台灯,包括壳体,所述壳体上表面的左侧设有圆形的放置槽,放置槽的内部底面和伸缩杆的底端固定连接,伸缩杆的上端固定有竖杆,竖杆的侧面活动套接有套环,套环的侧面通过连接件与固定板的左侧面中间位置固定连接,固定板的上表面设有太阳能发电板,固定板的下表面设有LED发光板,壳体的上表面右侧固定有旋钮开关,壳体的内部固定有蓄电池和逆变器,固定板可以收纳在卡槽中,使得本便携式高中生用台灯易于携带;用户将转动块旋转九十度,使得本便携式高中生用台灯放置牢固;太阳能发电板将太阳能转换成电能,使得本便携式高中生用台灯节能环保。
Description
技术领域
本发明涉及台灯技术领域,具体为一种便携式高中生用台灯。
背景技术
台灯的工作原理主要是把灯光集中在一小块区域内,使光线集中起来,提高照明强度,便于工作和学习,现有的台灯携带不方便和不节能环保的问题。
发明内容
本发明要解决的技术问题是克服现有的缺陷,提供一种便携式高中生用台灯,固定板可以收纳在卡槽中,使得本便携式高中生用台灯易于携带;用户将转动块旋转九十度,使得本便携式高中生用台灯放置牢固;太阳能发电板将太阳能转换成电能,使得本便携式高中生用台灯节能环保,可以有效解决背景技术中的问题。
为实现上述目的,本发明提供如下技术方案:一种便携式高中生用台灯,包括壳体,所述壳体上表面的左侧设有圆形的放置槽,放置槽的内部底面和伸缩杆的底端固定连接,伸缩杆的上端固定有竖杆,竖杆的侧面活动套接有套环,套环的侧面通过连接件与固定板的左侧面中间位置固定连接,固定板的上表面设有太阳能发电板,固定板的下表面设有LED发光板,壳体的上表面右侧固定有旋钮开关,壳体的内部固定有蓄电池和逆变器,太阳能发电板的输出端和逆变器的输入端电连接,逆变器的输出端和蓄电池的输入端电连接,蓄电池的输出端和旋钮开关的输入端电连接,旋钮开关的输出端和LED发光板的输入端电连接。在所述壳体(4)外设有防腐涂层。
作为本发明的一种优选技术方案,与连接件和固定板对应壳体的上表面开设有卡槽。
作为本发明的一种优选技术方案,所述壳体的下表面开设有转动槽,转动槽的顶面中间位置固定有固定螺栓,固定螺栓的侧面活动套接有转动块。
作为本发明的一种优选技术方案,所述转动块的下表面前后两侧对称固定有两个橡胶防滑垫。
作为本发明的一种优选技术方案,所述壳体前侧面左右两端的安装孔中均固定有永磁铁。
作为本发明的一种优选技术方案,所述防腐涂层按重量份由以下组分组成:纳米改性聚脲38.5份,纳米二氧化钛7.4份,丙烯酸锌树脂30.5份,丙二醇甲醚7.7份,羟乙基纤维7.4份,N-羟甲基丙烯酰胺3.2份,苯酚磺酸3.5份,滑石粉3.1份,酚醛胺7.6,脂肪酸聚乙二醇酯0.55份,破泡聚硅氧烷溶液0.58份,端基改性有机硅0.32份,乙二醇丁醚11.9份,石墨烯3.3份,氧化铝7.9份;
制备方法:
A将苯酚磺酸,滑石粉,酚醛胺,乙二醇丁醚,石墨烯,氧化铝放入搅拌罐中,在50-80℃的温度400~800r/min的转速下搅拌均匀;
B将纳米改性聚脲,纳米二氧化钛,丙烯酸锌树脂,丙二醇甲醚,羟乙基纤维,N-羟甲基丙烯酰胺加入到步骤A中,并在90-110℃的水浴中边搅拌边反应15-45min;
C将脂肪酸聚乙二醇酯,破泡聚硅氧烷溶液,端基改性有机硅和其它组分加入到步骤B中,在200~400r/min转速条件下,搅拌10~15分钟;经过滤即可。
与现有技术相比,本发明的有益效果是:本便携式高中生用台灯,固定板可以收纳在卡槽中,使得本便携式高中生用台灯易于携带;用户将转动块旋转九十度,使得本便携式高中生用台灯放置牢固;太阳能发电板将太阳能转换成电能,使得本便携式高中生用台灯节能环保。
附图说明
图1为本发明主视结构示意图;
图2为本发明仰视结构示意图;
图3为本发明A处结构放大示意图。
图中:1卡槽、2蓄电池、3伸缩杆、4壳体、5转动槽、6转动块、7固定螺栓、8橡胶防滑垫、9永磁铁、10逆变器、11套环、12竖杆、13橡胶环、14连接件、15LED发光板、16固定板、17太阳能发电板、18旋钮开关。
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1-3,本发明提供一种技术方案:一种便携式高中生用台灯,包括壳体4,壳体4前侧面左右两端的安装孔中均固定有永磁铁9,本便携式高中生用台灯可以通过永磁铁9固定在金属床上,壳体4上表面的左侧设有圆形的放置槽,放置槽的内部底面和伸缩杆3的底端固定连接,伸缩杆3的上端固定有竖杆12,竖杆12的上表面与橡胶环13的侧面固定连接,竖杆12的侧面活动套接有套环11,套环11的侧面通过连接件14与固定板16的左侧面中间位置固定连接,固定板16的上表面设有太阳能发电板17,固定板16的下表面设有LED发光板15,与连接件14和固定板16对应壳体4的上表面开设有卡槽1,固定板16可以收纳在卡槽1中,使得本便携式高中生用台灯易于携带,壳体4的上表面右侧固定有旋钮开关18,壳体4的内部固定有蓄电池2和逆变器10,壳体4的下表面开设有转动槽5,转动槽5的顶面中间位置固定有固定螺栓7,固定螺栓7的侧面活动套接有转动块6,用户将转动块6旋转九十度,使得本便携式高中生用台灯放置牢固,转动块6的下表面前后两侧对称固定有两个橡胶防滑垫8,橡胶防滑垫8方便用户转动转动块6,太阳能发电板17的输出端和逆变器10的输入端电连接,逆变器10的输出端和蓄电池2的输入端电连接,太阳能发电板17将太阳能转换成电能,使得本便携式高中生用台灯节能环保,蓄电池2的输出端和旋钮开关18的输入端电连接,旋钮开关18的输出端和LED发光板15的输入端电连接。
在使用时:用户通过橡胶环13将固定板16拉出,用户根据需求调节固定板16的高度与角度;用户将转动块6旋转九十度,使得本便携式高中生用台灯放置牢固,且本便携式高中生用台灯可以通过永磁铁9固定在金属床上;用户通过旋钮开关18调节LED发光板15的放光强度,用户将本便携式高中生用台灯放置到阳光下,太阳能发电板17将太阳能转换成电能经逆变器10传输到蓄电池2中存储。
在所述壳体4外设有防腐涂层。所述防腐涂层按重量份由以下组分组成:纳米改性聚脲38.5份,纳米二氧化钛7.4份,丙烯酸锌树脂30.5份,丙二醇甲醚7.7份,羟乙基纤维7.4份,N-羟甲基丙烯酰胺3.2份,苯酚磺酸3.5份,滑石粉3.1份,酚醛胺7.6,脂肪酸聚乙二醇酯0.55份,破泡聚硅氧烷溶液0.58份,端基改性有机硅0.32份,乙二醇丁醚11.9份,石墨烯3.3份,氧化铝7.9份;
制备方法:
A将苯酚磺酸,滑石粉,酚醛胺,乙二醇丁醚,石墨烯,氧化铝放入搅拌罐中,在50-80℃的温度400~800r/min的转速下搅拌均匀;
B将纳米改性聚脲,纳米二氧化钛,丙烯酸锌树脂,丙二醇甲醚,羟乙基纤维,N-羟甲基丙烯酰胺加入到步骤A中,并在90-110℃的水浴中边搅拌边反应15-45min;
C将脂肪酸聚乙二醇酯,破泡聚硅氧烷溶液,端基改性有机硅和其它组分加入到步骤B中,在200~400r/min转速条件下,搅拌10~15分钟;经过滤即可。
本发明,固定板16可以收纳在卡槽1中,使得本便携式高中生用台灯易于携带;用户将转动块6旋转九十度,使得本便携式高中生用台灯放置牢固;太阳能发电板17将太阳能转换成电能,使得本便携式高中生用台灯节能环保。
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 (7)
1.一种便携式高中生用台灯,包括壳体(4),其特征在于:所述壳体(4)上表面的左侧设有圆形的放置槽,放置槽的内部底面和伸缩杆(3)的底端固定连接,伸缩杆(3)的上端固定有竖杆(12),竖杆(12)的侧面活动套接有套环(11),套环(11)的侧面通过连接件(14)与固定板(16)的左侧面中间位置固定连接,固定板(16)的上表面设有太阳能发电板(17),固定板(16)的下表面设有LED发光板(15),壳体(4)的上表面右侧固定有旋钮开关(18),壳体(4)的内部固定有蓄电池(2)和逆变器(10),太阳能发电板(17)的输出端和逆变器(10)的输入端电连接,逆变器(10)的输出端和蓄电池(2)的输入端电连接,蓄电池(2)的输出端和旋钮开关(18)的输入端电连接,旋钮开关(18)的输出端和LED发光板(15)的输入端电连接,在所述壳体(4)外设有防腐涂层。
2.根据权利要求1所述的一种便携式高中生用台灯,其特征在于:与连接件(14)和固定板(16)对应壳体(4)的上表面开设有卡槽(1)。
3.根据权利要求1所述的一种便携式高中生用台灯,其特征在于:所述壳体(4)的下表面开设有转动槽(5),转动槽(5)的顶面中间位置固定有固定螺栓(7),固定螺栓(7)的侧面活动套接有转动块(6)。
4.根据权利要求3所述的一种便携式高中生用台灯,其特征在于:所述转动块(6)的下表面前后两侧对称固定有两个橡胶防滑垫(8)。
5.根据权利要求1所述的一种便携式高中生用台灯,其特征在于:所述竖杆(12)的上表面与橡胶环(13)的侧面固定连接。
6.根据权利要求1所述的一种便携式高中生用台灯,其特征在于:所述壳体(4)前侧面左右两端的安装孔中均固定有永磁铁(9)。
7.根据权利要求1所述的一种便携式高中生用台灯,其特征在于:所述防腐涂层按重量份由以下组分组成:纳米改性聚脲38.5份,纳米二氧化钛7.4份,丙烯酸锌树脂30.5份,丙二醇甲醚7.7份,羟乙基纤维7.4份,N-羟甲基丙烯酰胺3.2份,苯酚磺酸3.5份,滑石粉3.1份,酚醛胺7.6,脂肪酸聚乙二醇酯0.55份,破泡聚硅氧烷溶液0.58份,端基改性有机硅0.32份,乙二醇丁醚11.9份,石墨烯3.3份,氧化铝7.9份;
制备方法:
A将苯酚磺酸,滑石粉,酚醛胺,乙二醇丁醚,石墨烯,氧化铝放入搅拌罐中,在50-80℃的温度400~800r/min的转速下搅拌均匀;
B将纳米改性聚脲,纳米二氧化钛,丙烯酸锌树脂,丙二醇甲醚,羟乙基纤维,N-羟甲基丙烯酰胺加入到步骤A中,并在90-110℃的水浴中边搅拌边反应15-45min;
C将脂肪酸聚乙二醇酯,破泡聚硅氧烷溶液,端基改性有机硅和其它组分加入到步骤B中,在200~400r/min转速条件下,搅拌10~15分钟;经过滤即可。
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