CN117344908A - 一种挂片吊顶结构、系统及控制方法 - Google Patents
一种挂片吊顶结构、系统及控制方法 Download PDFInfo
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Abstract
本发明提供了一种挂片吊顶结构、系统及控制方法,其中挂片吊顶结构包括框架和挂盒组件,所述框架包括若干个纵向龙骨和若干个横向龙骨,若干个纵向龙骨间隔设置,任意相邻的两个所述纵向龙骨之间连接有所述若干个所述横向龙骨,所述横向龙骨上设置有所述挂盒组件,所述挂盒组件包括挂盒和动力件,所述动力件带动所述挂盒绕着所述横向龙骨转动。改善空间的照明、通风和声学的物理条件,同时提升空间美观度。
Description
技术领域
本发明涉及吊顶技术领域,尤其涉及一种挂片吊顶结构、系统及控制方法。
背景技术
吊顶是指房屋室内天花板的顶部装修,吊顶除了顶部装饰作用以外,通常还被赋予保温、隔热、噪声等功能,而且还通常作为电气、防火等工程的隐蔽层。
现有技术中,为了增加整体吊顶的立体装饰效果,往往在普通石膏天花板的基础上,加设悬吊的装饰盒吊顶。而现有的装饰盒吊顶在使用功能和造型上较为单一,而随着现代公共空间的发展,对整体室内空间提出了更高的要求,特别是对顶面造型的要求也更高了,现有的装饰盒吊顶无法满足设计效果需求。
发明内容
针对现有技术的不足,本发明提供了一种挂片吊顶结构、系统及控制方法,改善空间的照明、通风和声学的物理条件,同时提升空间美观度。
依据本发明的一个目的,本发明提供了一种挂片吊顶结构,包括框架和挂盒组件,所述框架包括若干个纵向龙骨和若干个横向龙骨,若干个纵向龙骨间隔设置,任意相邻的两个所述纵向龙骨之间连接有所述若干个所述横向龙骨,所述横向龙骨上设置有所述挂盒组件,所述挂盒组件包括挂盒和动力件,所述动力件带动所述挂盒绕着所述横向龙骨转动。
作为优选的实施例,所述纵向龙骨呈弧形,连接在同一所述纵向龙骨上的所述横向龙骨,沿着所述纵向龙骨呈弧形间隔排列。
作为优选的实施例,部分所述挂盒组件的挂盒为透光的挂盒,所述透光的挂盒内部设置有LED灯。
作为优选的实施例,还包括:
吸音组件,所述吸音组件设置在所述框架的上方。
作为优选的实施例,还包括:
空调,所述空调设置在所述框架的上方。
作为优选的实施例,所述挂盒的横截面呈梯形、三角形或扇形。
依据本发明的另一个目的,本发明提供了一种挂片吊顶系统,包括上述实施例的挂片吊顶结构,所述挂片吊顶系统还包括:
摄像头;
控制器,所述控制器分别与所述摄像头,以及所述挂盒组件的动力件信号连接。
作为优选的实施例,所述控制器设置在所述挂盒组件的挂盒内。
依据本发明的另一个目的,本发明提供了一种挂片吊顶的控制方法,包括以下步骤:
通过摄像头采集图像,并确定人流密集区;
根据所述人流密集区,向控制器发送朝向人流密集区的转动信号::
在所述控制器接收到所述朝向人流密集区的转动信号后,通过动力件调节挂盒组件的挂盒角度。
与现有技术相比,本技术方案具有以下优点:
挂盒组件能够转动,结合空调,吸音组件以及挂盒组件能够发光,改善空间的照明、通风和声学的物理条件,节约能源,每列的所述挂盒组件呈弧形排列,可对每个所述挂盒组件进行单独控制,实现顶面丰富的三维变化,进一步提升空间美观度,改善呆板的视觉效果。
以下结合附图及实施例进一步说明本发明。
附图说明
图1为本发明所述挂片吊顶结构的结构示意图;
图2为本发明所述挂片吊顶结构的局部放大示意图。
图中:100框架、110纵向龙骨、120横向龙骨、200挂盒组件、210挂盒、211挂盒套管、212挂盒本体、300吸音组件、310玻纤板、320固定龙骨、400竖向龙骨。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
第一实施例
如图1和图2所示,所述挂片吊顶结构,包括框架100和挂盒组件200,所述框架100包括若干个纵向龙骨110和若干个横向龙骨120,若干个纵向龙骨110间隔设置,任意相邻的两个所述纵向龙骨110之间连接有所述若干个所述横向龙骨120,所述横向龙骨120上设置有所述挂盒组件200,所述挂盒组件200包括挂盒210和动力件,所述动力件带动所述挂盒210绕着所述横向龙骨120转动。
所述框架100包括纵向龙骨110和横向龙骨120,为所述挂盒组件200提供支撑固定。所述挂盒组件200的挂盒210固定在所述横向龙骨120上,并在所述动力件的驱动下,能够绕着所述横向龙骨120发生转动,避免造型和功能单一的现象,满足设计效果需求。
参考图1和图2,所述纵向龙骨110呈弧形,连接在同一所述纵向龙骨110上的所述横向龙骨120,沿着所述纵向龙骨110呈弧形间隔排列。
位于相邻的两个所述纵向龙骨110之间的所述横向龙骨120为一列,每列的所述横向龙骨120沿着其连接所述纵向龙骨110间隔排列,并随着其连接的弧形纵向龙骨110而呈弧形间隔排列,其中每个所述横向龙骨120分别连接一个所述挂盒210,这样使得每列所述横向龙骨120连接的所述挂盒210,也呈弧形间隔排列,即所述挂盒210呈流线型排列,并可实现造型在立体空间上的起伏变化,进一步提升美观度。
所述横向龙骨120可呈柱状结构,所述挂盒210包括相接的挂盒套管211和挂盒本体212,所述挂盒套管211可套设在所述横向龙骨120的外部,这样所述挂盒210能够绕着所述横向龙骨120转动,所述挂盒210的转动角度可为0~90°。
所述动力件可为电机,所述动力件可通过盖板等连接所述挂盒210的顶部,这样所述动力件就能带动所述挂盒210能够绕着所述横向龙骨120转动。所述动力件可从所述横向龙骨120的轴向一侧的端口,隐藏在所述横向龙骨120内部,并在所述动力件的输出端和所述挂盒210的轴向端部之间连接盖板等即可,以使所述动力件和所述挂盒210的传动连接,同时将所述动力件隐藏在所述横向龙骨120内部,使得结构更加紧凑,提升美观度。另外可在所述横向龙骨120的轴向两侧分别设置动力件,即可通过两个所述动力件带动一个所述挂盒210转动,提升转动的平稳性。
参考图2,所述挂盒210的挂盒本体212横截面呈梯形、三角形或扇形等。以所述挂盒本体212横截面呈梯形为例,所述挂盒本体212的宽度以远离所述横向龙骨120的方向逐渐缩小,并且所述挂盒本体212宽度方向两侧可为凸面。
所述挂盒210为金属材质制成的挂盒。并且部分挂盒210的挂盒本体212的表面可设置有深度大约为1.5mm的细纹,以提升美观度。所述细纹的形状可根据设计需要进行调整,并且还可在所述挂盒本体212的表面喷涂浅香槟金色等颜色。
此外,部分所述挂盒组件200的挂盒210为透光的挂盒,所述透光的挂盒210内部设置有LED灯。所述挂盒210的挂盒本体212具有脱光膜,进一步提升照明效果。即所述挂盒组件200可作为灯具,进一步增加使用功能。而所述挂盒组件200能够摆动,即调整LED灯的照射角度,例如朝向人流密集区,改善照明环境。
如图1和图2所示,所述挂片吊顶结构还包括:
竖向龙骨400,所述竖向龙骨400连接于所述框架100的上方,用于将所述框架100固定在所述天花板上。
所述竖向龙骨400可连接所述框架100的纵向龙骨110和/或横向龙骨120,通过角钢或螺栓进行固定。所述竖向龙骨400的数量和安装位置,可根据设计需要进行调整。
所述竖向龙骨400、纵向龙骨110和横向龙骨120可采用金属材质制成,并可在表面做镀锌处理,以进行防锈。
如图1和图2所示,所述挂片吊顶结构还包括:
吸音组件300,所述吸音组件300设置在所述框架100的上方。
所述吸音组件300包括玻纤板310和固定龙骨320,所述固定龙骨320可固定在所述天花板或所述竖向龙骨400上,所述玻纤板310可通过螺栓等固定在所述固定龙骨320的下方,以作吸声,改善空间声学指标。所述玻纤板310的厚度可为25mm,颜色可为深灰色。所述固定龙骨320为烤漆轻型龙骨。所述竖向龙骨400穿设所述玻纤板310,并被所述玻纤板310围绕。
参考图1和图2,所述挂片吊顶结构还包括:
空调,所述空调设置在所述框架100的上方。所述空调可透过所述挂盒组件200之间的空隙,向下方的空间进行吹风。由于所述挂盒组件200能够转动,因此通过调节所述挂盒组件200的转动角度,能够调整空调的吹风方向,例如向人流密集区吹风,提高空调舒适度,改善通风调节。
现有的装饰盒吊顶大多数情况下仅作为装饰表面使用,对于其空间性能益处不多,即功能比较单一,而且缺乏造型高度、挂合本体的变化,整体给人视觉感受比较枯燥,即造型较为单一。而本申请的挂盒组件200能够转动,结合空调,吸音组件300以及挂盒组件200能够发光,改善空间的照明、通风和声学的物理条件,每列的所述挂盒组件200呈弧形排列,可对每个所述挂盒组件200进行单独控制,实现顶面丰富的三维变化,进一步提升空间美观度,改善呆板的视觉效果。
第二实施例
参考图1和图2,一种挂片吊顶系统,包括上述实施例的挂片吊顶结构,所述挂片吊顶系统还包括:
摄像头;
控制器,所述控制器分别与所述摄像头,以及所述挂盒组件200的动力件信号连接。
所述摄像头安装在所述挂片吊顶结构下方的空间内,其数量可为多个,用于拍摄所述挂片吊顶结构下方的空间,判断并确定人流密集区。所述人流密集区指的是该区域人流较为集中。之后通过所述控制器控制所述动力件,以使所述动力件带动所述挂盒210朝向所述人流密集区转动,以使空调的吹风和灯光向所述人流密集区集中,提高该处的空调舒适度和照度。
所述控制器设置在所述挂盒组件200的挂盒210内,每个所述挂盒组件200配备一个控制器,即每个所述挂盒组件200可进行独自控制,实现每片所述挂盒210的角度变化,并且每列所述挂盒组件200呈流线型,即实现造型在立体空间上的起伏变化的控制。
所述摄像头、所述控制器和所述动力件之间可通过无线或电缆等实现信号连接。
第三实施例
参考图1和图2,一种挂片吊顶的控制方法,包括以下步骤:
S100,通过摄像头采集图像,并确定人流密集区;
S200,根据所述人流密集区,向控制器发送朝向人流密集区的转动信号:
S300,在所述控制器接收到所述朝向人流密集区的转动信号后,通过动力件调节挂盒组件200的挂盒210角度。
所述摄像头可为自感应,且适时摄像,即当人流通过,自动开启并对挂片吊顶结构下方的空间进行摄像,确定下方空间的人流密集区。朝向人流密集区的转动信号被控制器接收后,控制器驱动动力件调节挂盒组件200的挂盒210角度,以使空调的吹风和灯光向所述人流密集区集中,提高该处的空调舒适度和照度。
以上所述的实施例仅用于说明本发明的技术思想及特点,其目的在于使本领域内的技术人员能够了解本发明的内容并据以实施,不能仅以本实施例来限定本发明的专利采用范围,即凡依本发明所揭示的精神所作的同等变化或修饰,仍落在本发明的专利范围内。
Claims (8)
1.一种挂片吊顶结构,其特征在于,包括框架(100)和挂盒组件(200),所述框架(100)包括若干个纵向龙骨(110)和若干个横向龙骨(120),若干个纵向龙骨(110)间隔设置,任意相邻的两个所述纵向龙骨(110)之间连接有所述若干个所述横向龙骨(120),所述横向龙骨(120)上设置有所述挂盒组件(200),所述挂盒组件(200)包括挂盒(210)和动力件,所述动力件带动所述挂盒(210)绕着所述横向龙骨(120)转动。
2.如权利要求1所述的挂片吊顶结构,其特征在于,所述纵向龙骨(110)呈弧形,连接在同一所述纵向龙骨(110)上的所述横向龙骨(120),沿着所述纵向龙骨(110)呈弧形间隔排列。
3.如权利要求1所述的挂片吊顶结构,其特征在于,部分所述挂盒组件(200)的挂盒(210)为透光的挂盒,所述透光的挂盒(210)内部设置有LED灯。
4.如权利要求1所述的挂片吊顶结构,其特征在于,还包括:
吸音组件(300),所述吸音组件(300)设置在所述框架(100)的上方。
5.如权利要求1所述的挂片吊顶结构,其特征在于,还包括:
空调,所述空调设置在所述框架(100)的上方。
6.如权利要求1所述的挂片吊顶结构,其特征在于,所述挂盒(210)的横截面呈梯形、三角形或扇形。
7.一种挂片吊顶系统,其特征在于,包括如权利要求1至6任一项所述的挂片吊顶结构,所述挂片吊顶系统还包括:
摄像头;
控制器,所述控制器分别与所述摄像头,以及所述挂盒组件(200)的动力件信号连接。
作为优选的实施例,所述控制器设置在所述挂盒组件(200)的挂盒(210)内。
8.一种挂片吊顶的控制方法,其特征在于,包括以下步骤:
通过摄像头采集图像,并确定人流密集区;
根据所述人流密集区,向控制器发送朝向人流密集区的转动信号::
在所述控制器接收到所述朝向人流密集区的转动信号后,通过动力件调节挂盒组件(200)的挂盒(210)角度。
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CN117248670B (zh) * | 2023-09-20 | 2024-07-02 | 北京城建集团有限责任公司 | 一种带椭圆天窗的大跨度起伏型吊顶结构 |
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CN117248670B (zh) * | 2023-09-20 | 2024-07-02 | 北京城建集团有限责任公司 | 一种带椭圆天窗的大跨度起伏型吊顶结构 |
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