WO2019144368A1 - 一种电子计算机显示器维护系统 - Google Patents

一种电子计算机显示器维护系统 Download PDF

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Publication number
WO2019144368A1
WO2019144368A1 PCT/CN2018/074274 CN2018074274W WO2019144368A1 WO 2019144368 A1 WO2019144368 A1 WO 2019144368A1 CN 2018074274 W CN2018074274 W CN 2018074274W WO 2019144368 A1 WO2019144368 A1 WO 2019144368A1
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Prior art keywords
electronic computer
computer display
cleaning
light
stain
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PCT/CN2018/074274
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English (en)
French (fr)
Inventor
谯渝珍
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成都佰富德科技有限公司
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Priority to PCT/CN2018/074274 priority Critical patent/WO2019144368A1/zh
Publication of WO2019144368A1 publication Critical patent/WO2019144368A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/30Cleaning by methods involving the use of tools by movement of cleaning members over a surface
    • B08B1/32Cleaning by methods involving the use of tools by movement of cleaning members over a surface using rotary cleaning members

Definitions

  • the present invention relates to the field of computer maintenance, and in particular to an electronic computer display maintenance system.
  • the liquid crystal display is a flat ultra-thin display device composed of a certain number of color or black and white pixels placed in front of the light source or the reflecting surface.
  • LCD monitors are low power consumption and are therefore favored by engineers for use in battery-operated electronic devices. Its main principle is to stimulate the liquid crystal molecules to generate dots, lines and faces to match the back lamp.
  • the invention provides an electronic computer display maintenance system, which solves the defects of the existing electronic computer display cleaning, realizes automatic cleaning of the electronic computer display, has high efficiency, good cleaning effect and high intelligence degree. Technical effects.
  • an electronic computer display maintenance system comprising:
  • the maintenance subsystem and the control subsystem include: 2 guide rails, a motor, a gear set, a battery, 2 pulleys, a cleaning rod, and a plurality of cleaning structures; the control subsystem includes: a controller and a detection unit; wherein, 2 The guide rails are horizontally mounted on the upper and lower ends of the electronic computer display, and the motor is fixed on the cleaning rod. The motor is connected to one of the pulleys through the gear set.
  • the upper and lower ends of the cleaning rod are respectively slidably connected with the guide rail through the pulley, and the motor, the battery and the controller are respectively Connecting, the controller is connected to the detecting unit, the detecting unit is configured to detect whether the surface of the electronic computer display needs cleaning; the controller is configured to control the maintenance subsystem to perform maintenance and cleaning on the electronic computer display based on the detection result of the detecting unit; wherein, the plurality of cleaning The structure is evenly distributed on the surface of the cleaning rod.
  • the cleaning structure comprises: a rubber beam composed of a cylinder, a connecting rod, a vacuum chuck, a piston and a plurality of rubber needles; one end of the cylinder is connected with the surface of the cleaning rod, and one end of the connecting rod passes through the other end of the cylinder.
  • the maintenance subsystem is used for cleaning the electronic computer display when the electronic computer display is powered on or off
  • the detecting unit comprises: a light emitting module, a lighting module, a judging module, and the lighting module is used for After the electronic computer display is powered off, the detection light is emitted to the surface of the electronic computer display; the lighting module is configured to receive the detection light reflected back from the electronic computer display, and the determining module is configured to determine the electronic computer display based on the difference between the detected light emitted and the detected light returned. Whether the surface is stained and the stain is positioned.
  • the principle of the present invention is: installing a maintenance subsystem and a control subsystem on an electronic computer display, and when the user turns on or off, that is, when the electronic computer display is powered on or powered off, the electronic computer display is cleaned and utilized.
  • the user does not need to use the display to clean the display, to avoid interference with the user's use of the display, or to clean the display when it is detected that there is a stain on the display, specifically: using the light-emitting module to emit the probe light to the surface of the computer display;
  • the module receives the probe light reflected back by the display, and uses the judging module to determine whether there is any stain on the surface of the computer display based on the difference between the detected probe light and the detected probe light, and locates the stain, and if there is stain, it is cleaned, that is, It automatically judges whether cleaning is required, and positions the cleaning part, and then controls the rotation of the motor to clean it.
  • the application controls the maintenance subsystem to perform cleaning by using the control subsystem, controls the rotation of the motor by the controller, thereby controlling the rotation and rotation position of the cleaning rod, and then cleaning by using the cleaning structure on the cleaning rod, wherein, cleaning
  • the structure comprises: a rubber beam composed of a cylinder, a connecting rod, a vacuum chuck, a piston and a plurality of rubber needles; one end of the cylinder is connected with the surface of the cleaning rod, and one end of the connecting rod passes through the other end of the cylinder and is connected with the piston in the cylinder.
  • the other end of the connecting rod is connected with the upper surface of the connecting end of the vacuum chuck, and one end of the rubber bundle extends through the suction end of the vacuum chuck to the lower surface of the vacuum suction cup and the lower end of the connecting end of the vacuum chuck, and the other end of the rubber bundle extends to the suction of the vacuum chuck.
  • the inner surface of the vacuum chuck is provided with an adhesive layer;
  • the purpose of designing the cleaning structure in the above manner is as follows: a plurality of rubber needles can be used to contact the surface of the display, and a plurality of rubber needles can be inserted into the stain, since the plurality of rubber needles have Elastic, bending while inserting, while the cleaning rod is rotating, multiple rubber needles are naturally When it is bent to the natural state, the stain is inserted into the stain, and when it is restored to the natural state, the bottom of the plurality of rubber needles is ejected, and the stain is decomposed and ejected from the surface of the display, and the pop-up is wrapped by the suction end of the vacuum chuck, and The suction end of the vacuum chuck is also from the natural state to the compressed state to the natural state.
  • the judging module determines whether the surface of the computer display is stained based on the difference between the emitted probe light and the detected probe light, which specifically includes:
  • the initial detection light is emitted to the surface of the electronic computer display after the electronic computer display is powered off by using the light-emitting module; and the initial detection light reflected by the electronic computer display is received by the lighting module, and the reflected light is reflected back.
  • Initial direction and initial illumination intensity
  • the real-time detection light When detecting, the real-time detection light is emitted to the surface of the electronic computer display after the electronic computer display is powered off; and the real-time detection light reflected by the electronic computer display is received by the lighting module, and the real-time direction reflected by the reflected light is stored and stored.
  • Real-time light intensity When detecting, the real-time detection light is emitted to the surface of the electronic computer display after the electronic computer display is powered off; and the real-time detection light reflected by the electronic computer display is received by the lighting module, and the real-time direction reflected by the reflected light is stored and stored.
  • the position of the stain is calculated by using the difference information of the initial direction reflected back by the reflected light and the real-time direction reflected back by the reflected light, and the type of the stain is determined by using the difference information of the initial illumination reflected by the reflected light and the real-time illumination reflected back by the reflected light.
  • the position of the stain is calculated by using the difference information of the initial direction reflected by the reflected light and the real-time direction reflected by the reflected light, and the difference information of the real-time direction includes the difference information of the incident angle and the reflection angle, which can be calculated by using optical principles.
  • the point of reflection or refraction the point is the exact position of the stain. Due to the different types of stains of different materials, that is, the refractive index is different, the collected refractive index is matched with the stored refractive index to match
  • the type of stain can control the strength of the stain through the type of stain, such as stubborn stains, it can strengthen the cleaning strength and ensure the cleaning effect.
  • controller is also used to control the maintenance subsystem cleaning position and cleaning strength based on the location and type of stain.
  • the maintenance subsystem further includes a flushing module and a collecting module, wherein the flushing module is used for washing and washing the electronic computer display, and the collecting module is configured to collect the flushed waste liquid.
  • the cleaning effect can be ensured by the cooperation of the flushing module and the collecting module, and the waste liquid can be collected to avoid affecting the environment.
  • the surface of the cleaning rod to the end of the rubber bundle and the distance is greater than the distance from the surface of the cleaning rod to the surface of the computer display.
  • one end of the rail extends to the computer display, and the end is provided with a cleaning rod storage area, and the cleaning rod is stored in the cleaning rod storage area when the subsystem is maintained.
  • the rubber bundle is composed of a plurality of rubber needles evenly arranged in parallel.
  • 1 is a schematic diagram of the composition of an electronic computer display maintenance system in the present application.
  • FIG. 2 is a schematic diagram of the composition of a maintenance subsystem in the present application.
  • Figure 3 is a schematic view showing the structure of the cleaning structure in the present application.
  • the present application provides an electronic computer display maintenance system, where the system includes:
  • the maintenance subsystem and the control subsystem include: 2 guide rails 2, a motor 3, a gear set, a battery 4, 2 pulleys 5, a cleaning rod 6, and a plurality of cleaning structures 7;
  • the control subsystem includes: a controller 8
  • the detecting unit 9 wherein the two guide rails are horizontally mounted on the upper end and the lower end of the electronic computer display 1, respectively, the motor is fixed on the cleaning rod, and the motor is connected to one of the pulleys through the gear set, and the upper and lower ends of the cleaning rod are respectively slid by the pulley and the guide rail
  • the connection is connected to the battery and the controller, the controller is connected to the detecting unit, the detecting unit is configured to detect whether the surface of the electronic computer display needs cleaning; the controller is configured to control the maintenance subsystem to the electronic computer display based on the detection result of the detecting unit Performing maintenance cleaning; wherein a plurality of cleaning structures are evenly distributed on the surface of the cleaning rod, and the cleaning structure comprises: a cylinder 10, a connecting
  • the inner surface of the vacuum suction cup is provided with an adhesive layer; wherein the maintenance subsystem is used for cleaning the electronic computer display when the electronic computer display is powered on or off, and the detecting unit comprises: a light emitting module, a lighting module, a judging module, and a light emitting The module is configured to emit the probe light to the surface of the computer display after the electronic computer display is powered off; the light collection module is configured to receive the probe light reflected back from the electronic computer display, and the determining module is configured to use the difference between the detected light emitted and the detected light returned. Determine whether there is any stain on the surface of the computer monitor and locate the stain. If there is stain, the result of the test is that the surface of the computer monitor needs to be cleaned.
  • the principle of the present invention is: installing a maintenance subsystem and a control subsystem on an electronic computer display, and when the user turns on or off, that is, when the electronic computer display is powered on or powered off, the electronic computer display is cleaned and utilized.
  • the user does not need to use the display to clean the display, to avoid interference with the user's use of the display, or to clean the display when it is detected that there is a stain on the display, specifically: using the light-emitting module to emit the probe light to the surface of the computer display;
  • the module receives the probe light reflected back by the display, and uses the judging module to determine whether there is any stain on the surface of the computer display based on the difference between the detected probe light and the detected probe light, and locates the stain, and if there is stain, it is cleaned, that is, It automatically judges whether cleaning is required, and positions the cleaning part, and then controls the rotation of the motor to clean it.
  • the application controls the maintenance subsystem to perform cleaning by using the control subsystem, controls the rotation of the motor by the controller, thereby controlling the rotation and rotation position of the cleaning rod, and then cleaning by using the cleaning structure on the cleaning rod, wherein, cleaning
  • the structure comprises: a rubber beam composed of a cylinder, a connecting rod, a vacuum chuck, a piston and a plurality of rubber needles; one end of the cylinder is connected with the surface of the cleaning rod, and one end of the connecting rod passes through the other end of the cylinder and is connected with the piston in the cylinder.
  • the other end of the connecting rod is connected with the upper surface of the connecting end of the vacuum chuck, and one end of the rubber bundle extends through the suction end of the vacuum chuck to the lower surface of the vacuum suction cup and the lower end of the connecting end of the vacuum chuck, and the other end of the rubber bundle extends to the suction of the vacuum chuck.
  • the inner surface of the vacuum chuck is provided with an adhesive layer;
  • the purpose of designing the cleaning structure in the above manner is as follows: a plurality of rubber needles can be used to contact the surface of the display, and a plurality of rubber needles can be inserted into the stain, since the plurality of rubber needles have Elastic, bending while inserting, while the cleaning rod is rotating, multiple rubber needles are naturally
  • the stain is inserted into the stain, and when the state is restored, the bottom of the plurality of rubber needles is ejected, and the stain is decomposed from the surface of the display, and the package is sucked at the suction end of the vacuum chuck.
  • the suction end of the vacuum chuck is also from the natural state to the compressed state to the natural state, and finally, when the natural state is restored, a sucking airflow is generated, and the sucking airflow absorbs the discharged stain fragments into the vacuum chuck, and is then the inner surface.
  • the adhesive layer is adsorbed and fixed to prevent the stain residue from flowing into the air, and only the adhesive layer needs to be replaced in the subsequent cleaning, which is convenient to use and does not pollute the environment.
  • the judging module determines whether the surface of the computer display is stained based on the difference between the emitted probe light and the detected probe light, which specifically includes:
  • the initial detection light is emitted to the surface of the electronic computer display after the electronic computer display is powered off by using the light-emitting module; and the initial detection light reflected by the electronic computer display is received by the lighting module, and the reflected light is reflected back.
  • Initial direction and initial illumination intensity
  • the real-time detection light When detecting, the real-time detection light is emitted to the surface of the electronic computer display after the electronic computer display is powered off; and the real-time detection light reflected by the electronic computer display is received by the lighting module, and the real-time direction reflected by the reflected light is stored and stored.
  • Real-time light intensity When detecting, the real-time detection light is emitted to the surface of the electronic computer display after the electronic computer display is powered off; and the real-time detection light reflected by the electronic computer display is received by the lighting module, and the real-time direction reflected by the reflected light is stored and stored.
  • the position of the stain is calculated by using the difference information of the initial direction reflected back by the reflected light and the real-time direction reflected back by the reflected light, and the type of the stain is determined by using the difference information of the initial illumination reflected by the reflected light and the real-time illumination reflected back by the reflected light.
  • the position of the stain is calculated by using the difference information of the initial direction reflected by the reflected light and the real-time direction reflected by the reflected light, and the difference information of the real-time direction includes the difference information of the incident angle and the reflection angle, which can be calculated by using optical principles.
  • the point of reflection or refraction the point is the exact position of the stain. Due to the different types of stains of different materials, that is, the refractive index is different, the collected refractive index is matched with the stored refractive index to match
  • the type of stain can control the strength of the stain through the type of stain, such as stubborn stains, it can strengthen the cleaning strength and ensure the cleaning effect.
  • controller is also used to control the maintenance subsystem cleaning position and cleaning strength based on the location and type of stain.
  • the maintenance subsystem further includes a flushing module and a collecting module, wherein the flushing module is used for washing and washing the electronic computer display, and the collecting module is configured to collect the flushed waste liquid.
  • the cleaning effect can be ensured by the cooperation of the flushing module and the collecting module, and the waste liquid can be collected to avoid affecting the environment.
  • the surface of the cleaning rod to the end of the rubber bundle and the distance is greater than the distance from the surface of the cleaning rod to the surface of the computer display.
  • one end of the rail extends to the computer display, and the end is provided with a cleaning rod storage area, and the cleaning rod is stored in the cleaning rod storage area when the subsystem is maintained.
  • the rubber bundle is composed of a plurality of rubber needles evenly arranged in parallel.

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Abstract

一种电子计算机显示器维护系统,包括:维护子系统和控制子系统,维护子系统包括:2个导轨、电机、齿轮组、蓄电池、2个滑轮、清洁棒、多个清洁结构;控制子系统包括:控制器、检测单元;维护子系统用于在电子计算机显示器通电时或断电时,对电子计算机显示器进行清洁,解决了现有的电子计算机显示器清洁存在的不足,实现了自动对电子计算机显示器进行清洁,效率较高,清洁效果较好,智能化程度较高的技术效果。

Description

一种电子计算机显示器维护系统 技术领域
本发明涉及计算机维护领域,具体地,涉及一种电子计算机显示器维护系统。
背景技术
随着科技的进步和发展,信息化时代的到来,计算机逐渐成为人们工作和生活的必备用品,而显示器则成为计算机的重要部件。
液晶显示器,为平面超薄的显示设备,它由一定数量的彩色或黑白像素组成,放置于光源或者反射面前方。液晶显示器功耗很低,因此倍受工程师青睐,适用于使用电池的电子设备。它的主要原理是以电流刺激液晶分子产生点、线、面配合背部灯管构成画面。
液晶显示器在日常使用时,重要的维护是对其表面污渍进行清洁,人工清洁麻烦,且不容易被慵懒的上班族接收,而聘请专业的清洁人员则成本较高。
发明内容
本发明提供了一种电子计算机显示器维护系统,解决了现有的电子计算机显示器清洁存在的不足,实现了自动对电子计算机显示器进行清洁,效率较高,清洁效果较好,智能化程度较高的技术效果。
为实现上述发明目的,本申请提供了一种电子计算机显示器维护系统,所述系统包括:
维护子系统和控制子系统,维护子系统包括:2个导轨、电机、齿轮组、蓄电池、2个滑轮、清洁棒、多个清洁结构;控制子系统包括:控制器、检测单元;其中,2个导轨分别水平安装在电子计算机显示器上端和下端,电机固定在清洁棒上,电机通过齿轮组与其中一个滑轮连接,清洁棒上下两端分别通过滑轮与导轨滑动连接,电机与蓄电池、控制器均连接,控制器与检测单元连接,检测单元用于检测电子计算机显示器表面的是否需要清洁;控制器用于基于检测单元的检测结果,控制维护子系统对电子计算机显示器进行维护清洁;其中,多个清洁结构均匀分布在清洁棒表面,清洁结构包括:圆筒、连接杆、真空吸盘、活塞、多根橡胶针组成的橡胶束;圆筒一端与清洁棒表面连接,连接杆一端穿过圆筒另一端后与圆筒内的活塞连接,连接杆另一端与真空吸盘的连接端上表面连接,橡胶束一端穿过真空吸盘的吸附端延伸至真空吸盘内与真空吸盘的连接端下表面连接,橡胶束的另一端延伸至真空吸盘的吸附端外,真空吸盘内表面设有黏贴层;其中,维护子系统用于在电子计算机显示器通电时或断电时,对电子计算机显示器进行清洁,检测单元包括:发光模块、采光模块、判断模块,发光模块用于在电子计算机显示器断电后向电子计算机显示器表面发射探测光;采光模块用于接收电子计算机显示器反射回的探测光,判断模块用于基于发射的探测光与射回的探 测光的差异判断电子计算机显示器表面是否有污渍,并对污渍进行定位,若有污渍,则检测结果为电子计算机显示器表面的需要清洁。
其中,本发明的原理为:在电子计算机显示器安装上维护子系统和控制子系统,当用户开机或者关机时,即在电子计算机显示器通电时或断电时,对电子计算机显示器进行清洁,利用开机和关机时用户不需要使用显示器对显示器进行清洁,避免干扰用户使用显示器,或者在检测到显示器有污渍需要进行清洁时进行清洁,具体为:利用发光模块向电子计算机显示器表面发射探测光;利用采光模块接收显示器反射回的探测光,利用判断模块基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,并对污渍进行定位,若有污渍,则进行清洁,即能够自动判断是否需要清洁,并对清洁部位进行定位,然后通过控制器控制电机的转动进行清洁。
进一步的,本申请是利用控制子系统控制维护子系统进行清洁,利用控制器控制电机的转动,进而控制清洁棒的转动以及转动的位置,然后利用清洁棒上的清洁结构进行清洁,其中,清洁结构包括:圆筒、连接杆、真空吸盘、活塞、多根橡胶针组成的橡胶束;圆筒一端与清洁棒表面连接,连接杆一端穿过圆筒另一端后与圆筒内的活塞连接,连接杆另一端与真空吸盘的连接端上表面连接,橡胶束一端穿过真空吸盘的吸附端延伸至真空吸盘内与真空吸盘的连接端下表面连接,橡胶束的另一端延伸至真空吸盘的吸附端外,真空吸盘内表面设有黏贴层;采用上述方式设计清洁结构的目的以及优点是:利用多根橡胶针可以与显示器表面接触,多根橡胶针可以插入污渍,由于多根橡胶针具有弹性,在插入的同时弯曲,在清洁棒转动的同时,多根橡胶针由自然状态到弯曲状态再到自然状态,弯曲状态时插入污渍中,再恢复自然状态时,多根橡胶针的底部弹出,进而将污渍从显示器表面上分解弹出,弹出时由于真空吸盘的吸附端的包裹,且真空吸盘的吸附端同样是从自然状态到压缩状态再到自然状态,最后恢复自然状态时会产生回吸的气流,回吸气流将弹出的污渍残片吸收入真空吸盘内,然后被内表面的黏贴层吸附固定,避免污渍残片流入空气中,再后续清洁中只需要更换黏贴层即可,方便使用,且不污染环境。
进一步的,判断模块基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,具体包括:
在电子计算机显示器表面没有污渍时,利用发光模块在电子计算机显示器断电后向电子计算机显示器表面发射初始探测光;并利用采光模块接收电子计算机显示器反射回的初始探测光,并存储反射光反射回的初始方向和初始光照强度;
在进行检测时,利用发光模块在电子计算机显示器断电后向电子计算机显示器表面发射实时探测光;并利用采光模块接收电子计算机显示器反射回的实时探测光,并存储反射光反 射回的实时方向和实时光照强度;
利用反射光反射回的初始方向和反射光反射回的实时方向的差异信息计算出污渍的位置,利用反射光反射回的初始光照和反射光反射回的实时光照的差异信息判断出污渍的类型。
其中,利用反射光反射回的初始方向和反射光反射回的实时方向的差异信息计算出污渍的位置,实时方向的差异信息中包括了入射角和反射角的差异信息,利用光学原理可以计算出反射或折射的点,则该点为污渍的准确位置,由于不同类型即不同材质的污渍,即其折射率是不同的,通过采集到的折射率与存储的折射率进行匹配,即可匹配出污渍的类型,通过污渍的类型则可以控制清洁的强度,如顽固污渍,则可以加强清洁的强度,保障清洁的效果。
进一步的,控制器还用于基于污渍的位置和类型,控制维护子系统清洁位置和清洁强度。
进一步的,所述维护子系统还包括冲刷模块和收集模块,冲刷模块用于对电子计算机显示器进行水洗冲刷,收集模块用于收集冲刷后的废液。利用冲刷模块和收集模块的配合工作可以保障清洁的效果,同时可以对废液进行收集,避免影响环境。
进一步的,清洁棒表面至橡胶束末端和距离大于清洁棒表面至电子计算机显示器表面的距离。
进一步的,导轨一端延伸至电子计算机显示器,并且该端设有清洁棒存储区,在维护子系统时,清洁棒存储在清洁棒存储区内。
进一步的,橡胶束由多根橡胶针均匀平行排列组成。
本申请提供的一个或多个技术方案,至少具有如下技术效果或优点:
决了现有的电子计算机显示器清洁存在的不足,实现了自动对电子计算机显示器进行清洁,效率较高,清洁效果较好,智能化程度较高的技术效果。
附图说明
此处所说明的附图用来提供对本发明实施例的进一步理解,构成本申请的一部分,并不构成对本发明实施例的限定。
图1是本申请中电子计算机显示器维护系统的组成示意图;
图2是本申请中维护子系统的组成示意图;
图3是本申请中清洁结构的结构示意图。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚明白,下面结合实施例和附图,对本发明作进一步的详细说明,本发明的示意性实施方式及其说明仅用于解释本发明,并不作为对本发明的限定。
实施例
请参考图1-图3,本申请提供了一种电子计算机显示器维护系统,所述系统包括:
维护子系统和控制子系统,维护子系统包括:2个导轨2、电机3、齿轮组、蓄电池4、2个滑轮5、清洁棒6、多个清洁结构7;控制子系统包括:控制器8、检测单元9;其中,2个导轨分别水平安装在电子计算机显示器1上端和下端,电机固定在清洁棒上,电机通过齿轮组与其中一个滑轮连接,清洁棒上下两端分别通过滑轮与导轨滑动连接,电机与蓄电池、控制器均连接,控制器与检测单元连接,检测单元用于检测电子计算机显示器表面的是否需要清洁;控制器用于基于检测单元的检测结果,控制维护子系统对电子计算机显示器进行维护清洁;其中,多个清洁结构均匀分布在清洁棒表面,清洁结构包括:圆筒10、连接杆11、真空吸盘12、活塞13、多根橡胶针14组成的橡胶束;圆筒一端与清洁棒表面连接,连接杆一端穿过圆筒另一端后与圆筒内的活塞连接,连接杆另一端与真空吸盘的连接端上表面连接,橡胶束一端穿过真空吸盘的吸附端延伸至真空吸盘内与真空吸盘的连接端下表面连接,橡胶束的另一端延伸至真空吸盘的吸附端外,真空吸盘内表面设有黏贴层;其中,维护子系统用于在电子计算机显示器通电时或断电时,对电子计算机显示器进行清洁,检测单元包括:发光模块、采光模块、判断模块,发光模块用于在电子计算机显示器断电后向电子计算机显示器表面发射探测光;采光模块用于接收电子计算机显示器反射回的探测光,判断模块用于基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,并对污渍进行定位,若有污渍,则检测结果为电子计算机显示器表面的需要清洁。
其中,本发明的原理为:在电子计算机显示器安装上维护子系统和控制子系统,当用户开机或者关机时,即在电子计算机显示器通电时或断电时,对电子计算机显示器进行清洁,利用开机和关机时用户不需要使用显示器对显示器进行清洁,避免干扰用户使用显示器,或者在检测到显示器有污渍需要进行清洁时进行清洁,具体为:利用发光模块向电子计算机显示器表面发射探测光;利用采光模块接收显示器反射回的探测光,利用判断模块基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,并对污渍进行定位,若有污渍,则进行清洁,即能够自动判断是否需要清洁,并对清洁部位进行定位,然后通过控制器控制电机的转动进行清洁。
进一步的,本申请是利用控制子系统控制维护子系统进行清洁,利用控制器控制电机的转动,进而控制清洁棒的转动以及转动的位置,然后利用清洁棒上的清洁结构进行清洁,其中,清洁结构包括:圆筒、连接杆、真空吸盘、活塞、多根橡胶针组成的橡胶束;圆筒一端与清洁棒表面连接,连接杆一端穿过圆筒另一端后与圆筒内的活塞连接,连接杆另一端与真空吸盘的连接端上表面连接,橡胶束一端穿过真空吸盘的吸附端延伸至真空吸盘内与真空吸盘的连接端下表面连接,橡胶束的另一端延伸至真空吸盘的吸附端外,真空吸盘内表面设有 黏贴层;采用上述方式设计清洁结构的目的以及优点是:利用多根橡胶针可以与显示器表面接触,多根橡胶针可以插入污渍,由于多根橡胶针具有弹性,在插入的同时弯曲,在清洁棒转动的同时,多根橡胶针由自然状态到弯曲状态再到自然状态,弯曲状态时插入污渍中,再恢复自然状态时,多根橡胶针的底部弹出,进而将污渍从显示器表面上分解弹出,弹出时由于真空吸盘的吸附端的包裹,且真空吸盘的吸附端同样是从自然状态到压缩状态再到自然状态,最后恢复自然状态时会产生回吸的气流,回吸气流将弹出的污渍残片吸收入真空吸盘内,然后被内表面的黏贴层吸附固定,避免污渍残片流入空气中,再后续清洁中只需要更换黏贴层即可,方便使用,且不污染环境。
进一步的,判断模块基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,具体包括:
在电子计算机显示器表面没有污渍时,利用发光模块在电子计算机显示器断电后向电子计算机显示器表面发射初始探测光;并利用采光模块接收电子计算机显示器反射回的初始探测光,并存储反射光反射回的初始方向和初始光照强度;
在进行检测时,利用发光模块在电子计算机显示器断电后向电子计算机显示器表面发射实时探测光;并利用采光模块接收电子计算机显示器反射回的实时探测光,并存储反射光反射回的实时方向和实时光照强度;
利用反射光反射回的初始方向和反射光反射回的实时方向的差异信息计算出污渍的位置,利用反射光反射回的初始光照和反射光反射回的实时光照的差异信息判断出污渍的类型。
其中,利用反射光反射回的初始方向和反射光反射回的实时方向的差异信息计算出污渍的位置,实时方向的差异信息中包括了入射角和反射角的差异信息,利用光学原理可以计算出反射或折射的点,则该点为污渍的准确位置,由于不同类型即不同材质的污渍,即其折射率是不同的,通过采集到的折射率与存储的折射率进行匹配,即可匹配出污渍的类型,通过污渍的类型则可以控制清洁的强度,如顽固污渍,则可以加强清洁的强度,保障清洁的效果。
进一步的,控制器还用于基于污渍的位置和类型,控制维护子系统清洁位置和清洁强度。
进一步的,所述维护子系统还包括冲刷模块和收集模块,冲刷模块用于对电子计算机显示器进行水洗冲刷,收集模块用于收集冲刷后的废液。利用冲刷模块和收集模块的配合工作可以保障清洁的效果,同时可以对废液进行收集,避免影响环境。
进一步的,清洁棒表面至橡胶束末端和距离大于清洁棒表面至电子计算机显示器表面的距离。
进一步的,导轨一端延伸至电子计算机显示器,并且该端设有清洁棒存储区,在维护子系统时,清洁棒存储在清洁棒存储区内。
进一步的,橡胶束由多根橡胶针均匀平行排列组成。
以上所述的具体实施方式,对本发明的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本发明的具体实施方式而已,并不用于限定本发明的保护范围,凡在本发明的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (7)

  1. 一种电子计算机显示器维护系统,其特征在于,所述系统包括:
    维护子系统和控制子系统,维护子系统包括:2个导轨、电机、齿轮组、蓄电池、2个滑轮、清洁棒、多个清洁结构;控制子系统包括:控制器、检测单元;其中,2个导轨分别水平安装在电子计算机显示器上端和下端,电机固定在清洁棒上,电机通过齿轮组与其中一个滑轮连接,清洁棒上下两端分别通过滑轮与导轨滑动连接,电机与蓄电池、控制器均连接,控制器与检测单元连接,检测单元用于检测电子计算机显示器表面的是否需要清洁;控制器用于基于检测单元的检测结果,控制维护子系统对电子计算机显示器进行维护清洁;其中,多个清洁结构均匀分布在清洁棒表面,清洁结构包括:圆筒、连接杆、真空吸盘、活塞、多根橡胶针组成的橡胶束;圆筒一端与清洁棒表面连接,连接杆一端穿过圆筒另一端后与圆筒内的活塞连接,连接杆另一端与真空吸盘的连接端上表面连接,橡胶束一端穿过真空吸盘的吸附端延伸至真空吸盘内与真空吸盘的连接端下表面连接,橡胶束的另一端延伸至真空吸盘的吸附端外,真空吸盘内表面设有黏贴层;其中,维护子系统用于在电子计算机显示器通电时或断电时,对电子计算机显示器进行清洁,检测单元包括:发光模块、采光模块、判断模块,发光模块用于在电子计算机显示器断电后向电子计算机显示器表面发射探测光;采光模块用于接收电子计算机显示器反射回的探测光,判断模块用于基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,并对污渍进行定位,若有污渍,则检测结果为电子计算机显示器表面的需要清洁。
  2. 根据权利要求1所述的电子计算机显示器维护系统,其特征在于,判断模块基于发射的探测光与射回的探测光的差异判断电子计算机显示器表面是否有污渍,具体包括:
    在电子计算机显示器表面没有污渍时,利用发光模块在电子计算机显示器断电后向电子计算机显示器表面发射初始探测光;并利用采光模块接收电子计算机显示器反射回的初始探测光,并存储反射光反射回的初始方向和初始光照强度;
    在进行检测时,利用发光模块在电子计算机显示器断电后向电子计算机显示器表面发射实时探测光;并利用采光模块接收电子计算机显示器反射回的实时探测光,并存储反射光反射回的实时方向和实时光照强度;
    利用反射光反射回的初始方向和反射光反射回的实时方向的差异信息计算出污渍的位置,利用反射光反射回的初始光照和反射光反射回的实时光照的差异信息判断出污渍的类型。
  3. 根据权利要求2所述的电子计算机显示器维护系统,其特征在于,控制器还用于基于污渍的位置和类型,控制维护子系统清洁位置和清洁强度。
  4. 根据权利要求1所述的电子计算机显示器维护系统,其特征在于,所述维护子系统还包括冲刷模块和收集模块,冲刷模块用于对电子计算机显示器进行水洗冲刷,收集模块用于 收集冲刷后的废液。
  5. 根据权利要求1所述的电子计算机显示器维护系统,其特征在于,清洁棒表面至橡胶束末端和距离大于清洁棒表面至电子计算机显示器表面的距离。
  6. 根据权利要求1所述的电子计算机显示器维护系统,其特征在于,导轨一端延伸至电子计算机显示器,并且该端设有清洁棒存储区,在维护子系统时,清洁棒存储在清洁棒存储区内。
  7. 根据权利要求1所述的电子计算机显示器维护系统,其特征在于,橡胶束由多根橡胶针均匀平行排列组成。
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