CN219266356U - Power storage equipment detection device for photovoltaic power generation system - Google Patents
Power storage equipment detection device for photovoltaic power generation system Download PDFInfo
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- CN219266356U CN219266356U CN202223421923.3U CN202223421923U CN219266356U CN 219266356 U CN219266356 U CN 219266356U CN 202223421923 U CN202223421923 U CN 202223421923U CN 219266356 U CN219266356 U CN 219266356U
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Abstract
本实用新型涉及光伏发电系统技术领域,且公开了一种光伏发电系统用的蓄电设备检测装置,包括底座,所述底座的上端固定安装有侧板和支撑架,所述底座的内侧转动安装有传动辊,所述侧板的内部活动安装有导向杆一;该光伏发电系统用的蓄电设备检测装置,设置有底座,光伏用蓄电池可沿着传动辊在底座上前后滑动,两侧设置定位架,旋转外侧的旋钮可带动定位架左右移动,定位架对光伏用蓄电池左右两侧进行定位,上方设置升降架,升降气缸带动升降架上下移动,升降架底部的滑块随之移动,滑块的底部设置检测探头,与光伏用蓄电池的正、负极端子接触,并进行检测,不需要工作人员手持探头,并对准电池的端子,操作起来更加方便。
The utility model relates to the technical field of photovoltaic power generation systems, and discloses a detection device for electric storage equipment used in photovoltaic power generation systems. There is a transmission roller, and a guide rod is installed on the inside of the side plate; the detection device for the power storage equipment used in the photovoltaic power generation system is provided with a base, and the photovoltaic storage battery can slide back and forth along the transmission roller on the base, and the two sides are set Positioning frame, rotating the knob on the outside can drive the positioning frame to move left and right, the positioning frame positions the left and right sides of the photovoltaic battery, the lifting frame is set above, the lifting cylinder drives the lifting frame to move up and down, and the slider at the bottom of the lifting frame moves accordingly. The bottom of the block is equipped with detection probes, which are in contact with the positive and negative terminals of the photovoltaic battery for detection. It is not necessary for the staff to hold the probes and align them with the terminals of the battery, which is more convenient to operate.
Description
技术领域technical field
本实用新型涉及光伏发电系统技术领域,具体为一种光伏发电系统用的蓄电设备检测装置。The utility model relates to the technical field of photovoltaic power generation systems, in particular to a detection device for electric storage equipment used in photovoltaic power generation systems.
背景技术Background technique
光伏发电系统是指利用光伏电池的光生伏特效应,将太阳辐射能直接转换成电能的发电系统,光伏发电系统用的蓄电设备是光伏发电系统中用于储能的重要组件,主要采用光伏用蓄电池,光伏用蓄电池的顶部设置有正、负极端子,通过线缆与发电设备连接。Photovoltaic power generation system refers to a power generation system that uses the photovoltaic effect of photovoltaic cells to directly convert solar radiation energy into electrical energy. The power storage equipment used in photovoltaic power generation systems is an important component for energy storage in photovoltaic power generation systems. Storage battery, the top of the photovoltaic storage battery is provided with positive and negative terminals, which are connected to the power generation equipment through cables.
现如今大部分光伏发电系统用的蓄电设备在检测时,需要工作人员手持电压表或电流表的探头,并对准光伏用蓄电池的正、负极端子进行检测,不具备专门的检测装置对蓄电池进行定位,并自动检测。Nowadays, most of the power storage equipment used in photovoltaic power generation systems needs to be tested by the staff holding the probe of the voltmeter or ammeter and aligning it with the positive and negative terminals of the photovoltaic battery for detection. There is no special detection device for the battery. positioning and automatic detection.
发明内容Contents of the invention
(一)解决的技术问题(1) Solved technical problems
本实用新型的目的在于提供一种光伏发电系统用的蓄电设备检测装置,以解决上述背景技术中提出的大部分光伏发电系统用的蓄电设备在检测时,需要工作人员手持电压表或电流表的探头,并对准光伏用蓄电池的正、负极端子进行检测,不具备专门的检测装置对蓄电池进行定位,并自动检测的问题。The purpose of this utility model is to provide a detection device for electrical storage equipment used in photovoltaic power generation systems to solve the problem that most of the electrical storage equipment used in photovoltaic power generation systems in the above-mentioned background technology requires staff to hold voltmeters or ammeters The probe is aimed at the positive and negative terminals of the photovoltaic battery for detection. There is no special detection device to locate the battery and automatically detect the problem.
(二)技术方案(2) Technical solution
为实现上述目的,本实用新型提供如下技术方案:一种光伏发电系统用的蓄电设备检测装置,包括底座,所述底座的上端固定安装有侧板和支撑架,所述底座的内侧转动安装有传动辊,所述侧板的内部活动安装有导向杆一,所述导向杆一的两端固定安装有定位架,所述定位架的内部转动安装有丝杆,所述定位架的外侧转动安装有旋钮,所述定位架的内侧固定安装有定位板,所述定位板的前端固定安装有按压开关,所述定位板的后端固定安装有导向杆二,所述支撑架的上端固定安装有升降气缸,所述升降气缸的输出端上固定安装有升降架,所述升降架的内侧固定安装有导向杆三,所述导向杆三的外侧活动安装有滑块,所述滑块的前端固定安装有外套筒,所述外套筒的下端活动安装有检测探头,所述检测探头的上端固定安装有限位块,所述外套筒的内部套接安装有弹簧,所述支撑架的外侧固定安装有控制面板。In order to achieve the above purpose, the utility model provides the following technical solutions: a detection device for electrical storage equipment used in a photovoltaic power generation system, including a base, the upper end of the base is fixedly installed with a side plate and a support frame, and the inner side of the base is rotatably installed There are transmission rollers, a
优选的,所述侧板左右对称设置有两个,所述侧板位于支撑架的前端,所述传动辊前后等距设置有多个,光伏用蓄电池放置在传动辊上,并可通过传动辊在底座上进行前后滑动。Preferably, there are two symmetrically arranged side plates, the side plates are located at the front end of the support frame, and multiple driving rollers are arranged equidistantly from front to back, and photovoltaic batteries are placed on the driving rollers, and can pass through the driving rollers Slide back and forth on the base.
优选的,所述导向杆一在侧板的内部分别设置有两个,所述定位架为“U”型结构,所述丝杆与侧板为螺纹连接,所述旋钮与丝杆为固定连接,转动旋钮,带动丝杆转动,导向杆一对定位架起到导向作用,丝杆带动定位架左右移动,对光伏用蓄电池的两侧起到定位作用。Preferably, two guide rods are respectively arranged inside the side plates, the positioning frame is a "U"-shaped structure, the screw rod and the side plate are threaded, and the knob and the screw rod are fixedly connected , Turn the knob to drive the screw to rotate, the guide rod acts as a guide to the positioning frame, and the screw drives the positioning frame to move left and right, positioning the two sides of the photovoltaic battery.
优选的,所述按压开关与升降气缸为电性连接,所述升降架位于支撑架的内部,所述导向杆三前后对称设置有两个,当光伏用蓄电池与按压开关接触后,发出信号开启升降气缸,升降气缸带动升降架向下移动,当光伏用蓄电池与按压开关分离后,升降气缸带动升降架向上移动至原处。Preferably, the push switch is electrically connected to the lift cylinder, the lift frame is located inside the support frame, and two of the three guide rods are symmetrically arranged front and back, and when the photovoltaic battery contacts the push switch, a signal is sent to open Lifting cylinder, the lifting cylinder drives the lifting frame to move downward. When the photovoltaic battery is separated from the push switch, the lifting cylinder drives the lifting frame to move upward to the original position.
优选的,所述滑块左右对称设置有两个,所述滑块与导向杆二为活动连接,导向杆二对滑块起到导向作用,升降架带动滑块沿着导向杆二上下移动,定位架带动滑块沿着导向杆三左右移动。Preferably, two sliders are symmetrically arranged left and right, and the slider is movably connected with the second guide rod, and the second guide rod plays a guiding role on the slider, and the lifting frame drives the slider to move up and down along the second guide rod, The positioning frame drives the slide block to move left and right along the guide bar three.
优选的,所述检测探头位于定位板的前侧,所述弹簧与限位块的上端贴合,所述检测探头与控制面板为电性连接,检测探头随滑块移动,当检测探头与光伏用蓄电池的正、负极端子接触后,检测探头沿着外套筒向上移动,弹簧对检测探头进行复位,减小检测探头对正、负极端子造成的损伤,检测探头对光伏用蓄电池进行检测,检测的数据传输至控制面板上。Preferably, the detection probe is located on the front side of the positioning plate, the spring is attached to the upper end of the limit block, the detection probe is electrically connected to the control panel, and the detection probe moves with the slider. When the detection probe is connected to the photovoltaic After contacting the positive and negative terminals of the battery, the detection probe moves upward along the outer sleeve, and the spring resets the detection probe to reduce the damage caused by the detection probe to the positive and negative terminals. The detection probe detects the photovoltaic battery and detects The data is transmitted to the control panel.
与现有技术相比,本实用新型的有益效果是:该光伏发电系统用的蓄电设备检测装置,设置有底座,光伏用蓄电池可沿着传动辊在底座上前后滑动,两侧设置定位架,旋转外侧的旋钮可带动定位架左右移动,定位架对光伏用蓄电池左右两侧进行定位,上方设置升降架,升降气缸带动升降架上下移动,升降架底部的滑块随之移动,滑块的底部设置检测探头,与光伏用蓄电池的正、负极端子接触,并进行检测,不需要工作人员手持探头,并对准电池的端子,操作起来更加方便。Compared with the prior art, the utility model has the beneficial effects that: the detection device for the electric storage equipment used in the photovoltaic power generation system is provided with a base, and the storage battery for photovoltaics can slide back and forth on the base along the transmission roller, and positioning frames are provided on both sides , Rotating the knob on the outside can drive the positioning frame to move left and right. The positioning frame positions the left and right sides of the photovoltaic battery. The lifting frame is set above, and the lifting cylinder drives the lifting frame to move up and down. The slider at the bottom of the lifting frame moves accordingly. The detection probe is set at the bottom, which is in contact with the positive and negative terminals of the photovoltaic battery for detection. It is not necessary for the staff to hold the probe and align it with the terminal of the battery, which is more convenient to operate.
附图说明Description of drawings
图1为本实用新型立体结构示意图;Fig. 1 is a schematic diagram of the three-dimensional structure of the utility model;
图2为本实用新型俯视结构示意图;Fig. 2 is a schematic view of the structure of the utility model;
图3为本实用新型内部结构示意图;Fig. 3 is a schematic diagram of the internal structure of the utility model;
图4为本实用新型外套筒内部结构示意图。Fig. 4 is a schematic diagram of the internal structure of the outer sleeve of the utility model.
其中:1、底座;2、侧板;3、支撑架;4、传动辊;5、导向杆一;6、定位架;7、丝杆;8、旋钮;9、定位板;10、按压开关;11、导向杆二;12、升降气缸;13、升降架;14、导向杆三;15、滑块;16、外套筒;17、检测探头;18、限位块;19、弹簧;20、控制面板。Among them: 1. Base; 2. Side plate; 3. Support frame; 4. Drive roller; 5. Guide rod one; 6. Positioning frame; 7. Screw rod; 8. Knob; 9. Positioning plate; ; 11, guide rod two; 12, lifting cylinder; 13, lifting frame; 14, guide rod three; 15, slider; 16, outer sleeve; 17, detection probe; 18, limit block; 19, spring; 20 ,control Panel.
具体实施方式Detailed ways
下面将结合本实用新型实施例中的附图,对本实用新型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实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,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,都属于本实用新型保护的范围。The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. example. Based on the embodiments of the present utility model, all other embodiments obtained by persons of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.
请参阅图1-4,本实用新型提供一种技术方案:一种光伏发电系统用的蓄电设备检测装置,包括底座1,底座1的上端固定安装有侧板2和支撑架3,底座1的内侧转动安装有传动辊4,侧板2左右对称设置有两个,侧板2位于支撑架3的前端,传动辊4前后等距设置有多个,光伏用蓄电池放置在传动辊4上,并可通过传动辊4在底座1上进行前后滑动;Please refer to Figures 1-4, the utility model provides a technical solution: a detection device for electrical storage equipment used in a photovoltaic power generation system, including a
侧板2的内部活动安装有导向杆一5,导向杆一5的两端固定安装有定位架6,定位架6的内部转动安装有丝杆7,定位架6的外侧转动安装有旋钮8,导向杆一5在侧板2的内部分别设置有两个,定位架6为“U”型结构,丝杆7与侧板2为螺纹连接,旋钮8与丝杆7为固定连接,定位架6的内侧固定安装有定位板9,定位板9的前端固定安装有按压开关10,定位板9的后端固定安装有导向杆二11,支撑架3的上端固定安装有升降气缸12,升降气缸12的输出端上固定安装有升降架13,升降架13的内侧固定安装有导向杆三14,按压开关10与升降气缸12为电性连接,升降架13位于支撑架3的内部,导向杆三14前后对称设置有两个,转动旋钮8,带动丝杆7转动,导向杆一5对定位架6起到导向作用,丝杆7带动定位架6左右移动,对光伏用蓄电池的两侧起到定位作用,当光伏用蓄电池与按压开关10接触后,发出信号开启升降气缸12,升降气缸12带动升降架13向下移动,当光伏用蓄电池与按压开关10分离后,升降气缸12带动升降架13向上移动至原处;The inside of the
导向杆三14的外侧活动安装有滑块15,滑块15左右对称设置有两个,滑块15与导向杆二11为活动连接,滑块15的前端固定安装有外套筒16,外套筒16的下端活动安装有检测探头17,检测探头17的上端固定安装有限位块18,外套筒16的内部套接安装有弹簧19,支撑架3的外侧固定安装有控制面板20,检测探头17位于定位板9的前侧,弹簧19与限位块18的上端贴合,检测探头17与控制面板20为电性连接,导向杆二11对滑块15起到导向作用,升降架13带动滑块15沿着导向杆二11上下移动,定位架6带动滑块15沿着导向杆三14左右移动,检测探头17随滑块15移动,当检测探头17与光伏用蓄电池的正、负极端子接触后,检测探头17沿着外套筒16向上移动,弹簧19对检测探头17进行复位,减小检测探头17对正、负极端子造成的损伤,检测探头17对光伏用蓄电池进行检测,检测的数据传输至控制面板20上。The outer side of guide bar three 14 is equipped with
工作原理:首先,将光伏用蓄电池放置在传动辊4上,转动旋钮8,带动丝杆7转动,导向杆一5对定位架6起到导向作用,丝杆7带动定位架6左右移动,定位架6带动滑块15沿着导向杆三14左右移动,定位架6与光伏用蓄电池的两侧贴合后,停止旋转,再将光伏用蓄电池沿着传动辊4向后推动,当光伏用蓄电池与按压开关10接触后,按压开关10发出信号开启升降气缸12,升降气缸12带动升降架13向下移动,升降架13带动滑块15沿着导向杆二11向下移动,当检测探头17与光伏用蓄电池的正、负极端子接触后,检测探头17沿着外套筒16向上移动,弹簧19对检测探头17进行复位,减小检测探头17对正、负极端子造成的损伤,检测探头17对光伏用蓄电池进行检测,检测的数据传输至控制面板20上,工作人员通过控制面板20上的数据判断产品是否合格,检测完毕后,向前移动光伏用蓄电池,光伏用蓄电池与按压开关10分离,升降气缸12带动升降架13向上移动至原处,随后可取下光伏用蓄电池。Working principle: firstly, place the photovoltaic battery on the
尽管已经示出和描述了本实用新型的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本实用新型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,本实用新型的范围由所附权利要求及其等同物限定。Although the embodiments of the present invention have been shown and described, those skilled in the art can understand that various changes and modifications can be made to these embodiments without departing from the principle and spirit of the present invention , replacements and modifications, the scope of the present utility model is defined by the appended claims and their equivalents.
Claims (6)
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Denomination of utility model: A detection device for storage equipment used in photovoltaic power generation systems Granted publication date: 20230627 Pledgee: China Everbright Bank Co.,Ltd. Ningbo Branch Pledgor: Xinyou (Ningbo) Intelligent Technology Co.,Ltd. Registration number: Y2025980025520 |
