CN221828426U - A power distribution control device with a protective structure - Google Patents
A power distribution control device with a protective structure Download PDFInfo
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- CN221828426U CN221828426U CN202420352057.7U CN202420352057U CN221828426U CN 221828426 U CN221828426 U CN 221828426U CN 202420352057 U CN202420352057 U CN 202420352057U CN 221828426 U CN221828426 U CN 221828426U
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Abstract
Description
技术领域Technical Field
本实用新型属于配电控制设备技术领域,具体涉及一种具有防护结构的配电控制设备。The utility model belongs to the technical field of power distribution control equipment, and in particular relates to a power distribution control equipment with a protection structure.
背景技术Background Art
配电控制设备是在电力系统中对高压配电柜、控制箱等设备的统称,在如今社会,人们日常生活中已经离不开电能,所以配电控制设备显得也尤为重要,随着科技的发展,配电控制设备其功能也越来越多。Distribution control equipment is a general term for high-voltage distribution cabinets, control boxes and other equipment in the power system. In today's society, people can no longer live without electricity in their daily lives, so distribution control equipment is particularly important. With the development of science and technology, distribution control equipment has more and more functions.
现有技术中,配电控制设备的壳体大多直接是单层对外直接裸露的壳体,缺少与壳体相配合的防护结构,在设备壳体受到外界冲击力时直接会对设备内部元器件产生较大的冲击力,由此加大了设备内部元器件损坏的概率,且配电控制设备在使用时内部会产生大量的热能,若不能即使散去,会损坏设备,因此本实用新型提供一种具有防护结构的配电控制设备来解决上述问题。In the prior art, the shell of the power distribution control equipment is mostly a single-layer shell that is directly exposed to the outside and lacks a protective structure that matches the shell. When the equipment shell is subjected to external impact force, it will directly generate a large impact force on the internal components of the equipment, thereby increasing the probability of damage to the internal components of the equipment. In addition, the power distribution control equipment will generate a large amount of heat energy when in use. If it cannot be dissipated in time, the equipment will be damaged. Therefore, the utility model provides a power distribution control device with a protective structure to solve the above problems.
发明内容Summary of the invention
为了克服背景技术中提到的问题,本实用新型提供一种具有防护结构的配电控制设备。本实用新型具有防撞,散热结构,可保护设备。In order to overcome the problems mentioned in the background technology, the utility model provides a power distribution control device with a protective structure. The utility model has an anti-collision and heat dissipation structure, which can protect the device.
为实现上述目的,本实用新型是通过如下技术方案实现的:一种具有防护结构的配电控制设备包括配电柜体1、缓冲板2、减震弹簧3、防撞板4、风扇5、防尘网6、温度传感器7、控制器8和缓冲结构,所述的缓冲结构包括缓冲板2、减震弹簧3和防撞板4,所述的缓冲板2安装在电柜体1左右两侧面和背面上,所述的缓冲板2上安装有多个减震弹簧3,所述的防撞板4安装在减震弹簧3一端,所述的配电柜体1左侧设有风扇孔9,所述的风扇5安装在风扇孔9内侧,所述的配电柜体1右侧设有散热孔10,所述的缓冲板2和防撞板4上设有通风孔11,所述的防尘网6安装在缓冲板2上,所述的温度传感器7和控制器8安装在配电柜体1内,所述的温度传感器7、风扇5与控制器8电连接。To achieve the above-mentioned purpose, the utility model is implemented through the following technical scheme: a power distribution control device with a protective structure includes a power distribution cabinet 1, a buffer plate 2, a shock-absorbing spring 3, an anti-collision plate 4, a fan 5, a dust-proof net 6, a temperature sensor 7, a controller 8 and a buffer structure, wherein the buffer structure includes a buffer plate 2, a shock-absorbing spring 3 and an anti-collision plate 4, the buffer plate 2 is installed on the left and right sides and the back of the power cabinet 1, a plurality of shock-absorbing springs 3 are installed on the buffer plate 2, the anti-collision plate 4 is installed on one end of the shock-absorbing spring 3, a fan hole 9 is provided on the left side of the power distribution cabinet 1, the fan 5 is installed on the inner side of the fan hole 9, a heat dissipation hole 10 is provided on the right side of the power distribution cabinet 1, ventilation holes 11 are provided on the buffer plate 2 and the anti-collision plate 4, the dust-proof net 6 is installed on the buffer plate 2, the temperature sensor 7 and the controller 8 are installed in the power distribution cabinet 1, and the temperature sensor 7, the fan 5 and the controller 8 are electrically connected.
进一步的,所述的具有防护结构的配电控制设备包括防撞十字架12,所述的防撞板4的通风孔11上设有凹槽13,所述的凹槽13和防撞十字架12上对应设有第一螺孔14,所述的防撞十字架12通过螺栓安装在防撞板4的通风孔11上。Furthermore, the power distribution control device with a protective structure includes an anti-collision cross 12, a groove 13 is provided on the ventilation hole 11 of the anti-collision plate 4, and a first screw hole 14 is correspondingly provided on the groove 13 and the anti-collision cross 12, and the anti-collision cross 12 is installed on the ventilation hole 11 of the anti-collision plate 4 by bolts.
进一步的,所述缓冲板2的通风孔11的四角和防尘网6的四角对应设有第二螺孔15,所述的防尘网6通过螺栓安装在缓冲板2的通风孔11上。Furthermore, second screw holes 15 are correspondingly provided at the four corners of the ventilation hole 11 of the buffer plate 2 and the four corners of the dustproof net 6 , and the dustproof net 6 is mounted on the ventilation hole 11 of the buffer plate 2 by means of bolts.
进一步的,所述的缓冲板2四角和配电柜体1对应位置设有第三螺孔16,所述的缓冲板2通过螺栓安装在配电柜体1上,且防撞板4四角上对应设有缺口17。Furthermore, third screw holes 16 are provided at the four corners of the buffer plate 2 and at corresponding positions of the power distribution cabinet 1 , the buffer plate 2 is mounted on the power distribution cabinet 1 by bolts, and notches 17 are provided at the four corners of the anti-collision plate 4 .
进一步的,所述的具有防护结构的配电控制设备包括防雨顶18,所述的防雨顶18通过支柱安装在配电柜体1顶部。Furthermore, the power distribution control device with a protective structure includes a rainproof roof 18, and the rainproof roof 18 is installed on the top of the power distribution cabinet 1 through pillars.
进一步的,所述的具有防护结构的配电控制设备包括底座19,所述的底座19安装在配电柜体1底部。Furthermore, the power distribution control device with a protective structure includes a base 19 , and the base 19 is installed at the bottom of the power distribution cabinet 1 .
本实用新型的有益效果:Beneficial effects of the utility model:
本实用新型缓冲板、减震弹簧和防撞板可起到缓冲、防撞作用,受到撞击时具有良好的防震、缓冲性能,使得受到撞击时的力被分解,从而保护了设备内部元件;还具备散热效果,风扇、散热孔和通风孔可使设备内部快速散热降温,在通风的过程中可防尘;同时缓冲板和防尘网均易拆装,方便更换或清洗,可保证防尘散热效果。The buffer plate, shock-absorbing spring and anti-collision plate of the utility model can play a buffering and anti-collision role. When impacted, they have good shockproof and buffering performance, so that the force when impacted is decomposed, thereby protecting the internal components of the equipment; they also have a heat dissipation effect, and the fan, heat dissipation holes and ventilation holes can quickly dissipate heat and cool down the inside of the equipment, and dust can be prevented during the ventilation process; at the same time, the buffer plate and dustproof net are easy to disassemble and assemble, convenient for replacement or cleaning, and can ensure dust-proof and heat dissipation effects.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1是本实用新型结构侧视示意图。FIG1 is a schematic side view of the structure of the utility model.
图2是图1中A部分结构放大示意图。FIG. 2 is an enlarged schematic diagram of the structure of part A in FIG. 1 .
图3是本实用新型缓冲板结构示意图。FIG3 is a schematic diagram of the structure of the buffer plate of the utility model.
图4是本实用新型结构左侧示意图。FIG. 4 is a schematic diagram of the left side of the structure of the utility model.
图5是本实用新型散热孔结构示意图。FIG5 is a schematic diagram of the heat dissipation hole structure of the utility model.
图6是本实用新型内部结构示意图。FIG. 6 is a schematic diagram of the internal structure of the utility model.
图7是本实用新型结构侧视示意图。FIG. 7 is a schematic side view of the structure of the utility model.
附图标记:图中配电柜体1、缓冲板2、减震弹簧3、防撞板4、风扇5、防尘网6、温度传感器7、控制器8、风扇孔9、散热孔10、通风孔11、防撞十字架12、凹槽13、第一螺孔14、第二螺孔15、第三螺孔16、缺口17、防雨顶18、底座19。Figure numerals: power distribution cabinet 1, buffer plate 2, shock absorbing spring 3, anti-collision plate 4, fan 5, dustproof net 6, temperature sensor 7, controller 8, fan hole 9, heat dissipation hole 10, ventilation hole 11, anti-collision cross 12, groove 13, first screw hole 14, second screw hole 15, third screw hole 16, notch 17, rainproof roof 18, base 19.
具体实施方式DETAILED DESCRIPTION
为了使本实用新型的目的、技术方案和有益效果更加清楚,下面将结合附图,对本实用新型的优选实施例进行详细的说明,以方便技术人员理解。In order to make the purpose, technical solution and beneficial effects of the present invention clearer, the preferred embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings to facilitate understanding by technicians.
如图1-7,本实用新型公开了一种具有防护结构的配电控制设备,所述的一种具有防护结构的配电控制设备包括配电柜体1、缓冲板2、减震弹簧3、防撞板4、风扇5、防尘网6、温度传感器7、控制器8和缓冲结构,所述的缓冲结构包括缓冲板2、减震弹簧3和防撞板4,所述的缓冲板2安装在电柜体1左右两侧面和背面上,所述的缓冲板2上安装有多个减震弹簧3,所述的防撞板4安装在减震弹簧3一端,所述的配电柜体1左侧设有风扇孔9,所述的风扇5安装在风扇孔9内侧,所述的配电柜体1右侧设有散热孔10,所述的缓冲板2和防撞板4上设有通风孔11,所述的防尘网6安装在缓冲板2上,所述的温度传感器7和控制器8安装在配电柜体1内,所述的温度传感器7、风扇5与控制器8电连接;配电柜体左侧的通风孔位于风扇孔前方,右侧的通风孔位于散热孔前方,便于使配电柜体内部通风散热,且设有防尘网,可防尘,缓冲板、减震弹簧和防撞板可起到缓冲、防撞作用,受到撞击时具有良好的防震、缓冲性能,使得受到撞击时的力被分解,从而保护了设备内部元件;还具备散热效果,风扇和散热孔可使设备内部快速散热降温,在通风的过程中可防尘;同时缓冲板和防尘网均易拆装,方便更换或清洗,可保证防尘散热效果;所述的温度传感器、风扇及控制电路为本领域的公知技术。As shown in Figures 1-7, the utility model discloses a power distribution control device with a protective structure, the power distribution control device with a protective structure comprises a power distribution cabinet 1, a buffer plate 2, a shock absorbing spring 3, an anti-collision plate 4, a fan 5, a dust screen 6, a temperature sensor 7, a controller 8 and a buffer structure, the buffer structure comprises a buffer plate 2, a shock absorbing spring 3 and an anti-collision plate 4, the buffer plate 2 is installed on the left and right sides and the back of the power cabinet 1, a plurality of shock absorbing springs 3 are installed on the buffer plate 2, the anti-collision plate 4 is installed on one end of the shock absorbing spring 3, a fan hole 9 is provided on the left side of the power distribution cabinet 1, the fan 5 is installed on the inner side of the fan hole 9, a heat dissipation hole 10 is provided on the right side of the power distribution cabinet 1, ventilation holes 11 are provided on the buffer plate 2 and the anti-collision plate 4, the dust screen 6 is installed on the buffer On the board 2, the temperature sensor 7 and the controller 8 are installed in the distribution cabinet 1, and the temperature sensor 7, the fan 5 and the controller 8 are electrically connected; the ventilation holes on the left side of the distribution cabinet are located in front of the fan holes, and the ventilation holes on the right side are located in front of the heat dissipation holes, which is convenient for ventilation and heat dissipation inside the distribution cabinet, and a dustproof net is provided to prevent dust. The buffer plate, shock-absorbing spring and anti-collision plate can play a buffering and anti-collision role. When impacted, they have good shockproof and buffering performance, so that the force when impacted is decomposed, thereby protecting the internal components of the equipment; it also has a heat dissipation effect, the fan and the heat dissipation holes can quickly dissipate heat and cool down the inside of the equipment, and can prevent dust during ventilation; at the same time, the buffer plate and the dustproof net are easy to disassemble and assemble, convenient for replacement or cleaning, and can ensure dust-proof and heat dissipation effects; the temperature sensor, fan and control circuit are well-known technologies in the field.
所述的具有防护结构的配电控制设备包括防撞十字架12,所述的防撞板4的通风孔11上设有凹槽13,所述的凹槽13和防撞十字架12上对应设有第一螺孔14,所述的防撞十字架12通过螺栓安装在防撞板4的通风孔11上;所述缓冲板2的通风孔11的四角和防尘网6的四角对应设有第二螺孔15,所述的防尘网6通过螺栓安装在缓冲板2的通风孔11上;防撞十字架位于防尘网前方,设有防撞十字架可减少防尘网被撞的可能,可对防尘网进行保护,需要更换或清洗防尘网时,可先将防撞十字架拆下,再拆防尘网即可,方便快捷,便于清洁防尘网,也便于对防尘网进行保护。The power distribution control device with a protective structure includes an anti-collision cross 12, a groove 13 is provided on the ventilation hole 11 of the anti-collision plate 4, and a first screw hole 14 is correspondingly provided on the groove 13 and the anti-collision cross 12, and the anti-collision cross 12 is installed on the ventilation hole 11 of the anti-collision plate 4 by bolts; the four corners of the ventilation hole 11 of the buffer plate 2 and the four corners of the dustproof net 6 are correspondingly provided with second screw holes 15, and the dustproof net 6 is installed on the ventilation hole 11 of the buffer plate 2 by bolts; the anti-collision cross is located in front of the dustproof net. The anti-collision cross can reduce the possibility of the dustproof net being hit and protect the dustproof net. When the dustproof net needs to be replaced or cleaned, the anti-collision cross can be removed first, and then the dustproof net can be removed. It is convenient and quick, easy to clean the dustproof net, and also convenient to protect the dustproof net.
所述的缓冲板2四角和配电柜体1对应位置设有第三螺孔16,所述的缓冲板2通过螺栓安装在配电柜体1上,且防撞板4四角上对应设有缺口17;缓冲板通过螺栓安装在配电柜体上,且防撞板四角上对应设有缺口,方便拆装缓冲板,需要安装或更换缓冲结构时,可通过螺栓安装或卸下,结构简单,方便拆装,便于使用。The buffer plate 2 is installed on the distribution cabinet 1 by bolts, and the four corners of the anti-collision plate 4 are provided with notches 17; the buffer plate is installed on the distribution cabinet by bolts, and the four corners of the anti-collision plate are provided with notches, which is convenient for disassembly and assembly of the buffer plate. When the buffer structure needs to be installed or replaced, it can be installed or removed by bolts. The structure is simple, easy to disassemble and assemble, and easy to use.
所述的具有防护结构的配电控制设备包括防雨顶18,所述的防雨顶18通过支柱安装在配电柜体1顶部;可防雨,避免配电柜体被雨淋,保护设备。The power distribution control device with a protective structure includes a rainproof roof 18, which is installed on the top of the power distribution cabinet 1 through pillars; it can prevent rain, prevent the power distribution cabinet from being rained on, and protect the equipment.
所述的具有防护结构的配电控制设备包括底座19,所述的底座19安装在配电柜体1底部;底座四周顶部为斜坡设计,可减少雨水停留在底座上,同时底座可抬高配电柜体,避免与地面直接接触,防止被水淹;可保护配电柜体。The power distribution control device with a protective structure includes a base 19, which is installed at the bottom of the power distribution cabinet 1; the top of the base is designed as a slope to reduce rainwater staying on the base. At the same time, the base can raise the power distribution cabinet to avoid direct contact with the ground and prevent flooding; it can protect the power distribution cabinet.
工作过程:Working process:
本实用新型的工作原理为:配电柜体1左右两侧和背面均设有缓冲结构,缓冲板2、减震弹簧3和防撞板4可起到缓冲、防撞作用,受到撞击时具有良好的防震、缓冲性能,使得受到撞击时的力被分解,同时温度传感器7可监测配电柜体内的温度,当温度升高时,可讲信息传递给控制器8,控制器8控制风扇5转动,使配电柜体1内部可快速通风降温,防尘网6可防止灰尘进入配电柜体1内部,防撞十字架12位于防尘网6前方,可减少防尘网6被撞的可能,对防尘网6进行保护,需要更换或清洗防尘网6时,可先将防撞十字架12拆下,再拆防尘网6即可,缓冲板2通过螺栓安装在配电柜体1上,且防撞板4四角上对应设有缺口,方便拆装缓冲结构。The working principle of the utility model is as follows: buffer structures are provided on the left and right sides and the back of the distribution cabinet 1, and the buffer plate 2, the shock-absorbing spring 3 and the anti-collision plate 4 can play a buffering and anti-collision role. When impacted, they have good shockproof and buffering performance, so that the force when impacted is decomposed, and at the same time, the temperature sensor 7 can monitor the temperature in the distribution cabinet. When the temperature rises, the information can be transmitted to the controller 8, and the controller 8 controls the rotation of the fan 5 so that the inside of the distribution cabinet 1 can be quickly ventilated and cooled, and the dustproof net 6 can prevent dust from entering the inside of the distribution cabinet 1. The anti-collision cross 12 is located in front of the dustproof net 6, which can reduce the possibility of the dustproof net 6 being hit and protect the dustproof net 6. When the dustproof net 6 needs to be replaced or cleaned, the anti-collision cross 12 can be removed first, and then the dustproof net 6 can be removed. The buffer plate 2 is installed on the distribution cabinet 1 by bolts, and the four corners of the anti-collision plate 4 are correspondingly provided with notches to facilitate the disassembly and assembly of the buffer structure.
最后说明的是,以上优选实施例仅用以说明本实用新型的技术方案而非限制,尽管通过上述优选实施例已经对本实用新型进行了详细的描述,但本领域技术人员应当理解,可以在形式上和细节上对其作出各种各样的改变,而不偏离本实用新型权利要求书所限定的范围。Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of the utility model rather than to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the utility model.
Claims (6)
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