CN203839765U - 一种配电箱 - Google Patents
一种配电箱 Download PDFInfo
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- CN203839765U CN203839765U CN201420075482.2U CN201420075482U CN203839765U CN 203839765 U CN203839765 U CN 203839765U CN 201420075482 U CN201420075482 U CN 201420075482U CN 203839765 U CN203839765 U CN 203839765U
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- 239000003570 air Substances 0.000 claims abstract description 71
- 238000009434 installation Methods 0.000 claims abstract description 24
- 230000017525 heat dissipation Effects 0.000 claims description 7
- 208000002925 Dental Caries Diseases 0.000 claims description 6
- 230000000875 corresponding Effects 0.000 claims description 5
- 239000010410 layers Substances 0.000 claims description 5
- 239000000428 dust Substances 0.000 claims description 4
- 240000006028 Sambucus nigra Species 0.000 claims description 3
- 229910010413 TiO 2 Inorganic materials 0.000 claims description 2
- 230000000694 effects Effects 0.000 abstract description 17
- 238000005516 engineering processes Methods 0.000 abstract description 2
- 230000000191 radiation effect Effects 0.000 abstract 1
- 230000002706 hydrostatic Effects 0.000 description 6
- 230000001681 protective Effects 0.000 description 4
- 210000000614 Ribs Anatomy 0.000 description 3
- 238000001816 cooling Methods 0.000 description 3
- GWEVSGVZZGPLCZ-UHFFFAOYSA-N titan oxide Chemical compound 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O=[Ti]=O GWEVSGVZZGPLCZ-UHFFFAOYSA-N 0.000 description 3
- 235000010215 titanium dioxide Nutrition 0.000 description 3
- 229910000504 titanium dioxide Inorganic materials 0.000 description 3
- 229910052782 aluminium Inorganic materials 0.000 description 2
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminum Chemical compound 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Classifications
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- Y02A30/19—
Abstract
Description
技术领域
[0001] 本实用新型涉及配电箱技术领域,尤其涉及散热效果好的配电箱。
背景技术
[0002] 配电箱是按电气接线要求将开关设备、测量仪表、保护电器和辅助设备组装在封 闭或半封闭金属柜中或屏幅上,构成低压配电箱。正常运行时可借助手动或自动开关接通 或分断电路,故障或不正常运行时借助保护电器切断电路或报警,借测量仪表可显示运行 中的各种参数,还可对某些电气参数进行调整,对偏离正常工作状态进行提示或发出信号, 常用于各工厂、建筑、变电所中。有些配电箱需要在室外使用,室外环境复杂,室外使用的配 电箱既要能防雨又要具有良好的散热性能,尤其是配电箱内电路板结构紧凑,散热空间有 限的时候,其散热就更加重要,散热效果差会严重影响配电箱性能和使用寿命。
[0003] 中国专利授权公告号:CN203086012U,授权公告日2013年7月24日,公开了一种 防雨散热配电箱,包括配电箱体、配电箱盖和配电箱门,配电箱盖设置在配电箱体上方,配 电箱门设置在配电箱体侧面,配电箱体底部的四角均设有折叠式支脚、万向轮,配电箱体底 部设有散热孔,散热孔下设有散热管,散热管的下部直径小于散热管上部的直径,配电箱门 上设有视镜,配电箱盖的截面形状为圆弧形或三角形,且配电箱盖边缘延伸出配电箱体外。 便于观察配电箱内部各元件的情况,既能让配电箱内热量散出,又可防止雨水流入配电箱 体内而影响各元件工作,延长了整体的使用寿命。该种配电箱通过底部开设散热孔,外界空 气自然从散热孔内进入配电箱内,从而带出内部热量,然而毕竟自然散热,散热效果不佳, 尤其是无风的条件下、以及炎热的夏天,仅靠散热孔无法满足散热要求,为了降低配电箱体 积,设计时配电箱内部结构布局都非常紧凑,内部存在多层电路控制板,严重影响空气流 动,很多地方的热量无法有效的散出。 实用新型内容
[0004] 本实用新型为了克服现有技术中的室外配电箱散热性能差,内部电路板、元器件 排布紧凑导致存在通风死角的不足,提供了一种能有效避免散热死角、空气流动路线优化, 散热效果更加好,同时还具备防雨功能的配电箱。
[0005] 为了实现上述目的,本实用新型采用如下技术方案:
[0006] -种配电箱,包括配电箱本体,配电箱本体正面设有箱门,其特征是,所述的配电 箱本体的底部下端设有支撑座,所述的支撑座的四个侧面都设有若干通孔,配电箱本体的 底板上设有进风孔,配电箱本体的顶板上设有出风口,出风口处设有排风机,配电箱本体的 顶板上端设有挡雨板,挡雨板通过固定座与顶板固定连接,配电箱本体内横向设有若干扁 平的密封箱,密封箱的三侧分别与配电箱本体侧壁之间固定连接,密封箱把配电箱本体分 隔成若干个安装腔,密封箱的上侧一端设有与安装腔连通的上风口,密封箱的下侧另一端 设有与另一安装腔连通的下风口,底板下侧还设有防水罩,所述的密封箱内靠近下风口处 还设有涡流风机。
[0007] 密封箱由铝制成,密封箱一方面起到支撑的作用,增加配电箱本体的强度,把配电 箱本体内的空间分隔成多个安装腔,各种电路板、配电开关和保护器等都能根据需要布置 安装在安装腔内,同时密封箱有能有效的连接相邻的两个安装腔,相邻的两个安装腔内散 发的热量被密封箱吸收;使用时,打开排风机,排风机把配电箱本体内的热空气从顶部抽 出,外界冷空气从下端进风口处进入配电箱本体内,外界空气一般热空气在上、冷空气在下 分布,外界空气从配电箱本体下端进入后一直向上,经过密封箱的时候从下风口进入然后 从上风口排入上一个安装腔,从安装腔下侧一端流到上侧另一端,把电路板散出的热量都 有效的带走,每个安装腔内散热死角少,整体散热效果好,同时挡雨板能防止雨水浸入配电 箱本体内部,起到保护作用,下雨天外界空气湿气很大,空气能穿过防水罩,而雨水则收到 防水罩的阻挡无法被吸入配电箱内,从而对配电箱起到保护作用;有些配电箱密封性能不 足时,上端排风机工作时,空气直接从上端进入配电箱本体内,而配电箱下端基本上无空气 进入,从而导致下端的安装腔散热不足,而在每个密封腔内都安装涡流风机,涡流风机送风 量很大,能保证每个安装腔内的空气快速流动散热。本实施例中,该种配电箱可以单独或者 多个并列组合在一起安装在E-H0USE (电器屋)内使用。
[0008] 作为优选,所述的密封箱内位于上风口和下风口之间设有若干散热片,散热片之 间形成散热通道。散热片有助于安装腔内的热量快速散热进入密封腔内,从而当空气经过 时便于带走热量。
[0009] 作为优选,所述的挡雨板倾斜设置,挡雨板靠近配电箱本体正面的一端高,靠近配 电箱本体背面的一端低,挡雨板的周围向上延伸形成翻边,挡雨板上低的一端下侧设有集 水管,所述的配电箱本体背面设有S型盘管,所述的S型盘管的上端与集水管的下端连接。 下雨天雨水落到挡雨板上收集起来,流入集水管内,然后再流入S型盘管内,雨水温度较 低,S型盘管与配电箱本体背面贴合,能增加配电箱本体的整体散热效果。
[0010] 作为优选,所述的挡雨板的上侧面上设有Ti02层。Ti02层能增加表面硬度,耐腐 蚀,使得挡雨板不易被雨水腐蚀;Ti〇2层具有超亲水性和超亲油性,而阳光中的紫外线能长 期维持Ti〇 2薄膜表面的亲水性能,因此其表面长期具有自洁去污、防雾的效果,表面干净无 污染,反射效果更加好,晴天能把太阳光反射掉,从而降低配电箱本体热量。
[0011] 作为优选,配电箱本体外侧与进风缺口的对应处设有防尘罩。
[0012] 作为优选,所述的箱门包括上箱门、中箱门和下箱门,上箱门、中箱门和下箱门的 一端与配电箱本体一侧铰接,上箱门、中箱门、下箱门的另一端与配电箱本体另一侧通过锁 扣连接,其中下箱门和中箱门的上端分别向上延伸形成挡边。
[0013] 因此,本实用新型具有散热效果好,使用寿命长的有益效果。
附图说明
[0014] 图1为本实用新型的正面结构示意图。
[0015] 图2为本实用新型的侧面结构示意图。
[0016] 图中:配电箱本体1箱门2支撑座3通孔4底板5进风孔6排风机7 挡雨板8顶板9密封箱10安装腔11上风口 12下风口 13防水罩14散热片15 涡流风机16翻边17集水管18 S型盘管19液压传感器20控制器21辅助进风 孔22进风缺口 23电控阀24防尘罩25上箱门26中箱门27下箱门28锁扣29 挡边30。
具体实施方式
[0017] 下面结合附图和具体实施方式对本实用新型作进一步描述:
[0018] 如图1所示的一种配电箱,包括配电箱本体1,配电箱本体正面设有箱门2,配电箱 本体的底部下端设有支撑座3,支撑座3的四个侧面都设有若干通孔4,配电箱本体1的底 板5上设有进风孔6,底板下侧还设有防水罩14,空气能穿过防水罩,而水分则被阻挡在外 面,尤其是下雨天能防止潮湿的空气进入配电箱本体内,配电箱本体的顶板上设有出风口, 出风口处设有排风机7,排风机打开的时候,外界空气直接从底板处进入,一直向上流动把 配电箱本体内电路板散发的热量带出配电箱外,配电箱本体的顶板上端设有挡雨板8,挡雨 板通过固定座与顶板9固定连接,挡雨板在室外具有良好的挡雨效果。该种配电箱也可以 安装在E-H0USE (电气屋)内使用。
[0019] 配电箱本体1内横向设有两个扁平的密封箱10,密封箱一铝制成,密封箱的三侧 分别与配电箱本体侧壁之间密封固定连接,两个密封箱把配电箱本体分隔成三个安装腔 11,各种电路板和集线座都安装在安装腔内,密封箱的上侧左端设有与安装腔连通的上风 口 12,密封箱的下侧右端设有与另一安装腔连通的下风口 13,当外界空气从配电箱本体底 部进入后经过密封箱的时候,从下风口进入、从上风口排出,然后又进入上面密封箱的下风 口,此时空气对角流动,减小散热死角,散热效果更好;密封箱10内位于上风口和下风口之 间设有若干散热片15,散热片之间形成散热通道,密封箱10内靠近下风口处还设有涡流风 机16,涡流风机能加速空气在配电箱本体内的流动。
[0020] 如图2所示,挡雨板8倾斜设置,挡雨板8的上侧面上设有Ti02层,挡雨板靠近配 电箱本体正面的一端高,靠近配电箱本体背面的一端低,挡雨板的周围向上延伸形成翻边 17,挡雨板上低的一端下侧设有集水管18,配电箱本体背面设有S型盘管19,所述的S型盘 管的上端与集水管的下端连接,下雨天雨水落在挡雨板上沿着斜面导流进入集水管内,然 后沿着S型盘管19向下流动,流动过程中对配电箱本体背面进行冷却,提高冷却效果;集水 管的下端设有液压传感器20,液压传感器的受压端朝向集水管的进水口处,配电箱本体内 部还设有控制器21,液压传感器与控制器连接,密封箱在其靠近下风口的侧面设有辅助进 风孔22,配电箱本体上与辅助进风孔对应处设有进风缺口 23,配电箱本体1外侧与进风缺 口的对应处设有防尘罩25,辅助进风孔与进风缺口之间设有电控阀24,电控阀与控制器连 接,晴天时,外界空气温度较高,外界温度吸热能力较低,因此需要加快空气流动,此时控制 器控制排风机和涡流风机同时工作,同时电控阀处于打开状态,外界空气还可以从辅助进 风孔内进入密封箱内,由于晴天外界空气湿气小,外界空气直接从辅助进风孔处进入配电 箱本体内,空气阻力小,流速快,从而最大限度的增加空气流量和流速,增加散热效果;当下 雨天,雨水在挡雨板上汇集后流入集水管内,聚集的雨水打在液压传感器上,液压传感器检 测到压力信号,把信号传递给控制器,控制器控制电控阀关闭以及涡流风机关闭,此时靠排 风机排风以及S型盘管内的雨水散热,降低涡流风机的耗电量,延长涡流风机的使用寿命。 因此,本实用新型具有散热效果好,使用寿命长的有益效果。同时,本实用新型还能根据外 界环境调节散热系统,减少电能浪费。
[0021] 本实施例中,箱门2包括上箱门26、中箱门27和下箱门28,上箱门、中箱门和下箱 门的一端与配电箱本体一侧铰接,上箱门、中箱门、下箱门的另一端与配电箱本体另一侧通 过锁扣29连接,其中下箱门和中箱门的上端分别向上延伸形成挡边30。该种箱门打开时, 只能按照顺序依次打开上箱门、中箱门和下箱门,而配电箱总开关一般设置在与上箱门对 应处的箱体内,这样在打开上箱门的时候就能警示操作人员先关闭配电开关,防止检修人 员直接打开中箱门或下箱门进行检修而忘记切断配电开关,使用更加安全。
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