WO2014082532A1 - 一种ups机箱 - Google Patents

一种ups机箱 Download PDF

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Publication number
WO2014082532A1
WO2014082532A1 PCT/CN2013/087268 CN2013087268W WO2014082532A1 WO 2014082532 A1 WO2014082532 A1 WO 2014082532A1 CN 2013087268 W CN2013087268 W CN 2013087268W WO 2014082532 A1 WO2014082532 A1 WO 2014082532A1
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WO
WIPO (PCT)
Prior art keywords
chassis
wall
battery
partition
protrusions
Prior art date
Application number
PCT/CN2013/087268
Other languages
English (en)
French (fr)
Inventor
唐永军
严超
苏程
麦珍妮
Original Assignee
伊顿制造(格拉斯哥)有限合伙莫尔日分支机构
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 伊顿制造(格拉斯哥)有限合伙莫尔日分支机构 filed Critical 伊顿制造(格拉斯哥)有限合伙莫尔日分支机构
Publication of WO2014082532A1 publication Critical patent/WO2014082532A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/183Internal mounting support structures, e.g. for printed circuit boards, internal connecting means
    • G06F1/188Mounting of power supply units
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/251Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders specially adapted for stationary devices, e.g. power plant buffering or backup power supplies
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/204Racks, modules or packs for multiple batteries or multiple cells
    • H01M50/207Racks, modules or packs for multiple batteries or multiple cells characterised by their shape
    • H01M50/209Racks, modules or packs for multiple batteries or multiple cells characterised by their shape adapted for prismatic or rectangular cells
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/244Secondary casings; Racks; Suspension devices; Carrying devices; Holders characterised by their mounting method
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/289Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders characterised by spacing elements or positioning means within frames, racks or packs
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the present invention relates to a UPS chassis, and more particularly to a U PS chassis that can hold a battery therein. Background technique
  • UPS Uninterruptible Power System
  • UPS Uninterruptible Power System
  • UPS is a regulated and stable AC power supply that contains energy storage devices and is mainly composed of a rectifier and an inverter. Mainly using energy storage devices such as batteries to provide uninterrupted power supply to computers, servers, storage devices, network equipment and other computers, communication network systems or industrial control systems, industrial equipment that requires continuous operation, etc. during power outages.
  • the UPS supplies the mains voltage to the load for use.
  • the UPS is interrupted (accident blackout)
  • the UPS immediately uses the battery's power to continue to supply AC power to the load, so that the load maintains normal operation and protects the load. The hardware is not damaged.
  • the battery plays an important role in the entire UPS, and the capacity of the battery directly determines the power supply and power supply time of the UPS when the mains is interrupted.
  • the battery is usually bulky and occupies a large space in the UPS chassis. Because of its high density and heavy weight, the battery is not easily fixed to the inside of the UPS chassis, which seriously affects the stability of the UPS power supply.
  • the battery is a relatively consumable product and often needs to be replaced after a period of use, so it is also necessary to make the battery easy to disassemble and install without affecting its power supply line.
  • the battery fixing method is generally as shown in FIG. 1.
  • a partition 1 fixed to the bottom plate of the chassis is disposed in the UPS chassis, and the partition 1 has clamps 2a and 2b fixed to the partition by screws.
  • the batteries B1 and B2 are placed on the separator and fixed to the separator by the clamps 2a and 2b. Since the clamp requires screws to be fixed, tools such as a screwdriver are required when the battery is removed and installed, and the disassembly process is cumbersome.
  • the fixture itself requires a certain cost, which leads to an increase in the overall cost of the UPS. Summary of the invention
  • the invention provides a chassis for fixing a battery inside thereof, comprising:
  • a first wall of the casing body having a first limiting structure extending into the interior of the casing; a partition located in the chassis perpendicular to the first wall, for defining a space in the cabinet suitable for accommodating a battery, the partition having a plurality of protrusions, the battery being attached to the partition and the Placed on the first wall;
  • a direction perpendicular to the first wall is a first direction
  • a direction perpendicular to the partition is a second direction
  • positions of the plurality of protrusions and the first limiting structure are set to Positioning the battery in the first direction between at least one of the plurality of protrusions and the first wall, the position in the second direction being defined by the first limit structure Between the partition and the partition.
  • the chassis is configured to have a third direction in a direction perpendicular to the first direction and the second direction, and the chassis further includes a second limiting structure and a third limit respectively located on the two sides of the battery in a third direction. Structure, used to position the battery in a third direction.
  • a chassis according to the present invention wherein the second limiting structure is a second wall of the chassis, the second wall being perpendicular to the first wall.
  • a chassis according to the present invention wherein the third limiting structure is at least one of the plurality of protrusions.
  • the first limiting structure is a positioning pin or a folded edge of the first wall bent toward the inside of the chassis.
  • the first wall is a bottom plate of the chassis
  • the second wall is a front panel of the chassis
  • the second wall has a folded edge bent toward the inside of the chassis for limiting the battery in the second direction. The location on the top.
  • the battery includes the first to Nth sub-cells arranged in close proximity, N being less than or equal to 4, wherein each of the sub-cells of the first to N-th sub-cells corresponds to at least one
  • the protrusions define a position of each of the sub-cells in the first direction between the respective protrusions and the first wall.
  • a chassis according to the present invention further includes a third wall perpendicular to the first wall and parallel to the partition, the third wall and the partition, the first wall forming a cavity surrounding the battery, the third wall further The position of the battery in the second direction is defined.
  • a chassis according to the present invention wherein the projection is integrally formed with the partition.
  • a chassis according to the present invention, wherein the projections are fixed to the spacer by soldering, riveting or bonding.
  • the invention effectively defines the position of the battery by a plurality of protrusions disposed on the partition plate, and is supplemented by the partition wall and the limit pin of the wall and the limit pin or the edge of the frame, so that the position of the battery can be effectively removed.
  • Loading The battery, without any tools, forms a raised process cartridge on the separator, which is less expensive.
  • FIG. 1 is a schematic structural view of a chassis in the prior art
  • FIG. 2 is a schematic structural view of a chassis according to an embodiment of the present invention.
  • FIG. 3 is a cross-sectional view of the chassis shown in Figure 2;
  • Figure 4-8 shows the process of fixing the battery to the chassis shown in Figure 2.
  • This embodiment provides a UPS chassis.
  • the structure of the UPS chassis is as shown in FIG. 2 , including: a bottom plate 12 , a front panel 13 , and a back plate 14 , wherein the edge of the bottom plate 12 has a folded edge 12 b that is vertically bent toward the inside of the chassis, and the bottom plate 12 also has a limit pin 12a, the edge of the front panel 13 has a folded edge 13b vertically bent to the inside of the chassis;
  • a U-shaped cover plate composed of a top plate 16, a first side plate 15, and a second side plate 17;
  • the partition plate 11 is surrounded by the bottom plate 12, the front panel 13 and the back plate 14, and is perpendicular to the bottom plate 12, the front panel 13 and the back plate 14, and has a plurality of protrusions 3a, 3b, 3c and 3d on one side of the partition plate, These protrusions are integrally formed with the partition by stamping the partition or the like;
  • the batteries B1 and B2 are placed in contact with the bottom plate 12 and the partition 11 so that the batteries B1 and B2 are located in the grooves formed by the partition 11, the bottom plate 12 and the flange 12b, and are located by the partition 11, the front panel 13 And a recess formed by the flange 13b, wherein the position of the battery B1 in the X direction is defined between the bottom plate 12 and the projection 3a, and the position in the y direction is defined by the partition 11 and the flanges 12b, 13b.
  • the position of the battery B2 in the X direction is defined between the bottom plate 12 and the projections 3b and 3c
  • the position in the y direction is defined between the partition 11 and the flange 12b, and the batteries B1 and B2 are adjacent.
  • the position of the two as a whole in the z direction is defined between the limit pin 12a and the projection 3d and the front panel 13, and after the U-shaped cover is fixed to the bottom plate, the front panel 13, and the back panel 14, the first side panel 15 Further lock the position of the batteries B1 and B2 in the y direction.
  • the sectional view of the chassis is as shown in FIG.
  • FIG. 4-8 illustrate a process of securing a battery using the chassis provided in this embodiment, the process including: 1) As shown in Fig. 4, the battery B1 is first tilted into a recess formed by the partition 11, the bottom plate 12, and the flange 12b, and rotated in the direction of the arrow and pressed against the battery B1 to fit the bottom plate 12 and the partition 11 And is defined between the bottom plate 12 and the protrusion 3a, and then moves the battery B1 in the y direction as shown in FIG. 5 to fit the front panel 13, as shown in FIG. 6;
  • the battery B2 is aligned between the protrusion 3d and the battery B1, and the battery B2 is tilted into a groove formed by the partition 11, the bottom plate 12 and the flange 12b, and the battery is rotated and pressed.
  • B2 is fitted to the bottom plate 12 and the partition 11 and fixed between the projection 3d and the battery B1 as shown in FIG.
  • the position of the battery is effectively limited by the plurality of protrusions disposed on the partition plate, and the position of the partition plate and the flanges of the chassis and the limit pin or the flange on the wall, thereby effectively limiting the position of the battery.
  • the battery is disassembled and assembled, and no protruding tools are required to form a raised process cartridge on the separator.
  • the above embodiment exemplarily shows a case where the battery is fixed between the limit pin 12a and the front panel 13.
  • other limit structures may be used instead of the front panel 13 to define The position of the battery in the z direction, such as the protrusion on the partition, other limit structures on the bottom plate, and the like.
  • the limiting pin 12a on the bottom plate may also be replaced with other limiting structures, such as protrusions on the partition, etc., even using the backing plate 14 instead of the limiting pin 12a.
  • the position of the battery in the z direction may also be replaced with other limiting structures, such as protrusions on the partition, etc., even using the backing plate 14 instead of the limiting pin 12a.
  • the shape of the protrusion is adapted to define a position of the battery in a certain direction, for example, it may be a rectangle, a ladder shape, a truncated cone shape or the like, and may be integrally formed with the spacer by stamping or the like.
  • These protrusions may also be separately fabricated and fixed to the spacer by soldering, riveting or bonding.
  • the flange is preferably bent 90 degrees to the interior of the chassis.
  • each of the batteries in the chassis may be one or more
  • each of the batteries corresponds to one protrusion so that its position in the X direction is defined between the protrusion and the bottom plate.
  • the flanges 12b and 13b may also be eliminated or replaced by other limit structures, such as locating pins and the like.
  • the top plate 16, the first side plate 15, and the second side plate 17 may not be formed as a unitary U-shaped cover plate, but are respectively configured as three independent walls of the chassis, wherein One wall, for example corresponding to the position of the first side panel 15 in the above embodiment, is parallel And forming a cavity surrounding the battery with the separator and the bottom plate, the wall further defining a position of the battery in the y direction.
  • the above embodiment exemplarily shows a case where the battery is fixed between the bottom plate and the partition protrusion.
  • the bottom plate may also be replaced with other walls of the chassis, such as a top plate and a front panel.
  • the side plate, the back plate, and the like, those skilled in the art can easily make various replacements and various geometrical changes according to the relative positional relationship of the respective components in the technical solution of the present invention.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Power Engineering (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Battery Mounting, Suspending (AREA)

Abstract

本发明提供一种UPS机箱,可将电池固定于其内部,包括:机箱体的第一壁,具有伸入机箱内部的第一限位结构;位于机箱内的与所述第一壁垂直的隔板,用于在机箱内限定出适于容纳电池的空间,该隔板上具有多个凸起,电池被贴合于所述隔板和所述第一壁而放置;其中,以垂直于所述第一壁的方向为第一方向,以垂直于所述隔板的方向为第二方向,所述隔板、所述多个凸起以及所述第一限位结构的位置被设置为使得电池在第一方向上的位置被限定在所述多个凸起中的至少一个凸起与所述第一壁之间,在第二方向上的位置被限定在所述第一限位结构与所述隔板之间。

Description

一种 UPS机箱 技术领域
本发明涉及一种 UPS机箱,尤其涉及一种可将电池固定于其内部的 U PS机箱。 背景技术
UPS ( Uninterruptible Power System, 不间断电源)是一种含有储能装 置, 以整流器、 逆变器为主要组成部分的稳压稳频的交流电源。 主要利用 电池等储能装置在停电时给计算机、 服务器、 存储设备、 网络设备等计算 机、 通信网络系统或工业控制系统、 需要持续运转的工业设备等提供不间 断的电力供应。 当市电输入正常时, UPS 将市电稳压后供应给负载使用, 当市电中断( 事故停电 )时, UPS 立即利用电池的电能向负载继续供应交 流电, 使负载维持正常工作并保护负载软、 硬件不受损坏。 因此, 电池在 整个 UPS中占有举足轻重的作用, 而电池的容量直接决定了 UPS在市电 中断时的供电能力和供电时间。 电池通常体积较大,会占据 UPS机箱的较 大空间, 且由于电池的密度高、 重量大, 因此不容易牢固地固定到 UPS 机箱内部, 这会严重影响 UPS供电的稳定性。 另外电池属于相对易耗的产 品, 经常需要在使用一段时间之后进行更换, 因此还需要使电池能够易于 拆卸和安装, 且不影响其供电线路。
现有技术中的电池固定方式通常如图 1所示, 在 UPS机箱内设置一 固定到机箱底板上的隔板 1 , 隔板 1上具有夹具 2a、 2b, 其通过螺釘固定 到隔板上, 其中电池 Bl、 B2贴合于该隔板放置, 并通过夹具 2a、 2b而固 定到隔板上。 因为夹具需要螺釘来固定, 因此在拆卸和安装电池时, 都需 要螺丝刀等工具, 且拆卸过程较为繁瑣。 另外夹具本身需要一定的成本, 导致了 UPS整体成本的升高。 发明内容
因此, 本发明的目的在于提供一种 UPS机箱, 能够方便地固定电池, 且电池的拆装无需任何工具, 另外还可省去夹具的成本。
本发明提供一种机箱, 可将电池固定于其内部, 包括:
机箱体的第一壁, 具有伸入机箱内部的第一限位结构; 位于机箱内的与所述第一壁垂直的隔板, 用于在机箱内限定出适于容 纳电池的空间, 该隔板上具有多个凸起, 电池被贴合于所述隔板和所述第 一壁而放置;
其中, 以垂直于所述第一壁的方向为第一方向, 以垂直于所述隔板的 方向为第二方向, 所述多个凸起以及所述第一限位结构的位置被设置为使 得电池在第一方向上的位置被限定在所述多个凸起中的至少一个凸起与 所述第一壁之间, 在第二方向上的位置被限定在所述第一限位结构与所述 隔板之间。
根据本发明提供的机箱, 其中以垂直于第一方向和第二方向的方向为 第三方向, 所述机箱还包括在第三方向上分别位于电池两侧的第二限位结 构和第三限位结构, 用于在第三方向上限定电池的位置。
根据本发明提供的机箱, 其中所述第二限位结构为机箱的第二壁, 该 第二壁与所述第一壁垂直。
根据本发明提供的机箱, 其中所述第三限位结构为所述多个凸起中的 至少一个。
根据本发明提供的机箱, 其中所述第一限位结构为定位销或第一壁向 机箱内部弯折的折边。
根据本发明提供的机箱, 其中所述第一壁为机箱的底板, 第二壁为机 箱的前面板, 所述第二壁具有向机箱内部弯折的折边, 用于限定电池在第 二方向上的位置。
根据本发明提供的机箱, 其中所述电池包括按紧邻排列的第 1块至第 N块子电池, N小于等于 4, 其中第 1块至第 N块子电池中的每块子电池 对应至少一个所述凸起, 以将每块子电池在第一方向上的位置被限定在各 自的凸起与所述第一壁之间。
根据本发明提供的机箱, 还包括垂直于所述第一壁且平行于所述隔板 的第三壁, 第三壁与隔板、 第一壁形成环绕电池的腔体, 该第三壁进一步 限定所述电池在第二方向上的位置。
根据本发明提供的机箱, 其中所述凸起与所述隔板一体地形成。 根据本发明提供的机箱, 其中所述凸起通过焊接、 铆接或粘合的方式 固定到隔板上。
本发明通过设置在隔板上的多个凸起, 并辅以隔板和机箱各个壁及其 上的限位销或折边的限位作用, 有效地限定了电池的位置, 可方便地拆装 电池, 无需任何工具, 在隔板上形成凸起的工艺筒单, 成本较低。 附图说明
以下参照附图对本发明实施例作进一步说明, 其中:
图 1为现有技术中的机箱结构示意图;
图 2为根据本发明的一个实施例的机箱结构示意图;
图 3为图 2所示机箱的剖面图;
图 4-图 8为电池固定到图 2所示机箱中的过程示意图。 具体实施方式
为了使本发明的目的、 技术方案及优点更加清楚明白, 以下结合具体 实施例, 对本发明进一步详细说明。 应当理解, 此处所描述的具体实施例 仅仅用以解释本发明, 并不用于限定本发明。
本实施例提供一种 UPS机箱, 其结构示意图如图 2所示, 包括; 底板 12、 前面板 13和背板 14, 其中底板 12的边沿具有向机箱内部 垂直弯折的折边 12b, 且底板 12上还具有限位销 12a, 前面板 13的边沿 具有向机箱内部垂直弯折的折边 13b;
由顶板 16、 第一侧板 15和第二侧板 17构成的 U型盖板;
隔板 11 , 被底板 12、 前面板 13和背板 14包围, 且垂直于底板 12、 前面板 13和背板 14, 隔板的一侧上具有多个凸起 3a、 3b、 3c和 3d, 这 些凸起是通过对隔板进行沖压等方式与隔板一体地形成的;
其中电池 B1和 B2被贴合于底板 12和隔板 11放置,使电池 B1和 B2 位于由隔板 11、 底板 12和折边 12b构成的凹槽中, 并位于由隔板 11、 前 面板 13和折边 13b构成的凹槽中,其中电池 B1在 X方向上的位置被限定 在底板 12与凸起 3a之间,在 y方向上的位置被限定在隔板 11与折边 12b、 13b之间, 电池 B2在 X方向上的位置被限定在底板 12与凸起 3b和 3c之 间, 在 y方向上的位置被限定在隔板 11与折边 12b之间, 电池 B1和 B2 相邻, 二者作为整体在 z方向的位置被限定在限位销 12a和凸起 3d与前 面板 13之间, U型盖板固定到底板、 前面板 13和背板 14上后, 第一侧 板 15进一步锁定电池 B1和 B2在 y方向上的位置, 盖板固定好后, 机箱 的剖面图如图 3所示。
图 4-图 8示出利用本实施例提供的机箱固定电池的过程,该过程包括: 1 )如图 4所示,先将电池 B1倾斜放入由隔板 11、底板 12和折边 12b 构成的凹槽中,沿箭头方向旋转并按压电池 B1使其贴合底板 12和隔板 11 , 并被限定在底板 12与凸起 3a之间, 然后如图 5所示在 y方向上移动电池 B1 , 使其贴合前面板 13, 如图 6所示;
2 )如图 7所示, 使电池 B2对准于凸起 3d与电池 B1之间, 将电池 B2倾斜放入由隔板 11、 底板 12和折边 12b构成的凹槽中, 旋转并按压电 池 B2使其贴合底板 12和隔板 11 , 并固定到凸起 3d与电池 B 1之间, 如 图 8所示。
本实施例通过设置在隔板上的多个凸起, 并辅以隔板和机箱各个壁及 其上的限位销或折边的限位作用, 有效地限定了电池的位置, 可方便地拆 装电池, 无需任何工具, 在隔板上形成凸起的工艺筒单, 成本较低。
上述实施例中示例性地示出了电池被固定在限位销 12a与前面板 13 之间的情形, 根据本发明的其他实施例, 也可以用其他的限位结构来取代 前面板 13 而限定电池在 z方向上的位置, 例如隔板上的凸起, 底板上其 他限位结构等。
根据本发明的其他实施例, 其中所述底板上的限位销 12a也可以替换 为其他的限位结构, 例如隔板上的凸起等, 甚至于利用背板 14代替限位 销 12a来限定电池在 z方向上的位置。
根据本发明的其他实施例, 其中所述凸起的形状适于限定电池在某一 个方向上的位置, 例如可为矩形、 梯台形、 圆台形等, 可利用沖压等方式 与隔板一体地形成这些凸起, 也可以单独地制造完该凸起后再通过焊接、 铆接或粘合等固定方式固定到隔板上。
根据本发明的其他实施例, 其中所述折边优选为向机箱内部弯折 90 度。
根据本发明的其他实施例, 其中机箱内的电池可以为一个或多个, 每 个电池少对应一个凸起, 以使其在 X方向上的位置被限定在凸起和底板之 间。
根据本发明的其他实施例, 其中所述折边 12b和 13b也可以取消或被 其他限位结构所替代, 例如定位销等。
根据本发明的其他实施例, 其中顶板 16、 第一侧板 15和第二侧板 17 也可以不形成为整体的 U型盖板, 而是分别构成为机箱的三个独立的壁, 其中的一个壁, 例如对应于上述实施例中的第一侧板 15 的位置, 其平行 于所述隔板, 并与隔板、 底板形成环绕电池的腔体, 该壁可进一步限定所 述电池在 y方向上的位置。
上述实施例中示例性地示出了电池被固定在底板与隔板凸起之间的 情形, 根据本发明的其他实施例, 所述底板也可以替换成机箱的其他壁, 例如顶板、 前面板、 侧板、 背板等, 本领域技术人员可以根据本发明技术 方案中的各个部件的相对位置关系容易地做出各种替换和各种几何形状 的变化。
最后所应说明的是, 以上实施例仅用以说明本发明的技术方案而非限 制。 尽管参照实施例对本发明进行了详细说明, 本领域的普通技术人员应当 理解, 对本发明的技术方案进行修改或者等同替换, 都不脱离本发明技术方 案的精神和范围, 其均应涵盖在本发明的权利要求范围当中。

Claims

权 利 要 求
1. 一种机箱, 可将电池固定于其内部, 包括:
机箱体的第一壁, 具有伸入机箱内部的第一限位结构;
位于机箱内的与所述第一壁垂直的隔板, 用于在机箱内限定出适于容 纳电池的空间, 该隔板上具有多个凸起, 电池被贴合于所述隔板和所述第 一壁而放置;
其中, 以垂直于所述第一壁的方向为第一方向, 以垂直于所述隔板的 方向为第二方向, 所述多个凸起以及所述第一限位结构的位置被设置为使 得电池在第一方向上的位置被限定在所述多个凸起中的至少一个凸起与 所述第一壁之间, 在第二方向上的位置被限定在所述第一限位结构与所述 隔板之间。
2.根据权利要求 1所述的机箱, 其中以垂直于第一方向和第二方向的 方向为第三方向, 所述机箱还包括在第三方向上分别位于电池两侧的第二 限位结构和第三限位结构, 用于在第三方向上限定电池的位置。
3.根据权利要求 2所述的机箱, 其中所述第二限位结构为机箱的第二 壁, 该第二壁与所述第一壁垂直。
4.根据权利要求 2所述的机箱, 其中所述第三限位结构为所述多个凸 起中的至少一个。
5. 根据权利要求 1所述的机箱,其中所述第一限位结构为定位销或第 一壁向机箱内部弯折的折边。
6. 根据权利要求 1所述的机箱, 其中所述第一壁为机箱的底板, 第二 壁为机箱的前面板, 所述第二壁具有向机箱内部弯折的折边, 用于限定电 池在第二方向上的位置。
7.根据权利要求 1所述的机箱, 其中所述电池包括按紧邻排列的第 1 块至第 N块子电池, N小于等于 4, 其中第 1块至第 N块子电池中的每块 子电池对应至少一个所述凸起, 以将每块子电池在第一方向上的位置被限 定在各自的凸起与所述第一壁之间。
8. 根据权利要求 1所述的机箱,还包括垂直于所述第一壁且平行于所 述隔板的第三壁, 第三壁与隔板、 第一壁形成环绕电池的腔体, 该第三壁 进一步限定所述电池在第二方向上的位置。
9. 根据权利要求 1 所述的机箱, 其中所述凸起与所述隔板一体地形 成。
10. 根据权利要求 1所述的机箱, 其中所述凸起通过焊接、 铆接或粘 合的方式固定到隔板上。
PCT/CN2013/087268 2012-11-30 2013-11-15 一种ups机箱 WO2014082532A1 (zh)

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