JP4311948B2 - Storage battery fixing device - Google Patents

Storage battery fixing device Download PDF

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Publication number
JP4311948B2
JP4311948B2 JP2003043429A JP2003043429A JP4311948B2 JP 4311948 B2 JP4311948 B2 JP 4311948B2 JP 2003043429 A JP2003043429 A JP 2003043429A JP 2003043429 A JP2003043429 A JP 2003043429A JP 4311948 B2 JP4311948 B2 JP 4311948B2
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JP
Japan
Prior art keywords
storage battery
fixing
rail
attached
upright plane
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
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JP2003043429A
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Japanese (ja)
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JP2004253286A (en
Inventor
浩司 奥田
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Sekisui Jushi Corp
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Sekisui Jushi Corp
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Publication date
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Priority to JP2003043429A priority Critical patent/JP4311948B2/en
Publication of JP2004253286A publication Critical patent/JP2004253286A/en
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    • 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

Description

【0001】
【発明の属する技術分野】
本発明は、電気装置に電源を供給する蓄電池の固定装置に関するものである。
【0002】
【従来の技術】
従来、直立平面に対し蓄電池を取り付ける方法としては、蓄電池に取り付けた台座にビス孔等を穿設し、ビス孔に挿通したビスを直立平面に螺着して取り付ける方法や、直立平面にUバンド等を取り付け、かかるバンドにより蓄電池を挟持する方法などが用いられてきていた。
【0003】
また特許文献1においては、台座と、該台座に一体に取り付けた電池パック締結手段を有することを特徴とする電池パックの取付け治具が開示されている。
【0004】
【特許文献1】
特開2001−185108号公報
【0005】
【発明が解決しようとする課題】
しかしながら、これら従来の方法では、例えば輸送時の振動等により蓄電池を直立平面に取り付けておくことができず、電気装置を設置した後に蓄電池を取り付ける必要がある場合など、現地において簡便且つ迅速な蓄電池の取り付けが必要である場合には対応が困難であるものであった。
【0006】
また特許文献1に示す如き方法では、台座を予め直立平面に取り付けておけば簡便且つ迅速な取り付けは可能であるものの、単に締結手段により締め付けるものであるから、振動等により締結手段から外れる恐れがある。とりわけ直立平面においては、蓄電池は常時重力を受ける状態であり、締結手段の僅かな緩みでも蓄電池が脱落する恐れがある。
【0007】
本発明は上記の如き問題点に鑑みてなされたものであり、直立平面に対して簡便且つ迅速に取り付けができ、また強固な取り付けが可能となされた蓄電池の固定装置を提供せんとするものである。
【0008】
【課題を解決するための手段】
上記課題を解決するため、本発明は以下のような構成としている。すなわち、本発明に係わる蓄電池の固定装置は、取付溝が形成された2本のレールと、前記レール間において取付溝に取付部の左右端部が摺動可能に取り付けられる固定金具と、固定金具に取り付けられて蓄電池の外面に当接される固定バンドとを備え、直立平面に蓄電池を固定する装置であって、直立平面に前記レールが取り付けられ、前記レールの取付溝に固定金具の取付部が摺動されて取り付けられ、前記固定金具に前記固定バンドを取り付けることで固定バンドが蓄電池に圧接され、前記レール及び固定バンドにより蓄電池が挟持されることを特徴とするものである。
【0009】
本発明によれば、直立平面に2本のレールを取り付けておき、蓄電池を取り付ける際にレールの取付溝に固定金具の取付部を摺動させ、固定バンドを取り付けることで蓄電池が固定できるから、蓄電池の固定は簡便且つ迅速なものとなり得る。またレールと固定バンドに蓄電池が挟持されて固定されるから、レール、固定金具及び固定バンドの3つの部材が緊密に固定され、蓄電池の固定は強固なものとなり得る。
【0010】
また前記固定金具は、固定バンドが取り付けられていない状態で蓄電池を仮保持できるものであれば、固定バンドの取り付けの際に蓄電池を支持しておく必要がなくなり、取り付けがより簡便なものとなり好ましい。
【0011】
更にまた前記固定金具は、一体の材料が曲げ加工により断面コ字状となされたものであれば、適宜形状に調整した材料を曲げ加工するのみで固定金具が形成でき、複雑な加工が必要でなくなり好ましい。
【0012】
また直立平面は、電気装置の内面であれば底面や上面における水濡れや結露の恐れが小さく蓄電池への悪影響を少なくできることから本発明を好適に適用できる。また扉の内側等の限られたスペースにも取り付けることができ好ましい。
【0013】
【発明の実施の形態】
本発明の実施の形態について、図面に基づき以下に具体的に説明する。
図1〜図4は、本発明に係わる実施の一形態を示す説明図である。まず図1において、直立平面Hに2本のレール2がスポット溶接Y等により取り付けられる。レール2はクランク状の断面形状で、直立平面Hに取り付けられることでレール2と直立平面Hとの間で取付溝21が形成され、2本のレール2について取付溝21は相対向するようになされている。
【0014】
次に2本のレール2の相対向する取付溝21に、固定金具1が摺動可能に取り付けられる。固定金具1は断面コ字状の形状となされ、取付部11、下面板12、上面板13及びバンド固定部14とからなり、下面板12の幅が2本のレール2の取付溝21の間隔Kより小さくなされ、取付部11の幅が取付溝21内で摺動可能な程度に前記間隔Kより大きくなされることで、取付部11の左右端部111が取付溝21内に摺動されて挿入され、固定金具1はレール2により摺動可能に直立平面Hに取り付けられる。
【0015】
ここで、上面部13の取付部11付近の幅を、取付部11の幅と同程度として係止部131を設けておくことで、取付部11の左右端部を取付溝21に摺動させた際に、係止部131がレール2の上端に当接して固定金具1が摺動し過ぎて落下することを防止できる。
【0016】
固定金具1は、図2に示す如く一体の材料により形成されてもよい。固定金具1はアルミニウム、鉄鋼、ステンレス等の金属により形成されるが、1枚の平板の一部を切欠き、且つ貫通孔を穿設することで形成が可能である。固定金具1は、上端及び下端に切欠きを施し且つ貫通孔を穿設して、固定バンドの固定に係わるバンド固定部14及びボルト孔141が形成される。また取付部11の下方の両端部を切り欠くことで下面部12が形成される。取付部11の上方を切り欠くことで上面部13が形成されるが、上面部を形成する切欠きは必ずしも必要ではない。かかる切欠き及び貫通孔の穿設といった加工を施した平板を、a、b線において90度程度に谷折りし、c、d線において90度程度山折りすることで、容易に固定金具1が形成可能することができる。
【0017】
次に、図3において、蓄電池Bが固定金具1の下面部12及び上面部13の間に挿入され、下面部12上に置かれて仮保持される。更に固定金具1のバンド固定部14に、ボルト等の締結手段Tが固定バンド3に穿設された貫通孔31及び貫通孔141に挿通されて固定されることで、内面が蓄電池Bに当接されて固定バンド3は固定金具1に取り付けられる。ここで2本のレール2の間隔Kを蓄電池Bの幅より小さくしておくことで、固定バンド3の取り付けにより蓄電池Bが直立平面H方向に圧接される際、蓄電池Bは固定金具1ではなくレール2に圧接される。締結手段Tを固定するには、締結手段Tが螺合可能なナットを用いてもよく、また貫通孔141にねじ山を螺刻しておいてもよい。
【0018】
図4は、固定バンド3が固定金具1に取り付けられ、蓄電池Bがレール2に圧接された状態を示す側面図である。締結手段Tを螺入してゆくことで蓄電池Bは直立平面H方向に圧接されてレール2及び固定バンド3に挟持されるが、蓄電池Bが固定金具1ではなくレール2に圧接されることで、固定金具1は直立平面Hやレール2に固定されていなくても取付溝21内で摺動したりがたつく恐れがなくなり、レール2、固定金具1及び固定バンド3の3つの部材が緊密に固定され、蓄電池Bを直立平面Hに強固に固定することができる。
【0019】
また、かかる蓄電池の固定装置を用いることで、従来の方法では強固な固定が難しい直立平面においても強固な固定が可能であるから、蓄電池Bに電力を蓄電したり、また蓄電池の電力を消費する電源装置の内面に取り付け、簡便且つ迅速な取り付けにより設置における便宜を図ったり、従来は蓄電池Bの取り付けが困難であったスペースの有効活用を図ることができる。
【0020】
【発明の効果】
本発明によれば、直立平面に2本のレールを取り付けておき、蓄電池を取り付ける際にレールの取付溝に固定金具の取付部を摺動させ、固定バンドを取り付けることで蓄電池が固定できるから、蓄電池の固定は簡便且つ迅速なものとなり得る。またレールと固定バンドに蓄電池が挟持されて固定されるから、レール、固定金具及び固定バンドの3つの部材が緊密に固定され、蓄電池の固定は強固なものとなり得る。
【図面の簡単な説明】
【図1】本発明に係わる実施の一形態を示す説明図である。
【図2】本発明に係わる実施の一形態を示す平面図である。
【図3】本発明に係わる実施の一形態を示す説明図である。
【図4】本発明に係わる実施の一形態を示す側面図である。
【符号の説明】
1 固定金具
11 取付部
2 レール
3 固定バンド
H 直立平面
B 蓄電池
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a storage battery fixing device that supplies power to an electric device.
[0002]
[Prior art]
Conventionally, as a method of attaching a storage battery to an upright plane, a screw hole or the like is formed in a base attached to the storage battery, and a screw inserted through the screw hole is screwed to the upright plane, or a U band is attached to the upright plane. Etc., and a method of sandwiching a storage battery by such a band has been used.
[0003]
Patent Document 1 discloses a battery pack mounting jig characterized by having a pedestal and battery pack fastening means integrally attached to the pedestal.
[0004]
[Patent Document 1]
Japanese Patent Laid-Open No. 2001-185108
[Problems to be solved by the invention]
However, in these conventional methods, for example, when the storage battery cannot be attached to an upright plane due to vibration during transportation, etc., and it is necessary to attach the storage battery after installing the electric device, the storage battery can be simply and quickly on site. It is difficult to cope with the case where the installation of the is necessary.
[0006]
Moreover, in the method as shown in Patent Document 1, if the pedestal is previously attached to an upright plane, simple and quick attachment is possible. However, since the pedestal is simply tightened by the fastening means, there is a possibility that the fastening means may come off from the fastening means. is there. In particular, in the upright plane, the storage battery is always subjected to gravity, and the storage battery may fall off even if the fastening means is slightly loosened.
[0007]
The present invention has been made in view of the above-mentioned problems, and is intended to provide a storage battery fixing device that can be easily and quickly attached to an upright plane and that can be firmly attached. is there.
[0008]
[Means for Solving the Problems]
In order to solve the above problems, the present invention has the following configuration. That is, a storage battery fixing device according to the present invention includes two rails in which mounting grooves are formed, a mounting bracket in which the left and right ends of the mounting portion are slidably mounted on the mounting groove between the rails, and the mounting bracket attached to a fixing band that contacts the outer surface of the battery, a device for fixing the battery in an upright plane, said rail is attached to the upright plane, the mounting portion of the mounting brackets to the mounting groove of the rail Is attached by sliding, the fixed band is pressed against the storage battery by attaching the fixed band to the fixing bracket, and the storage battery is sandwiched between the rail and the fixed band.
[0009]
According to the present invention, since the two rails are attached to the upright plane, the storage battery can be fixed by attaching the fixed band by sliding the mounting portion of the fixing bracket in the rail mounting groove when attaching the storage battery. Fixing the storage battery can be simple and quick. In addition, since the storage battery is sandwiched and fixed between the rail and the fixed band, the three members of the rail, the fixing bracket, and the fixed band are closely fixed, and the storage battery can be firmly fixed.
[0010]
Further, if the fixing bracket can temporarily hold the storage battery in a state where the fixing band is not attached, it is not necessary to support the storage battery at the time of attaching the fixing band, and the attachment becomes easier and preferable. .
[0011]
Furthermore, the fixing bracket can be formed by simply bending the material adjusted to an appropriate shape, as long as the integral material has a U-shaped cross section by bending, and complicated processing is required. This is preferable.
[0012]
In addition, since the upright plane is the inner surface of the electric device, there is little risk of water wetting and condensation on the bottom surface and the upper surface, and the adverse effect on the storage battery can be reduced. It is also preferable because it can be installed in a limited space such as the inside of the door.
[0013]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be specifically described below with reference to the drawings.
1 to 4 are explanatory diagrams showing an embodiment according to the present invention. First, in FIG. 1, two rails 2 are attached to an upright plane H by spot welding Y or the like. The rail 2 has a crank-like cross-sectional shape, and is attached to the upright plane H so that an attachment groove 21 is formed between the rail 2 and the upright plane H, and the attachment grooves 21 of the two rails 2 face each other. Has been made.
[0014]
Next, the fixture 1 is slidably attached to the mounting grooves 21 of the two rails 2 facing each other. The fixture 1 has a U-shaped cross section, and includes an attachment portion 11, a lower surface plate 12, an upper surface plate 13, and a band fixing portion 14, and the width of the lower surface plate 12 is an interval between the attachment grooves 21 of the two rails 2. The width of the mounting portion 11 is made larger than the interval K to the extent that the width of the mounting portion 11 is slidable in the mounting groove 21, so that the left and right end portions 111 of the mounting portion 11 are slid into the mounting groove 21. Inserted, the fixture 1 is slidably attached to the upright plane H by the rail 2.
[0015]
Here, the left and right end portions of the mounting portion 11 are slid into the mounting groove 21 by providing the locking portion 131 with the width of the upper surface portion 13 near the mounting portion 11 being substantially the same as the width of the mounting portion 11. In this case, it is possible to prevent the locking portion 131 from coming into contact with the upper end of the rail 2 and causing the fixing bracket 1 to slide too much and fall.
[0016]
The fixture 1 may be formed of an integral material as shown in FIG. The fixture 1 is formed of a metal such as aluminum, steel, or stainless steel, but can be formed by notching a part of one flat plate and drilling a through hole. The fixing bracket 1 is provided with a band fixing portion 14 and a bolt hole 141 related to fixing of the fixing band by notching the upper end and the lower end and drilling through holes. Further, the lower surface portion 12 is formed by notching both end portions below the attachment portion 11. Although the upper surface part 13 is formed by notching the upper part of the attachment part 11, the notch which forms an upper surface part is not necessarily required. By fixing the flat plate that has been processed such as the formation of the notch and the through-hole to about 90 degrees on the a and b lines and about 90 degrees on the c and d lines, the fixing bracket 1 can be easily formed. Can be formed.
[0017]
Next, in FIG. 3, the storage battery B is inserted between the lower surface portion 12 and the upper surface portion 13 of the fixture 1 and placed on the lower surface portion 12 and temporarily held. Further, the fastening means T such as a bolt is inserted into and fixed to the band fixing portion 14 of the fixing metal 1 through the through hole 31 and the through hole 141 formed in the fixing band 3, so that the inner surface abuts against the storage battery B. Thus, the fixing band 3 is attached to the fixing bracket 1. Here, when the interval K between the two rails 2 is made smaller than the width of the storage battery B, when the storage battery B is pressed in the upright plane H direction by attaching the fixed band 3, the storage battery B is not the fixing bracket 1. It is pressed against the rail 2. In order to fix the fastening means T, a nut to which the fastening means T can be screwed may be used, or a thread may be screwed into the through hole 141.
[0018]
FIG. 4 is a side view showing a state in which the fixing band 3 is attached to the fixing bracket 1 and the storage battery B is pressed against the rail 2. By inserting the fastening means T, the storage battery B is pressed in the upright plane H direction and sandwiched between the rail 2 and the fixed band 3, but the storage battery B is pressed into the rail 2 instead of the fixing bracket 1. Even if the fixing bracket 1 is not fixed to the upright plane H or the rail 2, there is no risk of sliding or rattling in the mounting groove 21, and the three members of the rail 2, the fixing bracket 1 and the fixing band 3 are firmly fixed. Thus, the storage battery B can be firmly fixed to the upright plane H.
[0019]
Further, by using such a storage battery fixing device , it is possible to firmly fix the battery B even in an upright plane, which is difficult to be firmly fixed by the conventional method. Therefore, the battery B stores power or consumes the power of the storage battery. It can be attached to the inner surface of the power supply device, and the installation can be facilitated by simple and quick attachment, or the space that has conventionally been difficult to attach the storage battery B can be effectively utilized.
[0020]
【The invention's effect】
According to the present invention, since the two rails are attached to the upright plane, the storage battery can be fixed by attaching the fixed band by sliding the mounting portion of the fixing bracket in the rail mounting groove when attaching the storage battery. Fixing the storage battery can be simple and quick. In addition, since the storage battery is sandwiched and fixed between the rail and the fixed band, the three members of the rail, the fixing bracket, and the fixed band are closely fixed, and the storage battery can be firmly fixed.
[Brief description of the drawings]
FIG. 1 is an explanatory diagram showing an embodiment according to the present invention.
FIG. 2 is a plan view showing an embodiment according to the present invention.
FIG. 3 is an explanatory diagram showing an embodiment according to the present invention.
FIG. 4 is a side view showing an embodiment according to the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Fixing bracket 11 Mounting part 2 Rail 3 Fixed band H Upright plane B Storage battery

Claims (4)

取付溝が形成された2本のレールと、前記レール間において取付溝に取付部の左右端部が摺動可能に取り付けられる固定金具と、固定金具に取り付けられて蓄電池の外面に当接される固定バンドとを備え、直立平面に蓄電池を固定する装置であって、直立平面に前記レールが取り付けられ、前記レールの取付溝に固定金具の取付部が摺動されて取り付けられ、前記固定金具に前記固定バンドを取り付けることで固定バンドが蓄電池に圧接され、前記レール及び固定バンドにより蓄電池が挟持されることを特徴とする蓄電池の固定装置Two rails in which mounting grooves are formed, a mounting bracket that is slidably mounted on the mounting groove between the rails, and a mounting bracket that is mounted on the mounting bracket and is in contact with the outer surface of the storage battery A fixing band, and a device for fixing a storage battery to an upright plane, wherein the rail is attached to the upright plane, and a mounting portion of the fixing bracket is slid and attached to the mounting groove of the rail. A fixing device for a storage battery, wherein the fixing band is pressed against the storage battery by attaching the fixing band, and the storage battery is sandwiched between the rail and the fixing band. 固定金具は、固定バンドが取り付けられていない状態で蓄電池を仮保持できるものであることを特徴とする請求項1に記載の蓄電池の固定装置2. The storage battery fixing device according to claim 1, wherein the fixing bracket is capable of temporarily holding the storage battery in a state in which the fixing band is not attached. 固定金具は、一体の材料が曲げ加工により断面コ字状となされたものであることを特徴とする請求項1又は2に記載の蓄電池の固定装置The fixing device for a storage battery according to claim 1 or 2, wherein the fixing bracket is formed by bending an integral material into a U-shaped cross section. 直立平面は、電気装置の内面であることを特徴とする請求項1〜3のいずれかに記載の蓄電池の固定装置4. The storage battery fixing device according to claim 1, wherein the upright plane is an inner surface of the electric device .
JP2003043429A 2003-02-21 2003-02-21 Storage battery fixing device Expired - Lifetime JP4311948B2 (en)

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