JP6096610B2 - Battery tray - Google Patents

Battery tray Download PDF

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JP6096610B2
JP6096610B2 JP2013131777A JP2013131777A JP6096610B2 JP 6096610 B2 JP6096610 B2 JP 6096610B2 JP 2013131777 A JP2013131777 A JP 2013131777A JP 2013131777 A JP2013131777 A JP 2013131777A JP 6096610 B2 JP6096610 B2 JP 6096610B2
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storage battery
battery tray
storage
tray
side wall
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JP2015005484A (en
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高明 原田
高明 原田
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Toshiba Mitsubishi Electric Industrial Systems Corp
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Toshiba Mitsubishi Electric Industrial Systems Corp
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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

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Description

この発明は蓄電池用トレーに関し、より特定的には、無停電電源装置(Uninterruptible Power Supply)に代表されるような、定置型の蓄電池を収納するための蓄電池用トレーに関するものである。   The present invention relates to a storage battery tray, and more particularly to a storage battery tray for storing a stationary storage battery as represented by an uninterruptible power supply.

従来、蓄電池用トレーは、たとえば、特開平11−16555号公報(特許文献1)において開示されている。   Conventionally, a storage battery tray is disclosed in, for example, Japanese Patent Application Laid-Open No. 11-16555 (Patent Document 1).

特開平11−16555号公報Japanese Patent Laid-Open No. 11-16555

特許文献1では、蓄電池が電槽割れを起こしたときでもトレー本体から電解液が溢れ出すのを防止できる蓄電池用トレーを得ることを目的として、底板の周囲を包囲して周壁が液密に立設されていて底板上に蓄電池を収容するようになっているトレー本体を備えた蓄電池用トレーにおいて、底板上には蓄電池の底面を支える蓄電池底面支え部を備えていて蓄電池の電槽割れ時の漏洩電解液を溜める液溜め部が設けられている構成を採用している。さらに、トレー本体の底板の下には、該底板をその支持体から電気的に浮かす絶縁物が設けられている。蓄電池を収納する蓄電池用トレーを収容するようになっている電源用箱体において、蓄電池用トレーは、底板の周囲を包囲して周壁が液密に立設されていて底板上に蓄電池を収容するようになっているトレー本体と、トレー本体の底板上にて蓄電池の底面を蓄電池底面支え部で支えて蓄電池の電槽割れ時の漏洩電解液を溜める液溜め部とを備えた構造になっている。トレー本体の底板の下には、該底板をその支持体から電気的に浮かす絶縁物が設けられている。   In Patent Document 1, for the purpose of obtaining a storage battery tray capable of preventing the electrolyte from overflowing from the tray body even when the storage battery has a battery case crack, the periphery of the bottom plate is surrounded by a liquid-tight wall. In the storage battery tray provided with the tray body that is installed and accommodates the storage battery on the bottom plate, the bottom plate is provided with a storage battery bottom support portion that supports the bottom surface of the storage battery, and when the battery case of the storage battery breaks The structure provided with the liquid reservoir part which accumulates leaked electrolyte solution is employ | adopted. Further, an insulator for electrically floating the bottom plate from the support is provided under the bottom plate of the tray body. In a power supply box adapted to receive a storage battery tray for storing a storage battery, the storage battery tray surrounds the periphery of the bottom plate and has a peripheral wall standing in a liquid-tight manner to store the storage battery on the bottom plate. The tray body has a structure and a liquid reservoir part that supports the bottom surface of the storage battery on the bottom plate of the tray body by the storage battery bottom support part and stores the leaked electrolyte when the battery case of the storage battery breaks. Yes. Below the bottom plate of the tray body, an insulator is provided to electrically float the bottom plate from its support.

上記のようなトレーでは、蓄電池が膨張した場合に、液漏れが発生しやすいという問題があった。   The tray as described above has a problem that liquid leakage is likely to occur when the storage battery expands.

そこで、この発明は上記の問題を解決するためになされたものであり、液漏れの発生を防止することが可能な蓄電池用トレーを提供することを目的とするものである。   Accordingly, the present invention has been made to solve the above-described problem, and an object of the present invention is to provide a storage battery tray capable of preventing the occurrence of liquid leakage.

この発明に従った蓄電池用トレーは、複数の蓄電池を収納可能な、絶縁材により構成される蓄電池用トレーであって、蓄電池用トレーの底には蓄電池を支持する凸部と電解液を溜める空間が設けられ、複数の蓄電池の各々は位置決め部材と接触して位置決めされると共に、複数の蓄電池間には隙間が設けられており、蓄電池は膨張することが可能である。   A storage battery tray according to the present invention is a storage battery tray made of an insulating material capable of storing a plurality of storage batteries, and a bottom for storing the storage battery and a space for storing an electrolyte at the bottom of the storage battery tray Each of the plurality of storage batteries is positioned in contact with the positioning member, and a gap is provided between the plurality of storage batteries, so that the storage battery can expand.

このように構成された蓄電池用トレーでは、複数の蓄電池間には隙間が設けられているため、蓄電池が膨張して上部から液が漏れても、この液は隙間を伝って底部の空間に溜められる。その結果、液漏れを防止することが可能となる。   In the storage battery tray configured as described above, a gap is provided between a plurality of storage batteries, so that even if the storage battery expands and liquid leaks from the top, the liquid is stored in the bottom space through the gap. It is done. As a result, it is possible to prevent liquid leakage.

好ましくは、位置決め部材はリブであり、各々の蓄電池は、少なくとも4か所でリブに当接することで位置決めされる。   Preferably, the positioning member is a rib, and each storage battery is positioned by contacting the rib at at least four locations.

好ましくは、複数の蓄電池は各々の蓄電池の長手方向に沿って並んで配置される。
好ましくは、蓄電池用トレーは難燃性材料により構成される。
Preferably, the plurality of storage batteries are arranged side by side along the longitudinal direction of each storage battery.
Preferably, the storage battery tray is made of a flame retardant material.

好ましくは、蓄電池用トレーは、長手側側壁と短手側側壁とを有し、長手側側壁には薄肉部と厚肉部が設けられ、厚肉部に位置決め部材が接続されている。   Preferably, the storage battery tray has a long side wall and a short side wall, a thin wall portion and a thick wall portion are provided on the long side wall, and a positioning member is connected to the thick wall portion.

好ましくは、蓄電池用トレーの底部は、中央底部と、中央底部よりも深さの浅い外側底部とを有する。   Preferably, the bottom of the storage battery tray has a central bottom and an outer bottom that is shallower than the central bottom.

実施の形態に従った蓄電池用トレーの正面図である。It is a front view of the tray for storage batteries according to an embodiment. 実施の形態に従った蓄電池用トレーの平面図である。It is a top view of the tray for storage batteries according to an embodiment. 実施の形態に従った蓄電池用トレーの底面図である。It is a bottom view of the storage battery tray according to the embodiment. 図1中の矢印IVで示す方向からみた実施の形態に従った蓄電池用トレーの右側面図である。FIG. 4 is a right side view of the storage battery tray according to the embodiment as viewed from a direction indicated by an arrow IV in FIG. 1. 実施の形態に従った蓄電池用トレーの斜視図である。It is a perspective view of the tray for storage batteries according to an embodiment. 図2中のVI−VI線に沿って見た実施の形態に従った蓄電池用トレーの断面図である。It is sectional drawing of the tray for storage batteries according to embodiment seen along the VI-VI line in FIG. 図2中のVII−VII線に沿って見た実施の形態に従った蓄電池用トレーの断面図である。It is sectional drawing of the tray for storage batteries according to embodiment looked along the VII-VII line in FIG. 図2中のVIII−VIII線に沿って見た実施の形態に従った蓄電池用トレーの断面図である。It is sectional drawing of the tray for storage batteries according to embodiment looked along the VIII-VIII line in FIG. 図8で示す断面を拡大した、実施の形態に従った蓄電池用トレーの断面図である。It is sectional drawing of the tray for storage batteries according to embodiment which expanded the cross section shown in FIG. 実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す斜視図である。It is a perspective view which shows the use condition which accommodated the storage battery in the tray for storage batteries according to embodiment. 押さえ金具と、蓄電池と、実施の形態に従った蓄電池用トレーとの分解斜視図である。It is a disassembled perspective view of a holding metal fitting, a storage battery, and a storage battery tray according to the embodiment. 実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す横断面図である。It is a cross-sectional view which shows the use condition which accommodated the storage battery in the tray for storage batteries according to embodiment. 実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す縦断面図である。It is a longitudinal cross-sectional view which shows the use condition which accommodated the storage battery in the tray for storage batteries according to embodiment. 実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す平面図である。It is a top view which shows the use condition which accommodated the storage battery in the tray for storage batteries according to embodiment. 実施の形態に従った蓄電池用トレーに蓄電池を収納して蓄電池が膨張した使用状態を示す平面図である。It is a top view which shows the use condition which accommodated the storage battery in the tray for storage batteries according to embodiment, and the storage battery expanded.

以下、実施の形態について図面を参照して説明する。なお、以下の実施の形態では同一または相当する部分については同一の参照符号を付し、その説明については繰り返さない。   Hereinafter, embodiments will be described with reference to the drawings. In the following embodiments, the same or corresponding parts are denoted by the same reference numerals, and description thereof will not be repeated.

(1)蓄電池用トレーの構成
図1は、実施の形態に従った蓄電池用トレーの正面図である。図2は、実施の形態に従った蓄電池用トレーの平面図である。図3は、実施の形態に従った蓄電池用トレーの底面図である。図4は、図1中の矢印IVで示す方向からみた実施の形態に従った蓄電池用トレーの右側面図である。図5は、実施の形態に従った蓄電池用トレーの斜視図である。図6は、図2中のVI−VI線に沿って見た実施の形態に従った蓄電池用トレーの断面図である。図7は、図2中のVII−VII線に沿って見た実施の形態に従った蓄電池用トレーの断面図である。図8は、図2中のVIII−VIII線に沿って見た実施の形態に従った蓄電池用トレーの断面図である。図9は、図8で示す断面を拡大した、実施の形態に従った蓄電池用トレーの断面図である。
(1) Configuration of Storage Battery Tray FIG. 1 is a front view of a storage battery tray according to the embodiment. FIG. 2 is a plan view of the storage battery tray according to the embodiment. FIG. 3 is a bottom view of the storage battery tray according to the embodiment. FIG. 4 is a right side view of the storage battery tray according to the embodiment as seen from the direction indicated by arrow IV in FIG. 1. FIG. 5 is a perspective view of a storage battery tray according to the embodiment. FIG. 6 is a cross-sectional view of the storage battery tray according to the embodiment viewed along line VI-VI in FIG. FIG. 7 is a cross-sectional view of the storage battery tray according to the embodiment viewed along line VII-VII in FIG. FIG. 8 is a cross-sectional view of the storage battery tray according to the embodiment viewed along line VIII-VIII in FIG. 2. FIG. 9 is a cross-sectional view of the storage battery tray according to the embodiment, in which the cross section shown in FIG. 8 is enlarged.

これらの図を参照して、蓄電池用トレー1は、側部20と底部30とを有する。側部20は、長手側側壁21と短手側側壁22とを有する。長手側側壁21は、蓄電池用トレー1の長手方向に延在する。長手側側壁21の内周面側には、底部30から上方に向かって延在するリブ21aが複数本設けられる。長手側側壁21には薄肉部21bと厚肉部21cが設けられる。薄肉部21bは蓄電池が膨張した場合に蓄電池と長手側側壁21との接触を防止するために設けられる。厚肉部21cは、薄肉部21bよりも肉厚に設けられてリブ21aを保持している。短手側側壁22にはリブ22aが設けられており、リブ22aは蓄電池50に当接する。   With reference to these drawings, the storage battery tray 1 has a side portion 20 and a bottom portion 30. The side part 20 has a long side wall 21 and a short side wall 22. The longitudinal side wall 21 extends in the longitudinal direction of the storage battery tray 1. A plurality of ribs 21 a extending upward from the bottom 30 are provided on the inner peripheral surface side of the longitudinal side wall 21. The long side wall 21 is provided with a thin portion 21b and a thick portion 21c. The thin portion 21b is provided to prevent contact between the storage battery and the longitudinal side wall 21 when the storage battery expands. The thick part 21c is provided thicker than the thin part 21b and holds the rib 21a. A rib 22 a is provided on the short side wall 22, and the rib 22 a contacts the storage battery 50.

底部30は中央底部35と、中央底部35よりも深さの浅い外側底部36とを有する。このように底部30を2段構造とすることで、底部30の強度を向上させることができる。底部30には、複数の凸部31,33が設けられており、これらの凸部31,33以外の部分が、電解液を溜める空間32,34とされている。   The bottom 30 has a central bottom 35 and an outer bottom 36 that is shallower than the central bottom 35. Thus, the intensity | strength of the bottom part 30 can be improved by making the bottom part 30 into a 2 step | paragraph structure. The bottom portion 30 is provided with a plurality of convex portions 31 and 33, and portions other than the convex portions 31 and 33 are spaces 32 and 34 in which the electrolytic solution is stored.

蓄電池用トレー1は、さらにフランジ部40を有する。フランジ部40は、短手側側壁22側に設けられており、フランジ部40には貫通孔41が形成されている。フランジ部40は蓄電池用トレー1を台に固定するための部分であり、厚肉に構成される。   The storage battery tray 1 further has a flange portion 40. The flange portion 40 is provided on the short side wall 22 side, and a through hole 41 is formed in the flange portion 40. The flange portion 40 is a portion for fixing the storage battery tray 1 to the base, and is configured to be thick.

(2)蓄電池用トレー1の使用状態
図10は、実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す斜視図である。図11は、押さえ金具と、蓄電池と、実施の形態に従った蓄電池用トレーとの分解斜視図である。図12は、実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す横断面図である。図13は、実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す縦断面図である。
(2) Usage State of Storage Battery Tray 1 FIG. 10 is a perspective view showing a usage state in which the storage battery is stored in the storage battery tray according to the embodiment. FIG. 11 is an exploded perspective view of the presser fitting, the storage battery, and the storage battery tray according to the embodiment. FIG. 12 is a cross-sectional view showing a use state in which the storage battery is stored in the storage battery tray according to the embodiment. FIG. 13: is a longitudinal cross-sectional view which shows the use condition which accommodated the storage battery in the tray for storage batteries according to embodiment.

これらの図を参照して、蓄電池用トレー1の使用時には、蓄電池用トレー1に蓄電池50が嵌め合わせられる。この例では3つの蓄電池50が1つの蓄電池用トレー1に嵌め合わせられる例を示しているが、1つの蓄電池用トレー1にさらに多くの、または少ない蓄電池50が嵌め合わせられてもよい。蓄電池50は長手方向と有し蓄電池用トレー1の長手方向と蓄電池50の長手方向とが一致するように蓄電池50は蓄電池用トレー1に嵌め合わせられる。蓄電池50は押さえ金具51により押圧されており、押さえ金具51はボルト52によりフランジ部40に固定される。   With reference to these drawings, when the storage battery tray 1 is used, the storage battery 50 is fitted into the storage battery tray 1. In this example, three storage batteries 50 are fitted into one storage battery tray 1, but more or fewer storage batteries 50 may be fitted into one storage battery tray 1. The storage battery 50 is fitted in the storage battery tray 1 so that the storage battery 50 has a longitudinal direction and the longitudinal direction of the storage battery tray 1 matches the longitudinal direction of the storage battery 50. The storage battery 50 is pressed by a pressing metal 51, and the pressing metal 51 is fixed to the flange portion 40 by a bolt 52.

蓄電池用トレー1は難燃材、たとえば、UL94V−0規格を通過するものとすることが好ましい。さらに、蓄電池用トレー1は高強度・耐酸性材料により構成される。蓄電池用トレー1の下部には、電解液を溜める空間32,34を設けており、蓄電池用トレー1内に、蓄電池50から漏れた電解液を溜めることができる。蓄電池50の膨張によって蓄電池用トレー1が割れることを防止するために、蓄電池50の膨張分の余裕を蓄電池用トレー1に設け、蓄電池50の四隅をリブ21a,22aで固定する形状としている。膨張分の余裕のスペースは、蓄電池50の上部で液漏れが発生した場合の下まで液が流れるためのスペースを兼ねている。このような構成とすることで、絶縁シートで導電部分を包んだり、折ったりする手間がなくなるため、組立作業性が向上する。蓄電池用トレー1は成型品のため、大量生産に適しており、コストを削減することが可能となる。   The storage battery tray 1 preferably passes a flame retardant material, for example, UL94V-0 standard. Furthermore, the storage battery tray 1 is made of a high-strength, acid-resistant material. Spaces 32 and 34 for storing the electrolytic solution are provided below the storage battery tray 1, and the electrolytic solution leaking from the storage battery 50 can be stored in the storage battery tray 1. In order to prevent the storage battery tray 1 from cracking due to the expansion of the storage battery 50, the storage battery tray 1 is provided with a margin for expansion of the storage battery 50, and the four corners of the storage battery 50 are fixed by the ribs 21a and 22a. The space for the expansion is also used as a space for the liquid to flow to the bottom when a liquid leak occurs in the upper part of the storage battery 50. With such a configuration, there is no need to wrap or fold the conductive portion with the insulating sheet, so that the assembly workability is improved. Since the storage battery tray 1 is a molded product, it is suitable for mass production, and the cost can be reduced.

(3)蓄電池50の膨張
図14は、実施の形態に従った蓄電池用トレーに蓄電池を収納した使用状態を示す平面図である。図15は、実施の形態に従った蓄電池用トレーに蓄電池を収納して蓄電池が膨張した使用状態を示す平面図である。
(3) Expansion of storage battery 50 FIG. 14 is a plan view showing a use state in which the storage battery is stored in the storage battery tray according to the embodiment. FIG. 15 is a plan view showing a use state in which the storage battery is expanded by storing the storage battery in the storage battery tray according to the embodiment.

これらの図を参照して、隣接する蓄電池50間の隙間をW1、蓄電池50と短手側側壁22との間の隙間をW2、蓄電池50と長手側側壁21との間の隙間をW3とした場合に、W1が、W2およびW3よりも大きい。蓄電池50の寿命末期には、蓄電池50は、図15中の点線で示すように、膨張する場合がある。この場合でも、上記の隙間が設けられているため、蓄電池用トレー1が割れることを防止できる。さらに、隙間が存在することで蓄電池50の上部から電解液が漏れた場合であっても、この隙間を経由して下部へ電解液が流れ込んで蓄電池用トレー1内に電解液を保持することが可能である。蓄電池50が膨張しやすい方向の隙間を大きくすることができる。   Referring to these drawings, the gap between adjacent storage batteries 50 is W1, the gap between storage battery 50 and short side wall 22 is W2, and the gap between storage battery 50 and long side wall 21 is W3. In some cases, W1 is greater than W2 and W3. At the end of the life of the storage battery 50, the storage battery 50 may expand as shown by the dotted line in FIG. Even in this case, since the gap is provided, the storage battery tray 1 can be prevented from cracking. Further, even when the electrolyte leaks from the upper part of the storage battery 50 due to the presence of the gap, the electrolyte can flow into the lower part via the gap to hold the electrolyte in the storage battery tray 1. Is possible. The gap in the direction in which the storage battery 50 easily expands can be increased.

つまり、蓄電池用トレー1は、複数の蓄電池50を収納可能な、絶縁材により構成される蓄電池用トレー1であって、蓄電池用トレー1の底には蓄電池50を支持する凸部31,33と電解液を溜める空間32,34が設けられ、複数の蓄電池50の各々は位置決め部材としてのリブ21a,22aと接触して位置決めされると共に、複数の蓄電池50間には隙間が設けられており、蓄電池50は膨張することが可能である。各々の蓄電池50は、少なくとも4か所でリブに当接することで位置決めされる。複数の蓄電池50は各々の蓄電池50の長手方向に沿って並んで配置される。蓄電池用トレー1は難燃性材料により構成される。蓄電池用トレー1は、長手側側壁21と短手側側壁22とを有し、長手側側壁21には薄肉部21bと厚肉部21cが設けられ、厚肉部21cにリブ21aが接続されている。蓄電池用トレー1の底部30は、中央底部35と、中央底部35よりも深さの浅い外側底部36とを有する。   That is, the storage battery tray 1 is a storage battery tray 1 made of an insulating material that can store a plurality of storage batteries 50, and the bottoms of the storage battery tray 1 have convex portions 31 and 33 that support the storage battery 50. Spaces 32 and 34 for storing the electrolytic solution are provided, and each of the plurality of storage batteries 50 is positioned in contact with ribs 21a and 22a as positioning members, and a gap is provided between the plurality of storage batteries 50. The storage battery 50 can expand. Each storage battery 50 is positioned by contacting the ribs at at least four locations. The plurality of storage batteries 50 are arranged side by side along the longitudinal direction of each storage battery 50. The storage battery tray 1 is made of a flame retardant material. The storage battery tray 1 has a long side wall 21 and a short side wall 22. The long side wall 21 is provided with a thin portion 21b and a thick portion 21c, and a rib 21a is connected to the thick portion 21c. Yes. The bottom 30 of the storage battery tray 1 has a center bottom 35 and an outer bottom 36 that is shallower than the center bottom 35.

今回開示された実施の形態はすべての点で例示であって制限的なものではないと考えられるべきである。本発明の範囲は上記した説明ではなくて特許請求の範囲によって示され、特許請求の範囲と均等の意味および範囲内でのすべての変更が含まれることが意図される。   The embodiment disclosed this time should be considered as illustrative in all points and not restrictive. The scope of the present invention is defined by the terms of the claims, rather than the description above, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.

この発明は、蓄電池を保持するトレーの分野において用いることができる。   The present invention can be used in the field of trays for holding storage batteries.

1 蓄電池用トレー、20 側部、21 長手側側壁、21a リブ、22 短手側側壁、30 底部、31,33 凸部、32,34 空間、40 フランジ部、41 貫通孔。   DESCRIPTION OF SYMBOLS 1 Storage battery tray, 20 side part, 21 long side wall, 21a rib, 22 short side wall, 30 bottom part, 31, 33 convex part, 32, 34 space, 40 flange part, 41 through-hole.

Claims (5)

複数の蓄電池を収納可能な、絶縁材により構成される蓄電池用トレーであって、
前記蓄電池用トレーの底には蓄電池を支持する凸部と電解液を溜める空間が設けられ、
複数の前記蓄電池の各々は位置決め部材と接触して位置決めされると共に、複数の前記蓄電池間には隙間が設けられており、前記蓄電池は膨張することが可能であり、
前記蓄電池用トレーは、長手側側壁と短手側側壁とを有し、前記長手側側壁には薄肉部と厚肉部が設けられ、前記厚肉部に前記位置決め部材が接続されており、
隣接する前記蓄電池間の隙間をW1、前記蓄電池と前記短手側側壁との間の隙間をW2、前記蓄電池と前記長手側側壁との間の隙間をW3とした場合にW1がW2およびW3よりも大きく、
前記厚肉部に接続されている前記位置決め部材が、隣接する前記蓄電池間に位置して、前記蓄電池用トレーの長手方向に対する位置決めを行う、蓄電池用トレー。
A storage battery tray made of an insulating material capable of storing a plurality of storage batteries,
The bottom of the storage battery tray is provided with a convex portion for supporting the storage battery and a space for storing the electrolyte,
Each of the plurality of storage batteries is positioned in contact with a positioning member, a gap is provided between the plurality of storage batteries, and the storage battery can expand,
The storage battery tray has a long side wall and a short side wall, the long side wall is provided with a thin part and a thick part, and the positioning member is connected to the thick part,
When W1 is a gap between adjacent storage batteries, W2 is a gap between the storage battery and the short side wall, and W3 is a gap between the storage battery and the long side wall, W1 is greater than W2 and W3. also rather large,
The storage battery tray in which the positioning member connected to the thick part is positioned between the adjacent storage batteries and performs positioning in the longitudinal direction of the storage battery tray.
前記位置決め部材はリブであり、各々の前記蓄電池は、少なくとも4か所で前記リブに当接することで位置決めされる、請求項1に記載の蓄電池用トレー。   The storage battery tray according to claim 1, wherein the positioning member is a rib, and each of the storage batteries is positioned by contacting the rib at at least four locations. 複数の前記蓄電池は各々の前記蓄電池の長手方向に沿って並んで配置される、請求項1または2に記載の蓄電池用トレー。   The storage battery tray according to claim 1 or 2, wherein the plurality of storage batteries are arranged side by side along the longitudinal direction of each of the storage batteries. 難燃性材料により構成される、請求項1から3のいずれか1項に記載の蓄電池用トレー。   The storage battery tray according to any one of claims 1 to 3, wherein the storage battery tray is made of a flame-retardant material. 前記蓄電池用トレーの底部は、中央底部と、前記中央底部よりも深さの浅い外側底部とを有する、請求項1から4のいずれか1項に記載の蓄電池用トレー。   The storage battery tray according to any one of claims 1 to 4, wherein a bottom portion of the storage battery tray has a central bottom portion and an outer bottom portion having a shallower depth than the central bottom portion.
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