JP3444972B2 - Battery processing and recovery equipment - Google Patents

Battery processing and recovery equipment

Info

Publication number
JP3444972B2
JP3444972B2 JP14372394A JP14372394A JP3444972B2 JP 3444972 B2 JP3444972 B2 JP 3444972B2 JP 14372394 A JP14372394 A JP 14372394A JP 14372394 A JP14372394 A JP 14372394A JP 3444972 B2 JP3444972 B2 JP 3444972B2
Authority
JP
Japan
Prior art keywords
battery
terminal
processing
terminals
hole
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 - Fee Related
Application number
JP14372394A
Other languages
Japanese (ja)
Other versions
JPH087934A (en
Inventor
司郎 内田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ricoh Co Ltd
Original Assignee
Ricoh Co Ltd
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.)
Filing date
Publication date
Application filed by Ricoh Co Ltd filed Critical Ricoh Co Ltd
Priority to JP14372394A priority Critical patent/JP3444972B2/en
Priority to US08/495,254 priority patent/US5651821A/en
Priority to DE1995123332 priority patent/DE19523332C2/en
Publication of JPH087934A publication Critical patent/JPH087934A/en
Application granted granted Critical
Publication of JP3444972B2 publication Critical patent/JP3444972B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • 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
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/84Recycling of batteries or fuel cells

Landscapes

  • Secondary Cells (AREA)

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、電池処理回収装置に係
り、詳しくは、例えば、ビデオ、カメラ、シェイバーや
携帯装置の電源部及びバックアップ用電池等に用いられ
る各種電池の電池破棄技術に適用することができ、特
に、使用済みで不要になった電池を廃棄する際、電池の
端子のショートによる発熱を生じ難くして、電池の発熱
による火災や火傷等の危険性を生じ難くすることがで
き、安全性を向上させることができる電池処理回収装置
に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a battery processing / collecting device, and more specifically, it is applied to a battery discarding technique for various batteries used in, for example, a power source section of a video camera, a camera, a shaver, a portable device and a backup battery. In particular, when disposing of a used and unnecessary battery, it is possible to prevent heat generation due to a short circuit of the battery terminals and to reduce the risk of fire or burn due to the heat generation of the battery. The present invention relates to a battery treatment / collection device that can improve safety.

【0002】[0002]

【従来の技術】従来、家電品、OA機器、携帯装置等が
発売され、実用に供されているが、これらの多くは、各
種電池によりその電源部を構成している。しかしなが
ら、各種電池は、必ず寿命があるため、通常、寿命に達
すると、廃棄する必要がある。また、近年、地球環境化
に対する保護が国及び自治体等で叫ばれており、益々各
種電池の回収が活発化される傾向になってきている。ま
た、各都道府県では、リサイクルの法令化により、今ま
で以上に電池の回収、再利用が促進される状況下になっ
ている。
2. Description of the Related Art Conventionally, home electric appliances, office automation equipment, portable devices, etc. have been put on the market and put into practical use, but most of them have their power supply sections constituted by various batteries. However, since each type of battery always has a life, it usually needs to be discarded when the life is reached. Further, in recent years, protection against global environmental protection has been sought by the national government and local governments, and the collection of various batteries is becoming more and more active. Moreover, in each prefecture, the legalization of recycling has promoted the collection and reuse of batteries more than ever.

【0003】このような各種電池は、機器の規格容量よ
りも電池容量が不足して使用済みで不要になった時や、
寿命等で不要で廃棄しなければならなくなった時でも、
必ず電池単体に残量電気エネルギーを有している。従
来、これらの使用済みで不要になった電池の廃棄方法
は、一般的に、各地方自治体や電池業界で準備されたボ
ール箱、金属製缶、プラスチック製容器等の電池回収処
理箱に投棄して一時保管し、所定の日数を経過した後、
専用業者が廃棄処理することにより行っている。
Such various batteries are used when they are no longer needed because the battery capacity is less than the standard capacity of the device,
Even when you have to dispose of it because it is no longer needed
Be sure to have the remaining electric energy in the battery unit. Conventionally, these used and unnecessary batteries are generally disposed of by throwing them into a battery collection box such as a ball box, metal can, or plastic container prepared by each local government or battery industry. Temporary storage, and after a predetermined number of days,
This is done by a dedicated company disposing of it.

【0004】さて、従来、電池を複数収納するバッテリ
パック装置については、例えば実開昭61−12756
6号公報や特願平4−192564号で報告されたもの
がある。前者のバッテリパック装置は、出力端子をカバ
ーによって保護して構成することにより、出力端子部で
のショートを生じ難くできるという利点を有し、後者の
バッテリパック装置は、寿命の尽きたバッテリを放電さ
せることにより、パック装置を廃棄する時の安全性を保
証できるという利点を有する。
Conventionally, for example, a battery pack device for accommodating a plurality of batteries is disclosed in Japanese Utility Model Laid-Open No. 61-12756.
There are those reported in Japanese Patent No. 6 and Japanese Patent Application No. 4-192564. The former battery pack device has an advantage that a short circuit can be less likely to occur at the output terminal portion by protecting the output terminal with a cover, and the latter battery pack device discharges a battery whose life has expired. By doing so, there is an advantage that the safety when discarding the pack device can be guaranteed.

【0005】[0005]

【発明が解決しようとする課題】しかしながら、上記し
た従来の使用済みで不要になった電池の廃棄方法では、
専用業者が廃棄処理する前に、不要になっても電気エネ
ルギーが残っている電池を電池回収処理箱に一時保管し
ていたため、特に多数の電池が集められると、電池の端
子同志が接触することによりショートして発熱し、この
電池の発熱により火災や火傷等の危険性があるという問
題があった。例えば、リチウム電池や水素電池等は、雰
囲気の水分等の影響により電池が腐触すると、腐触した
電池内部から液が漏れて雰囲気の水分等と化学反応を起
こして発火し易った。
However, in the above-mentioned conventional method of disposing of used and unnecessary batteries, the following methods are used.
Before the disposal by a dedicated company, the batteries with electrical energy remaining even if they were no longer needed were temporarily stored in the battery collection box, so the terminals of the batteries may come into contact with each other, especially when a large number of batteries are collected. There is a problem in that there is a risk of fire, burns, etc. due to the heat generation of the battery due to the short circuit. For example, in a lithium battery, a hydrogen battery or the like, when the battery is corroded due to the influence of moisture in the atmosphere, liquid leaks from the corroded inside of the battery to cause a chemical reaction with the moisture in the atmosphere and easily ignite.

【0006】次に、上記した従来のバッテリパック装置
では、何れの場合もパック装置自身の安全性を高めるこ
とを目的としており、電池自身を廃棄する際の安全性を
高めることを目的としているものではなかった。そこ
で、本発明は、使用済みで不要になった電池を廃棄する
際、電池の端子のショートによる発熱を生じ難くして、
電池の発熱による火災や火傷等の危険性を生じ難くする
ことができ、安全性を向上させることができる電池処理
回収装置を提供することを目的としている。
Next, in any of the above-mentioned conventional battery pack devices, the purpose is to improve the safety of the pack device itself, and the purpose is to improve the safety when the battery itself is discarded. Was not. Therefore, the present invention makes it difficult to generate heat due to short circuit of the terminals of the battery when disposing of the used and unnecessary battery,
It is an object of the present invention to provide a battery processing and recovery device that can reduce the risk of fire and burns due to the heat generation of a battery and improve safety.

【0007】[0007]

【課題を解決するための手段】上記課題を解決するため
に、請求項1記載の発明は、開閉自在な上カバーと、前
記上カバーの下側に設けられ、電池を縦にセットできる
電池収納穴を有する電池ガイドケース部と、前記上カバ
ーの内側に設けられ、前記電池収納穴にセットされた前
記電池の端子と接触する極部端子を有する端子接続手段
と、前記電池ガイドケース部の下側に設けられ、前記電
池収納穴にセットされた前記電池の端子と接触する電極
端子と、前記電池ガイドケース部の下側に設けられ、前
記電池収納穴にセットされた前記電池を落す電池落し穴
とを有する回転板と、前記極部端子と前記電極端子との
間に電流を流し、前記電池の放電を可能にする電池放電
手段と、前記回転板の下側に設けられ、前記電池落し穴
を通して落された前記電池を保管する開閉自在な電池収
納部とを有し、前記端子接続手段は、前記上カバーを閉
める際に前記極部端子を前記電池収納穴に差し込むこと
により、前記電池収納穴にセットされた前記電池の端子
と接触させることを特徴としている。
[Means for Solving the Problems ] To solve the above problems
According to the first aspect of the invention, an upper cover that can be opened and closed and a front
It is installed under the cover and allows you to set the battery vertically.
A battery guide case portion having a battery storage hole, and the upper cover.
Installed inside the battery, and before being set in the battery compartment
Terminal connecting means having a pole terminal in contact with the terminal of the battery
Is provided below the battery guide case, and
An electrode that contacts the terminal of the battery set in the pond storage hole
The terminals and the lower part of the battery guide case are
Battery drop hole for dropping the battery set in the battery storage hole
Of a rotating plate having, and the pole terminal and the electrode terminal
A battery discharge that allows current to flow between them to enable discharge of the battery
Means and the battery drop hole provided under the rotating plate
Battery storage that can be opened and closed to store the battery dropped through
And a terminal part for closing the upper cover.
Insert the pole terminal into the battery hole when inserting
The terminal of the battery set in the battery storage hole
It is characterized by making contact with.

【0008】また、請求項2記載の発明は、請求項1に
おいて、前記端子接続手段が、ガイド板と圧縮スプリン
グを有し、前記極部端子と前記電池収納穴にセットされ
た電池の端子との接点位置を自在に可変することを特徴
としている。 また、請求項3記載の発明は、請求項1ま
たは請求項2において、前記回転板が、前記電極端子と
前記電池落し穴とを一定位置に回転移動させる回転駆動
手段を有することを特徴としている。
The invention according to claim 2 is the same as that of claim 1.
In addition, the terminal connecting means includes a guide plate and a compression spring.
Has a plug and is set in the pole terminal and the battery storage hole.
The feature is that the contact position with the battery terminal can be freely changed.
I am trying. The invention according to claim 3 is the same as claim 1.
In addition, in claim 2, the rotary plate and the electrode terminal
Rotational drive to rotate and move the battery drop hole to a fixed position
It is characterized by having means.

【0009】また、請求項4記載の発明は、請求項1な
いし請求項3のいずれかにおいて、前記回転板が、前記
極部端子と前記電池収納穴にセットされた電池の端子と
の接触の際に、前記電極端子が前記電池の他方の端子と
接触するように回転し、前記電池の放電処理を終了した
際に、前記電池落し穴が前記電池の真下に位置するよう
に回転し、前記電池を前記電池収納部に落すことを特徴
としている。
The invention according to claim 4 is the same as claim 1.
In any one of claims 3 to 4, the rotary plate is the
Pole terminal and battery terminal set in the battery storage hole
When contacting, the electrode terminal and the other terminal of the battery
It rotated so that it came into contact, and the discharge process of the battery was completed.
So that the battery drop hole is located directly below the battery.
It rotates to the right and drops the battery into the battery compartment.
I am trying.

【0010】また、請求項5記載の発明は、請求項1な
いし請求項4のいずれかにおいて、操作板を有し、前記
極部端子と前記電極端子とを前記電池収納穴にセットさ
れた電池の端子と接触させた後に、前記操作板のスイッ
チを入力することにより、前記電池放電手段を動作させ
ることを特徴としている。
The invention according to claim 5 is the same as claim 1.
In any one of Claims 4 to 5, having an operation plate,
Set the pole terminal and the electrode terminal in the battery storage hole.
The contact of the battery that has been
Input the switch to operate the battery discharging means.
It is characterized by that.

【0011】また、請求項6記載の発明は、請求項1な
いし請求項5のいずれかにおいて、前記電池放電手段の
電池放電処理回路が、前記極部端子と前記電極端子との
出力端子間の接続ライン上に、前記接続ラインを閉接す
るスイッチと、前記スイッチにより前記接続ラインを閉
接した際に、前記出力端子間の短絡電流を緩衝する抵抗
とを有することを特徴としている。
The invention according to claim 6 is the same as claim 1.
In any one of claims 5 to 6, the battery discharging means
A battery discharge processing circuit is provided with the pole terminal and the electrode terminal.
Close the connection line on the connection line between the output terminals.
Switch and the switch closes the connection line.
A resistor that buffers the short-circuit current between the output terminals when contacted
It is characterized by having and.

【0012】[0012]

【作用】請求項1記載の発明では、電池収納穴に収納し
た電池の端子に端子接続手段の極部端子と回転板の電極
端子の出力端子を接触させ、この出力端子を通して、電
池を完全に放電させることができるので、放電処理した
電池を電池収納部に一時保管している際、電池の端子同
志が接触してもショートしないようにすることができ
る。
According to the present invention, the terminal of the battery housed in the battery housing hole is brought into contact with the pole terminal of the terminal connecting means and the output terminal of the electrode terminal of the rotating plate, and the battery is completely passed through the output terminal. Since the battery can be discharged, it is possible to prevent a short circuit even if the terminals of the battery come into contact with each other when the discharged battery is temporarily stored in the battery housing .

【0013】従って、電池の端子接触による発熱を生じ
ないようにすることができるので、火災及び火傷等の危
険性を生じないようにすることができる。請求項2記載
の発明では、端子接続手段を、極部端子における電池収
納穴に収納した電池との接点位置を自在に可変すること
ができるように、ガイド板と圧縮スプリングを有する
うに構成する。
Therefore, since it is possible to prevent heat generation due to contact of the terminals of the battery, it is possible to prevent the risk of fire and burns. According to the second aspect of the invention, the terminal connecting means is used to store the battery in the pole terminal.
As it can be freely varied contact position between the housing and the battery Osameana and I <br/> urchin configuration having a guide plate and the compression spring.

【0014】このため、端子接続手段の極部端子を、圧
縮スプリングにより押圧するとともに、電池ガイドケー
ス部上に設けたガイド板により圧縮スプリングの押圧力
を調整することにより、端子接続手段の極部端子を電池
収納穴に収納した電池の端子と効率良く完璧に接触させ
ることができるので、端子接続手段の極部端子を極部端
子と電池の端子における接続信頼性を向上させることが
できる。
Therefore, the pole terminal of the terminal connecting means is pressed by the compression spring and the pressing force of the compression spring is adjusted by the guide plate provided on the battery guide case. Terminal to battery
Since it is possible to make efficient and perfect contact with the terminals of the battery housed in the housing hole , it is possible to improve the connection reliability of the pole terminal of the terminal connecting means between the pole terminal and the battery terminal.

【0015】請求項3記載の発明では、回転板を、電極
端子と電池落し穴の位置を一定位置に回転移動させる回
転駆動手段を有するように構成する。このため、回転板
を回転させて回転板の電極端子と電池落し穴の位置を適
宜可変することができるので、電池を処理する時、極部
端子と反対側の電池収納穴に収納した電池の端子と確実
に接触するように、かつ、その電池の端子位置に来るよ
うに回転板の電極端子を自動的に持ってくることができ
るとともに、電池を放電処理した後、電池収納穴の電池
位置に来るように電池落し穴を自動的に持ってくること
ができる。
According to the third aspect of the present invention, the rotating plate has a rotation driving means for rotating the positions of the electrode terminal and the battery drop hole to a predetermined position. Therefore, the position of the electrode terminal of the rotating plate and the battery drop hole can be appropriately changed by rotating the rotating plate, so when processing the battery, the terminal of the battery housed in the battery housing hole on the side opposite to the pole terminal The electrode terminal of the rotating plate can be automatically brought into contact with the battery so that it comes into contact with the battery, and after the battery has been discharged, it is placed in the battery hole in the battery storage hole. You can automatically bring the battery drop holes to come.

【0016】請求項4記載の発明では、電池収納穴に収
納した電池の端子を端子接続手段の極部端子と接触させ
る時、電極端子が極部端子とは反対側の電池の端子と接
触させるように回転板を回転し、電池を放電処理した
後、電池収納穴に収納した電池を電池収納部に落すよう
に、かつ電池落し穴が電池収納穴に収納した電池位置に
来るように回転板を回転するように構成する。このた
め、電池の端子との接触と、電池を電池収納穴に落し込
む動作を回転板により自動的に効率良く行うことができ
る。
According to the present invention, when the terminal of the battery housed in the battery housing hole is brought into contact with the pole terminal of the terminal connecting means, the electrode terminal is brought into contact with the terminal of the battery opposite to the pole terminal. After rotating the rotating plate to discharge the battery, place the rotating plate so that the battery stored in the battery storage hole is dropped into the battery storage section and the battery drop hole is at the position of the battery stored in the battery storage hole. It is configured to rotate. Therefore, the contact with the terminal of the battery and the operation of dropping the battery into the battery housing hole can be automatically and efficiently performed by the rotating plate.

【0017】請求項5記載の発明では、電池放電手段
を、電池収納穴に電池を収納し、次いで、上カバーによ
り電池ガイドケース部を閉めて、次いで、極部端子及び
電極端子に電池の端子を各々接続することにより、スタ
ンバイ状態にした後、装置本体の操作板に配置されたス
イッチを入力することにより動作するように構成する。
According to a fifth aspect of the present invention, the battery discharging means stores the battery in the battery housing hole , then closes the battery guide case portion with the upper cover, and then connects the pole terminal and the electrode terminal to the battery terminal. By connecting each of them, a standby state is set, and then the switch is arranged to be operated by inputting a switch arranged on the operation plate of the apparatus main body.

【0018】このため、上カバーが閉まらないと、スタ
ンバイ状態にならず、しかもスイッチを入力しないと放
電処理を行うことができないので、電池の放電処理を安
全性を保持しつつ、しかも簡単な操作で行うことができ
る。請求項6記載の発明では、電池放電手段を、接続ラ
イン上に、極部端子と電極端子の出力端子間の接続ライ
ンを閉接するスイッチと、スイッチにより接続ラインを
閉接した際に、出力端子間に流れる短絡電流を緩衝する
抵抗とを有するように構成する。
For this reason, if the upper cover is not closed, the standby state is not established, and the discharge process cannot be performed without inputting the switch. Therefore, the discharge process of the battery is kept safe and a simple operation is performed. Can be done at. According to a sixth aspect of the invention, the battery discharging means includes a switch for closing and connecting the connection line between the pole terminal and the output terminal of the electrode terminal on the connection line, and an output terminal when the connection line is closed and closed by the switch. And a resistor for buffering a short-circuit current flowing therebetween.

【0019】このため、所定の抵抗を有する放電ライン
をスイッチにより閉接することができるので、出力端子
に発生する発熱を抑えて緩やかで安定した放電を行うこ
とができる。
Therefore, the discharge line having a predetermined resistance can be closed and closed by the switch, so that the heat generated at the output terminal can be suppressed and a gentle and stable discharge can be performed.

【0020】[0020]

【実施例】以下、本発明の実施例を図面を参照して説明
する。図1〜3は本発明に係る一実施例の電池処理回収
装置の構成を示す図であり、図1は電池処理回収装置全
体の外観構成を示す正面図、図2は電池処理回収装置全
体の外観構成を示す平面図、図3は電池処理回収装置全
体の構成を示す断面図である。図4,5は図1〜3に示
す電池処理回収装置の電池処理ケース本体の構成を示す
平面及び断面図、図6,7は図1〜3に示す電池処理回
収装置の回転板の構成を示す平面及び断面図、図8は図
1〜3に示す電池処理回収装置の電池放電処理回路の構
成を示す回路図である。図9は図1〜3に示す電池処理
回収装置の電池処理ケースに電池をセットする時の電池
ケースと回転板の状態を示す図、図10は図1〜3に示
す電池処理回収装置の電池処理ケースに電池をセットし
た後、上カバーを閉じた状態で電池の端子が各々の端子
接続部と接合した時の状態を示す図、図11は図1〜3
に示す電池処理回収装置で電池放電処理した後、電池接
点の解除と電池収納部に電池を落とし込む時の状態を示
す図である。
Embodiments of the present invention will be described below with reference to the drawings. 1 to 3 are views showing the configuration of a battery treatment / collection apparatus according to an embodiment of the present invention. FIG. 1 is a front view showing the external configuration of the whole battery treatment / collection apparatus, and FIG. 2 is the whole battery treatment / collection apparatus. FIG. 3 is a plan view showing the external configuration, and FIG. 3 is a cross-sectional view showing the overall configuration of the battery treatment / collection device. 4 and 5 are plan and cross-sectional views showing the structure of the battery processing case body of the battery processing and recovery device shown in FIGS. 1 to 3, and FIGS. 6 and 7 show the structure of the rotating plate of the battery processing and recovery device shown in FIGS. FIG. 8 is a plan view and a cross-sectional view, and FIG. 8 is a circuit diagram showing a configuration of a battery discharge processing circuit of the battery processing and recovery apparatus shown in FIGS. 9 is a diagram showing the state of the battery case and the rotating plate when the battery is set in the battery processing case of the battery processing and recovery apparatus shown in FIGS. 1 to 3, and FIG. 10 is the battery of the battery processing and recovery apparatus shown in FIGS. FIG. 11 is a view showing a state in which the terminals of the battery are joined to the respective terminal connecting portions with the upper cover closed after the battery is set in the processing case.
FIG. 9 is a diagram showing a state when the battery contact is released and the battery is dropped into the battery housing portion after the battery is discharged by the battery treatment and collection device shown in FIG.

【0021】まず、構成を説明する。図1,2に示すよ
うに、本実施例の電池処理回収装置は、主に大きく分け
て上カバー1と、電池処理ケース本体2と、電池収納部
3とから構成され、上カバー1は、ヒンジ4により電池
処理ケース本体2から開閉できる構造になっており、電
池処理ケース本体2は、ヒンジ5により電池収納部3か
ら開閉できる構造になっている。
First, the structure will be described. As shown in FIGS. 1 and 2, the battery treatment / collection device of the present embodiment is mainly roughly divided into an upper cover 1, a battery treatment case body 2, and a battery housing portion 3. The hinge 4 has a structure that can be opened and closed from the battery processing case main body 2, and the battery processing case main body 2 has a structure that can be opened and closed from the battery storage portion 3 by a hinge 5.

【0022】なお、ここでは、各部をヒンジ4,5によ
り単に開閉する構成を示しているが、各部を閉じている
時の安全性を考慮して、ロック機構を各々配備して構成
するのが望ましい。上カバー1の上面に配置された操作
板6には、操作ガイダンスや操作状態等を説明するLC
D表示部7と、操作スイッチ(SW)8と、上カバー解
除ボタン9とを配設している。上カバー1は、電池処理
ケース本体2内に電池を収納する以外等は、雰囲気から
水分、ごみ等が入って端子部等が汚れたり、腐触したり
することを防止するために、必ず閉めておくことが望ま
しい。上カバー1は、上カバー解除ボタン9を押すこと
により開くが、閉め忘れを考慮して、一定時間が経過す
ると、自動的に閉まるように上カバー閉め機構を設けて
構成するのが望ましい。
Although the structure in which the respective parts are simply opened and closed by the hinges 4 and 5 is shown here, in consideration of the safety when the respective parts are closed, it is preferable that the lock mechanisms are provided respectively. desirable. The operation plate 6 arranged on the upper surface of the upper cover 1 has an LC for explaining operation guidance and operation states.
A D display section 7, an operation switch (SW) 8 and an upper cover release button 9 are provided. Be sure to close the upper cover 1 to prevent the terminals and the like from getting dirty or corroded by the entry of moisture, dust, etc. from the atmosphere, except that the battery is stored in the battery processing case body 2. It is desirable to keep. Although the upper cover 1 is opened by pressing the upper cover release button 9, it is desirable to provide an upper cover closing mechanism so as to automatically close after a certain period of time in consideration of forgetting to close.

【0023】また、この装置の一連の処理操作は、必ず
上カバー1が閉じられていないと、仮に幾等操作スイッ
チ8等を押しても、動作が作動しないように動作停止機
構を設けてシステム化されているのが望ましい。この電
池処理回収装置の全体構成は、図3〜5に示す如く、上
カバー1上部の内側板には、駆動装置11が設けられ、
この駆動装置11には、駆動装置11により動作する圧
縮コイル12が接続され、圧縮コイル12には、圧縮コ
イル12により動作する端子極ピン13が接続され、こ
の圧縮コイル12と端子極ピン13間にはガイド板14
が接続されている。
Further, a series of processing operations of this apparatus is systematized by providing an operation stopping mechanism so that the operation does not operate even if the operation switch 8 or the like is pressed unless the upper cover 1 is closed. It is desirable that As shown in FIGS. 3 to 5, the entire structure of this battery processing and recovery device is provided with a drive device 11 on the inner plate above the upper cover 1.
A compression coil 12 operated by the drive device 11 is connected to the drive device 11, and a terminal pole pin 13 operated by the compression coil 12 is connected to the compression coil 12, and the compression coil 12 and the terminal pole pin 13 are connected to each other. The guide plate 14
Are connected.

【0024】電池処理ケース本体2は、ケース部本体1
6と、ケース部本体16内側に設けられた電池収納穴1
7を有する電池ガイドケース部18と、電池収納穴17
を覆うように電池ガイドケース部18底部に設けられた
後で詳述する回転板19とから構成されている。電池収
納穴17は、電池収納穴17の1個に対して、単3電池
ならば3個、単2電池ならば2個、単3電池ならば3個
という具合に収納できるように構成してもよいし、電池
収納穴17の1個に対して、単に単1、単2、単3用の
電池が各々1個収納できるように構成してもよい。
The battery processing case body 2 is the case body 1
6, and a battery storage hole 1 provided inside the case body 16
7, a battery guide case portion 18 and a battery housing hole 17
And a rotating plate 19 which will be described later in detail, which is provided on the bottom of the battery guide case portion 18 so as to cover the. The battery storage hole 17 is configured so that one battery storage hole 17 can store three AA batteries, two AA batteries, and three AA batteries. Alternatively, one battery storage hole 17 may be configured to store one AA battery, one AA battery, and one AA battery.

【0025】そして、端子極ピン13は、上カバー1の
閉め動作により圧縮コイル12を動作させることによ
り、電池ガイドケース部18の電池収納穴17内にセッ
トした電池21と接合できる位置まで可変することがで
きるとともに、ある一定の圧接された状態を保持するこ
とができる。次に、電池放電処理を説明する。上カバー
1をヒンジ4により電池処理ケース本体2から開けた
後、図9に示すように、電池処理ケースに構成された電
池ガイドケース部18の電池収納穴17内に使用済みで
不要になった廃棄すべき電池21をセットする。電池2
1の電池収納穴17内へのセットは、作業者により1個
ずつ手動でセットしてもよいが、各種電池を選択する電
池選別機にかけて自動的に選択してセットするのが好ま
しい。
The terminal pole pin 13 is moved to a position where it can be joined to the battery 21 set in the battery housing hole 17 of the battery guide case portion 18 by operating the compression coil 12 by closing the upper cover 1. It is possible to maintain a certain pressed state. Next, the battery discharging process will be described. After the upper cover 1 is opened from the battery processing case body 2 by the hinge 4, as shown in FIG. 9, it is no longer needed because it has been used in the battery storage hole 17 of the battery guide case portion 18 formed in the battery processing case. Set the battery 21 to be discarded. Battery 2
The operator may manually set the batteries in the battery storage holes 17 one by one, but it is preferable that the batteries are automatically selected and set by a battery sorter that selects various batteries.

【0026】電池21を電池収納穴17内にセットする
と、電池ガイドケース部18下部に配置された回転板1
9上の平面に配設された図6,7,9,10に示すよう
な電極端子23が電池収納穴17の所定位置に配備され
るため、回転板19の電極端子23が電池21端子の一
方と接触する。この状態で上カバー1を電池処理ケース
本体2にかぶせて閉じることにより、図10に示すよう
に、回転板19の電極端子23側とは反対側の電池21
端子に接触するまで端子極ピン13が圧縮コイル12の
圧力とガイド板14のガイドにより移動し、電池21端
子が各々接続される。
When the battery 21 is set in the battery housing hole 17, the rotating plate 1 arranged under the battery guide case portion 18
Since the electrode terminals 23 as shown in FIGS. 6, 7, 9, and 10 arranged on the plane above 9 are arranged at the predetermined positions of the battery housing holes 17, the electrode terminals 23 of the rotating plate 19 are replaced by the battery 21 terminals. Contact one. In this state, by covering the battery processing case body 2 with the upper cover 1 and closing it, as shown in FIG. 10, the battery 21 on the side opposite to the electrode terminal 23 side of the rotating plate 19 is provided.
The terminal pole pin 13 is moved by the pressure of the compression coil 12 and the guide of the guide plate 14 until it comes into contact with the terminal, and the terminals of the battery 21 are respectively connected.

【0027】次に、上カバー1の操作板6の操作スイッ
チ8をオンさせると、駆動装置11によって図8に示す
電池放電処理回路が駆動し、この操作スイッチ8により
接続ラインを閉接した際に、出力端子間に流れる短絡電
流を緩衝させて、放電を完了させる。ここでは、電流放
電処理回路には、回路の安全性を保証するために、ブレ
ーカ25を設けている。電池21の放電処理時間は、抵
抗素子24の時定数で決まるが、ランプ等を点燈して放
電させるように構成してもよい。また、放電した電流の
有効利用を考慮すると、放電した電流は、再に別の充電
池等に蓄積して、この装置自身を動かすように構成する
ことが好ましい。
Next, when the operation switch 8 of the operation plate 6 of the upper cover 1 is turned on, the battery discharge processing circuit shown in FIG. 8 is driven by the driving device 11, and when the connection line is closed and closed by this operation switch 8. Then, the short-circuit current flowing between the output terminals is buffered to complete the discharge. Here, the current discharge processing circuit is provided with a breaker 25 in order to guarantee the safety of the circuit. Although the discharge processing time of the battery 21 is determined by the time constant of the resistance element 24, it may be configured to discharge by discharging a lamp or the like. Further, in consideration of effective utilization of the discharged current, it is preferable that the discharged current is stored again in another rechargeable battery or the like to move the device itself.

【0028】そして、電池放電処理回路により電池収納
穴17内に収納した電池21の放電を完了させると、駆
動装置11の制御により、ステッピングモータ等のモー
タ駆動によって、ステッピングモータ等に接続されるウ
ォームギヤ27で駆動が連結され、回転板19の軸28
にウォームギヤ27が連結されることで、回転駆動で一
定距離回転板19が移動する。
When the battery discharge processing circuit completes the discharge of the battery 21 housed in the battery housing hole 17, the drive device 11 controls the worm gear connected to the stepping motor or the like by driving the motor such as the stepping motor or the like. The drive is connected by 27, and the shaft 28 of the rotary plate 19 is connected.
The worm gear 27 is connected to the rotary plate 19, so that the rotary plate 19 is moved by a predetermined distance by rotational driving.

【0029】次いで、図6,7に示すような回転板19
に配設された電池落し穴30が電池ガイドケース部18
の電池収納穴17の所に来るように回転板19が移動す
ると、図11に示すように、回転板19の電極端子23
と電池21の端子の一方は解除されるとともに、電池ガ
イドケース部18側の電池21端子側は電池ガイドケー
ス部18により押さえ付けられているので、その電池ガ
イドケース部18の押圧力等により、電池21が回転板
19の電池落し穴30を通って電池収納部3に落とし込
まれる。
Then, the rotary plate 19 as shown in FIGS.
The battery drop hole 30 provided in the battery guide case portion 18
When the rotary plate 19 is moved so as to come to the battery storage hole 17 of the above, as shown in FIG.
Since one of the terminals of the battery 21 and the battery 21 is released and the battery 21 terminal side of the battery guide case portion 18 side is pressed by the battery guide case portion 18, the pressing force of the battery guide case portion 18 causes The battery 21 is dropped into the battery housing portion 3 through the battery drop hole 30 of the rotating plate 19.

【0030】なお、放電処理後の電池21を、電池落し
穴30を通して電池収納部3内に落とし込んだ後、回転
板19の電極端子23は、回転板19を回転させて再度
前回使用した電極端子23位置が電池収納穴17の所定
位置に来るように回転してもよいが、同じ箇所で耐えず
電池21の端子を接触させると、摩耗等が生じて接触不
良が生じ易くなり好ましくないので、別の電極端子23
が電池収納穴17の所定位置に来るように回転板19を
回転させてもよい。
After the battery 21 after the discharging process is dropped into the battery housing portion 3 through the battery drop hole 30, the electrode terminal 23 of the rotary plate 19 is rotated by rotating the rotary plate 19 and the electrode terminal 23 previously used again. It may be rotated so that the position comes to the predetermined position of the battery housing hole 17, but if the terminals of the battery 21 are brought into contact with each other without enduring at the same position, abrasion or the like is likely to occur and contact failure is likely to occur, which is not preferable. Electrode terminal 23
The rotating plate 19 may be rotated so that the battery is located at a predetermined position in the battery housing hole 17.

【0031】また、電池収納部3内に収納される電池2
1は、予め電池収納部3内に用意したビニール袋等に収
納して袋詰めするように構成してもよいし、電池収納部
3内に更に設けた電池選別用収納部で電池21を選別し
て収納するように構成してもよい。このように、本実施
例では、電池ガイドケース部18の電池収納穴17内に
廃棄する電池21をセットした後、電池21を放電処理
回路により放電処理し、その後、放電処理した電池21
を回転板19の電池落し穴30を通して電池収納部3に
収納して保管するように構成している。このため、回収
業者が回収に来るまでの間、各電池21の電気エネルギ
ーを略完全に0にすることができるので、仮に各電池2
1の端子同士が接触しても、電池21の端子接触による
発熱を生じないようにすることができる。
Further, the battery 2 housed in the battery housing section 3
1 may be configured to be stored in a plastic bag or the like prepared in advance in the battery storage unit 3 and packed, or the battery selection storage unit further provided in the battery storage unit 3 selects the batteries 21. It may be configured to be stored. As described above, in this embodiment, after the battery 21 to be discarded is set in the battery housing hole 17 of the battery guide case portion 18, the battery 21 is discharged by the discharge processing circuit, and then the discharged battery 21 is discharged.
Is stored in the battery storage portion 3 through the battery drop hole 30 of the rotary plate 19. For this reason, the electric energy of each battery 21 can be almost completely reduced to 0 until the collection company comes to the collection.
It is possible to prevent heat generation due to the contact of the terminals of the battery 21 even if the terminals of 1 contact each other.

【0032】このため、電池21の発熱による火災や火
傷等の危険性を生じないようにすることができるので、
廃棄時の電池21の安定性を向上させることができる。
従って、分解までの一時保管時、及び専門業者での分解
時の安全対策に大きく貢献することができるとともに、
更に回収時の集合処理に大きな安全性を期待することが
できるため、廃棄又はリサイクル化の推進に大きく貢献
することができ、啓蒙活動も大きく展開することができ
る。
Therefore, it is possible to prevent the risk of fire, burns, etc. due to the heat generation of the battery 21,
The stability of the battery 21 at the time of disposal can be improved.
Therefore, it can greatly contribute to the safety measures at the time of temporary storage until disassembly and at the time of disassembly by a specialist.
Further, since it is possible to expect great safety in collective processing at the time of collection, it is possible to greatly contribute to promotion of disposal or recycling, and enlightenment activities can be greatly expanded.

【0033】また、本実施例では、図8に示す放電処理
回路にて電池21を放電処理するように構成したため、
放電処理回路の抵抗素子24の時定数を適宜調整するこ
とにより、急激に放電させずに、少しずつ放電させるこ
とができるので、熱エネルギー変換を緩やかに行って、
出力端子に加わる熱を抑えながら放電を安定に行うこと
ができる。
In this embodiment, the battery 21 is discharged by the discharge processing circuit shown in FIG.
By appropriately adjusting the time constant of the resistance element 24 of the discharge processing circuit, it is possible to gradually discharge without suddenly discharging, so that thermal energy conversion is performed gently.
Stable discharge can be performed while suppressing heat applied to the output terminal.

【0034】なお、上記実施例では、放電処理した電池
21を電池収納部3に一時保管した後、廃棄処理する場
合について説明したが、例えば放電処理後の電池21の
端子の少なくともどちらか一方を、Si等の電気絶縁材
で塗布したり、キャップ、ビニールシート等でシールド
したりするように構成してもよい。また、ビニールシー
ト等で電池21全体を覆うようにシールドしてもよい。
In the above embodiment, the case where the discharged battery 21 is temporarily stored in the battery housing 3 and then discarded is described. For example, at least one of the terminals of the discharged battery 21 is , Si or the like, or may be shielded with a cap, a vinyl sheet or the like. Alternatively, a vinyl sheet or the like may be used as a shield so as to cover the entire battery 21.

【0035】これらの場合、仮に放電処理後の電池21
に電気エネルギーが残留していても、電池21の端子同
士のショートを更に効率良く生じないようにすることが
できる。
In these cases, the battery 21 after the discharge treatment is assumed.
Even if the electric energy remains, the short circuit between the terminals of the battery 21 can be prevented more efficiently.

【0036】[0036]

【発明の効果】本発明によれば、使用済みで不要になっ
た電池を廃棄する際、電池の端子のショートによる発熱
を生じ難くして、電池の発熱による火災や火傷等の危険
性を生じ難くすることができ、安全性を向上させること
ができるという効果がある。
According to the present invention, when a used battery that is no longer needed is discarded, heat is less likely to be generated due to a short circuit of the battery terminals, and there is a risk of fire or burn due to the heat generation of the battery. There is an effect that it can be made difficult and the safety can be improved.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明に係る一実施例の電池処理回収装置全体
の外観構成を示す正面図である。
FIG. 1 is a front view showing an external configuration of an entire battery treatment / collection device according to an embodiment of the present invention.

【図2】本発明に係る一実施例の電池処理回収装置全体
の外観構成を示す平面図である。
FIG. 2 is a plan view showing an external configuration of the entire battery treatment / collection device according to one embodiment of the present invention.

【図3】本発明に係る一実施例の電池処理回収装置全体
の外観構成を示す断面図である。
FIG. 3 is a cross-sectional view showing an external configuration of the entire battery treatment / collection device according to one embodiment of the present invention.

【図4】図1〜3に示す電池処理回収装置の電池処理ケ
ース本体の構成を示す平面図である。
FIG. 4 is a plan view showing the configuration of a battery processing case body of the battery processing / collecting device shown in FIGS.

【図5】図1〜3に示す電池処理回収装置の電池処理ケ
ース本体の構成を示す断面図である。
5 is a cross-sectional view showing a configuration of a battery processing case body of the battery processing / collecting device shown in FIGS.

【図6】図1〜3に示す電池処理回収装置の回転板の構
成を示す平面図である。
FIG. 6 is a plan view showing a configuration of a rotary plate of the battery treatment / collection device shown in FIGS.

【図7】図1〜3に示す電池処理回収装置の回転板の構
成を示す断面図である。
FIG. 7 is a cross-sectional view showing a configuration of a rotary plate of the battery treatment / collection device shown in FIGS.

【図8】図1〜3に示す電池処理回収装置の電池放電処
理回路の構成を示す回路図である。
FIG. 8 is a circuit diagram showing a configuration of a battery discharge processing circuit of the battery processing / collecting device shown in FIGS.

【図9】図1〜3に示す電池処理回収装置の電池処理ケ
ースに電池をセットする時の電池ケースと回転板の状態
を示す図である。
9 is a diagram showing a state of a battery case and a rotating plate when a battery is set in the battery processing case of the battery processing / collecting device shown in FIGS.

【図10】図1〜3に示す電池処理回収装置の電池処理
ケースに電池をセットした後、上カバーを閉じた状態で
電池の端子が各々の端子接続部と接合した時の状態を示
す図である。
FIG. 10 is a diagram showing a state in which after the battery is set in the battery processing case of the battery processing / collecting device shown in FIGS. 1 to 3, the terminals of the battery are joined to the respective terminal connection parts with the upper cover closed. Is.

【図11】図1〜3に示す電池処理回収装置で電池放電
処理した後、電池接点の解除と電池収納部に電池を落と
し込む時の状態を示す図である。
FIG. 11 is a diagram showing a state in which the battery contact is released and the battery is dropped into the battery housing portion after the battery is discharged by the battery treatment and collection device shown in FIGS.

【符号の説明】[Explanation of symbols]

1 上カバー 2 電池処理ケース本体 3 電池収納部 4,5 ヒンジ 6 操作板 7 LCD表示部 8 操作スイッチ(スイッチ、電池放電手段) 9 上カバー解除ボタン 11 駆動装置 12 圧縮コイル(圧縮スプリング、端子接続手段) 13 端子極ピン(極部端子、端子接続手段) 14 ガイド板(端子接続手段) 16 ケース部本体 17 電池収納穴 18 電池ガイドケース部 19 回転板 21 電池 23 電極端子 24 抵抗素子(抵抗、電池放電手段) 25 ブレーカ(電池放電手段) 27 ウォームギヤ(回転駆動手段) 28 軸(回転駆動手段) 30 電池落し穴1 Upper Cover 2 Battery Processing Case Body 3 Battery Storage 4, 5 Hinge 6 Operation Plate 7 LCD Display 8 Operation Switch (Switch, Battery Discharge Means) 9 Upper Cover Release Button 11 Drive Device 12 Compression Coil (Compression Spring, Terminal Connection) 13 ) Terminal pole pin (pole terminal, terminal connecting means) 14 Guide plate (terminal connecting means) 16 Case body 17 Battery housing hole 18 Battery guide case 19 Rotating plate 21 Battery 23 Electrode terminal 24 Resistance element (resistance, Battery discharging means) 25 Breaker (battery discharging means) 27 Worm gear (rotation driving means) 28 Shaft (rotation driving means) 30 Battery drop hole

Claims (6)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】 開閉自在な上カバーと、 前記上カバーの下側に設けられ、電池を縦にセットでき
る電池収納穴を有する電池ガイドケース部と、 前記上カバーの内側に設けられ、前記電池収納穴にセッ
トされた前記電池の端子と接触する極部端子を有する端
子接続手段と、 前記電池ガイドケース部の下側に設けられ、前記電池収
納穴にセットされた前記電池の端子と接触する電極端子
と、前記電池ガイドケース部の下側に設けられ、前記電
池収納穴にセットされた前記電池を落す電池落し穴とを
有する回転板と、 前記極部端子と前記電極端子との間に電流を流し、前記
電池の放電を可能にする電池放電手段と、 前記回転板の下側に設けられ、前記電池落し穴を通して
落された前記電池を保管する開閉自在な電池収納部とを
有し、 前記端子接続手段は、前記上カバーを閉める際に前記極
部端子を前記電池収納穴に差し込むことにより、前記電
池収納穴にセットされた前記電池の端子と接触させるこ
とを特徴とする電池処理回収装置。
1. An upper cover that can be opened and closed , and a battery provided vertically below the upper cover so that batteries can be set vertically.
And a battery guide case portion having a battery storage hole that is provided inside the upper cover, and is set in the battery storage hole.
End having a pole terminal in contact with the terminal of the battery
It is provided below the battery connecting case and the battery guide case part, and
Electrode terminals that come into contact with the terminals of the battery set in the storage hole
Is provided below the battery guide case, and
Drop the battery set in the pond storage hole
A rotating plate having , passing a current between the pole terminal and the electrode terminal,
A battery discharging means that enables discharging of the battery, and a battery discharging hole provided under the rotating plate, through the battery drop hole.
A battery compartment that can be opened and closed to store the dropped batteries.
The terminal connecting means has the pole when the upper cover is closed.
By inserting the terminal of the part into the battery storage hole,
Make sure that it contacts the terminals of the battery set in the pond storage hole.
And a battery processing and recovery device.
【請求項2】 前記端子接続手段は、ガイド板と圧縮ス
プリングを有し、前記極部端子と前記電池収納穴にセッ
トされた電池の端子との接点位置を自在に可変すること
を特徴とする請求項1に記載の電池処理回収装置。
2. The terminal connecting means comprises a guide plate and a compression spacer.
Has a pulling ring and is set in the pole terminal and the battery storage hole.
To freely change the contact position with the battery terminal
The battery processing and recovery device according to claim 1, wherein
【請求項3】 前記回転板は、前記電極端子と前記電池
落し穴とを一定位置に回転移動させる回転駆動手段を有
することを特徴とする請求項1または請求項2に記載の
電池処理回収装置。
3. The rotating plate includes the electrode terminal and the battery.
Equipped with a rotation drive mechanism that rotates the pit and the ring to a fixed position.
The method according to claim 1 or 2, characterized in that
Battery processing and recovery device.
【請求項4】 前記回転板は、前記極部端子と前記電池
収納穴にセットされた電池の端子との接触の際に、前記
電極端子が前記電池の他方の端子と接触するように回転
し、前記電池の放電処理を終了した際に、前記電池落し
穴が前記電池の真下に位置するように回転し、前記電池
を前記電池収納部に落すことを特徴とする請求項1ない
し請求項3のいずれかに記載の電池処理回収装置
4. The rotating plate includes the pole terminal and the battery.
When contacting the terminals of the battery set in the storage hole,
Rotate so that the electrode terminal comes into contact with the other terminal of the battery
When the battery discharge process is completed,
Rotate so that the hole is directly below the battery
2. The battery is dropped into the battery storage section.
The battery processing and recovery device according to claim 3 .
【請求項5】 操作板を有し、前記極部端子と前記電極
端子とを前記電池収 納穴にセットされた電池の端子と接
触させた後に、前記操作板のスイッチを入力することに
より、前記電池放電手段を動作させることを特徴とする
請求項1ないし請求項4のいずれかに記載の電池処理回
収装置。
5. An operating plate, the pole terminal and the electrode
Terminal and the terminal of the battery set in the battery Osamu Osameana contact
After touching it, inputting the switch on the operation plate
Is characterized in that the battery discharging means is operated.
The battery treatment cycle according to any one of claims 1 to 4.
Collection device.
【請求項6】 前記電池放電手段の電池放電処理回路
は、前記極部端子と前記電極端子との出力端子間の接続
ライン上に、前記接続ラインを閉接するスイッチと、前
記スイッチにより前記接続ラインを閉接した際に、前記
出力端子間の短絡電流を緩衝する抵抗とを有することを
特徴とする請求項1ないし請求項5のいずれかに記載の
電池処理回収装置。
6. A battery discharge processing circuit of the battery discharging means.
Is a connection between the output terminals of the pole terminal and the electrode terminal.
On the line, a switch for closing and connecting the connection line,
When closing the connection line with the switch,
Having a resistor that buffers the short-circuit current between the output terminals
6. The method according to any one of claims 1 to 5, characterized in that
Battery processing and recovery device.
JP14372394A 1994-06-27 1994-06-27 Battery processing and recovery equipment Expired - Fee Related JP3444972B2 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP14372394A JP3444972B2 (en) 1994-06-27 1994-06-27 Battery processing and recovery equipment
US08/495,254 US5651821A (en) 1994-06-27 1995-06-27 Battery disposal and collection apparatus
DE1995123332 DE19523332C2 (en) 1994-06-27 1995-06-27 Battery disposal and collection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP14372394A JP3444972B2 (en) 1994-06-27 1994-06-27 Battery processing and recovery equipment

Publications (2)

Publication Number Publication Date
JPH087934A JPH087934A (en) 1996-01-12
JP3444972B2 true JP3444972B2 (en) 2003-09-08

Family

ID=15345503

Family Applications (1)

Application Number Title Priority Date Filing Date
JP14372394A Expired - Fee Related JP3444972B2 (en) 1994-06-27 1994-06-27 Battery processing and recovery equipment

Country Status (1)

Country Link
JP (1) JP3444972B2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR3009441B1 (en) * 2013-08-02 2015-09-04 Renault Sa DISCHARGE SYSTEM OF AN ELECTRIC BATTERY MODULE.

Also Published As

Publication number Publication date
JPH087934A (en) 1996-01-12

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