JP2019506714A - 蓄電池の組み立て - Google Patents
蓄電池の組み立て Download PDFInfo
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- 238000009429 electrical wiring Methods 0.000 description 3
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Abstract
Description
並列構成の管状蓄電池群の両端部を受け入れ、かつ保持するための開口部のそれぞれの配列を有する、絶縁材料で作られている第1および第2の支持要素であって、蓄電池の端部が延在するそれぞれの表面を有する、第1および第2の支持要素と、
それぞれが第1および第2の支持要素の表面に接触して延在する導電材料の第1および第2のシートであって、蓄電池の端部のうちの対応する1つに溶接され、蓄電池との電気接触面を形成する、導電材料の第1および第2のシートと、
管状蓄電池用の組立モジュールのシートのうちの1つと接触して配置される管状蓄電池用の同様の組立モジュールの支持要素の相補固定配列を有する第1および第2の支持要素の固定要素の配列と
を含む、組立モジュールが提供される。
直列に結合される組立モジュールにおいて並列の蓄電池群の形状で管状蓄電池を取り付けるステップであって、組立モジュールが、
並列構成の管状蓄電池群の両端部を受け入れ、かつ保持するための開口部のそれぞれの配列を有する、絶縁材料で作られている第1および第2の支持要素であって、蓄電池の端部が延在するそれぞれの表面を有する、第1および第2の支持要素と、
それぞれが第1および第2の支持要素の表面に接触して延在する導電材料の第1および第2のシートであって、蓄電池の端部のうちの対応する1つに溶接され、蓄電池との電気接触面を形成する、導電材料の第1および第2のシートと、
管状蓄電池用の組立モジュールのシートのうちの1つと接触して配置される管状蓄電池用の同様の組立モジュールの支持要素の相補固定配列を有する第1および第2の支持要素の固定要素の配列と
を含む、ステップと、
組立モジュール間の導電材料のシートが互いに接触するように、組立モジュールを直列に配置するステップと、
組立モジュールの固定要素の配列によって組立モジュールを互いに固定するステップと
を含む、プロセスが提供される。
図1を参照すると、本発明の実施形態による、並列蓄電池4群用の組立モジュール2が示されている。モジュール2は、並列構成の蓄電池4群の両端部を受け入れ、かつ保持するための開口部10のそれぞれの配列を有する、絶縁材料で作られている第1および第2の支持要素6、8を含む。示される実施形態では、蓄電池4は円筒状であり、開口部10は円状であるが、他の管状形状も可能である。支持要素6、8は、蓄電池4の端部が延在するそれぞれの表面12を有する。導電材料の第1および第2のシート14、16は、それぞれが支持要素6、8の表面12に接触して延在する。シート14、16は、例えば材料を溶かすことによって蓄電池4の端部(端子)のうちの対応する1つに溶接され、蓄電池4との電気接触面を形成する。ナット18とナット18に適応させたねじ22の組などの固定要素の配列は、図2に示されるように、組立モジュール2のシート14、16のうちの1つと接触して配置される同様の組立モジュール2の支持要素の相補固定配列によって支持要素6、8を固定することを可能にする。従って、モジュール2は、直列配列で一緒に固定される。示される実施形態では、ナット18は、シート14の穴20と合致するように第1の支持要素6上に取り付けられ、ねじ22は、シート16の穴24を通じて突出し、ナット18とねじ22の組は、組立モジュール2と、端部同士をつなげて組み立てられた同様の組立モジュール2のナットとねじの組と連携する。
Claims (9)
- 管状蓄電池用の組立モジュールであって、
並列構成の管状蓄電池群の両端部を受け入れ、かつ保持するための開口部のそれぞれの配列を有する、絶縁材料で作られている第1および第2の支持要素であって、前記蓄電池の前記端部が延在するそれぞれの表面を有する、第1および第2の支持要素と、
それぞれが前記第1および第2の支持要素の前記表面に接触して延在する導電材料の第1および第2のシートであって、前記蓄電池の前記端部のうちの対応する1つに溶接され、前記蓄電池との電気接触面を形成する、導電材料の第1および第2のシートと、
管状蓄電池用の組立モジュールの前記シートのうちの1つと接触して配置される管状蓄電池用の同様の組立モジュールの支持要素の相補固定配列を有する前記第1および第2の支持要素の固定要素の配列と
を含む、組立モジュール。 - 前記固定配列のうちの1つが、前記第1の支持要素の導電材料の前記シートの穴と合致するように前記第1の支持要素上に取り付けられたナットの組を含み、前記固定配列のうちの別のものが、前記ナットに適応させた、前記第2の支持要素の導電材料の前記シートの穴を通じて突出するねじの組を含み、前記ナットの組と前記ねじの組が、前記組立モジュールと端部同士をつなげて組み立てられる同様の組立モジュールのナットの組とねじの組と連携する、請求項1に記載の組立モジュール。
- 前記第1の支持要素の前記表面が、前記ナットを受け入れ、かつ押し込むための前記蓄電池の前記端部間に分配されたハウジングを含み、前記第2の支持要素が、対応する前記ナットへの前記ねじのねじ止めを可能にするために、前記ねじと位置合わせされた穴を含む、請求項2に記載の組立モジュール。
- 前記ねじと位置合わせされた前記穴が、前記ねじの通過を防ぐショルダを有する、請求項3に記載の組立モジュール。
- 前記支持要素の前記表面が、前記蓄電池の前記端部間に延在する凹部を含む組立モジュールであって、前記支持要素と導電材料の前記対応するシートとの間の前記凹部に挿入される剛性材料で作られているプレートをさらに含む、請求項1に記載の組立モジュール。
- 導電材料の前記シートが、前記支持要素の側面に突出するタブを有する、請求項1に記載の組立モジュール。
- 前記蓄電池が円筒状であり、前記支持要素の前記開口部が円状である、請求項1に記載の組立モジュール。
- 前記支持要素が、長方形の形状を有し、前記支持要素の前記開口部が、均一かつ対称的に分配される、請求項1に記載の組立モジュール。
- 管状蓄電池を組み立てるためのプロセスであって、
直列に結合される組立モジュールにおいて並列の蓄電池群の形状で前記管状蓄電池を取り付けるステップであって、前記組立モジュールの各々が、
並列構成の管状蓄電池群の両端部を受け入れ、かつ保持するための開口部のそれぞれの配列を有する、絶縁材料で作られている第1および第2の支持要素であって、前記蓄電池の前記端部が延在するそれぞれの表面を有する、第1および第2の支持要素と、
それぞれが前記第1および第2の支持要素の前記表面に接触して延在する導電材料の第1および第2のシートであって、前記蓄電池の前記端部のうちの対応する1つに溶接され、前記蓄電池との電気接触面を形成する、導電材料の第1および第2のシートと、
管状蓄電池用の前記組立モジュールの前記シートのうちの1つと接触して配置される管状蓄電池用の同様の組立モジュールの支持要素の相補固定配列を有する前記第1および第2の支持要素の固定要素の配列と
を含む、ステップと、
前記組立モジュール間の導電材料の前記シートが互いに接触するように、前記組立モジュールを直列に配置するステップと、
前記組立モジュールの固定要素の前記配列によって前記組立モジュールを互いに固定するステップと
を含む、プロセス。
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CA2921925A CA2921925A1 (fr) | 2016-02-25 | 2016-02-25 | Assemblage d'accumulateurs electriques |
PCT/CA2017/050218 WO2017143433A1 (fr) | 2016-02-25 | 2017-02-22 | Assemblage d'accumulateurs électriques |
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CN116336016B (zh) * | 2023-05-26 | 2023-11-03 | 罗特液压(太仓)有限公司 | 一种能够串接使用的活塞式蓄能器 |
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CA3011626A1 (fr) | 2017-08-31 |
WO2017143433A1 (fr) | 2017-08-31 |
EP3419846A4 (fr) | 2019-01-30 |
CA2921925A1 (fr) | 2017-08-25 |
US20210135312A1 (en) | 2021-05-06 |
CN108495760B (zh) | 2022-03-11 |
CN108495760A (zh) | 2018-09-04 |
US11167631B2 (en) | 2021-11-09 |
JP7016318B2 (ja) | 2022-02-04 |
KR20180112861A (ko) | 2018-10-12 |
EP3419846A1 (fr) | 2019-01-02 |
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