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CONCRETE COMPACTION TRACEABILITY SYSTEM AND CONCRETE COMPACTION MANAGEMENT METHOD
To provide a concrete compaction traceability system capable of grasping parts on which the compaction is applied reliably and a concrete compaction management system.SOLUTION: The concrete compaction traceability system comprises imaging means 24 for imaging surroundings including a form frame 10, a longitudinal suspension member 18 suspending a vibration element 12 in a concrete C and extending outside from the form frame 10, position acquisition means 26 for acquiring a relative position of the suspension member 18 relative to the form frame 10 based on the captured image over time, position estimation means 28 for estimating a relative position of the vibration element 12 suspended by the suspension member 18 based on the acquired position of the suspension member 18 over time, and history information acquisition means 30 for acquiring history information regarding parts on which the compaction is applied by the vibration element 12 based on the estimated position of the vibration element 12.SELECTED DRAWING: Figure 1
【課題】締固めをした箇所を確実に把握することのできるコンクリート締固めトレーサビリティシステムおよびコンクリート締固め管理方法を提供する。【解決手段】型枠10を含む周辺を撮像する撮像手段24と、コンクリートC中の振動体12を吊持して型枠10から外部に延び出る長尺状の吊持部材18と、撮像された映像に基づいて、型枠10に対する吊持部材18の相対的な位置を継時的に取得する位置取得手段26と、取得された吊持部材18の位置に基づいて、吊持部材18に吊持された振動体12の位置を継時的に推定する位置推定手段28と、推定された振動体12の位置に基づいて、振動体12による締固めを実施した箇所に関する履歴情報を取得する履歴情報取得手段30とを備えるようにする。【選択図】図1
CONCRETE COMPACTION TRACEABILITY SYSTEM AND CONCRETE COMPACTION MANAGEMENT METHOD
To provide a concrete compaction traceability system capable of grasping parts on which the compaction is applied reliably and a concrete compaction management system.SOLUTION: The concrete compaction traceability system comprises imaging means 24 for imaging surroundings including a form frame 10, a longitudinal suspension member 18 suspending a vibration element 12 in a concrete C and extending outside from the form frame 10, position acquisition means 26 for acquiring a relative position of the suspension member 18 relative to the form frame 10 based on the captured image over time, position estimation means 28 for estimating a relative position of the vibration element 12 suspended by the suspension member 18 based on the acquired position of the suspension member 18 over time, and history information acquisition means 30 for acquiring history information regarding parts on which the compaction is applied by the vibration element 12 based on the estimated position of the vibration element 12.SELECTED DRAWING: Figure 1
【課題】締固めをした箇所を確実に把握することのできるコンクリート締固めトレーサビリティシステムおよびコンクリート締固め管理方法を提供する。【解決手段】型枠10を含む周辺を撮像する撮像手段24と、コンクリートC中の振動体12を吊持して型枠10から外部に延び出る長尺状の吊持部材18と、撮像された映像に基づいて、型枠10に対する吊持部材18の相対的な位置を継時的に取得する位置取得手段26と、取得された吊持部材18の位置に基づいて、吊持部材18に吊持された振動体12の位置を継時的に推定する位置推定手段28と、推定された振動体12の位置に基づいて、振動体12による締固めを実施した箇所に関する履歴情報を取得する履歴情報取得手段30とを備えるようにする。【選択図】図1
CONCRETE COMPACTION TRACEABILITY SYSTEM AND CONCRETE COMPACTION MANAGEMENT METHOD
コンクリート締固めトレーサビリティシステムおよびコンクリート締固め管理方法
UNO MASATOSHI (author) / NEMOTO HIROSHI (author)
2020-09-03
Patent
Electronic Resource
Japanese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
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