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Updated: Jul 7, 2026

09:41
Blast Quantification Using Hopkinson Pressure Bars
Published on: July 5, 2016
まとめ
研究者は1.7メガバー以上の静圧を達成し,測定されたサンプル圧力の記録となった. この高圧実験は,ダイヤモンドのアンビルで,1.72メガバーのマクロスコーピックフローを明らかにした.
科学分野:
- 高圧物理学の高圧物理学
- マテリアルサイエンス 材料科学
背景:
- 静的圧力生成は,極端な条件下で材料の性質を理解するために重要です.
- 以前の記録では,サンプルで測定された静圧は1.7メガバー以下でした.
研究 の 目的:
- サンプル内で1.7メガバーを超える静的圧力を生成し,測定する.
- 材料の振る舞い,特にダイヤモンドのアンビルフローを,記録的な圧力で調査するために.
主な方法:
- 高圧生成のためにダイヤモンドウィンドウの圧力セルを使用した.
- サンプルの内部で静圧を正確に測定する.
- 25°Cの制御温度で実験を行った.
主要な成果:
- 1.7メガバーを超える持続的な静的圧力を達成しました.
- 1.72メガバーのダイアモンドの圧力面のマクロスコーピックフローを観測した.
- これは,試料でこれまでに測定された静圧の最高値を表しています.
結論:
- ダイアモンドウィンドウの圧力セルは,前例のない静圧を生成することができます.
- ダイヤモンドのは,1.72メガバーの圧力でマクロスコープの流れを示し,静的圧力アプリケーションの限界を示しています.
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