Tag Archives: Aluminum Casting

Fig. 1. a) cross section of a slab with solidification cracks, b) Reflection configuration: Excitation laser and detection laser are arranged at the same spot. Ultrasonic waves are induced in the sample by an pulsed excitation laser (red), propagate through the sample and get reflected or scattered by interfaces (cracks, blowholes,…). The detection of reflected and scattered ultrasonic waves is realized with a two wave beam mixing interferometer (green). c) Transmission configuration: Excitation laser (red) and detection laser (green) are arranged at the opposite side of the sample.

Detection of Casting Defects in Aluminum Slabs by Laser Ultrasonic Measurements

鋳造欠陥のリアルタイム検出:レーザー超音波探傷がアルミニウムスラブの品質をどう変えるか この技術概要は、Jürgen ROITHER氏らによって執筆され、「19th World Conference on Non-Des

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Figure 10: Simulation compared with real casting of cracks

自動車産業向け生産プロセスを最適化するシミュレーションアプリケーションの適用

Apply simulation application optimize production process for car industry ダイカストシミュレーションで生産を最適化:自動車産業における欠陥予測と品

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Figure 1. Effects of aging temperature on the Vickers hardness curves of die cast Al–Si–Cu–Mg alloy

AGING METALLURGY AND MECHANICAL PRPERTIES ON Al-Si-Cu-Mg DIE CASTING ALLOY

Al-Si-Cu-Mgダイカスト合金の時効処理を最適化:二段時効による硬度130HV達成への道 本技術概要は、[T. Ando氏ら]が執筆し、[the Proceedings of the 16th Internatio

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Fig. 1. Scheme of demulsification set-up

Research on Properties and Applications of New Lightweight Aluminum Alloy Materials

高圧ダイカストの廃クーラント処理を最適化:濁度法による分離効率62%向上の秘訣 本技術概要は、Rafał WAL氏およびIzabela POLOWCZYK氏によって執筆され、ECOL CHEM ENG S.(2024年)

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Fig. 3. Effects of Fe and Mn content on soldering layer.

真空HPDCプロセスがAl-Si-Mg合金の機械的特性とダイソルダーリング性をいかに向上させるか

Mechanical and Die Soldering Properties of Al-Si-Mg Alloys with Vacuum HPDC Process この技術概要は、[Chang-Yeol Jeong氏

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Fig. 2. Microstructure of Al-Si-Mg-Mn and Al-Mg-Si-Mn alloys in the initial state and after chemical modification of eutectic (developed based on: www.alurheinfelden.com)

Al-Mg-Si-Mn合金の微細構造形成と結晶粒微細化

Al-Mg-Si-Mn合金の微細構造形成と結晶粒微細化 高延性Al-Mg-Si-Mn合金のブレークスルー:チタン添加がもたらす強度と延性の二重改善効果とは? 本技術概要は、Viktoriya Boyko氏らによる学術論文

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