模具
材料科学
活塞(光学)
铸造
冷却液
极限抗拉强度
复合材料
合金
冶金
机械工程
光学
物理
工程类
波前
作者
Woongbeom Heogh,Si Mo Yeon,Dongseok Kang,Seonghwan Park,Seong‐Jun Park,Kwanho Ryu,J.H. Sun,Leecheol Ji,Yong Son,Kyunsuk Choi,Cheol Woo Ha
标识
DOI:10.1016/j.matdes.2022.111088
摘要
This study proposes an eco-friendly (ECO) mold that is fabricated using the laser powder bed fusion (LPBF) method, which utilizes a three-dimensional (3D) cooling channel. Unlike previous studies, we designed surface-type conformal cooling channels (CCC) based on the design concept for additive manufacturing, at a constant depth corresponding to the casting part. Pin fins were installed inside the surface-type cooling channels and aligned through numerical analysis to induce the turbulence of the coolant uniformly through the cooling channel while generating less thermal stress during solidification of the as-cast Al-Si alloy-based product, which increased the cooling efficiency of the proposed ECO mold. Moreover, the ECO mold was utilized to cast an automobile piston to demonstrate its feasibility at an industrial level. The results showed that, the casting process decreased significantly from 133 to 105 s per piston (21% reduction) compared to the conventional mold with a single columnar cooling channel. Additionally, the average grain size of the ECO mold decreased from 502 to 398 µm. The ultimate tensile strength and Rockwell hardness increased by 12.5% and 5.5%, respectively.
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