Durability Comparison of SKD61 and FDAC Steel Mold Inserts in High-Pressure Die-Casting Process
The high-pressure die-casting (HPDC) process involves injecting molten light metal into a steel mold under high pressure, resulting in parts with excellent surface quality and precise dimensions. However, this process subjects the mold to thermal fatigue and mechanical stress, which can lead to dama...
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| Veröffentlicht in: | Machines (Basel) Jg. 13; H. 5; S. 352 |
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01.05.2025
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| Abstract | The high-pressure die-casting (HPDC) process involves injecting molten light metal into a steel mold under high pressure, resulting in parts with excellent surface quality and precise dimensions. However, this process subjects the mold to thermal fatigue and mechanical stress, which can lead to damage over time. This study investigated the wear characteristics of two types of inserts made from different steel materials, SKD61 steel and FDAC steel, under HPDC conditions. A thorough approach that combined computer simulations, experiments, and 3D scanning was employed to analyze wear patterns and dimensional changes after up to 300 casting cycles. The results indicate that the SKD61 steel outperformed the FDAC steel in terms of wear resistance and dimensional stability. The maximum deposition values of the SKD61 mold were only 0.009 mm, which was only 25% compared to the FDAC mold, indicating a significantly higher wear resistance. These findings are crucial for selecting and enhancing insert materials in HPDC, ultimately leading to higher-quality and more efficient casting. |
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| AbstractList | The high-pressure die-casting (HPDC) process involves injecting molten light metal into a steel mold under high pressure, resulting in parts with excellent surface quality and precise dimensions. However, this process subjects the mold to thermal fatigue and mechanical stress, which can lead to damage over time. This study investigated the wear characteristics of two types of inserts made from different steel materials, SKD61 steel and FDAC steel, under HPDC conditions. A thorough approach that combined computer simulations, experiments, and 3D scanning was employed to analyze wear patterns and dimensional changes after up to 300 casting cycles. The results indicate that the SKD61 steel outperformed the FDAC steel in terms of wear resistance and dimensional stability. The maximum deposition values of the SKD61 mold were only 0.009 mm, which was only 25% compared to the FDAC mold, indicating a significantly higher wear resistance. These findings are crucial for selecting and enhancing insert materials in HPDC, ultimately leading to higher-quality and more efficient casting. |
| Audience | Academic |
| Author | Nguyen, Van Thanh Tien Nguyen Le Dang, Hai Nguyen, Van-Thuc Vo, Xuan Tien Hoang, Van Huong |
| Author_xml | – sequence: 1 givenname: Hai surname: Nguyen Le Dang fullname: Nguyen Le Dang, Hai – sequence: 2 givenname: Van-Thuc surname: Nguyen fullname: Nguyen, Van-Thuc – sequence: 3 givenname: Van Huong surname: Hoang fullname: Hoang, Van Huong – sequence: 4 givenname: Xuan Tien orcidid: 0009-0004-5558-4506 surname: Vo fullname: Vo, Xuan Tien – sequence: 5 givenname: Van Thanh Tien surname: Nguyen fullname: Nguyen, Van Thanh Tien |
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| SubjectTerms | Alloys Aluminum alloys Casting Casting inserts Design Die steels Dimensional changes Dimensional stability FDAC steel High pressure Materials selection Mechanical properties Metal fatigue mold durability Molds Pressure die casting Simulation SKD61 steel Steel Stress analysis Surface properties Taguchi methods Temperature Thermal cycling Thermal fatigue Velocity wear analysis Wear resistance |
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| Title | Durability Comparison of SKD61 and FDAC Steel Mold Inserts in High-Pressure Die-Casting Process |
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