Academic Journal
Evaluation of 3D-printed Pattern Material for Heat-hardened Inorganic Moulds
العنوان: | Evaluation of 3D-printed Pattern Material for Heat-hardened Inorganic Moulds |
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المؤلفون: | Jalava, Kalle, Anwar, Nurul, Orkas, Juhani |
المساهمون: | Department of Energy and Mechanical Engineering, Materials to Products, Aalto-yliopisto, Aalto University |
بيانات النشر: | AGH University of Science and Technology Press |
سنة النشر: | 2024 |
المجموعة: | Aalto University Publication Archive (Aaltodoc) / Aalto-yliopiston julkaisuarkistoa |
مصطلحات موضوعية: | solid silicate, inorganic binder, additive manufacturing, patternmaking, heat hardening |
الوصف: | Inorganic binders for sand moulding are currently of high interest due to the need to lessen our environmental impact and emissions. In this study, a heat hardened solid inorganic sodium silicate binder was tested with a 3D printed resin material to see how the use of such a material affected a silica mould’s quality, e.g. surface roughness. Results were compared to moulds made with metallic patterns. The unmodified binder had sticking issues when used with a metallic pattern, resulting in a rough as-moulded surface. Such issues were not seen with the printed resin patterns, also hinting at good performance with binders that contain performance increasing additives. The resin pattern material has a Heat Deflection Temperature (HDT) of 230°C, enabling the use of inorganic binders that require temperatures between 160–200°C to harden and dry. Additive manufacturing of such materials also allows designs for other hardening techniques than furnace heating, such as microwave heating. The moulds hardened with microwaves did not exhibit sticking issues. Additive manufacturing of tooling is a potential source of geometrical variation in final castings and are also studied in this work. In general, switching from traditional sand moulding patterns used with organic binder systems to inorganic systems, the patterns and core boxes need to be replaced by new ones made of a metallic or other heat resistant material. The studied material is a promising option for such a switch, especially when a complex shape enabled by additive manufacturing is also required. ; Peer reviewed |
نوع الوثيقة: | article in journal/newspaper |
وصف الملف: | application/pdf |
اللغة: | English |
Relation: | Journal of Casting & Materials Engineering; Volume 8, issue 2; PURE LINK: https://journals.agh.edu.pl/jcme/article/view/5947; https://aaltodoc.aalto.fi/handle/123456789/128652 |
DOI: | 10.7494/jcme.2024.8.2.25 |
الاتاحة: | https://aaltodoc.aalto.fi/handle/123456789/128652 https://doi.org/10.7494/jcme.2024.8.2.25 |
Rights: | openAccess ; This is an open access publication, which can be used, distributed and reproduced in any medium according to the Creative Commons CC-BY 4.0 License requiring that the original work has been properly cited. |
رقم الانضمام: | edsbas.522FC2DA |
قاعدة البيانات: | BASE |
DOI: | 10.7494/jcme.2024.8.2.25 |
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