A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material
The project aim to compare the performance of beryllium copper and NAK80 mould insert materials in plastic injection moulding. The experiment involved varying critical processing parameters like melting temperature and injection pressure, and considering design aspects like shrinkage level and weigh...
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my.uthm.eprints.121012024-12-01T04:24:03Z http://eprints.uthm.edu.my/12101/ A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material Abdul Rahman, Aliff Ahmad, Aznizam TS Manufactures The project aim to compare the performance of beryllium copper and NAK80 mould insert materials in plastic injection moulding. The experiment involved varying critical processing parameters like melting temperature and injection pressure, and considering design aspects like shrinkage level and weight of the mould part. The choice between BeCu and NAK80 depends on the specific requirements of the application and the relative importance of each factor. BeCu has a better cycle time and weight, making it suitable for high-volume production scenarios. The weight of the sample is better for BeCu, making it more durable. However, NAK80 has a higher shrinkage level, which is generally desirable as it leads to less dimensional change in the final product. Other factors, such as cost and availability, may also play a role in the decision 2024-06-15 Conference or Workshop Item PeerReviewed text en http://eprints.uthm.edu.my/12101/1/P16872_bdd02a09c1a2bb57f8ced93858f053d3.pdf%2019.pdf Abdul Rahman, Aliff and Ahmad, Aznizam (2024) A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material. In: PROGRESS IN ENGINEERING APPLICATION AND TECHNOLOGY. https://doi.org/10.30880/peat.2024.05.01.041 |
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The project aim to compare the performance of beryllium copper and NAK80 mould insert materials in plastic injection moulding. The experiment involved varying critical processing parameters like melting temperature and injection pressure, and considering design aspects like shrinkage level and weight of the mould part. The choice between BeCu and NAK80 depends on the specific requirements of the application and the relative importance of each factor. BeCu has a better cycle time and weight, making it suitable for high-volume production scenarios. The weight of the sample is better for BeCu, making it more durable. However, NAK80 has a higher shrinkage level, which is generally desirable as it leads to less dimensional change in the final product. Other factors, such as cost and availability, may also play a role in the decision |
format |
Conference or Workshop Item |
author |
Abdul Rahman, Aliff Ahmad, Aznizam |
author_facet |
Abdul Rahman, Aliff Ahmad, Aznizam |
author_sort |
Abdul Rahman, Aliff |
title |
A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material |
title_short |
A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material |
title_full |
A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material |
title_fullStr |
A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material |
title_full_unstemmed |
A comparative study of NAK80 steel and beryllium copper moulds for injection moulding of polypropylene material |
title_sort |
comparative study of nak80 steel and beryllium copper moulds for injection moulding of polypropylene material |
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2024 |
url |
http://eprints.uthm.edu.my/12101/1/P16872_bdd02a09c1a2bb57f8ced93858f053d3.pdf%2019.pdf http://eprints.uthm.edu.my/12101/ https://doi.org/10.30880/peat.2024.05.01.041 |
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