Comparative study of pattern making via single, dual-stage wax injection molding, and additive manufacturing for investment casting of stainless-steel manifold product

Pattern making is a critical stage in investment casting for producing complex components. This study evaluates a novel dual-stage wax injection moulding method against the conventional single-stage process and an additive manufacturing approach. A complex stainless steel automotive manifold was evaluated to assess dimensional accuracy, precision, and mass production viability. Results revealed that single-stage moulding exceeded the 1 mm tolerance limit. The dual-stage method significantly improved accuracy and precision, yielding target deviations of 0.09–0.46 mm with standard deviations of 0.01–0.14 mm. Although additive manufacturing achieved the highest accuracy (deviations of 0.02–0.32 mm, standard deviations of 0.01–0.08 mm), it proved inefficient for production volumes exceeding 10 units. Consequently, dual-stage injection moulding is the preferred method for high-volume production.

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Publication Details

Journal
International Journal of Cast Metals Research
Published
2026-10-06
DOI
https://doi.org/10.1080/13640461.2026.2739677
Primary Topic
Additive Manufacturing and 3D Printing Technologies
Type
article
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article

Comparative study of pattern making via single, dual-stage wax injection molding, and additive manufacturing for investment casting of stainless-steel manifold product

Intan Mardiono, Zhixian Dong, Sheng‐Chan Lee, Imang Eko Saputro et al.
International Journal of Cast Metals Research
Additive Manufacturing and 3D Printing Technologies
article

Comparative study of pattern making via single, dual-stage wax injection molding, and additive manufacturing for investment casting of stainless-steel manifold product

Intan Mardiono, Zhixian Dong, Sheng‐Chan Lee, Imang Eko Saputro, Yiin‐Kuen Fuh, Cheng-Fu Huang
article en

Abstract

Pattern making is a critical stage in investment casting for producing complex components. This study evaluates a novel dual-stage wax injection moulding method against the conventional single-stage process and an additive manufacturing approach. A complex stainless steel automotive manifold was evaluated to assess dimensional accuracy, precision, and mass production viability. Results revealed that single-stage moulding exceeded the 1 mm tolerance limit. The dual-stage method significantly improved accuracy and precision, yielding target deviations of 0.09–0.46 mm with standard deviations of 0.01–0.14 mm. Although additive manufacturing achieved the highest accuracy (deviations of 0.02–0.32 mm, standard deviations of 0.01–0.08 mm), it proved inefficient for production volumes exceeding 10 units. Consequently, dual-stage injection moulding is the preferred method for high-volume production.

International Journal of Cast Metals Research
National Central University (TW), Sumatera Institute of Technology (ID), Science Factory (US)
Openalex Percentile: Top 21%
Additive Manufacturing and 3D Printing Technologies
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Comparative study of pattern making via single, dual-stage wax injection molding, and additive manufacturing for investment casting of stainless-steel manifold product — Intan Mardiono, Zhixian Dong, et al. · International Journal of Cast Metals Research (2026) | TGRS Research Map | TGRS