Projects per year
Personal profile
Research interests
Prestressed concrete structures, GFRP composite structures, application of phase change materials in buildings
Monash teaching commitment
- CIV3222 - Bridge Design and Assessment
- CIV3221 - Building Structures and Technology
Biography
Kong Sih Ying is a lecturer in School of Engineering, Monash University Malaysia. His research interests are in GFRP structures, prestressed concrete and concrete technology. His primary research interests has been funded Ministry of Higher Education and the industry.
Research area keywords
- concrete technology
- GFRP composite structures
- application of phase change materials in buildings
Expertise related to UN Sustainable Development Goals
In 2015, UN member states agreed to 17 global Sustainable Development Goals (SDGs) to end poverty, protect the planet and ensure prosperity for all. This person’s work contributes towards the following SDG(s):
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SDG 3 Good Health and Well-being
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SDG 7 Affordable and Clean Energy
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SDG 12 Responsible Consumption and Production
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SDG 13 Climate Action
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SDG 14 Life Below Water
Collaborations and top research areas from the last five years
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Development of GFRP grating satisfying BS EN 124 requirements for data centre application
Sih Ying, K. (Primary Chief Investigator (PCI)) & Fun, W. L. (Partner Investigator (PI))
7/07/26 → 6/07/27
Project: Research
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Influences of oil palm wood core on bending and flexural creep behaviors of GFRP sandwich panels
Sih Ying, K. (Primary Chief Investigator (PCI)), Kong, D. (Chief Investigator (CI)), Yie Sue, C. (Chief Investigator (CI)) & Bai, Y. (Chief Investigator (CI))
1/10/23 → 31/03/27
Project: Research
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Analysis of Waste Alkali Stream Silicates as Sustainable Activators in Geopolymer Technology: Rheological and Characterisation Study
Kong, D. (Primary Chief Investigator (PCI)), Sih Ying, K. (Chief Investigator (CI)) & Raman, S. N. (Chief Investigator (CI))
1/10/23 → 30/09/26
Project: Research
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Optimisation of GFRP framing systems for building applications
Sih Ying, K. (Primary Chief Investigator (PCI)) & Fun, A. (Partner Investigator (PI))
1/11/21 → 30/04/25
Project: Research
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Influence of a fast-locked inter-module connection on the lateral behaviour of multi- storey modular building
Yie Sue, C. (Primary Chief Investigator (PCI)), Sih Ying, K. (Chief Investigator (CI)), Abu Bakar, B. H. B. (Chief Investigator (CI)), Choong, K. K. (Chief Investigator (CI)) & Jaafar, M. S. B. (Chief Investigator (CI))
7/09/21 → 6/09/24
Project: Research
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A parameterless approach for long-term creep prediction in concrete using hybrid CNN-transformer model
Li, C., Lim, C. H., Wang, Q., Kong, S. Y. & Wang, X., 2025, (Accepted/In press) In: Structural Health Monitoring. 18 p.Research output: Contribution to journal › Article › Research › peer-review
Open Access2 Link opens in a new tab Citations (Scopus) -
Design of flexural buckling resistance of lightweight concrete-filled cold-formed built-up box section (CFBBS) columns under axial compression
Teoh, K. B., Hiew, S. Y., Chua, Y. S., Bai, Y., Yoo, D. Y., Pang, S. D. & Kong, S. Y., 15 Nov 2025, In: Engineering Structures. 343, 28 p., 120911.Research output: Contribution to journal › Article › Research › peer-review
Open Access3 Link opens in a new tab Citations (Scopus) -
Exploring vegetation-driven microclimatic effects on soil temperature dynamics in tropical climates through machine learning and explainable AI
Kumar, M., Mousa, A., Kong, S. Y., Garg, A. & Anggraini, V., 2025, In: Archives of Agronomy and Soil Science. 71, 1, p. 1-26 26 p.Research output: Contribution to journal › Article › Research › peer-review
Open Access2 Link opens in a new tab Citations (Scopus) -
Field based analysis of vegetation and climate impacts on the hydrological properties of urban vegetated slope
Kumar, M., Paramaputra, K., Mousa, A., Kong, S. Y., Garg, A. & Anggraini, V., 5 Dec 2025, In: Scientific Reports. 15, 1, 21 p., 7702.Research output: Contribution to journal › Article › Research › peer-review
Open Access13 Link opens in a new tab Citations (Scopus) -
Optimizing environmentally efficient mortar properties through synergistic integration of cellulose microfibers and calcined palm oil fuel ash: A response surface methodology technique
Abdulkadir, I., Wong, L. S., Ean, L. W., Mohammed, B. S. & Kong, S. Y., 10 Jan 2025, In: Construction and Building Materials. 458, 21 p., 139687.Research output: Contribution to journal › Article › Research › peer-review
6 Link opens in a new tab Citations (Scopus)