Subramaniam Kolluru¶
Information
- ORCID
- 0000-0002-5995-0911
- First Contribution
- 2021-02-18
- Last Contribution
- 2025-12-15
- Number Contributions
- 18
- Number Citations
- 95
Top Co-Authors
- Kamakshi Tippabhotla (9)
- Paritala Spandana (7)
- Thakur Manideep (5)
- Kondepudi Kala (4)
- Kulkarni Omkar (4)
Top Cited Articles
Persons This Author Cites the Most
- Tan Ming (45)
- Mechtcherine Viktor (33)
- Panda Biranchi (32)
- Bos Freek (30)
- Salet Theo (25)
Persons This Author Is Cited Most By
- Mishra Jyotirmoy (4)
- Murali Gunasekaran (4)
- Hasany Masoud (3)
- Jin Peng (3)
- Weng Yiwei (3)
- Subramaniam Kolluru, Maganty Sohanth, Kamakshi Tippabhotla, Ghandhi Dhruv et al. (2025-12)
Design and Deployment of a Functionally Efficient 3D-Printed Concrete Bridge Developed by Form Optimization - Subramaniam Kolluru, Singh Prashant, Maganty Sohanth, Paritala Spandana (2025-10)
Form Optimization Applications of 3D Concrete Printing:
From Bridge to Protective Structures - Paritala Spandana, Raj Shubham, Singh Prashant, Subramaniam Kolluru (2025-09)
Designing 3D Printable Concrete by Integrating the Influence of Aggregate Characteristics - Mechtcherine Viktor, Muthukrishnan Shravan, Robens-Radermacher Annika, Wolfs Robert et al. (2025-06)
Compressive Strength and Modulus of Elasticity:
Mechanical Properties of 3D Printed Concrete - Wolfs Robert, Versteege Jelle, Santhanam Manu, Bhattacherjee Shantanu et al. (2025-06)
Flexural and Tensile Strength:
Mechanical Properties of 3D Printed Concrete - Subramaniam Kolluru, Paritala Spandana, Kulkarni Omkar, Thakur Manideep (2024-09)
Fracture in 3D Printed Concrete Beams:
Deflection and Penetration of Impinging Cracks at Layer Interfaces - Paritala Spandana, Singh Prashant, Kamakshi Tippabhotla, Subramaniam Kolluru (2024-09)
Assessment of Printability of Concrete Based on Packing of Aggregates - Kamakshi Tippabhotla, Thakur Manideep, Subramaniam Kolluru (2024-07)
Formulating Printable Concrete Mixtures Based on Paste-Rheology and Aggregate-Content:
Application to Alkali-Activated Binders - Kamakshi Tippabhotla, Subramaniam Kolluru (2024-05)
Rheology-Control and 3D Concrete Printing with Fly Ash-Based Aqueous Nano-Silica Enhanced Alkali-Activated Binders - Paritala Spandana, Kamakshi Tippabhotla, Subramaniam Kolluru (2023-09)
Influence of Inter-Layer Interfaces on Fracture Behavior of 3D Printed Concrete - Kulkarni Omkar, Thakur Manideep, Kamakshi Tippabhotla, Paritala Spandana et al. (2023-09)
Evaluation of Tensile Behavior of 3D Printed Concrete Assemblies with Reinforcement - Thakur Manideep, Kulkarni Omkar, Kamakshi Tippabhotla, Paritala Spandana et al. (2023-09)
Influence of Cold Joint on Fracture Behavior of 3D Printed Concrete - Kondepudi Kala, Subramaniam Kolluru, Nematollahi Behzad, Bong Shin et al. (2022-11)
Study of Particle-Packing and Paste-Rheology in Alkali-Activated Mixtures to Meet the Rheology Demands of 3D Concrete Printing:
Correction - Kamakshi Tippabhotla, Subramaniam Kolluru (2022-06)
Developing Printable Fly-Ash-Slag Geopolymer Binders with Rheology Modification - Kondepudi Kala, Subramaniam Kolluru, Nematollahi Behzad, Bong Shin et al. (2022-05)
Study of Particle-Packing and Paste-Rheology in Alkali-Activated Mixtures to Meet the Rheology Demands of 3D Concrete Printing - Kocherla Amarteja, Kamakshi Tippabhotla, Subramaniam Kolluru (2021-11)
In-Situ Embedded PZT Sensor for Monitoring 3D Concrete Printing:
Application in Alkali-Activated Fly-Ash-Slag Geopolymers - Kondepudi Kala, Subramaniam Kolluru (2021-11)
Extrusion-Based Three-Dimensional Printing Performance of Alkali-Activated Binders - Kondepudi Kala, Subramaniam Kolluru (2021-02)
Formulation of Alkali-Activated Fly-Ash-Slag Binders for 3D Concrete Printing