Profile | Prof. Sandeep Chaudhary

Prof. Sandeep Chaudhary

Civil Engineering

KEY TECHNOLOGIES
Highlighted technologies
Ready for industrial use
Low carbon solutions
Buidling products
Material for construction application
Waste upcycling
Fundamental researches
IoT devices
Rural development
Lightweight construction
Structural simulations
Latest development
GOBAiR

GOBAiR

Cow dung based foaming agent for devloping lightweight thermally insulated structures. First of its kind application, patent filed.
GOBAiR Bricks

GOBAiR-Fly ash bricks

Fly ash bricks are improved through the use of an innovative cow dung based foaming agent. The bricks have been developed for both compression and vibration based casting at industrial scale. The bricks have 30% less weight and are expected to improve thermal and sound insulation.
GoBricks

GoBricks

GoBricks are 100% recyclable cow dung stabilized bricks with improved manufacturing process. The bricks are designed for thermal insulation in animal shelters, and have an extremely low manufacturing cost.
Naturally colored bricks

Naturally colored bricks

Aesthatically pleasing bricks prepared by using, stone industry wastes as natural colors.
SAFER Concrete

SAFER Concrete

A specially designed concrete for Slip And Fall Event Reduction (aka SAFER). Designed for elderly, children and stairway related applications.
AUTUM

AUTUM

Autonomous Unit for Thermal Utility Management (aka AUTUM) is an IoT device, which can monitor and optimize thermal comfort while reducing energy needs. The device can also isolate energy leaks and help for energy efficiency.
PARVAT

PARVAT

PARVAT is an integrated cycberphysical system designed for accident prevention in hilly roads. PARVAT accounts for weather, pavement and traffic conditions to regulate the traffic movement.
Waste based bacterial self-healing concrete

Waste based bacterial self-healing concrete

Bacterial self-healing is improved through the use of a special type of waste based additive. The resulting concrete has double the compressive strength, lower effective carbon footprint and lower effective costs.
Thermo-mechanically treated aggregates

Therm-mechanically treated aggregates

Mixed recycled aggregates have been improved using an optmized thermo-mechanical treatment process. The treated aggregate perform similar to Natural aggregates, satisfy all codal provisions, and have lower carbon footprint and cost than natural aggregates. Recycling plants have been designed for Indian sub-continent.
Conplas paver blocks

Conplas Pver Blocks

A patented design for paver block prepared using plastic as a raw material.
Rubber paver blocks

Paver block utilizing rubber waste

A patented design for paver block prepared using rubber as a raw material.
Rubberized self-compacting concrete

Rubberized self-compacting concrete

A specially developed self compacting concrete with upcycled waster tryre rubber. The concrete has high energy absorption capacity and is suitable for developing crash barriers and machine foundations.
Thixotropy based fluid flow model

Thixotropy based fluid flow model

A new mathematical model has been developed to describe the flow behaviour of cementitious mixes, after extensive rheological investigations. The model better describes the reversible and irreversible rheological changes and can improve 3D printing process.
Risk assessment models

Simulation based risk assessment and deign of safety guidelines

Simulations have been used to correlate lab scale experimental investigations with field applications. Simulation identifies the risk associated with new construction materials and designs suitable safety guidelines.