Webinar on

Smart Materials

October 26, 2021

smart-material-2021

Theme: Appreciating Innovative Smart Materials for a Smart Future

Webinar on Smart materials 2021, Conference heartily invites researchers from all across the globe to attend the which is going to held on  October 26, 2021. Smart materials are Smart materials technology enables us to adapt to environmental changes by activating its functions, with the theme of Appreciating Innovative Smart Materials for a Smart Future. it will provide a top forum for researchers, understudies, modern to uncover their examination work, to Share their insight in the field of smart materials. Smart materials provides an appealing moment to meet people in the experimentation field and therefore it takes a pleasure in opening a doorway to encounter the ability in the field, young researchers and potential World-renowned speakers. 

 

Session-1: Nanotechnology
Nanotechnology is rapidly evolving and is merged with the field of Materials Science. Nanotech-level smart materials or nanomaterial’s synthesis can have different properties for finding healthcare, construction, and material applications in the material industry. Nanotechnology is rapidly evolving and it has been mixed in the field of materials science. Nano-level smart materials or nanometers to synthesis materials industry can have different properties to find healthcare, construction, and content applications.                                        
Session-2: Materials Engineering
The explore for ideal restorative material for medicine gave hope for applications of sensible materials in dental science. Sensible materials are materials whose properties may be altered during a controlled fashion to support the tooth structure. Sensible biomimetic materials will mimic enamel or dentin. The employment of sensible materials like sensible composites, sensible ceramics, resin-modified glass monomer, amorphous phosphate emotional pit and fissure sealants, dentistry form memory alloys, sensible impression material, sensible suture, smart burs, etc. have revolutionized medicine and maximized the advantage of standard restorative techniques. Sensible materials have conjointly found their applications in health care sectors as implants, biosensors, etc.
Session 3: Waste heat recovery
The research is focused on the application of thermoelectric materials for the waste heat recovery, especially in combination with small ORC turbines. The findings of this research can be used in small (e.g. domestic) CHP plants or small heat recovery applications. The work focuses on the generator topology allowing highest energy density. The generator can be used as a standalone system or as a preheater in ORC systems. The use of additional heat exchanger may contribute to as much as 10% of additional electric energy produced by enhanced ORC system.
Session 4: Thermal energy storage
The waste heat is omnipresent in the industry. Some of the waste heat fluxes may be used for space heating, however the large quantity of waste heat is dissipated to the ambient. On the other hand, within a short distances one can find unsatisfied heat demand. The idea of transportable heat storage may help to reduce the problem of low emission especially in the cities, where transportation distances are shorter. The addressed problems in transportable storage based on PCM involve heating the container after material solidification, and uneven PCM melting in the container leading to limited system efficiencies and capacity.
Session 5 : Energy harvesting
The energy harvesting allows to use the energy scattered in the environment in order to power small electronic devices enabling their autonomous and maintenance free operation. Among many possible applications the smart bearing or shunt damping systems are those of great interest. Shunt circuits having bulky inductors or those based on the operational amplifiers need either the power supply or to be tuned to the particular frequency. By exploiting the energy harvesting capabilities they become both adaptive and self-sufficient. The smart bearing system scavenging energy from the heat dissipated in a bearing able to eliminate vibration in a bearing node has been patented.

  • Nanotechnology
  • Materials Engineering
  • Waste heat recovery
  • Thermal energy storage
  • Energy harvesting