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Titlebook: Composite Materials Processing Using Microwave Heating Technology; Manoj Kumar Singh,Gaurav Arora,Suchart Siengchin Book 2024 The Editor(s

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Introduction to Microwave Heating and Its Applications in the Composite Industry,gnificant attention in recent years due to its unique heating mechanism and numerous advantages over conventional heating methods. The chapter begins with a brief introduction to microwave heating principles, highlighting the interaction of microwaves with materials and the resulting heating effects
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Application of Microwave Heating in Polymer Composites Manufacturing,g processing times, high energy consumption, and environmental concerns. Microwave heating has emerged as a promising technology for polymer composites manufacturing. It utilizes electromagnetic waves to generate heat within materials, offering advantages such as rapid and selective heating, high en
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Recycling of Thermoset Composites Waste: End of Life Solution,es. This includes waste-free manufacturing techniques or a method to reuse the manufacturing waste. The recycling dilemma for composite components is intrinsically problematic since composite consists of two different materials (matrix and reinforcement). To date, the most popular recycling processe
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Casting of Materials Using Microwave Energy,use has been very limited in the field of casting of materials. Microwave casting has gained significant attention in recent years due to its potential to reduced processing time and energy consumption, improved quality of castings, and reduced porosity over conventional casting methods. This chapte
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Joining of Metals Through Microwave Hybrid Heating,r a new source of heat is justified by the fact that a single source of heat is not suitable for joining all the metals. Knowing the disadvantages of conventional welding processes, a novel heat source was developed for fabricating metal joints through microwave radiations. Microwaves are electromag
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Development and Characterization of Microwave Sintered SiC Reinforced 3003 Aluminium Alloy,e investigated. The sintering was performed in a 2.45 GHz multimode microwave furnace at a temperature ranging from 524 °C to 557 °C. The study deals with the compacted 3003 aluminium alloy powder interacting with the microwaves and defines its density, hardness and grain size variation for differen
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