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HomeBooks FABRICATION OF INDUSTRIAL SAFETY HELMET USING HYBRID NATURAL FIBER COMPOSITE MATERIALS
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IELTS ACTIVISTT
IELTS ACTIVISTT ₹331.00 Original price was: ₹331.00.₹321.00Current price is: ₹321.00.

FABRICATION OF INDUSTRIAL SAFETY HELMET USING HYBRID NATURAL FIBER COMPOSITE MATERIALS

₹450.00 Original price was: ₹450.00.₹425.00Current price is: ₹425.00.

  • Author: Dr. A. Lakshumu Naidu ,Dr. P. S. V. Ramana Rao, Dr. V. Rambabu
  • Language : English
  • Paperback : 242  pages
  • ISBN-13 : 978-93-5515-559-7
  • Country of Origin : India  
  • Publisher : Book Rivers(17 oct  2022)
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Connect the components by following the circuit diagram .Remember that potentiometers have three pins. Outer Pins are used for the vcc (Power Source) and the other is ground. The middle pins (output) give us the variable of resistance value.
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Fracture Behavior of Inhomogeneous Biological Materials and Interfaces   Biological materials like bone, nacre, human tooth layers are inhomogeneous materials made up of soft collagen, and hard, hydroxyapatite (HAP) mineral arranged in such a fashion so that these materials have higher strength and toughness, the measure of crack resisting behavior in materials, at the same time, which is exclusive in nature for different class of materials available for different application areas. The interfaces in these biological materials are designed in such a fashion so that the load transfer between the constituents takes place so smoothly, therefore, become a region of strength, not susceptible to failure like in other man-made materials and composites. It is important to understand these aspects of biological materials so that they can be mimicked to the novel materials to satisfy the growing need of different industries.   This work is focused on studying different layers of human tooth, and its interface for crack initiation and growth, the crack arresting behavior of the interface layer of the outer cover of human tooth, the enamel, and the inner, dentine, called dentine enamel junction. These works are done by developing a numerical model using the commercial finite element analysis tool, ABAQUS. The crack growth pattern of the enamel and the dentine has also been investigated. The role of porosity and permeability on the energy release rate which is the measure of fracture toughness has also been investigated. The key features of the book are:
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