Research project on 'ROTATIONAL MOLDING'

Number of Words : 17002

Number of References : 32

Assignment Key : ME-8452

Contents

  • Content for this assignment1.1 ROTATIONAL MOULDING
  • Content for this assignment1.2 ROTATIONAL MOULDING PROCESS
  • Content for this assignmentCHAPTER 2: LITERATURE REVIEW
  • Content for this assignment2.1 GENERAL STUDY
  • Content for this assignment2.1.1 HISTORY
  • Content for this assignment2.1.2 ABOUT ROTOMOULDING
  • Content for this assignment2.2 LITERATURE STUDIED
  • Content for this assignment2.2.1 SOFTWARE USED
  • Content for this assignment2.2.2 LIST AND DESCRIPTION OF LITERATURE STUDIED
  • Content for this assignmentCHAPTER 3: ANALYSING THE PROCESS
  • Content for this assignment3.1 THE PROCESS
  • Content for this assignment3.2 RELATIONSHIPS BETWEEN PROCESSING CONDITIONS AND PROPERTIES
  • Content for this assignment3.3 KEY FACTORS
  • Content for this assignment3.4 ROTATIONAL MOULDING MATERIALS
  • Content for this assignment3.4.1 Desirable Characteristics
  • Content for this assignment3.4.2 Range of Materials Available
  • Content for this assignment3.5 COMPARISON TO OTHER PROCESSES AND MARKET TREND
  • Content for this assignmentCHAPTER 4: DESIGN
  • Content for this assignment4.1 PRELIMINARY DESIGN
  • Content for this assignment4.2 DESIGN CALCULATIONS
  • Content for this assignment4.3 FINAL DESIGN
  • Content for this assignment4.3.1 WORKING OF THE MODEL
  • Content for this assignment4.3.2 ENGINEERING DRAWINGS
  • Content for this assignmentCHAPTER 5: DESCRIPTION AND FABRICATION
  • Content for this assignment5.1 DESCRIPTION AND FABRICATION OF THE MACHINE ELEMENTS
  • Content for this assignment5.2 OVEN SELECTION
  • Content for this assignment5.2.1 DESIGN OF THE OVEN
  • Content for this assignment5.2.2 INSULATION
  • Content for this assignment5.2.3 HEATING ELEMENT
  • Content for this assignmentCHAPTER 6: EXPERIMENTATION
  • Content for this assignment6.1 MATERIAL USED AND PROCEDURE FOLLOWED
  • Content for this assignment6.1.1 PROPERTIES OF PVC
  • Content for this assignment6.2 SAMPLES PRODUCED
  • Content for this assignmentCHAPTER 7: DISCUSSION
  • Content for this assignment7.1 GENERAL DISCUSSION
  • Content for this assignment7.2 MAJOR CHALLENGES FACED DURING THE PROJECT
  • Content for this assignmentCHAPTER 8: RESULT AND CONCLUSION
  • Content for this assignment8.1 OPTIMIZATION THROUGH HIT AND TRIAL
  • Content for this assignment8.2 OPTIMIZED PROCESS PARAMETERS FOR PVC
  • Content for this assignmentCHAPTER 9: SCOPE OF FUTURE WORK
  • Content for this assignment9.1 OPTIMIZATION BY PREDICTING ANTI OXIDANT COMPOSITION
  • Content for this assignment9.2 DESIGN IMPROVEMENT
  • Content for this assignment9.3 RPM SENSOR
  • Content for this assignment9.4 SCOPE FOR AUTOMATION
  • Content for this assignmentAPPENDIX
  • Content for this assignmentReferences

Description

Rotational moulding, also known as rotomoulding or rotocasting, is a process used for manufacturing hollow plastic products. [1] It is a nearly atmospheric pressure process that begins with fine powder and produces stress-free parts. Due to the absence of pressure, rotational moulds usually have thin walls and are relatively inexpensive to fabricate.
The process consists of introducing a known amount of plastic in powder, granular, or viscous liquid form into a hollow, shell-like mould. The mould is rotated and/or rocked about two principal axes at relatively low speeds as it is heated so that the plastic enclosed in the mould adheres to, and forms a monolithic layer against, the mould surface. In order to maintain desired shape and even thickness throughout the part, the mould continues to rotate during the cooling phase. When the plastic is sufficiently rigid, the cooling and mould rotation is stopped to allow the removal of the plastic product from the mould. [1]
Thermoplastic materials, typically polyethylene, polypropylene, polyvinyl chloride, polycarbonate and fluoropolymer are used for this process. Some of the most advanced work is being done with cross-linked polyethylene and even nylon.
Rotational moulding offers much in the way of design flexibility and scale of product, with products ranging from simple bulk storage containers to sophisticated automotive, medical, and aerospace applications. Small parts such as dolls’ heads can be made in the same manner as huge (80,000-litre) storage tanks are made. Also, modern and multi-armed machines allow multiple moulds of different size and shape to be run at the same time. Some other advantages include production of multilayer products; typically no material wastage; hollow parts made in one piece with no weld lines or joints.

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