IJIRST (International Journal for Innovative Research in Science & Technology)ISSN (online) : 2349-6010

 International Journal for Innovative Research in Science & Technology

inite Element Analysis & Optimization of Platen of Injection Molding Machine - A Review


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International Journal for Innovative Research in Science & Technology
Volume 1 Issue - 6
Year of Publication : 2014
Authors : Rahul M. Thaker ; Ms. Neha B. Joshi

BibTeX:

@article{IJIRSTV1I6071,
     title={inite Element Analysis & Optimization of Platen of Injection Molding Machine - A Review},
     author={Rahul M. Thaker and Ms. Neha B. Joshi},
     journal={International Journal for Innovative Research in Science & Technology},
     volume={1},
     number={6},
     pages={230--233},
     year={},
     url={http://www.ijirst.org/articles/IJIRSTV1I6071.pdf},
     publisher={IJIRST (International Journal for Innovative Research in Science & Technology)},
}



Abstract:

Plastics are certainly most versatile of all known materials today and have therefore, established themselves in enviable position from where are not even possible to replaced. Injection molding machine is one of the most widely used method of conversion of plastic into various end products application to wide range of plastic materials from plastic commodity to specialty engineering plastic. In injection molding machine stationary platen play a very important role. During the process generally compressive stress generates at particular regions. As load varies with fast rate there is chance to failure of tie bar rod. Due to heavy mould shape, size of platen also change, that's increase its weight as well as stress level at certain region and this is not good in practice. This leads to failure of platen or failure of tie rod due to stretching by nut and platen. The aim of this paper is study about those areas where stress can affect the failure of tie bar due to heavy weight of stationary platen the deflection or misalignment with movable platen.


Keywords:

tie bar, clamp cylinder, stationery platen, moving platen, finite element analysis, optimization


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