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DESIGN, CHARACTERIZATION AND CAE SIMULATION FOR DEVICES APPLIED IN THE CONTROL AND SEMOVIENT IDENTIFICATION

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SEPTEMBER 2020   -  Volume: 95 -  Pages: 520-526

DOI:

https://doi.org/10.6036/9485

Authors:

ADRIAN JOSE BENITEZ LOZANO

Disciplines:

  • Materials technology (PLASTICOS )

Downloads:   250

Cites in Web of Science:  1

How to cite this paper:  
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Received Date :   5 August 2019

Reviewing Date :   5 August 2019

Accepted Date :   17 December 2019


Key words:
Especificaciones de Diseño de Producto, Caracterización de mezclas, Elastómeros termoplásticos, Simulación CAE, Chapetas, Product Design Specification, PDS, Mixture Characterization, Thermoplastic ear tags, CAE Simulation
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

The current research project presents a methodology product design, characterization for different thermoplastic elastomeric mixtures with mechanicals properties evaluation and computer aided engineering simulations (CAE) for ear tags devices applied in the control and semovient identification. From product design and the characterization of reference product through Fourier Transformed Infrared Spectroscopy (FTIR) is achieved new alternative mixtures to the reference, after the exposition to UV radiation for 320 hours, are evaluated through different mechanicals and chemical properties as hardness and FTIR. With the characteristics and 3 geometry designs, a design was selected regarding to the customer requirements from the Product Design Methodology - PDS [1]-[3]. This design and mixtures evaluation obtained were the initial conditions for the analysis CAE in Software Sigmasoft® specialized in mold injection simulation for thermoplastic elastomeric materials. The simulations reveal important results in temperature, packing pressure and other variables to know in the adequate mixture processing with the best performance properties, with the goal to determine de best processing conditions, and different requirements to know in the mold manufacturing achieving an optimum final product processing.

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