UCDFUniversity Circle Development Foundation (Cleveland, Ohio)
UCDFUmatilla Chemical Disposal Facility (Oregon)
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References in periodicals archive ?
It was observed that the flexural strength of uCDF and mCDF - HDPE composites initially decreases which may be attributed to non- uniform distribution of the fibre in the matrix and then, increases which may be due to good dispersion of fibre in the matrix and stabilization of molecular orientation of fibre (Chandramohan and Marimuthu, 2011).
This shows that the ultimate flexural strength of mCDF - HDPE composite increased by 76.19% and that of an acetylated one reduces by 53.24% of the uCDF - HDPE composite at fibre loading of 3.75%.
Figure 4 shows that the impact strength of the uCDF, mCDF and aCDF - HDPE composites increases with increasing fibre loading for up to 3.75%.