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- W2024123520 abstract "ABSTRACT To obtain a fundamental understanding of pulverization of rubber and thermoplastic materials, such as low density polyethylene (LDPE), using our solid state shear extraction process (SSSE), a thin disk of the material was placed between two parallel plates of a Bridgeman Anvil. Normal forces of 300-2000 kg and rpm of 2-32 were exerted to obtain shear and normal forces needed for pulverization. Our experimental results showed that the residence time required for effective pulverization is a function of normal load. It was also determined that the minimum normal load required for pulverization is reduced at higher rates of rotation. Although increasing normal load was found to improve the pulverization, significant agglomeration was obtained at very high normal force. This indicates the existence of an optimum condition for obtaining fine particle size distribution. It was observed that the pulverization of both LDPE and rubber samples were initiated at the outer radial edge of the disk. Computational analysis of the deformation of LDPE and rubber disks in a Bridgeman Anvil were performed using ANSYS computer code. Experimental stress-strain data from a simple extension of samples were used to calculate the constants for a Mooney-type stored energy function, and used as input to the computer code. Similar to our experimental results, our calculations showed much strain energy at the outer radial edge of the disk, and in turn more pulverization." @default.
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- W2024123520 date "1997-04-01" @default.
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- W2024123520 title "Pulverization of Low Density Polyethylene and Rubber Under High Shear and Normal Forces" @default.
- W2024123520 doi "https://doi.org/10.1080/02726359708906730" @default.
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