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- W2006352886 abstract "Abstract In connection with investigations on a so-called ram or piston feed lock for introducing solids into, or discharging solids from, pressurized spaces, which operates on exactly the same principle as an extrusion press, the question as to the relationship between the piston pressure to be applied and the length to be adopted for the die channel has to be considered. The criterion is that a particular compaction pressure must not be exceeded. The attainable maximum pressure that can be exerted upon material in an extrusion die is primarily dependent on the static frictional resistance of the already compacted column of material and thus on the radial pressure. Previous attempts to derive a relationship between compaction pressure and die channel length — more particularly in the domain of briquetting and tableting technology — failed to yield physically meaningful solutions on the assumption of a constant radial/axial pressure ratio for solids in the channel, as has hitherto been the case. Thanks to a consistent distinction drawn between the compaction phase and the extrusion (or conveying) phase, and on the basis of theoretical considerations relating to bulk materials and correspondingly different formulations for the pressure conditions established, it is possible to obtain a differential equation whose solution yields an unambiguous relationship between compaction pressure and required channel length. A dimensionless representation of the results based on this approach offers a simple method of determining the dimensions of extrusion presses taking due account of the compaction phase and the extrusion phase." @default.
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- W2006352886 date "1988-09-01" @default.
- W2006352886 modified "2023-09-25" @default.
- W2006352886 title "The dimensioning of an extrusion press" @default.
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- W2006352886 doi "https://doi.org/10.1016/0032-5910(88)80017-2" @default.
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