Difference between revisions of "Spiral Rigid Conveyors"

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[[File:SPIRAL RIGID CONVEYORS.jpg|thumb|right|Spiral Rigid Conveyors]]
[[File:SPIRAL RIGID CONVEYORS.jpg|thumb|right|Spiral Rigid Conveyors]]
'''Spiral Rigid Conveyors''', also generically called [[Mechanical Conveyors]] are different from  
'''Spiral Rigid Conveyors''', also generically called [[Mechanical Conveyors]] are different from  
flexible screw conveyors because the rigid conveyor tube is made of carbon steel or stainless steel instead of nylon.  
[[Flexible Screw Conveyors]] because the rigid conveyor tube is made of carbon steel or stainless steel instead of nylon.  
The rotary spiral, like the structural work for loading and unloading the materials, is made of carbon steel or stainless steel depending on the type of rigid tube being used.  
The rotary spiral, like the structural work for loading and unloading the materials, is made of carbon steel or stainless steel depending on the type of rigid tube being used.  
Though the tube is rigid, the spiral is like the flexible type that facilitates adaptation to the granule size of the material being conveyed while faithfully following the tube geometry in cases where there are pressed curves.
Though the tube is rigid, the spiral is like the flexible type that facilitates adaptation to the granule size of the material being conveyed while faithfully following the tube geometry in cases where there are pressed curves.

Latest revision as of 19:54, 27 August 2012


Spiral Rigid Conveyors

Spiral Rigid Conveyors, also generically called Mechanical Conveyors are different from Flexible Screw Conveyors because the rigid conveyor tube is made of carbon steel or stainless steel instead of nylon. The rotary spiral, like the structural work for loading and unloading the materials, is made of carbon steel or stainless steel depending on the type of rigid tube being used. Though the tube is rigid, the spiral is like the flexible type that facilitates adaptation to the granule size of the material being conveyed while faithfully following the tube geometry in cases where there are pressed curves.