jmen68
Civil/Environmental
- May 7, 2012
- 40
First please forgive me, if this is the wrong forum for this question I will remove it asap. Second please forgive me as I have no experience with plastics.
My question is based upon my attached sketch. The sketch is a plan view and elevation view of a precast concrete pile (36" diam) and the rectangles are blocks of UHMW-PE plastic.
The situation: These blocks will be used as spacers to hold the precast cap in place while the pile is collared and grout will be pumped in to permanently secure the cap in place.
In a alternative but similar case we would use steel shims in place of the plastic.
The problem is that I have no idea how to verify that this UHWM will be able to withstand the compression load without significant deformation or failure. The things that I've thought that may be of concern is post filling with concrete, the heat of hydration can get upwards of 200 degrees Fahrenheit. Secondly the blocks may be loaded for a duration of three days before the grout will be placed (I am unsure if duration of loading is a concern). Lastly in the mechanical properties (I have attached as well) on the compression strength there is a note that at 73 degrees Fahrenheit there is a 10% deflection.
Does the 10% deflection happen only when the allowable 3000 psi is reached?
My calculations so far are very simple:
Load = 19,000 lbs, use 4 block so Load/block = 4750 lbs
surface area of block = 3" x 4" = 12 in^2
Actual Pressure on block = 4750 lbs / 12 in^2 = 395.8 psi
Allowable Pressure on block = 3000 psi / omega (assume 1.67?) = 1796 psi
compare allowable to actual = 395.8 psi / 1796 psi = 22% utilization.
Any help is appreciated.
My question is based upon my attached sketch. The sketch is a plan view and elevation view of a precast concrete pile (36" diam) and the rectangles are blocks of UHMW-PE plastic.
The situation: These blocks will be used as spacers to hold the precast cap in place while the pile is collared and grout will be pumped in to permanently secure the cap in place.
In a alternative but similar case we would use steel shims in place of the plastic.
The problem is that I have no idea how to verify that this UHWM will be able to withstand the compression load without significant deformation or failure. The things that I've thought that may be of concern is post filling with concrete, the heat of hydration can get upwards of 200 degrees Fahrenheit. Secondly the blocks may be loaded for a duration of three days before the grout will be placed (I am unsure if duration of loading is a concern). Lastly in the mechanical properties (I have attached as well) on the compression strength there is a note that at 73 degrees Fahrenheit there is a 10% deflection.
Does the 10% deflection happen only when the allowable 3000 psi is reached?
My calculations so far are very simple:
Load = 19,000 lbs, use 4 block so Load/block = 4750 lbs
surface area of block = 3" x 4" = 12 in^2
Actual Pressure on block = 4750 lbs / 12 in^2 = 395.8 psi
Allowable Pressure on block = 3000 psi / omega (assume 1.67?) = 1796 psi
compare allowable to actual = 395.8 psi / 1796 psi = 22% utilization.
Any help is appreciated.