IP Library Granted Patent US 10,220,503
Granted Patent B2
US 10,220,503 · App. 15/614,951 · Granted Mar 5, 2019

Device and method for stabilizing and securing testing tubes in cast-in-drilled-hole piles

Inventors: Michael Maggio (San Dimas, CA); William Burton (Goodyear, AZ)
B25H1/0042G01H1/04G01N33/383
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Quick Facts
Patent No.
US 10,220,503
App. No.
15/614,951
Granted
Mar 5, 2019
Kind
B2
Abstract

Concrete which is used in structural support of freeways, bridges, and large buildings, must be tested for anomalies. The testing equipment consists of probes which are inserted into testing tubes. The tubes are placed within rebar cages before concrete is poured. The prior art involved ad hoc methods of tying the tubes to the rebar. The improvement is pre-fabricated, mass produced cylindrical devices which can be axially snapped onto the testing tube. A first cylindrical device also has a perpendicular receptacle which facilitates connection to a second cylindrical device, where the second device can be axially snapped onto a piece of longitudinal rebar on the edge of the rebar cage. The combined first and second devices safely, accurately, and quickly affix the testing tubes to the rebar.

Claims (9)

1. A method for stabilizing and securing testing tubes in cast-in-drilled hole piles, comprising:

drilling a hole in the ground;

building a cylindrical rebar cage wherein the cylindrical rebar cage is configured to hold poured concrete;

inserting a plurality of hollow testing tubes into the cylindrical rebar cage wherein the plurality of hollow testing tubes are configured to accommodate a plurality of testing probes which are used to measure the quality of the concrete pour;

affixing the plurality of hollow testing tubes to the cage so that the plurality of hollow testing tubes remain in designated positions during the concrete pour, where one of a plurality of first cylinder is snapped onto one of the plurality of hollow testing tubes, a connector joins the one of a plurality of first cylinder with one of a plurality of second cylinder, which has a tab with a hole, and the one of a plurality of second cylinders is snapped onto one of a plurality of longitudinal rebars, and secured by zip ties through the hole in the tab to the longitudinal rebar at an edge of the rebar cage;

repeating the process of snapping each of the plurality of first cylinders onto one of the plurality of hollow testing tubes, connecting each of the plurality of first cylinders to each of the plurality of second cylinders which are then snapped onto one of the longitudinal rebars that form the rebar cage and securing each of the plurality of second cylinders by zip ties through the hole in the tabs to the each of the plurality of longitudinal rebar at the edge of the rebar cage, until each of the tubes is connected to the rebar cage;

placing the rebar cage with the secured tubes into the hole;

pouring concrete into the hole; and,

inserting a Cross-hole Sonic Logging (CSL) or a Gamma-Gamma Logging (GGL) testing probes into each of the plurality of testing tubes, where the CSL or GGL are used to detect defects in the poured concrete.

Continuity (1)
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