IP Library › Granted Patent US 11,726,076
Granted Patent B2
US 11,726,076 · App. 16/638,237 · Granted Aug 15, 2023

Techniques for monitoring slump characteristic of concrete in a rotating container or drum

Inventors: Michael A. Davis (Glastonbury, CT); Douglas H. Loose (Southington, CT); David Vincent Newton (Madison, CT); Charles Winston (Glastonbury, CT); Alan D. Kersey (South Glastonbury, CT)
Assignee: CIDRA CONCRETE SYSTEMS INC.
G01N33/383B28C5/422B28C7/024G01N11/14G01N29/14G01N2011/0046G01N2291/106
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Quick Facts
Patent No.
US 11,726,076
App. No.
16/638,237
Granted
Aug 15, 2023
Kind
B2
Abstract

A system features an acoustic sensor configured to mount on a wall of a mixing drum, sense an acoustic characteristic of a mixture of a slurry, including concrete, contained in a mixing drum when rotating, and provide acoustic sensor signaling containing information about the acoustic characteristic sensed; and a signal processor configured to receive the acoustic sensor signaling, and determine corresponding signaling containing information about a slump characteristic of the mixture of concrete contained in the mixing drum, based upon the signaling received.

Claims (31)

1. A system comprising:

an acoustic sensor configured to mount on an inside wall of a mixing drum, sense an acoustic characteristic of a mixture of a slurry, including concrete, contained in the mixing drum when rotating, and provide acoustic sensor signaling containing information about the acoustic characteristic sensed; and

a signal processor configured to

receive the acoustic sensor signaling, and

determine corresponding signaling containing information about a slump characteristic of the mixture of the slurry, including concrete, contained in the mixing drum, based upon the acoustic sensor signaling received;

wherein the acoustic sensor is configured to

sense a first acoustic characteristic when the concrete is lifted by a vane of the mixing drum and provide first acoustic sensor signaling containing information about when the concrete is lifted by the vane, and

sense a second acoustic characteristic when the concrete flows off the vane and falls back into the mixture and provide second acoustic sensor signaling containing information about when the concrete flows off the vane and falls back into the mixture; and

the signal processor is configured to

receive the first acoustic sensor signaling and the second acoustic sensor signaling, and

determine the corresponding signaling containing information about the slump characteristic of the mixture of concrete contained in the mixing drum, based upon the first acoustic sensor signaling and the second acoustic sensor signaling received.

2. The system according to claim 1 , wherein the signal processor is configured to determine the slump characteristic based upon noise characteristics at different spatial locations that indicate differences in the slump.

3. The system comprising:

an acoustic sensor configured to mount on an inside wall of a mixing drum, sense an acoustic characteristic of a mixture of a slurry, including concrete, contained in the mixing drum when rotating, and provide acoustic sensor signaling containing information about the acoustic characteristic sensed; and

a signal processor configured to

receive the acoustic sensor signaling, and

determine corresponding signaling containing information about a slump characteristic of the mixture of the slurry, including concrete, contained in the mixing drum, based upon the acoustic sensor signaling received;

wherein the acoustic sensor is positioned on the inside wall and configured to

sense the noise of the concrete flowing off a vane of the mixing drum, and provide first acoustic sensor signal containing information about the noise, and

sense a dynamic noise of the remixing of the concrete falling back into the mixture, and provide second acoustic sensor signal containing information about the dynamic noise; and

the signal processor is configured to

receive the first acoustic sensor signaling and the second acoustic sensor signaling, and

determine the corresponding signaling containing information about the slump characteristic of the mixture of concrete contained in the mixing drum, based upon noise characteristics contained in the first acoustic sensor signaling and the second acoustic sensor signaling received.

4. A system comprising:

a signal processor configured to

receive signaling containing information about an acoustic characteristic of a mixture of a slurry, including concrete, contained in a mixing drum when rotating and sensed by an acoustic sensor mounted on an inside wall of the mixing drum, the signaling includes first acoustic sensor signaling containing information about a first acoustic characteristic when the concrete is lifted by a vane of the mixing drum, and second acoustic sensor signaling containing information about a second acoustic characteristic when the concrete flows off the vane and falls back into the mixture; and

determine corresponding signaling containing information about a slump characteristic of the mixture of concrete contained in the mixing drum, based upon the first acoustic sensor signaling and the second acoustic sensor signaling received.

5. A system comprising:

a signal processor configured to

receive signaling containing information about an acoustic characteristic of a mixture of a slurry, including concrete, contained in a mixing drum when rotating and sensed by an acoustic sensor mounted and positioned on an inside wall of the mixing drum, the signaling includes first acoustic sensor signaling containing information about the noise of the concrete flowing off a vane of the mixing drum, and second acoustic sensor signaling containing information about a dynamic noise of the remixing of the concrete falling back into the mixture; and

determine corresponding signaling containing information about a slump characteristic of the mixture of concrete contained in the mixing drum, based upon the signaling received, based upon noise characteristics contained in the first acoustic sensor signaling and the second acoustic sensor signaling received.

Continuity (4)
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