CA2917536C

Method and system for calculating and reporting slump in delivery vehicles

Abstract

The present invention relates to a system for managing the mixing of construction material in a rotating mixing drum. A sensor is coupled to the mixing drum and or drive system therefor and is configured to sense rotation and/or torque applied to the mixing drum and/or the contents thereof A processor receives data from the sensor and utilizes the data in evaluating the condition of the material in the mixing drum. The processor compares data from the sensor to a stored curve or curve family to evaluate the condition of the material in the mixing drum.

CA2917536C, drawing sheet 1
Sheet 1 of 21

Term

1.7 yearsleft in the term

Expires 19 June 2028.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

28 claims: 18 independent, 10 dependent

  1. 1
    CLAIMS 1. A system for managing the mixing of concrete in a rotating mixing drum, comprising:at least one torque sensor coupled to the mixing drum, to the drive system for the mixing drum, or to both, the at least one torque sensor being configured to sense torque applied to the mixing drum and/or the contents thereof;at least one rotation sensor configured to sense rotational speed of the mixing drum;at least one temperature sensor configured to sense temperature of concrete in the mixing drum;a processor configured to receive data from the at least one torque sensor, the at least one rotation sensor, and the at least one temperature sensor, and to utilize said data in evaluating the slump of the concrete in the mixing drum, the processor being communicative with a memory storing data defining a family of two or more slump data curves as previously obtained using torque sensor, rotation sensor, and temperature sensor on previous concrete mixes as sensed in mixing drums, the processor configured to compared data from said sensors to a stored slump data curve, the processor generating an electrical output signal reflective of slump of the concrete in the mixing drum.
  2. 4
    The system of any one of claims 1 to 3 wherein a wireless transmitter is coupled to the temperature sensor for wirelessly transmitting temperature data from the temperature sensor;the processor utilizing the temperature data from the temperature sensor in evaluating the condition of concrete in the mixing drum. -33CA 2917536 2018-04-05
  3. 6
    The system of any one of claims 1 to 5 wherein the history of temperature of the concrete mix in the mixing drum is used by the processor to evaluate the quality of the concrete mix.
  4. 7
    The system of any one of claims 1 to 6 wherein the temperature sensor comprises one or more of a temperature probe extending through the mixing drum to an interior thereof to make contact with concrete in the drum and a noncontact temperature sensor measuring temperature of concrete in the drum without contact.
  5. 8
    The system of any one of claims 1 to 7 further comprising a second temperature sensor mounted to the mixing drum and configured to sense a temperature of the mixing drum and/or the contents thereof and coupled to a wireless transmitter;wherein the processor utilizes temperature data from the first and second temperature sensors in evaluating the condition of the material in the mixing drum.
  6. 10
    11. The system of claim 10, wherein said temperature sensor is mounted at a location on the drum selected from the group comprising:an access door of the drum of said concrete delivery truck, a window on the drum, -34CA 2917536 2018-04-05 a mouth or opening in the drum, a fin of the drum.
  7. 13
    14. The system of any one of claims 1 to 13 wherein the processor is configured to compare data from the temperature sensor to stored curve or curve family to evaluate:the hydration of the concrete, the mixture completion of the concrete, the level of curing of the concrete, the amount of time until the concrete is cured, the relative cure of the concrete as compared to concrete in another mixing drum, an amount of water in the drum, head packing of the drum, rate or amount of temperature change of the concrete during a time period, or an amount of water included in the drum.
  8. 14
    15. The system of any one of claims 1 through 14 wherein the processor utilizes a temperature profile captured from said temperature sensor during rotation of said drum to estimate an amount of concrete in said drum.
  9. 15
    16. The system of any one of claims 1 to 15 wherein the processor is configured to compare the temperature of the concrete contained in the mixing drum with a stored data curve that is particular to the concrete mix that is placed in the drum. -35CA 2917536 2018-04-05
  10. 16
    17. The system of any one of claims 1 to 16, further comprising a dual temperature sensor installed directly on the mixing drum, and configured to sense the load and skin temperature of the mixing drum.
  11. 17
    18. The system of any one of claims 1 to 17, further comprising an accelerometer sensor mounted on the delivery truck on which the drum is mounted, the accelerometer sensor being configured to detect tilt angle, acceleration or deceleration, or engine status of the vehicle.
  12. 18
    19. The system of any one of claims 1 to 18, further comprising an integrated accelerometer mounted on the drum of a concrete truck and coupled to a wireless transmitter, the system further comprising a wireless receiver mounted to the truck for capturing the signal transmitted from the integrated accelerometer, and the processor being configured to determine from the signal transmitted from the integrated accelerometer the rotational state of the drum.
  13. 19
    20. The system of any one of claims 1 to 19, further comprising a communications port which is configured to communicate wirelessly a slump calculation of the concrete in the mixing drum contained on a delivery truck to a status system to a central dispatch office or to another concrete delivery truck.
  14. 20
    21. The system of any one of claims 1 to 20, wherein the processor is configured to receive programming or ticket information from a central dispatch center.
  15. 21
    22. The system of any one of claims 1 to 20, wherein the processor is configured to control addition of water, chemical additive, or both into the concrete drum.
  16. 22
    23. The system of any one of claims 1 to 22, wherein the processor is configured to compute slump of the concrete in the mixing drum at varying drum speeds.
  17. 23
    24. The system of claim 23, wherein the varying drum speeds include drum speeds above ten revolutions per minute. -36CA 2917536 2018-04-05
  18. 24
    25. The system of claim 24, wherein the processor is configured to compute slump based on a nonlinear relationship between drum speed and energy required to rotate the drum at drum speeds above 3 revolutions per minute.
  19. 25
    26. The system of any one of claims 2, 3 and 16 to 22, wherein the processor is configured to monitor drum speeds at various times in the concrete delivery cycle, including drum speed changes involving travel speed of 3-6 revolutions per minute, and also at higher mixing speeds, whereby the computed energy required to rotate the drum is compared by the processor to the actual energy value required to rotate the drum.
  20. 26
    27. The system of claim 26, wherein the processor is configured to self-calibrate when drum speed changes from a higher to a lower speed, whereby the computed energy required to rotate the drum is compared by the processor to the actual energy value required to rotate the drum.
  21. 27
    28. The system of any one of claims 1 to 3 and 16 to 22, wherein the processor is configured to compute slump of the concrete in the drum after the drum is turned a threshold number of times corresponding to a state where the concrete is fully mixed.
  22. 28
    29. The system of any one of claims 1 to 3 and 16 to 28, further comprising at least two chemical additive supply containers each having an electronic identification so that the controller may identify the type of additive. CA 2917536 2018-04-05
Independent claims22