Sample Record for 2025-05-23-21
Note: Fields with no data or with a value of "Unknown" will not be displayed on the print out.
Project Information
Project ID: 1000569 DEA: 051J8604 EFIS: 0518000081
QA Service Level: 1
DIST-CO-RTE-PM: 05-SLO-101-7.8/16.5
Work Description: COLD PLANE AC PAVEMENT, RHMA-G, DRAINAGE SYSTEMS AND BARRIERS.
Location Description: SAN LUIS OBISPO COUNTY IN AND NEAR ARROYO GRANDE AND PISMO BEACH FROM LOS BERROS ROAD UNDERCROSSING TO PISMO CREEK BRIDGE
Contractor Name: PAPICH CONSTRUCTION COMPANY, INC.
Contractor Address: 398 Sunrise Terrace, Arroyo Grande, CA 93420
Resident Engineer: Philip Gaston Structure Rep.: Salvador Heredia
Sample Information
DIME Sample ID: 2025-05-23-21
TL Number from the TL Form:
Sample Submitted By Organization: CT D05 - Santa Maria Field Laboratory
Sample Organization Contact: 8053191237
Type of Sample: Quality Assurance
Type of Material: Concrete
Sample Taken Date: 05/23/2025
Date that the sample was received by the laboratory/organization performing the testing: 05/23/2025
The quantity of what the sample constitutes: 10 Cy
A brief description of the sample: 3 sets of 3 4 x 8" cylinders
From where was the sample collected: Job Site
Laboratory sample identification: Santa Maria Construction Field Lab 334
Structure unique identifier:
Structure name: Barrier Transition
The fabricator/manufacturer/facility name: Alliance Ready Mix Arroyo Grande
Material Information
The concrete mix design number: 635C3N0P
The truck number from where the sample was collected: 124
The batch plant ticket number from where the sample was collected: 125963
Concrete batch plant: Alliance Ready Mix Incorporated
The fabricator/manufacturer designation for the sample: ES25-021
A detailed description of where the material sample was collected: Back of the truck Chute into wheelbarrow
Where the material sample would have been placed if not sampled: Barrier Transition
From Lot No.:
Bag Lot No.:
Test Results
Test 1 of 4
DIME Test ID: 2025-05-23-21-1
Test Method: ASTM C39-18: Standard Test Method for Compressive Strength of Cylindrical Concrete Specimens
Verified Date: 06/02/2025
Date Tested: 05/30/2025
Submitted By Organization: CT D05 - Santa Maria Field Laboratory
Organization Address: 2053 Preisker Lane, Suite E,
Organization City: Santa Maria
Organization State: CA
Organization Zipcode: 93427
Organization Email: isaac.gleffe@dot.ca.gov
Organization Phone: (805) 319-1237
General Comments for this Test:
Test Result Compliance: not applicable
Additional Comments When Verified:
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Unit system used?
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US Units
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Number of specimens
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3
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Test performed
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With no density determined
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Average diameter of cylinder 1
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3.98 in
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Average diameter of cylinder 2
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3.99 in
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Capped in accordance with?
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ASTM C617 - Sulfur Mortar Cap
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Average diameter of cylinder 3
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3.99 in
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Cross sectional area of cylinder 1
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12.47 in^2
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Cross sectional area of cylinder 2
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12.5 in^2
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Cross sectional area of cylinder 3
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12.5 in^2
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Compressive strength (to nearest 10 psi)
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3730 psi
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Maximum load on cylinder 1
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46539 lb
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Maximum load on cylinder 2
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46338 lb
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Maximum load on cylinder 3
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46950 lb
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Type of fracture pattern of cylinder 1
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5
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Type of fracture pattern of cylinder 2
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6
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Type of fracture pattern of cylinder 3
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4
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Comment on any defect in either specimen or caps (Max 250 Characters)
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no data
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Correction factor for cylinder 1
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1
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Correction factor for cylinder 2
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1
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Correction factor for cylinder 3
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1
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Age of specimen
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7 days
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Age of specimen in hours
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6 hours
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Test 2 of 4
DIME Test ID: 2025-05-23-21-2
Test Method: CTM 556-June 2010: Method of Test for Slump of Fresh Portland Cement Concrete
Verified Date: 06/02/2025
Date Tested: 05/23/2025
Submitted By Organization: CT D05 - Santa Maria Field Laboratory
Organization Address: 2053 Preisker Lane, Suite E,
Organization City: Santa Maria
Organization State: CA
Organization Zipcode: 93427
Organization Email: isaac.gleffe@dot.ca.gov
Organization Phone: (805) 319-1237
General Comments for this Test:
Test Result Compliance: does not comply
Additional Comments When Verified:
Test 3 of 4
DIME Test ID: 2025-05-23-21-3
Test Method: CTM 557-June 2020: Method of Test for Temperature of Freshly Mixed Hydraulic Cement Concrete
Verified Date: 06/02/2025
Date Tested: 05/23/2025
Submitted By Organization: CT D05 - Santa Maria Field Laboratory
Organization Address: 2053 Preisker Lane, Suite E,
Organization City: Santa Maria
Organization State: CA
Organization Zipcode: 93427
Organization Email: isaac.gleffe@dot.ca.gov
Organization Phone: (805) 319-1237
General Comments for this Test:
Test Result Compliance: complies
Additional Comments When Verified:
Test 4 of 4
DIME Test ID: 2025-05-23-21-4
Test Method: CTM 521-June 2020: Method of Test for Compressive Strength of Molded Concrete Cylinders
Verified Date: 08/04/2025
Date Tested: 06/20/2025
Submitted By Organization: CT D05 - Santa Maria Field Laboratory
Organization Address: 2053 Preisker Lane, Suite E,
Organization City: Santa Maria
Organization State: CA
Organization Zipcode: 93427
Organization Email: isaac.gleffe@dot.ca.gov
Organization Phone: (805) 319-1237
General Comments for this Test: 28-Day compressive strength breaks Load 2
Test Result Compliance: complies
Additional Comments When Verified:
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Unit system used?
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US Units
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Number of specimens
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3
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Test performed
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With no density determined
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Capped in accordance with?
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ASTM C617 - Sulfur Mortar Cap
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|
Average diameter of cylinder 1
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3.98 in
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Average diameter of cylinder 2
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3.98 in
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Average diameter of cylinder 3
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3.98 in
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Cross sectional area of cylinder 1
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12.44 in^2
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Cross sectional area of cylinder 2
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12.44 in^2
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Cross sectional area of cylinder 3
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12.44 in^2
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Compressive strength (to nearest 10 psi)
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5370 psi
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Maximum load on cylinder 1
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65113 lb
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Maximum load on cylinder 2
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67489 lb
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Maximum load on cylinder 3
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67789 lb
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Type of fracture pattern of cylinder 1
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4
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Type of fracture pattern of cylinder 2
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4
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Type of fracture pattern of cylinder 3
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4
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Comment on any defect in either specimen or caps (Max 250 Characters)
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no data
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Correction factor for cylinder 1
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1
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Correction factor for cylinder 2
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1
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Correction factor for cylinder 3
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1
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Age of specimen
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28 days
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Age of specimen in hours
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no data0 hours
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