One of the primary problems in the production of cement testing cubes is inconsistency in quality due to skill differences between operators and low repeatability in human performance of identical operations. To eliminate this problem and to enhance productivity, a state‐of‐the‐art robot workcell system, which utilized a multitasking control strategy and tool changer and sensor technology to automatically produce cement testing cubes, was designed and integrated. A comparative analysis of compressive strength values of specimens made by human operators and robots indicated that the specimens made by the robot workcell system had lower variation than the human made ones. This study not only demonstrates that robot workcells are flexible and robust enough to be used in cement testing cube production, but also suggests that revision of American Society of Testing Methods (ASTM) procedures to facilitate implementation of high technology in the materials testing process should be considered.
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1 June 1998
Review Article|
June 01 1998
Robot workcell design for hydraulic cement mortars mixing process
Sheng‐Jen Hsieh;
Sheng‐Jen Hsieh
Assistant Professor in the Manufacturing Engineering Program of the Engineering Department at The University of Texas ‐ Pan American, Edinburg, TX 78539, USA. E‐mail: tony@engr.panam.edu or sjh@juno.com.
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Gary Rhoades;
Gary Rhoades
Gary Rhoades is Electronic Division Chair of the Automation and Robotics Program, TSTC, Sweetwater, TX 79556, USA. Sang‐Shiun Chan is the Program Chair of the Computer Maintenance Program, TSTC, Sweetwater, TX 79556, USA
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Sang‐Shiun Chan
Sang‐Shiun Chan
Sang‐Shiun Chan is the Program Chair of the Computer Maintenance Program, TSTC, Sweetwater, TX 79556, USA
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Publisher: Emerald Publishing
Online ISSN: 1758-5791
Print ISSN: 0143-991X
© MCB UP Limited
1998
Industrial Robot (1998) 25 (3): 205–212.
Citation
Hsieh S, Rhoades G, Chan S (1998), "Robot workcell design for hydraulic cement mortars mixing process". Industrial Robot, Vol. 25 No. 3 pp. 205–212, doi: https://doi.org/10.1108/01439919810216547
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