Skip Nav Destination
Close Modal
Update search
Filter
- Title
- Author
- Author Affiliations
- Full Text
- Abstract
- Keyword
- DOI
- ISBN
- ISBN-10
- ISSN
- EISSN
- Issue
- Journal Volume Number
- References
- Conference Volume Title
- Paper No
Filter
- Title
- Author
- Author Affiliations
- Full Text
- Abstract
- Keyword
- DOI
- ISBN
- ISBN-10
- ISSN
- EISSN
- Issue
- Journal Volume Number
- References
- Conference Volume Title
- Paper No
Filter
- Title
- Author
- Author Affiliations
- Full Text
- Abstract
- Keyword
- DOI
- ISBN
- ISBN-10
- ISSN
- EISSN
- Issue
- Journal Volume Number
- References
- Conference Volume Title
- Paper No
Filter
- Title
- Author
- Author Affiliations
- Full Text
- Abstract
- Keyword
- DOI
- ISBN
- ISBN-10
- ISSN
- EISSN
- Issue
- Journal Volume Number
- References
- Conference Volume Title
- Paper No
Filter
- Title
- Author
- Author Affiliations
- Full Text
- Abstract
- Keyword
- DOI
- ISBN
- ISBN-10
- ISSN
- EISSN
- Issue
- Journal Volume Number
- References
- Conference Volume Title
- Paper No
Filter
- Title
- Author
- Author Affiliations
- Full Text
- Abstract
- Keyword
- DOI
- ISBN
- ISBN-10
- ISSN
- EISSN
- Issue
- Journal Volume Number
- References
- Conference Volume Title
- Paper No
NARROW
Format
Article Type
Subject Area
Date
Availability
1-20 of 337
Follow your search
Access your saved searches in your account
Would you like to receive an alert when new items match your search?
1
Sort by
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Smart Sustain. Manuf. Syst.. March 2025, 9(1): 11–36.
Paper No: SSMS20240018
Published Online: March 25, 2025
Journal Articles
Mario López-Lombardero, Unai Segurajauregi, Maialen Areitioaurtena, Iban Retolaza, Mario Javier Cabello
Publisher: ASTM International
Article Type: Technical Notes
Smart Sustain. Manuf. Syst.. March 2025, 9(1): 1–10.
Paper No: SSMS20240006
Published Online: March 4, 2025
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Smart Sustain. Manuf. Syst.. December 2024, 8(1): 119–135.
Paper No: SSMS20230042
Published Online: December 30, 2024
Journal Articles
Publisher: ASTM International
Article Type: Technical Papers
Smart Sustain. Manuf. Syst.. December 2024, 8(1): 136–149.
Paper No: SSMS20240013
Published Online: December 30, 2024
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 1 General direction of the study and methodology step by step. More about this image found in General direction of the study and methodology step by step.
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 2 Job shop configuration of numerical example. More about this image found in Job shop configuration of numerical example.
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 3 Simulation model in arena. More about this image found in Simulation model in arena.
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 4 Makespan simulation results for five scenarios and six job types. More about this image found in Makespan simulation results for five scenarios and six job types.
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 5 The impact of ideal human productivity factor on makespan. More about this image found in The impact of ideal human productivity factor on makespan.
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 6 Simulation results for makespan considering failure and transportation time. More about this image found in Simulation results for makespan considering failure and transportation time...
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 7 Simulation result for optimistic and pessimistic perspectives. More about this image found in Simulation result for optimistic and pessimistic perspectives.
Image
in Enhancing Online Job Shop Scheduling Efficiency: Simulation-Based Optimization Incorporating Human Productivity Factors and TOPSIS Ranking
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 8 Scenarios ranking by TOPSIS. More about this image found in Scenarios ranking by TOPSIS.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 1 Drafting of the microfluidic chip. More about this image found in Drafting of the microfluidic chip.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 2 Slicing of the microfluidic chip. More about this image found in Slicing of the microfluidic chip.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 3 The first and last layers to be printed. More about this image found in The first and last layers to be printed.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 4 The used Kudo 3D machine. More about this image found in The used Kudo 3D machine.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 5 Microfluidic chip fabricated by SLA. More about this image found in Microfluidic chip fabricated by SLA.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 6 Characterization of microfluidic channels by the optical microscope. More about this image found in Characterization of microfluidic channels by the optical microscope.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 7 Transmittance curves obtained for three different exposure times. More about this image found in Transmittance curves obtained for three different exposure times.
Image
in Optimizing Stereolithography Printing Parameters for Enhanced Microfluidic Chip Quality
> Smart and Sustainable Manufacturing Systems
Published Online: December 30, 2024
FIG. 8 Characterization of microfluidic channel for an exposure time of 35 s. More about this image found in Characterization of microfluidic channel for an exposure time of 35 s.
1