Process sequence optimization based on a new cost–tolerance model
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Summary
An approach is presented capable of determining the optimal production sequence and its optimal process tolerance to achieve the minimum production costs and a new mathematical model, representing the cost–tolerance relationships and showing significant accuracy improvement over existing models is introduced to allocate process tolerance.
- Type
- article
- Published
- 1998-01-01
- Cited by
- 36
- References
- 20
- OpenAlex
- https://openalex.org/W39973247
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5597435
Keywords
Production (economics), Sequence (biology), Process (computing), Allowance (engineering), Identification (biology)
References
- Least Cost Tolerance Allocation for Mechanical Assemblies with Automated Process Selection
- Applied Numerical Methods for Digital Computation
- Engineering Design: A Materials and Processing Approach
- A cost-tolerance analytical approach for design and manufacturing
- The Optimization Problem With Optimal Tolerance Assignment and Full Acceptance
- Optimal process sequence identification and optimal process tolerance assignment in computer-aided process planning
- Fitting thermodynamic data using the modified spline technique
- Allocation of Tolerances to Minimize Cost of Assembly
- Calculation of Tolerance Based on a Minimum Cost Approach
- Mechanism Design: Accounting for Manufacturing Tolerances and Costs in Function Generating Problems
- Expert Process Planning for Manufacturing
- Optimum Selection of Discrete Tolerances
- New Production Cost-Tolerance Models for Tolerance Synthesis
- Computing for Scientists and Engineers: A Workbook of Analysis, Numerics, and Applications
- APPLIED NUMERICAL ANALYSIS
- Automated Concurrent Design Based on Combined Feature, Tolerance, Production Process and Cost Models
- Numerical Methods For Mathematics, Science, and Engineering
Cited by
- DPP: An agent-based approach for distributed process planning
- AN EFFICIENT SEQUENTIAL INTEGER OPTIMIZATION TECHNIQUE FOR PROCESS PLANNING AND TOLERANCE ALLOCATION
- Tolerance Cost in Relation to Surface Finish during Longitudinal Turning Operations
- Function blocks enabled dynamic set-up dispatching and execution monitoring
- Generic machining process sequencing through a revised enriched machining feature concept
- Machine availability monitoring and machining process planning towards Cloud manufacturing
- Architecture design for distributed process planning
- Designing function blocks for distributed process planning and adaptive control
- Multi-objective design and tolerance allocation for single- and multi-level systems
- Particle swarm optimization in multi-stage operations for operation sequence and DT allocation
- Web-DPP: towards job-shop machining process planning and monitoring
- MANUFACTURING SIMULATION: COMPUTER AIDED TOLERANCING FOR PROCESS PLANNING
- Enriched machining feature-based reasoning for generic machining process sequencing
- Machining precedence of 2½D interacting features in a feature-based data model
- Case based polishing process planning with fuzzy set theory
- Modeling the cost of varying surface finish demands during longitudinal turning operations
- Agent-based distributed manufacturing process planning and scheduling: a state-of-the-art survey
- Case-based polishing process planning with Fuzzy Set Theory
- Integrated parameter and tolerance design with computer experiments
- A proposal of cost-tolerance models directly collected from the manufacturing process
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