Modeling and Optimization of End Effector Layout for Handling Compliant Sheet Metal Parts
نویسندگان
چکیده
Material handling of compliant parts is one of the most critical and underresearched problems in the sheet metal stamping industry. The fundamental shortcoming of currently studied material handling systems for sheet metal stamping is the lack of analysis of its impact on part dimensional quality and production throughput. This paper addresses this problem by development of a generic methodology for modeling and optimization of part holding end-effector layout in order to minimize part dimensional deformation during handling operations. The methodology extends the design of ‘‘N-2-1’’ fixturing layout by adding part movability conditions. It considers part CAD model, handling direction and motion kinematic parameters to determine the best end effector layout. This methodology is realized by integrating FEM part and loading modeling with the optimization algorithm. It can be implemented into the design stage of a stamping line so that the trial and error process, which is current industrial practice, can be greatly shortened and the production throughput increased. Experimental results verify the proposed part holding end-effector layout methodology. @DOI: 10.1115/1.1366682#
منابع مشابه
A Dexterous Part-Holding Model for Handling Compliant Sheet Metal Parts
Material handling of compliant sheet metal parts significantly impacts both part dimensional quality and production rate in the stamping industry. This paper advances previously developed material handling end effector layout optimization methodology for rigid point end effectors [1] by developing a dexterous part-holding end effector model. This model overcomes the shortcomings of the rigid po...
متن کاملOptimal Trajectory Planning For Material Handling of Compliant Sheet Metal Parts
One of the most critical issues in the material handling of compliant objects is excessive part deformation. The deformation of compliant sheet metal parts during the handling process can significantly impact both part dimensional quality and production rate. Increasing production rate while maintaining part quality requires an optimal design of the part transfer trajectory. This paper describe...
متن کاملImplementating the Genetic Algorithm with VLSI Approach for Optimization of Sheet Metal Nesting
As Engineering becomes more advanced and the business in the industrial world becomes more competitive, hence optimization technique becomes an essential part of an any industry or organization. The objective of this paper is to minimize the material wastage by the optimum layout of two-dimensional work piece within constraints imposed by stock size and material. This approach deals with how it...
متن کاملDevelopment of a Prediction Model Based on RBF Neural Network for Sheet Metal Fixture Locating Layout Design and Optimization
Fixture plays an important part in constraining excessive sheet metal part deformation at machining, assembly, and measuring stages during the whole manufacturing process. However, it is still a difficult and nontrivial task to design and optimize sheet metal fixture locating layout at present because there is always no direct and explicit expression describing sheet metal fixture locating layo...
متن کاملImpact of Fixture Design on Sheet Metal Assembly Variation
This paper presents a new fixture design methodology for sheet metal assembly processes. It focuses on the impact of fixture position on the dimensional quality of sheet metal parts after assembly by considering the effect of part variation, tooling variation and assembly springback. An optimization algorithm combines finite element analysis and nonlinear programming methods to determine the op...
متن کامل