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Liaison concatenation – A method to obtain feasible assembly sequences from 3D-CAD product

TLDR
In this article, a new approach to eliminate the non-possible assembly sequences based on liaisons is described and the correctness of the methodology is illustrated with an example, the methodology to obtain the feasible assembly sequences is also briefly described and presented.
Abstract
Selection of optimized assembly sequence from the available feasible assembly sequences is significantly essential to achieve cost-effective manufacturing process. To achieve this, at the outset, generation of feasible assembly sequences with topological, geometrical, precedence and stability conditions should be generated. The increase of part count in a product results huge number of assembly sequences, the Liaison matrix/Liaison graph generated based on the connections between the assembly components eliminates non-possible assembly sequences at the initial phase. There exist methods namely cut-set method to eliminate the non-possible assembly sequences using liaison graph. In this paper a new approach to eliminate the non-possible assembly sequences based on liaisons is described and the correctness of the methodology is illustrated with an example. The methodology to obtain the feasible assembly sequences is also briefly described and presented. An algorithm to interface with the CAD environment is described briefly.

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Journal ArticleDOI

An Optimal Robotic Assembly Sequence Planning by Assembly Subsets Detection Method Using Teaching Learning-Based Optimization Algorithm

TL;DR: The researchers studied the existing literature on assembly sequence generation methods and their limitations, and came up with efficient automated optimal sequence generation method that eliminates those assembly sets that have more directional changes and require more energy.
Journal ArticleDOI

An intelligent approach towards optimal assembly sequence generation

TL;DR: The proposed method is effective and proven efficient in the resulting all set of feasible assembly sequences described and achieves all valid assembly sequences and optimized assembly sequence for a given assembled product.
Journal ArticleDOI

Hybridized genetic-immune based strategy to obtain optimal feasible assembly sequences

TL;DR: In this article, a hybrid artificial intelligent technique, which executes Artificial Immune System (AIS) in combination with the Genetic Algorithm (GA) to find out an optimal feasible assembly sequence from the possible assembly sequence.
Journal ArticleDOI

An interoperability process between CAD system and CAE applications based on CAD data

TL;DR: The proposed method can help designers find the CAD assembly data in complex mechanical assembly model, facilitate the structuring of the useful designing data, and thereby improve the efficiency of product knowledge reuse.
Journal ArticleDOI

Assembly sequence optimization for minimizing the riveting path and overall dimensional error

TL;DR: An assembly sequence optimization method is developed that simultaneously minimizes the path length and overall dimensional error for the solid riveting.
References
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Journal ArticleDOI

Simplified generation of all mechanical assembly sequences

TL;DR: A modification of Bourjault's method is presented which makes practical the application of this technique of assembly analysis to assemblies with greatly increased part count.
Proceedings Article

AND/OR graph representation of assembly plans

TL;DR: A compact representation of all possible assembly plans of a given product using AND/OR graphs is presented, which forms the basis for efficient planning algorithms which enable an increase in assembly system flexibility by allowing an intelligent robot to pick a course of action according to instantaneous conditions.
Proceedings ArticleDOI

A correct and complete algorithm for the generation of mechanical assembly sequences

TL;DR: An algorithm for the generation of mechanical assembly sequences and a proof of its correctness and completeness is presented, which uses a relational model which describes the geometry of the assembly and the attachments that bind one part to another.
Journal ArticleDOI

Automated Sequencing and Subassembly Detection in Assembly Planning

TL;DR: In this paper, a procedure for the selection of the subassemblies and the assembly sequences of a product, applied in an assembly planning software system named FLAPS (Flexible Assembly Planning System), under development at the institute of mechanical technology of the University of Pisa, is described.
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