Development of the physics-based assembly system model for the mechatronic validation of automated assembly systems

Author(s):  
Anton Strahilov ◽  
H. C. Jivka Ovtcharova ◽  
Thomas Bar
1981 ◽  
Vol 103 (2) ◽  
pp. 224-232 ◽  
Author(s):  
K. Hitomi ◽  
M. Yokoyama

Optimization analysis for maximizing the total profit of an automated assembly system consisting of automated assembly machines and operators was performed. In this analysis, concepts of two kinds of breakdowns, which depend on accuracy of parts and on machine running speed were introduced. Based on basic decision variables—accuracy of parts, machine running speed, and number of operators, profit rate of the automated assembly system was maximized through dynamic programming, and an optimizing algorithm for the maximum profit rate was developed with a numerical example.


Author(s):  
Pawel Majdzik ◽  
Bogdan Lipiec ◽  
Marcin Witczak ◽  
Lothar Seybold ◽  
Ralf Stetter ◽  
...  

2019 ◽  
Vol 109 (09) ◽  
pp. 622-627
Author(s):  
P. Burggräf ◽  
M. Dannapfel ◽  
T. Adlon ◽  
A. Riegauf ◽  
K. Müller ◽  
...  

Produzierende Unternehmen intensivieren aufgrund zunehmend volatiler Kundenbedürfnisse die Anwendung agiler Produktentwicklungsansätze. Ziel des Beitrags ist die Einführung eines Konzepts zur Befähigung dieser dynamischen Produktentwicklung in der Montage. Der integrative Lösungsansatz basiert auf der wirtschaftlichen Optimierung des Agilitätsgrades von Montagesystemen sowie dem selektiven Einsatz agiler Methoden in der traditionell plangetriebenen Montageplanung als Teil der Fabrikplanung.   To meet more volatile customer needs, manufacturing companies increasingly make use of agile product development approaches. This article aims to introduce a concept to enable for dynamic product development in assembly. This integrative solution approach is based on the economic optimization of the degree of agility of assembly systems and on the selective use of agile methods in traditional, plan-driven assembly planning as part of factory planning.


2014 ◽  
Vol 693 ◽  
pp. 56-61
Author(s):  
Michala Šimúnová ◽  
Nina Vetríková ◽  
Karol Velíšek

Nowadays, there is a huge emphasis on the development of devices, technologies and process in the industry. Automation helps with it in the considerable degree, because it tries to solve the development of technique, what is characteristic sign of production, assembly, control and another process realization, what eliminates the human intervention and error rates. Automated assembly process consists of the assembly and handling operations of component connecting to the different units and final products, what is equipped with appropriate devices to eliminate the human intervention. One of the most productive solutions seems to be the deployment and the use of robots and manipulators, which realize the technological, handling and also transporting process. This contribution deals with the systematic steps for the selection of the appropriate sensory equipment used in the gripping robotic end effectors, which are characteristic for the assembly system, placed in our department laboratories.


Procedia CIRP ◽  
2014 ◽  
Vol 23 ◽  
pp. 137-142 ◽  
Author(s):  
Felix Damrath ◽  
Anton Strahilov ◽  
Thomas Bär ◽  
Michael Vielhaber

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