Design of Automatic Loading and Unloading System for Freight Car Handling Based on Intelligent Control

Author(s):  
Song Rui ◽  
Ye Youchun ◽  
Sun Yi ◽  
Zhang Ke ◽  
Dong Bo
2014 ◽  
Vol 1006-1007 ◽  
pp. 217-222
Author(s):  
Bao Niu Zhou ◽  
Qiu Hong Wang ◽  
Ling Wang ◽  
Yu Qing Chen

Based on typical parts CNC machining technology solutions, using the inverted spindle, high-capacity storage automatic loading and unloading of the workpiece conveyor systems, temperature tracking control system, ladder-shaped bed base and other new technologies. A milling-turning flexible machining cell was researched and developed, which means once the piece was fixed, all the procedures, including turning, milling, drilling, reaming, tapping and other processes integrated processing, can be completed. As an advanced manufacturing mode, it was suitable for the efficient processing of short-sleeve-type parts, panel parts, etc.


2021 ◽  
Author(s):  
Yueming Xu ◽  
Lei Wang ◽  
Shibo Ouyang ◽  
Shichang Han ◽  
Jun Zhang ◽  
...  

2011 ◽  
Vol 328-330 ◽  
pp. 1725-1728
Author(s):  
Heng Feng Yan ◽  
Ji Min Chen ◽  
Jun Shao

This paper describes a new laser engraving system for automation. It is a different open system from traditional ones. The system excludes sealed machine housing so that it is convenient for automatic loading and unloading. This paper also discussed safety issues which came with the open housing structure. At the end of this article, you will find the design of automatic loading and unloading with pneumatic components and a PC-based controller.


1997 ◽  
Vol 2 (3) ◽  
pp. 24-29
Author(s):  
William Holman ◽  
Randy Turner ◽  
Robin A. Felder

Laboratory automation systems (LAS) provide full automation of the pre-, peri-, and post-analytical specimen processing tasks in clinical laboratories. However, many existing instruments are difficult to interface, both mechanically and electronically, to specimen transportation systems. The AxSYM (Abbott Laboratories, Abbott Park, IL) analyzer is a popular method to perform immunoassay and toxicology measurements. In order for the large installed base of AxSYM instruments to take advantage of the efficiencies of automation, a prototype interface was developed for a popular LAS, the Coutler/IDS Model CLA (Coulter Corporation, Miami, FL). The automated instrument interface was designed for automatic loading and unloading of the AxSYM analyzer. The automated system can accept one or two AxSYM analyzers depending on the throughput and sample distribution needs of the laboratory. At the heart of the AxSYM automation is a CRS (Burlington, Ontario, Canada) robotic arm that is used to remove specimens from the model CLA, place them in an AxSYM sample tray, load the analyzer, and then automatically unload the finished specimens and return them to the Coulter/IDS. The system is projected to load and unload up to 200 specimens per hour from and to the conveyor system. While supporting automated loading, the system allows the AxSYM analyzer(s) to run manually loaded specimens. Minimal interfacing is required to install and operate the automated AxSYM so that the system can be up and running quickly. No physical connections are made to the Coulter/IDS thus simplifying installation and maintenance.


2013 ◽  
Vol 712-715 ◽  
pp. 2303-2307 ◽  
Author(s):  
Nan Yan Shen ◽  
Zhi Xiang Yu ◽  
Jing Li

The post processor of the flexible machining cell (FMC) composed by turn-mill machining centre and transport robot, which realizes some special functions such as automatic loading and unloading, turning-milling combined processing, keeping account of the man hour and so on, is developed by NX/Post Builder. The post processor is verified by the results of the case study using a special-shaped shaft. The development method discussed in this paper beneficial for producing an advantage of FMC to improve machining efficiency can also be used for reference to realize the postprocessor of other kinds of combined machine tools or machining cells.


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