Mechatronic Compact System for PLC: High-bay warehouse with material testing

VE6.7.2.2
Mechatronic Compact System for PLC: High-bay warehouse with material testing
Mechatronic Compact System for PLC: High-bay warehouse with material testing

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Description

E6.7.2.2
Mechatronic Compact System for PLC:  High-bay warehouse with material testing

System
The MCS (Mechatronic Compact System) is comprised of  three individual systems, each with a basic mechatronic function. Connecting the systems determines the interaction of mechanics, pneumatics, electronics, and SPC programming.

Educational objectives

  • Isolating unsorted parts from the high-bay warehouse 
  • Collision-proof provision of parts on a tray 
  • Use of parts between assemblies
  • Recognition of different materials (sensors)
  • Mechanical construction of a pick and place converter
  • Programming of a pick and place converter
  • Mechanical construction of a rotary indexing table with test unit
  • Mechanical construction of a testing station
  • Programming a test procedure  
  • Programming of a sorting  parts into high-bay warehouse 

Design
The setup includes three models:

  • High-bay warehouse: An electric linear axis with toothed belt drive and a pneumatic linear axis as well as a removal cylinder remove workpieces from a shelf and convey them to a transfer position. This can be to the right and left of the high-bay warehouse. The workpieces can be removed from these transfer positions and placed back into storage..
  • Pick and Place, pneumatic : The assembly is used to sort workpieces into multiple output positions by means of a pneumatic extendable, lowerable rotary mechanism and a gripper..
  • Rotary indexing table with testing unit and display: A testing unit arranged over the rotary indexing table recognises the workpieces as present, black, and metallic. The results can be shown on the display.

 

Method
The device is designed for student experiments. Practical exercises require that the learner resolve the controller or system problem with their own programming and using mechanical configurations. The basics of SPC programming and a understanding of production processes are required prior knowledge.

Trainees studying industrial  electro technology  and students of automation engineering are the target group being addressed. The course offers experiments with a scalable level for vocational school and for bachelor education, from simple storage processes to complex sorting algorithms, the complexity of the problem can be adapted to the level of knowledge and the teaching objective.

Topics

  • Programs for process control
  • Creation of sequential controls
  • Differentiation of manual and automatic functions in programs.
  • Plans for driving pneumatic valves.
  • Collision-proof provision on a tray
  • Micro switch for position recognition
  • One-way photoelectric barrier
  • Optical sensor
  • Inductive sensor
  • Positioning of the micro switch
  • Electric drives
  • Limit switch with micro switch
  • Reversing contact control

Components of equipment sets

1 773037 Module HRL: high-bay warehouse LD
1 773034 Module PPF02: Pick and Place, pneu LD
1 773038 Modul RST: Rotary Index. Table SC LD
1 773039 Control Console BP LD
1 773082 Service Unit with manual valve LD
1 773081 Assortment of Small Parts and Tools LD
1 744600  8  Low-noise Compressor LD
1 744902 Compressor Connection Hosing LD
1 8-1530025-000-10-0 Polyamide hose, 6/4 mm, transparent, 20 m EW
Accessories
1 72610  4  Panel frame T150, two-level LD
1 773055 HMI Touch Panel Basic EW
1 773080 HMI Touch Panel for PLC TP 1500 Comfort EW
Additional requiret PLC
0 A PLC Programable Logic Coltroler is required, selected from the following:
1 773075 ** Simatic PLC S7-1512C-1 PN +DP TP EW
1 773072 Simatic PLC S7-1512C-1 PN TP EW
1 additionally required: 1 PC with Windows 7 / 8.1 / 10 (x86 or x64)
Experiments require the Siemens software TIA Portal to create programs.
The equipment can require additional software modules.

Articles marked with ** are additionally required.

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