This tutorial will provide a step by step guide on how to upgrade a ZX style machine to have Beckhoff drives and control system.
Auteur Stuga Engineer | Dernière modification 16/10/2023 par Stuga Engineer en cours de rédaction ⧼frevu-button-review-label⧽
This tutorial will provide a step by step guide on how to upgrade a ZX style machine to have Beckhoff drives and control system.
Upgrade, Beckhoff, ZX3, ZX4, Control System Upgrade_ZX_Machine_to_Beckhoff_Drives_and_Control_ZX4.JPG
Check through all parts lists and make sure that the parts that have been requested are the parts that are in the box. The picked parts should include all the consumable products that are in the BoMs (bolts, tie wraps, wires etc).
Once parts have been checked, they need to be handed to production for pre-assembly.
Ensure all information and drawing packs are available in the service job and in the relevant technical information boards on Monday.com. Link to Monday board for drawing packs here:
Before the upgrade is despatched to site, the servo system needs to be assembled and pre-wired in its enclosure.
*for detailed wiring information, please use drawing packs from Monday.com board.*
Parts
The parts should arrive on site, packed as a kit. Check the parts for any obvious signs of damage and check through to make sure you have received what was expected.
Expectations
Before starting any works, check in with the customer and make sure that all parties are aware of the scope of the work being undertaken. It is good to set expectations at this point, to keep clarity between you and the customer.
Starting the Job
Check machine condition and get pictures before starting any work. It may be useful to run the machine to check any inherent issues before the upgrade begins. After works have been started, it will not be possible to come back to this stage.
It is important to note that although the components are being removed from the machine, they are not to be thrown away. Please keep all parts in good condition and find a place to store them until the end of the upgrade process.
Where wiring needs to be disconnected, try and keep crimped ends attached so that the wires can be reused later in the upgrade process.
Parts to be removed from MH cabinet:
Parts to be removed from Saw Cabinet:
Parts to be removed from Saw Infeed Cabinet:
Parts to be removed:
Parts to be fitted in MH cabinet:
*For any IO wiring that will not reach the IO slices, terminals are provided in the kit. The terminals can be used to extend the wiring.*
Parts to be fitted in Saw Cabinet:
Parts to be fitted in Saw Infeed Cabinet:
Position:
The servo cabinet will arrive pre-wired and have 4 feet fitted to the bottom. The cabinet needs to be placed at the rear of the MH outfeed, just after the first eject push cylinder. To get the cabinet inplace, the first fence panel will need to be removed. Eventually this fence panel will need to be cut to allow the cabinet door to open.
Fixing:
To fit the cabinet, first set the feet so that the top rear holes of the cabinet line up with the round bar frame of the MH outfeed. Once the holes line up, they can be drilled off and fixed.
Cables:
The cabinet will have a power cable and 2 network cables that need to be loomed out of the bottom panel of the cabinet. The power cable and network cable labelled MH, run into the MH, through the internal trunking, through the drop down panel (ensure cables are run and secured in such a fashion that the drop down panel can be open or closed without causing any clashes or breaks for the cables. The cables then run down the infeed table trunking and into the MH electrical cabinet.
The network cable labelled Saw, will eventually run through the front buffer beam of the transfer table, but at this stage it just need to be loomed up to the entrance of the buffer beam, ready for pulling through with some other cables later on.
Now all wiring and devices have been fitted in the cabinets. Use the schematics provided to wire them up.
The schematics can be found on the Monday.com board linked at the start of this Dokit.
Cables that need to be run:
HDMI Cable
The HDMI Cable runs from the Front end PC in the MH Cabinet to the Saw Console touchscreen. The cable comes out of the MH cabinet, down the infeed trunking, through the drop down panel (again ensuring the drop down panel can function normally without impacting on the cable) and then through the internal trunking in the MH, eventually coming out of the outfeed side of the MH (using the hole created from removing the G axis connection plug). The HDMI cable and network cable labelled Saw can now be pulled through the front buffer beam of the machine using an old piece of cable if required. Once the cables are out of the other side, they need to be loomed to their final location (this can change depending on the layout of the Saw cabinet and Console.
EtherCAT between Servo Cabinet and Saw Cabinet
This cable is network cable labelled Saw that should have already have been loomed to the entrance of the front buffer beam. From this point, it looms with the HDMI cable through the buffer beam. Once the cables are out of the other side, they need to be loomed to their final location (this can change depending on the layout of the Saw cabinet and Console. The network cable needs to end up plugged into the IO slices in the Saw Cabinet. EtherCAT between Saw Cabinet and Saw Infeed Cabinet
There will be a 10m green network cable in the kit for this. This network cable goes through the flexible conduit between the Saw Cabinet and Saw Infeed Cabinet. One of the old SX axis servo cables should have been left in the conduit to be used as a pull for the network cable. Once end of the network cable plugs into the Saw Cabinet IO slices and the other end plugs into the Saw Infeed Cabinet IO slices. Network for Printer
There is a 7m yellow network cable in the kit for this. The network cable goes from the Saw Cabinet to the printer. Depending on the cabinet layout will depend on how the cable is run. R Axis Servo Cable
X Axis Servo Cable
Y Axis Servo Cable
Z Axis Servo Cable
G Axis Servo Cable
SX Axis Servo Cables
Saw Angles
Saw Infeed Datum
Polarity Changes
Saw Start Button
On/Off Circuits
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