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applications - application solutions

  • Thread starter Thread starter TETRASTORE
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TETRASTORE

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tetrastore has published a new resource:
applications - application solutions - diagrams on the use of components in the application field
the file (application solutions - pdf format - 9.9 mb) to download, contains a series of illustrative drawings that integrate both purely structural mechanical solutions and electrical components (electric motors, inverters, etc.) as well as components belonging to the power transmission industry (motors, joints, etc.).
useful for students but also for those who want to have ideas at the design level.
in the attached image is, as a preview, the index of...
more information about this resource.. .
 
Is it just me that I can't download the pdf (in the sense that I don't see attachments or download links)?
I tried with firefox, chrome and edge, but nothing to do; I only see the preview .jpg.
 
Is it just me that I can't download the pdf (in the sense that I don't see attachments or download links)?
I tried with firefox, chrome and edge, but nothing to do; I only see the preview .jpg.
we are two
 
beautiful resource. I would like to go into detail about some applications shown to better understand. for example the first: the endless screw dx and sx is a single shaft moved by the same engine? so doing the two tips advance and reverse specularly. is it correct?1703072493807.webp
 
I would also like to understand in the detail of electrical components indicated since I don't understand anything about the electric part! just to not ask enough I can try to explain what I understand by seeing the scheme:
the plc keyboard from impulse to the inverter more to right that commands the motor of the vine s and thanks to the encoder understands how much it has to turn the screw to advance of what is required.
the other left inverter controls the two motors of the tips, I imagine for the rotation speed, which is governed only by the potentiometer, not by the plc keyboard.
I guess I said a lot of chestnuts, but I'd like to understand.
 
for example the first: the endless screw dx and sx is a single shaft moved by the same engine? so doing the two tips advance and reverse specularly. is it correct?
sì.
the plc keyboard from impulse to the inverter more to right that commands the motor of the vine s and thanks to the encoder understands how much it has to turn the screw to advance of what is required.
exact; check both the speed of progress and the stroke (the latter via encoder signal).
the other left inverter controls the two motors of the tips, I imagine for the rotation speed, which is governed only by the potentiometer, not by the plc keyboard.
correct. the system can adapt to various drilling parameters (material, progress, speed, etc.).
the keyboard serves for the introduction of parameters in the connected inverter.
 
to let the encoder know where the tip in the initial position is to be given zero to every use? encoders have only right position control function? do not send electric impulses
 
in the case of this application the most suitable solution is the absolute rotary encoder. zero reference is necessary for conventional incremental encoders while absolute encoders do not require any reference to the initial or basic position even after a power break.
to better understand the difference between the two looks This video.
 
very useful video. In this case the encoder does not need to clear but to know where the piece is you have to enter the right zero piece?
 
Remaining always in the field of applications, I bring back some links to videos that show how various types of gearboxes are used. I think they are particularly useful for students and graduates who can see in practice how speed reductions are applied in the various sectors.
palletizerwood carvingplant production pipespalchi di un teatropalm oil production plantshredderLiftconveyor belt logsmill gearboxsteel pipe conveyorgearbox for cartirerlifting winchhurry.mill oxidationEscarolesagitatorsprinting machinescooling towersmining sectorsugarVirtual simulators
 
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