giovedì 19 maggio 2016

Macchinazioni, macchine e gente che guida le macchine senza la patente.

Non sono solito fare post su cose del genere: "non ti curar di loro, ma guarda e passa". Ma stavolta si è toccato una corda (è proprio il caso di dirlo) che mi sta parecchio a cuore ed a cui ho dedicato una buona parte della mia vita.



Veniamo al casus belli:


http://www.lastampa.it/2016/05/19/cultura/opinioni/buongiorno/la-macchinazione-0VUrkQiRQecqMjft4cYmMP/pagina.html



In particolare:


(click per ingrandire)



Dice che il pianoforte è "meglio" del sintetizzatore in quanto "la differenza la fanno ancora quei pochi che sanno mettere le mani sulla tastiera" e parli di "suoni asettici".
Bene, allora lasciatemi dire, da Pianista e da Designer Sistemico, che il pianoforte stesso è ASETTICO: le corde vengono percosse meccanicamente da dei martelli in maniera più o meno forte premendo sul tasto corrispondente e vengono smorzate in maniera ugualmente meccanica quando si solleva il dito dal tasto. Le note sono tutte lì, pronte ad essere usate. Ci sono 1, due o 3 corde per tasto a seconda dell'altezza della note, ma il sistema non cambia. Diventa più complesso ma non più complicato.
Confrontiamo il pianoforte con il violino (o la viola, o il contrabbasso) o la chitarra: con appena 4, 5 o 6 corde (il numero varia, a seconda dello strumento) si possono avere quasi tutte le note comprese negli 88 tasti di un pianoforte. ma non basta "pigiare un tasto", bisogna saper muovere l'archetto o pizzicare la corda, bisogna saper regolare la lunghezza della corda per fare la nota giusta. e se in alcuni strumenti sono presenti i "tasti" che ci aiutano a fare le note intonate, nel violino il manico è totalmente libero: devi sapere TU dove fermare la corda, e lì è questione di millimetri. La ghironda da noi in Piemonte la chiamavano la viola d'j borgnu (il violino dei ciechi) perchè al manico del violino si applicava un artificio per cui attraverso dei tasti si otteneva la nota precisa facendo azione sulla corda interna strofinata da un "archetto automatico" azionato con la manovella.
Quindi il digeridoo è uno strumento INFIMO? Le percussioni sono paragonabili agli "ignoranti" della musica? No, sono semplicemente DIFFERENTI. Ci vuole abilità a tenere il ritmo, ci vuole abilità a fare la nota giusta e, per giungere finalmente ai sintetizzatori, ci vuole abilità nel cogitare la "patch" giusta.

Come sempre, il razzismo è figlio dell'ignoranza... anche nella musica.



Per riparare all'ignoranza, consiglio a Gramellini quel mostro sacro contemporaneo che risponde al nome di Wendy Carlos, un precursore del sintetizzatore e di sicuro una persona che "sa mettere le mani sulla tastiera".




Per chi vuole, e chi può:


http://www.amazon.it/Switched--Bach-Wendy-Carlos/dp/B00005ORCV/ref=sr_1_2?ie=UTF8&qid=1463647402&sr=8-2&keywords=wendy+carlos




lunedì 16 maggio 2016

I'm Back! (somehow)

Those last few months have seen me settling in another country - this time is Spain. Not exactly in a populated area, but I'll talk about this in another post. that's one of the reason I felt to come back to this. It's just a "hit and run" post,  but I couldn't let this slip away!
This time I've had the "disappointment" to disassemble an old CRT monitor. I was disappointed because I thought it would have had way more dinstinct components, instead I was able to completely disassemble with 13 screws in total. Quite a "sustainable" feature!

Let's start!

 
 Here it is, our "patient".


Moving away means that I couldn't bring a lot of things with me, even if I was moving with my car. So, I'll try to what I can with the tools I've got. It's just an "emergency kit" from IKEA but it works.


And all the tools I got for the job.

The base came out without trouble, as it was only held in place by 4 peg. One of the removable snips was damaged, too.

The adjustable mount.


The two pieces providing adjustability to the screen were held together by this mechanism - no screws at all. The fin prevented to accidentally dislodge the monitor from the support, but was easily reversable.



Finally the first 4 screws! Those were right behind the screen and held the back and the front frame together... and that would be 80% of the structure! :D


The first 4 screws! 


To completely release the back cover, a gente lift of those snaps is all what was needed after the 4 screws above.




 Free! And... oh the dust. So much dust there... thick, but not greasy. At least.


Dust. Dust never changes. 


The first thing I could take apart was the rear tube circuitry. I've cut the grounds soldered to the metal cage, but later I've discovered that I could just unscrew them. The screws were hidden under tiny mountains of dust tho, and not easily noticeable.



So far I can count only 2 more "big parts": the lower circuit board and the tube itself. I like the tube... has some kind of own aestethic.





Some vivid colours under the black dust.

Back to unscrewing! 4 copper screws hold the tube in place... and that's pretty much all.


Copper screws! Yay! 


Those snaps could be pushed back in to slide away the main board. A bit stiff tho... they almost shattered in the removing process.



Some coilings and grounds that could be removed. The thick one was mounted on the frame, while the spring one was on the tube.



There's no such thing as too much ground.
 
Cleaned tube.
 

This last screw kept the lower board together with the metal frame. 9 unscrewings so far! After pulling the snaps back in, the board slided away applying a minimal forse with the screwdriver.


The last screw!

Dust, dust everywhere...


Here is the board! Looks nice and "techy". The other side has A LOT of dust on it and I'll clean it as soon as I'll get the new vacuum (later this week hopefully. It's traveling!). there are a lot of interesting components on it, but without my iron I'm not able to remove any of them.




Finished! I plan to make some shelfy-thing with the plastic frame of the screen. I don't have a cat nor a small small dog here, otherwise it could be a nerdy housing for a pet! I don't really want to throw away the tube, since I "like" it, but I can't see any possible use for it. I am aware that is a "special" kind of component and isn't posible to recycle it in the glass bell, if I am to throw it away for good :\

CRT monitor are quite easy to disassemble, their bulky plastic cases could be differentiated easily! The boards... well, as with all the electronics, it's extremely difficult to find any use for them beside a weird decoration or other "artistic" uses. one could cut the up to pieces and use the single components on said pieces, but it's so much work that isn't a viable option IMHO.

That's all for now... thanks for reading!

martedì 4 agosto 2015

Printer Recycling

Hello people!

A lot of time passed since the last time I did this with my car radio. I promised myself to do it again with something bigger and I've ended up collecting many "dead" devices that could be scraped for something good. What I do is related to my studies mostly, Industrial Design and Eco-Design: it's always interesting to see how industrial products are made and if we can disasseble a device to the essential components (plastics, metals, screws, wood, etc) it's much easier to recycle. There are thermoplastics polymers that can be grinded to pellets (just a mechanical transformation) and they are ready to use again. Interestingly, I found quite the variety of polymers on this small economic printer, but we'll talk about that later.

No more talk... let's get our hand dirty! Our subject is a Epson Stylus C64 that doesn't work anymore.

No more clogged sponge for this printer.

Ready, set, go!

 A first look revels there's only one screw securing the external plastic together and lots of snaps holding the halves. 4, to be precise. The snaps on the front required to insert a flat screwdriver between the halves were the snap was supposed to be a pry a little. Well, this should be short work!

The only external screw.

Snaps on the back...

...and snaps on the front. Those required a different approach to snap out.

The upper cover, removed.

The lower half is just a "donut" and is secured to the printer mechanisms by 5 lag screws, and comes off easily after the removal of those.

Screws, finally.

Lower half removed.

While the printer isn't running away nor screaming in pain, I dedicate myself to the upper enclosure, that is made by many pieces. The first thing I can take away are the buttons,that doesn't look really recycling-friendly as they're made of two differents polymers, one transparent and one rubber-like... should be a great deal, tho, but on a large scale this piece could present a problem. The transparent lid broke when I pulled it out and from the sound has made it's probably polystirene (CD cases) but on a more accurate inspection it releveal to be styrene acrylonitrile resin (the link should open in a new window, if you want to click now), or SAN for short. Probably has been chosen in place of polystyrene because of the higher temperature resistance, superior to 100°. Unfortunately, SAN is a Class 7 (the link points to the article about classes) polymer and not easily recycled: there are studies on it, tho.  The upper half is HDPE, while the lower, dark grey parts are high impact polystyrene (HI-PS). We'll find more materials later, let's get back to the disassembly line!

The mixed-polymer buttons.

Transparent lid, still attached to the upper half.

Dang!

So, next step was removing the paper feeding guide that was attached to the mechanisms with two machine screws. As I pulled it out, it dissasembled into two different  parts and large metal spring popped out. I proceeded to further disassemble it and noticed that the attrition against the paper was provided by a small square piece of cork glued in a step of the tray: I doubt it wasn't possible to obtain the same effect with a mold design that would have cut the costs of the cork and the glue. The loading tray itself, taken with all of its components, if a mixture of well-known ABS, HDPE and a new one, polyoxymethylene (POM). Polyoxymethylene is very lucid and quite "old": has been discovered in 1920 and is one of those polymers 100% recyclable, as this page says.

The paper loading tray has been unloaded. The gray slider is made of POM.

Where's the rest of the bottle, scallywag!

The loading tray revealed one of the critical parts of inkjet printers: the sponges where the excess of ink goes. Many printers could have been saved from the waste and many of us could have been a bit richer if they knew how to change those, since when they become full the printer won't work right and will start staining the paper. It would have been kind of a messy operation, but with a pair of gloves and an appropriate surface to do it wouldn't have been impossible. Those were pretty much clean.

Inkjet printers' nemesis...and printer makers distorted delight.

Finally I've stumbled across the first re-usable piece of equipment one could get from a printer: PSU! The power source unit, a switching transformer, is secured to the case via machine and lag screws. The disconnection from the electronic board is quite simple, and it's ready to be used in a project since it comes with a nice aluminium case. Generates 30V and 40V.

Hello, PSU! This part is still alive and kicking. Looks good, also!


 Testing the PSU.

Back to work! Some screws later, I have been able to finally detach the mechanisms from the plastic casing.

 Unscrewing. It's a dirty job, but someone must do it.



 almost there...



...done!

 This part of disassembling revealed some interesting mechanisms, like the ink pump and the way the mini-geared wheels are secured to the metal structure: mini-springs, so they can adapt to different papers and provide the right attrition without leaving marks on it. I could reproduce the pump mechanism with a 3D CAD, for the future... you may never know! The white parts are made of ABS.

This provided the ink pumping action we all need, at times.

Spring roll-ing! Mmmmh... I'm hungry now.

 Paper feed system: other interesting rotating shapes.

After removing a metal board, I've reached the electronics. Nothing to say here: something could be salvaged, but not much. They are also very difficult to recycle, so... for now I have a large box for them. I was thinking about using them as a decoration for a large technologic-thing panel/door/wall/whatever. In the paper feed system I've found a very nice component.. an opto-isolator! this coule be used in a moltitude of projects, so... saved! Same goes for the stepper motors found on the metal parts: I've discovered I'm not the first one pulling useful things out of a dead printer.

EM-462 Bipolar Stepper
Coil resistance: 9.2 Ohms
Coil wire diameter: 0.28 +/- 0.02 mm

EM-463 Bipolar Stepper
Coil resistance: 6.1 Ohms
Coil wire diameter: 0.28 +/- 0.02 mm


Are there tiny people wearing led-clothing running in those circuits?

The opto-isolator. The LED tower has been made recognizable... nice!

The dirty work, and i mean it: ink cartridge tray and ink nozzle. With the help of the pliers, I was able to expose the guide and slide the tray out. Disassembling it, I've found the caps made of POM, ABS and a metal spring; printed circuits (used to check the ink levels) and flat cables. The main metal structure had some plastic rollers and flaps. Everything was disassembled and sorted! The last two metal parts were hold together by a metal part of the smaller one, just lifting it with a screwdriver lets them free to slide away from each other.


Removing the ink tray.

 Paper flowin', see those rollin', see they hatin'.

This is how a skeleton printer could look like.


 You are free now!

The main paper axle was connected to the metal parts via a spring system, easy to disassemble. Dividing the axle from the ABS gears was somewhat challenging, and I ended up breaking one while trying to pull it out. But at the end, I've been successful


The spring-locking mechanism.

 Ops.

Cleaned!


Here it ends! Now we got all the plastics divided from metal, all machine screws and lag screws (a dozen for each type) saved and stored for future use. Same goes for springs and washers - those are parts that can be always reused.


Fully disassembled!

Everything reasonably useful could be saved and used again... and as the time I did it with my CD player, I can go to sleep knowing that I've done something that helped, even if just a little, the environment. Alright, this sounds a bit silly :P but at least it was an interesting experience!


Thanks for reading!