The Non-Violent Mirage Valve Works! (Maybe...)
Today, I made the one-way valve for the end of the pumping barrel. This is the last part I need so that I can assemble the gun and test the new power regulator cap valve. On my other bulkhead, this check valve is built in. Not on this one and I think I remember why. It's because it would have gotten in the way of machining the little lip for the new valve.
The valve is a simple "Italian Ball Valve" - the same tech as is used in all our pump inlet valves though I have adjusted the internal dimensions a bit. It was made partly on the lathe, partly on the CNC:
The outer features were done on the lathe, so was the brass bushing and in the above pic, I am doing a test fit on the thread.
Btw, I have mentioned in the past how I only use insert tooling so I don't have to learn to sharpen my lathe tools. This is one of the reasons:
A pretty nice mirror finish on a simple facing cut where I didn't even try hard... The other reason is that the high rake inserts for alu work really well on small machines like this mini lathe. I even use them in hardened 17-4PH when I cut down my shafts and in titanium and stainless, too.
The internal geometry was done on the CNC, basically just three different bore sizes. One for the spring, a slightly larger one for the o-ring and a slightly larger one again for the threaded 7mm bushing. Just to try something different I made the bushing M7x0.7 instead of a more regular M7x1. It's basically just a difference in programming as a single point threadmill can do all the pitches up to it's nominal pitch (and I was using an M6x1 threadmilling cutter). And then on the lathe, since I now have the ELS, it was as simple as just setting the pitch to 0.7 there, too.
Here are the parts, not much in it, really:
I forgot I wanted to shorten the bore for the spring as that's just dead space in the valve where we can't compress the air which makes the pumping a little bit less efficient. Well, next time. I think I will also order some smaller balls and reduce the bore to match them.
Also, the only reason the middle part of the valve is so long is because the new bulkhead is 8mm shorter then the one it replaces and I didn't want to make a new pumping barrel... I think I made this bulkhead shorter to save some weight and to shrink the rear volume a bit (less pump strokes needed, but less power for the low power shot).
Here it is, all greased up and with the o-rings installed, ready to go in the bulkhead:
I guess I could have deburred that slot with my little grinder. Well... Also, you can see the shape of the air transfer opening to the right of the valve:
And here's the assembled bulkhead with the new check valve and the new power regulator/Mirage valve:
It Works! But It Doesn't... Some Findings
I took the gun up to 30 bar and wouldn't you know, we have a leak... An internal one somewhere in the Mirage system (we will get back to that). But the leak was just about slow enough that I could do some test pumping and learn a few things:
- The violent slamming when opening is gone! That's the main take-away. No surprise but still nice to have it proven
- I was reminded that I prefer the direction of the Magnum type (same as Predathor) valve over the Mares type. The main reason is that when going from a high to a low power shot, you simply flick the regulator knob out of the gate and the pressure in the gun will "automatically" close the valve. On a Mares type valve, you would need to force it closed against the pressure (which in a Mirage starts taking noticable force)
- Pushing this valve open to equalize the pressure between the two chambers was not bad at all. Of course, this was helped by the leak resulting in a lower pressure differential but I think even with a fully working valve and a higher differential, it would still be very doable
- The air transfer did seem to happen really fast so it was not like I had to hold the valve open for any annoying or tiring amount of time. Maybe it took 1.5sec or so. That said, because of the leak, I think the pressure differential when I got to opening the valve had dropped to about 20bar (I had the pressure gauge inserted and it read ~10bar). But the way pressure and flow supposedly work is that the air moves a whole lot faster when the pressure is at its highest. So, say the pressure differential is 30bar instead of 20bar when I open the valve, it's not like it would take 1.5 times longer to equalize
- I have also stated that it would take ~3.5kgf to open the valve at max pressure, but I didn't account for the pressure in the gun also working in the same direction to push the power regulator "out of the handle". And I think those two forces could be additive and thus the force to open the valve is actually a bit more than twice as high as I have previously stated. But it was still very manageable
- I think I instinctively grab the topside of the handle or reservoir with my left hand as I push forward the knob with my right to get a bit more leverage and control. As this would happen as part of the loading routine and not in the middle of a stalk, this is totally fine
OK, Back To The Leak
Trouble shooting Mirage systems is always frustrating as there are so many potential leak paths.
For the valve:
1. The tiny o-ring inside the larger valve cap
2. The valve seal itself (the rubber sheet being pressed onto the alu lip)
Add the bulkhead:
3. The seal between the bulkhead and the shooting barrel (as I had to cut a new o-ring groove for the shorter bulkhead, this goes on the list, too)
4. The seal between the bulkhead and the reservoir (this is a brand new bulkhead, it's never been used though the o-ring groove should be made to proven dimensions)
The Pumping Barrel Check Valve (the one in the bulkhead):
The pumping barrel itself did not leak when used previously but the check valve at the rear of it is new. It's not the likely culprit but:
5. The seals between the new check valve and the new bulkhead could be leaking
6. The ball check valve itself could be leaking but for this to happen, air would also need to be getting back into the pumping barrel which it could if one of the following is leaking:
7. The seal between the barrel and the check valve (not so likely as the o-ring groove geometry is the same as previously used)
8. The Zahar valve (unlikely as it has been flawless so far)
Like I said, frustrating...! That said, the pumping barrel has proven itself leak free with the same Zahar valve and a check valve with identical o-ring groove design and geometry. I have designed for 25% compression on all these o-rings. I guess since they are static (except the one inside the valve cap) I could have gone to 30% but 25% should be fine .
The list is actually pretty much in the order of what I suspect is the likeliest culprit and I really think it would be between those first four.
So, glass half full/half empty at the same time. On one hand, I think this valve will work but on the other, chasing Mirage leaks kinda sucks...
By the way, the Magnum/Predathor valves also use the gasket idea, so I do hope it will work for me - if not, I have another idea in my notes that could possibly work instead. Using an o-ring instead of gasket material but it would still be a push-to-open Magnum style valve and of course, with the smaller internal valve, too.
Here's a reminder of the crescent shaped Magnum/Predathor valve next to my version: