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Posted 20 hours ago

Phlat Ball WAHU Assorted Colours | Throw a Disc... Catch a Ball | Outdoor Garden Toy | Ages 6+

£9.9£99Clearance
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ZTS2023
Joined in 2023
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My method till now is by just bending the lock a bit stronger, but i am finding this to be unsatisfactory with either the blade action being a bit stiff, and if i bend it too strong the blade goes slightly off center.Waboba entering the water, flattening under the compressive force of the ball hitting the back of the water depression. I think there comes a point where more surface area would be advantageous over less and actually reduce friction, i.

I have been making flippers and I am looking to increase the “holding strength” of the detent to make the flipping action better.The only time I've noticed them is on public room sets and when I'm lazy at home and haven't cleaned up for a few hours. I forgot to tell you we back cut the detent hole so the detent ball can fit very far into it without touching the other side which will cause a sloppy detent closed position. I believe my biggest issue right now is too much strength in the lockbars causing excessive friction. The Waboba enters the water as a spherical ball, but then flattens as the compressive forces generated by the kinetic energy of the thrown ball being counteracted by the resistance of the water.

If a ball was set so that it was just the smallest squeak over halfway into the leaf spring, and went all the way into a sharp-shouldered hole that precisely fit it, that would give you the most resistance to opening. I didnt have time to read through all the posts but I will give you a couple things that I do that several of my buddy makers have come up with through the years. I have trouble visualizing how you can have long enough contact time on the balls to get an oval unless there is a lot of English on the impacting ball or the impacted ball is frozen to a rail. It is extremely difficult for us mere mortals to get enough topspin on a ball, especially on serves or overheads, to have the ball rotating at impact speeds. Last thing to ponder is how natural wear on the ball effects the strength of the lock when it flattens over time and usage.The simple principle I believe is that the edge of the flattened ball is either holding or it's not - no middle ground, and if sunk deep it will hold longer. If you think about the force vectors, what would matter would be the angle of the side of the detent ball, relative to the angle of the side of the hole, when it's as deep as the design will allow it to go in the drilled hole.

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