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DAN_ANTONELLI

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Mechanical excellence through design & engineering. Carefully crafted form & function. Prototype to production.

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We haven't even discussed modular hydraulic connectors yet. Just look at this beautiful setup. You'd have to be crazy to not want to use this.

We haven't even discussed modular hydraulic connectors yet. Just look at this beautiful setup. You'd have to be crazy to not want to use this.

463,108 Aufrufe

This is how you say "I love you" to your customers & service techs when building a product:

This is how you say "I love you" to your customers & service techs when building a product:

301,140 Aufrufe

Look at how cool the action is on this Sykes herringbone generator. This design allows you to cut teeth down to a sharp vee (though this part has a central groove). All of these machines use a 30° helix angle on the guide. My father used to run these back in the day, cutting gears up to 65" in diameter. From Themobilegearhead on yt:

Look at how cool the action is on this Sykes herringbone generator. This design allows you to cut teeth down to a sharp vee (though this part has a central groove). All of these machines use a 30° helix angle on the guide. My father used to run these back in the day, cutting gears up to 65" in diameter. From Themobilegearhead on yt:

75,946 Aufrufe

The "butterfly" flexure pivot: No moving parts. No friction. No lubrication. No wear. No backlash. High precision. High radial, axial, & transverse angular stiffness. Compatible with zero-Gs & the vacuum of space. Made out of a block of titanium via wire EDM. More than 1.4 million cycles of ± 7.5° stroke without failure. Designed at CSEM by Henein and Spanoudakis. Video footage from Christophe Yamahata.

The "butterfly" flexure pivot: No moving parts. No friction. No lubrication. No wear. No backlash. High precision. High radial, axial, & transverse angular stiffness. Compatible with zero-Gs & the vacuum of space. Made out of a block of titanium via wire EDM. More than 1.4 million cycles of ± 7.5° stroke without failure. Designed at CSEM by Henein and Spanoudakis. Video footage from Christophe Yamahata.

107,647 Aufrufe

Trying to figure out the best way to make a part like this... > metal > thin wall > flat bottom > relatively deep hole > depth must be held tightly The top version is the simplified form, bottom version is closer to ideal. Bore as shown is 1/4" with 2" OAL. Running through different possibilities in my head on how to make it one piece or multi-piece. Ideally constructed out of stainless or titanium. It can have a hole in the end, but must still have some sort of step / lip for retaining purposes. Don't want to weld. Doesn't have to be super cheap. Under 1000 pieces per year right now. Need a nice finish. In actual production the length could increase to 4". Any thoughts?

Trying to figure out the best way to make a part like this... > metal > thin wall > flat bottom > relatively deep hole > depth must be held tightly The top version is the simplified form, bottom version is closer to ideal. Bore as shown is 1/4" with 2" OAL. Running through different possibilities in my head on how to make it one piece or multi-piece. Ideally constructed out of stainless or titanium. It can have a hole in the end, but must still have some sort of step / lip for retaining purposes. Don't want to weld. Doesn't have to be super cheap. Under 1000 pieces per year right now. Need a nice finish. In actual production the length could increase to 4". Any thoughts?

12,850 Aufrufe

Sometimes you need *just* a bit of an angle to get the job done... > angled bearing mount > 6061-T6 aluminum > clear anodized

Sometimes you need *just* a bit of an angle to get the job done... > angled bearing mount > 6061-T6 aluminum > clear anodized

116,170 Aufrufe

It might look a bit overkill, but this is actually secret, behind-the-scenes footage of how dark chocolate sprinkles are produced:

It might look a bit overkill, but this is actually secret, behind-the-scenes footage of how dark chocolate sprinkles are produced:

50,588 Aufrufe

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