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Mortaccio

@Mortaccio

Joined July 10th, 2026

  • 10Devlogs
  • 1Projects
  • 0Ships
  • 0Votes
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7h 52m 10s logged

full body mockup, with brackets, major electrical components, actuators and timing belt/gear system installed. Now all that needs to be done is add masses and rotation limits and small tweaks, then I can simulate in mujoco, test for major flaws, onshape to urdf file, then to Isaac Lab.

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7h 36m 32s logged

Gear Synch Added! Ok so boom, gears/pulleys for the timing belt system are added and implemented, found all the parts I need on Amazon for ~$25 extra for both legs and used the provided seller info to spec the CAD models. Now, just have to add the foot, along with its connection to the ankle gear, and add all the significantly weighted tech pieces/ anything that takes up significant space to figure out bracketing. After that, add weights, clean rough edges, and train the RL policy while we wait for a grant.

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16h 12m 20s logged

New design work, made the motor proxies bigger to account for drivers, made thigh brackets bigger, added antennas with rotation axis, turns out im going to be using a dual antenna system, where only one is powered at a time based upon which garners a greater signal, but for right now only the antenna proxies are needed for weight calculations, fixed some more design details, am currently working on implementing belt system into cad.

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10h 21m 13s logged

Details Galore, added details to the thigh bracket, torso and head. Reproportionized a lot of stuff, all in all just a big design change day. Really hit a wave of frustration today when looking at some other people’s robots and how far other people have come. But then I started realizing that to compare to robots with different functions and different budgets is apples to oranges. I will continue to do the best with what I have. The budget has run out of control. Currently, my estimated cost to finish the robot is around an additional 350 dollars. I know that sounds rough but that’s where I’m at. Maybe GDZ34 drivers wouldnt be too bad a present for my birthday lol. All in all, rough day. I think I just need to fall in love with the design again and my motivation will come back. I plan on making the final-final version out of metal, so I will model for that.

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8h 46m 52s logged

NEW Mechanisms in the pipeline, removing ankle servo in favor of utilizing a chain linkage to the hip actuator to sync hip and ankle movements inversely. New designs, new CAD model for the foot. New Shin redesign. Due to heat strain on hip roll servos, a aluminum heatsink will be added, may require further cooling solutions in the future. Removing the ankle servos saves weight, distal mass and complexity of bus protocols. All in all, simpler is better and this new redesign is elegant and simple.

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8h 15m 25s logged

Final Touches, Moving to Sim————————Extended Shin, Recalculate Torque, Added Hip Roll Motor Horn Connectors, Signed up for AWS, requested more large server access (EC2), did material testing and found I only need ~avg 20% infill, made feet and imported to mujoco to get this awesome pic

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5h 10m 58s logged

CAD Leg Shenanigans– Found cheap ankle servos that work from Feetech, Remodeled the shin and thigh brackets for better aesthetics and new bracketing. To do: Find and implement hip roll servos, implement head tilt/pan servo (if able to- not super high priority) and make knee 3:2 ratio gear if needed.

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1h 33m 28s logged

Ive found it, the Goldilock of motors for my build. After hours of bartering with Alibaba factories, and messing with thigh and shin lengths, re-calculating torque requirements, I’ve found the motor that singlehandedly will solve all of my problems. The GIM3505-8 has RPM ~2x what I would have needed for walking, with enough torque for the hip pitch and possibly the knee pitch (hopefully). Because of the fact that my CAD and Mujoco models show most of the weight falling on the knee joint, as it is backward-facing, it is often holding the weight of the robot in solely its rotation. In addition, the knee joint requires the highest rpm and the highest range of motion. All these limits make it increasingly difficult to stay true to the form factor of the BD-1 without sacrificing money in the thousands. The motor comes with a encoder, so all I need is a driver. I thought about utilizing a all in one PCB board, with the Reinforcement Learning Policy, drivers and any other compute needed all in one place. Unfortunately, this elegant solution is very cost inefficent. While a great way to try my luck at PCB design, it will run me at least ~$30 more than just buying two arduinos and a raspberry pie 4. I still need to decide on the ankle motor replacement and the hip roll replacement as my old proxies were incorrect. (Claude doesn’t like CAD).

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