Gearbox lubrication schedules - what's realistic for continuous duty?
Gearbox lubrication schedules - what's realistic for continuous duty?
Long-time reader, figured I'd finally start a thread instead of just replying.
It's common for a single humanoid to mix actuator types by joint - harmonic drives or hybrid geared actuators at the hips and shoulders where sustained torque matters most, and lower-ratio QDD-style actuators at ankles and knees where backdrivability and impact tolerance matter more. For dynamic walking and recovery, joint control bandwidth in the tens of Hz range is typically necessary to react to a stumble before the center of mass gets too far outside the support polygon.
Interested in both agreement and pushback here.
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
I can speak to this a bit.
Torque sensing is frequently integrated directly into the actuator housing via strain gauges near the output flange or spring element, rather than bolted on as an external sensor, to save weight and reduce noise from mechanical slop. Field-oriented control (FOC) tuning directly affects how smooth torque output feels - poorly tuned current loops show up as audible whine and jerky low-speed motion, while well-tuned FOC can make even a geared actuator feel fairly fluid.
Makes me wonder how this looks in another five years.
they/them
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camila.jackson0
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Re: Gearbox lubrication schedules - what's realistic for continuous duty?
I see it a little differently.
Backdrivability is the property that lets an external force move a joint without destroying the gearbox or the motor - it's central to both safe human-robot contact and to letting a leg comply naturally when the robot stumbles.
Building > buying.
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
@camila.jackson0 Here's the relevant bit as far as I understand it:
Encoder resolution requirements scale with how tightly you need to control low-speed motion - coarse encoders are fine for open-loop swing phases but cause visible stutter during precise placement or fine force control. Harmonic drives use high reduction ratios (often around 100:1), which gives excellent force density, stiffness, and thermal endurance for continuous-duty lifting - the tradeoff is low backdrivability and some backlash.
she/her
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
@erik_novi Yeah, this tracks with what I've read as well.
Cycloidal drives are a less common but real alternative to harmonic drives - lower cost at high ratios, decent efficiency, but historically bulkier for the same torque density, which is part of why they haven't fully displaced harmonic drives in commercial hips and knees.
Watching this space closely since 2019.
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
Small correction on one detail:
Quasi-direct drive (QDD) actuators use lower gear ratios (roughly 6:1 to 10:1) paired with high-torque-density motors, trading some peak force density for backdrivability and low reflected inertia, which matters a lot for impact tolerance and fall recovery. Series elastic actuators add a spring element in series with the drivetrain, which gives cheap, precise torque sensing (measure spring deflection) and passive shock absorption, at the cost of reduced control bandwidth and added complexity.
she/her
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
I'd push back on this a bit.
Boston Dynamics' commercial electric Atlas switched fully from hydraulic to QDD-style electric actuation, ending up quieter and lighter with comparable or better dynamic performance than the old hydraulic platform.
he/him | robotics hobbyist since the DARPA Grand Challenge days
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
Slightly off-topic, but related:
Anti-backlash techniques in production actuators range from mechanical preloading (spring-loaded gear meshes) to purely software compensation that models and corrects for known backlash in the control loop.
Makes me wonder how this looks in another five years.
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williams84
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Re: Gearbox lubrication schedules - what's realistic for continuous duty?
@jhansen Ran into exactly this myself.
A lot of the per-joint cost in a modern actuator isn't the motor - it's the combination of a precision gearbox, integrated encoders, torque sensing, and the driver electronics, all of which have to fit inside a housing the size of a fist.
"The best actuator is the one that doesn't overheat."
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emilyperez
- Posts: 246
- Joined: Mon Oct 28, 2024 8:03 pm
Re: Gearbox lubrication schedules - what's realistic for continuous duty?
Just to be precise about one thing:
Motor cogging torque (the 'notchy' feel from magnet-to-slot interactions) shows up as small periodic torque ripple that can translate into visible joint jitter at low speeds - it's usually mitigated with skewed magnets, better current control, or software compensation tables.
Kind of makes me think about how different this all looked even three years ago.