The Xiaomi D109GL handles daily floor maintenance by combining suction and wet mopping in a single automated pass, cleaning hard floors of both dry debris and the surface residue that accumulates with regular household use. The mopping side of this system relies entirely on the pad. Xiaomi’s mop mechanism presses the pad against the floor and uses its motion to create friction that lifts residue: a process that works as intended when the microfibre surface has intact, upright fibres and becomes progressively less effective as those fibres compact through repeated use and washing. What makes pad degradation easy to overlook is that the robot does not change behaviour as the pad wears: it continues to navigate, apply moisture, and run its sessions. The difference shows up in the floor condition after a session: the cleaned area looks similar, but residue that a fresh pad would have lifted is still there. Catching this before it becomes the baseline means rotating through pads on a schedule rather than replacing reactively once mopping quality has already dropped.
This set of six Plus.Parts® replacement pads is matched to the Xiaomi D109GL’s mop module geometry: the attachment ring fits the module’s mount and the pad footprint covers the floor contact area as specified. Each pad is machine-washable and designed to hold its surface texture through multiple washes before compaction becomes irreversible.
Tool-free installation in under a minute. If there is any question about fit for your D109GL model or your order, the VacuumReviews.eu team will answer it personally.
Quick summary
- Purpose-Built for Performance – Pad dimensions and attachment ring matched to the D109GL mop module so contact pressure is applied evenly and the pad positions correctly in every cleaning session.
- Consistent Performance – Machine-washable microfibre surface that recovers scrubbing texture through repeated wash cycles, holding performance steady across the rotation interval.
- Reliable Quality – Woven construction maintains fibre structure longer than lower-density alternatives, reducing how quickly compaction limits the pad’s effective service life.






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