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20242026
most citedMany-Objective-Optimized Semi-Automated Robotic Disassembly Sequences

1 citations · 1 across the 7 of their papers we have counts for

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cs.RO2026

Component Influence-Driven Fastener Reduction for Robotic Disassemblability-Aware Design Simplification

Takuya Kiyokawa, Tomoki Ishikura, Shingo Hamada +2

To accelerate automated remanufacturing, robotic disassembly must be considered during the product design phase. However, designers currently lack quantitative feedback to identify…

cs.RO2026

Industrial-Grade Robust Robot Vision for Screw Detection and Removal under Uneven Conditions

Tomoki Ishikura, Genichiro Matsuda, Takuya Kiyokawa +1

As the amount of used home appliances is expected to increase despite the decreasing labor force in Japan, there is a need to automate disassembling processes at recycling plants.…

cs.RO2025

Hierarchical Planning and Scheduling for Reconfigurable Multi-Robot Disassembly Systems under Structural Constraints

Takuya Kiyokawa, Tomoki Ishikura, Shingo Hamada +2

This study presents a system integration approach for planning schedules, sequences, tasks, and motions for reconfigurable robots to automatically disassemble constrained structure…

cs.RO2025

Affordance-Guided Dual-Armed Disassembly Teleoperation for Mating Parts

Gen Sako, Takuya Kiyokawa, Kensuke Harada +3

Robotic non-destructive disassembly of mating parts remains challenging due to the need for flexible manipulation and the limited visibility of internal structures. This study pres…

cs.RO2025

Modular Vacuum-Based Fixturing System for Adaptive Disassembly Workspace Integration

Haohui Pan, Takuya Kiyokawa, Tomoki Ishikura +3

The disassembly of small household appliances poses significant challenges due to their complex and curved geometries, which render traditional rigid fixtures inadequate. In this p…

cs.RO2024

Robotic Stroke Motion Following the Shape of the Human Back: Motion Generation and Psychological Effects

Akishige Yuguchi, Tomoki Ishikura, Sung-Gwi Cho +2

In this study, to perform the robotic stroke motions following the shape of the human back similar to the stroke motions by humans, in contrast to the conventional robotic stroke m…